Intelligent toilet
By designing the cleaning cover assembly and cleaning cover assembly in the smart toilet and using the control device to realize an automated self-cleaning process, the problem of cleaning liquid splashing in the prior art is solved, and the accuracy and user experience of cleaning are improved.
Patent Information
- Application Number
- PCT/CN2024/130958
- Authority / Receiving Office
- WO · WO
- Patent Type
- Applications
- Current Assignee / Owner
- Priority Date
- 2023-12-04
- Filing Date
- 2024-11-08
- Publication Date
- 2025-05-30
AI Technical Summary
When the cleaning device of the existing smart toilet is flushing the anus or female vagina, the flushing liquid is prone to splash, resulting in wet and contamination of human body parts outside the cleaning target area, making the cleaning experience poor.
An intelligent toilet is designed, adopting a cleaning cover assembly and a cleaning cover assembly. The cleaning cover assembly includes a cleaning cover and a moving part. The cleaning cover assembly includes a cleaning cover and a second cleaning mechanism. The control device monitors and controls the movement of the cleaning cover and the cleaning cover to realize an automated self-cleaning process.
It effectively avoids the splash of cleaning liquid, improves the accuracy and effect of cleaning, enhances the user experience, and improves the convenience and cleanliness of the equipment through an automated self-cleaning process.
Smart Images

Figure CN2024130958_30052025_PF_FP_ABST
Abstract
Description
Smart toilet Technical Field
[0001] The present application relates to the field of bathroom equipment, and specifically discloses an intelligent toilet. Background Art
[0002] Existing smart toilets are equipped with a cleaning device for cleaning the anus and / or vulva. This cleaning device includes a water outlet pipe that sprays water to flush the anus and / or vulva. When cleaning the anus and / or vulva with the cleaning device of existing smart toilets, the flushing liquid easily splashes and wets, contaminating parts of the body outside the target area, resulting in a poor cleaning experience.
[0003] To address the aforementioned issues, the published Chinese invention patent CN202310763660.4 proposes a new cleaning mechanism that incorporates a cleaning hood structure on the toilet bowl. This hood covers the target area for cleaning, preventing it from wetting and contaminating any other human body parts during cleaning while also achieving close cleaning, resulting in a better cleaning experience and results. However, the cleaning hood can accumulate dirt after use, so the automatic cleaning of the hood needs to be addressed to further enhance the user experience.
[0004] Summary of the Invention
[0005] In order to solve one of the technical problems existing in the prior art, the present application provides a variety of new smart toilets, all of which are equipped with a cleaning cover assembly and a cleaning cover assembly. The cleaning cover assembly includes a cleaning cover, and the cleaning cover assembly includes a cleaning cover. A second cleaning mechanism is provided on the cleaning cover, and the second cleaning mechanism on the cleaning cover is used to clean the cleaning cover.
[0006] An intelligent toilet according to an embodiment of the first aspect of the present invention includes:
[0007] A toilet body, wherein the toilet body is provided with a toilet bowl area and a rotatable flip cover, and when the flip cover is closed, the flip cover covers the upper part of the toilet bowl area;
[0008] A cleaning cover assembly is disposed on the toilet body, comprising a cleaning cover with an upper opening and a moving portion for driving the cleaning cover to move; the cleaning cover is disposed on the moving portion, and a first cleaning mechanism is disposed within the cleaning cover. When the moving portion drives the cleaning cover to move so that the cleaning cover covers a specific area of the user of the intelligent toilet, the first cleaning mechanism cleans the specific area of the user of the intelligent toilet;
[0009] A cleaning cover assembly, the cleaning cover assembly comprising a cleaning cover, the cleaning cover being provided with a second cleaning mechanism and a first docking member, the first docking member being connected to the second cleaning mechanism;
[0010] a liquid supply assembly, the liquid supply assembly being arranged on the flip cover, the liquid supply assembly comprising at least one liquid supply pipe, and the liquid supply pipe being provided with a second docking member;
[0011] A control device, the control device monitors the status and position of the cleaning cover assembly, the cleaning cover assembly, and the flip cover and controls their actions;
[0012] In which, the cleaning cover is configured to be combined with the cleaning cover in a detachable manner so that the cleaning cover and the cleaning cover are combined to form a self-cleaning combination. When the cleaning cover is combined with the cleaning cover, a cleaning cavity is formed between the cleaning cover and the cleaning cover, and the second cleaning mechanism is located inside the cleaning cavity; the second docking component is configured to dock with the first docking component in a detachable manner; when the cleaning cover on the moving part is combined with the cleaning cover and the second docking component is docked with the first docking component, the second cleaning mechanism cleans the cleaning cover and the first cleaning mechanism.
[0013] The smart toilet according to the embodiment of the first aspect of the present invention has at least the following beneficial effects: the smart toilet of this embodiment has a cleaning cover assembly, and is also provided with a cleaning cover assembly, a liquid supply assembly and a control device. When the user sends a self-cleaning instruction to the control device for the self-cleaning assembly, or the control device detects that the conditions for self-cleaning of the self-cleaning assembly are met, the cleaning cover and the cleaning cover on the moving part are first combined to form a self-cleaning assembly, and then the control device controls the flap and the moving part to coordinate the movement to achieve the docking of the second docking component with the first docking component; when the cleaning cover and the cleaning cover on the moving part are combined and the second docking component is docked with the first docking component, the second cleaning mechanism cleans the cleaning cover and the first cleaning mechanism. This process is the process of automatically self-cleaning the self-cleaning assembly of the smart toilet of this application. This process has a high degree of automation, is easy to use, and can provide a good user experience.
[0014] According to the intelligent toilet described in the embodiment of the first aspect of the present invention, the second cleaning mechanism includes at least one of a fixed nozzle and a moving nozzle. After installation, the fixed nozzle cannot move relative to the cleaning cover. The advantages of the fixed nozzle are simple structure, low cost, and easy assembly; and the fixed nozzle can focus on spraying and washing specific positions, which is suitable for fixed and focused cleaning of some key areas; the moving nozzle can move relative to the cleaning cover, and the movement may include one or more combinations of up and down movement, translational movement, rotational movement and swinging movement. Therefore, the cleaning method of the moving nozzle can be in the form of scanning. When the fixed nozzle is cleaning, the direct impact area is fixed. The advantages of the moving nozzle are: the direct impact area of the scanning cleaning is generated in a scanning manner, which can increase the total area of the direct impact area and achieve better flushing effect.
[0015] According to the smart toilet described in the first aspect of the present invention, the fixed nozzle is fixedly mounted on the cleaning cover and is provided with a plurality of nozzles. After installation, the fixed nozzle cannot move relative to the cleaning cover. One or more nozzles may be provided on the fixed nozzle as needed to provide better cleaning.
[0016] According to the smart toilet of the first aspect of the present invention, at least one of the fixed nozzles is a foam nozzle. The nozzle of the foam nozzle is capable of spraying cleaning foam. The cleaning foam is generated by a detergent solution and air through a foam generator. After being sprayed, the cleaning foam remains on the inner wall of the cleaning cavity or the first cleaning mechanism for a long time, thereby enhancing the cleaning effect.
[0017] According to the smart toilet described in the first aspect of the present invention, a foam diverter is provided on the cleaning cover, the inlet of the foam diverter is connected to the foam nozzle, and the foam diverter is provided with at least one foam outlet for diverting washing foam to different locations within the cleaning cavity. The inlet of the foam diverter is connected to the nozzle of the foam nozzle, and washing foam is sprayed through the foam outlet of the foam diverter to different locations within the cleaning cavity, so that the washing foam is relatively evenly distributed on the inner wall of the cleaning cavity and the first cleaning mechanism.
[0018] According to the intelligent toilet described in the first aspect of the present invention, the moving nozzle can be rotatably connected to the cleaning cover, and a plurality of nozzles are provided on the moving nozzle, and the moving nozzle is configured to rotate while spraying. Since the moving nozzle rotates while spraying, water or washing solution is sprayed in a rotating scanning form, which can increase the area of the direct impact zone during cleaning and improve the cleaning effect. Furthermore, the moving nozzle and the cleaning cover can be directly or indirectly connected by a rotating connecting pipe or a ball joint connector and other components. The moving nozzle can be driven to rotate by a motor, and the moving nozzle can also be configured as a water-driven rotating structure. When the moving nozzle is a water-driven rotating structure, the moving nozzle is driven to rotate by the reaction force generated when the water or washing solution is sprayed.
[0019] According to the smart toilet described in the first aspect of the present invention, the cleaning cover or the flip cover is provided with a lifting device that drives the moving nozzle to move up and down. The moving nozzle can rotate and move up and down simultaneously during spraying, and the moving nozzle is driven by the lifting device to move up and down reciprocatingly. The simultaneous rotation and up and down movement of the moving nozzle during spraying can achieve spiral scanning cleaning of the moving nozzle. This cleaning method can still have a larger direct impact area after reducing the number of nozzles on the moving nozzle, so that the water pressure can be concentrated on a small number of nozzles for release. Under the same liquid supply pressure and liquid supply flow, reducing the number of nozzles on the moving nozzle can increase the flow rate of the jet generated by the nozzle of the moving nozzle and the impact force of the spray, thereby improving the decontamination effect.
[0020] Furthermore, the cleaning cover can be equipped with multiple moving nozzles, each responsible for cleaning a different area. The multiple moving nozzles can operate simultaneously or sequentially to achieve a complete cleaning of the inner cavity without blind spots. Under the same liquid supply pressure and flow rate, the multiple moving nozzles can operate sequentially to increase the spray velocity and impact force of each nozzle, thereby improving the decontamination effect.
[0021] According to the intelligent toilet described in the first aspect of the present invention, the nozzle includes at least one of a water column nozzle, a water curtain nozzle, and a foam nozzle. Among them, the water column nozzle produces a clustered liquid column, the water curtain nozzle produces a flat jet water curtain, and the foam nozzle has washing foam flowing out of the outlet. When the liquid supply hydraulic pressure and the liquid supply flow rate are fixed and sufficient, the water column nozzle outlet cut-off area is appropriately large, and a large number of water column nozzles are provided, then the jet liquid column generated by the water column nozzle has a slow flow rate. This type of nozzle has low material strength requirements and low production costs. The water curtain nozzle produces a flat jet, and its shape is a flat plate-shaped water curtain. The water curtain nozzle includes a fan-shaped water curtain nozzle and a curtain-shaped water curtain nozzle. The water curtain generated by the fan-shaped water curtain nozzle has a flat fan-shaped shape. Fan-shaped water curtain nozzles can be designed based on the principles of fan-shaped nozzles used in high-pressure cleaning equipment. These nozzles produce a fan-shaped water curtain with high jet velocity and strong impact force, making them suitable for cleaning stubborn stains. When installed on a moving nozzle, this nozzle eliminates blind spots within the sweeping cleaning area, resulting in effective cleaning. Fan-shaped water curtain nozzles can also be designed with long, curved slits, offering low production costs. Curtain-shaped water curtain nozzles produce a flat curtain-like water curtain, resembling a flat rectangular body. The liquid outlet of a curtain-shaped water curtain nozzle is slit-shaped, and the water curtain produced by a single curtain-shaped nozzle has a continuous, narrow direct impact zone. Curtain-shaped water curtain nozzles are suitable for use on fixed nozzles, which are ideal for cleaning the narrow contact surface between the cleaning hood and the user. The continuous direct impact zone of the curtain-shaped water curtain provides excellent cleaning results. Furthermore, by combining fixed and moving nozzles, if the nozzles of the fixed nozzles use water curtain nozzles, the fixed nozzles can spray a water curtain, and the direct impact area of the water curtain is a narrow and long surface. The direct impact area has good continuity, and the narrow contact surface between the cleaning cover and the user's body can be fixed and focused on for better cleaning effect. If the moving nozzle uses multiple water curtain nozzles and the moving nozzle rotates while spraying, or if the moving nozzle uses a small number of water curtain nozzles and the moving nozzle rotates and moves up and down while spraying, a larger range of cleaning can be achieved, and there is no blind spot in the direct impact area within the cleaning range, and the cleaning effect is good.
[0022] According to the intelligent toilet described in the first aspect of the present invention, the liquid supply assembly includes a first liquid supply pipe, and the first liquid supply pipe transports water.
[0023] According to the intelligent toilet described in the first aspect of the present invention, the liquid supply assembly includes a second liquid supply pipe, which delivers at least one of a washing solution and washing foam. It should be noted that the washing solution is an aqueous solution containing detergent, an aqueous solution containing disinfectant, or an aqueous solution containing ozone. Detergent aqueous solutions are the most commonly used, but users can also switch to different washing solutions as needed. Washing foam is generated by mixing detergent solution with air through a foam generator. The foam generator is located on the second liquid supply pipe, on the cleaning cover, or elsewhere. Both the washing solution and washing foam can be delivered to the cleaning cavity. The washing solution can enter the cleaning cavity through the second cleaning mechanism, while the washing foam reaches the cleaning cavity through the foam nozzle or foam diverter on the cleaning cover. Both the washing solution and washing foam can emulsify, soften, dissolve dirt, or chemically react with dirt to improve cleaning effectiveness and eliminate odors. The washing solution, which has bactericidal and disinfecting properties, can also perform bactericidal and disinfecting functions, further improving the cleanliness of the self-cleaning assembly. When the washing solution is sprayed out through the water curtain nozzle on the moving nozzle, the washing solution forms a high-speed jet to flush the cleaning cavity, thereby enhancing the cleaning effect. Furthermore, the first liquid supply pipe and the second liquid supply pipe can be the same pipe.
[0024] According to the intelligent toilet described in the first aspect of the present invention, a pressure boosting device is connected to the first liquid supply pipe and / or the second liquid supply pipe. The pressure boosting device increases the pressure of the water flowing in the first liquid supply pipe and / or the cleaning solution flowing in the second liquid supply pipe, thereby increasing the flow rate of the jet ejected by the second cleaning mechanism and improving the cleaning effect.
[0025] According to the intelligent toilet described in the first aspect of the present invention, the first liquid supply pipe and the second liquid supply pipe are connected to a plurality of pipe control valves, and the pipe control valves are connected to the control device. The control device controls the liquid or foam output of the second cleaning mechanism through the pipe control valves. The second cleaning mechanism may include at least one of a fixed nozzle and a movable nozzle. Through the control of the pipe control valves, the liquid supply component can supply liquid to multiple nozzles at the same time, or it can supply liquid to a single nozzle alone. Under the same liquid supply pressure and liquid supply flow rate, the advantage of the liquid supply component supplying liquid to a single nozzle alone is that the hydraulic pressure can be concentratedly released to increase the flow rate of the jet ejected from the nozzle, so that the jet has a stronger impact force and significantly improves the cleaning effect.
[0026] The intelligent toilet according to the first aspect of the present invention further includes a disinfection device, comprising at least one of an ultraviolet lamp, an ozone generator, and a steam generator. The ultraviolet lamp is disposed within the cleaning cavity and sterilizes and disinfects the interior of the cleaning cavity by emitting ultraviolet light. The ozone generator is disposed outside the cleaning cavity, with its output port connected to the cleaning cavity. The ozone gas generated by the ozone generator is input into the cleaning cavity to sterilize and disinfect the interior of the cleaning cavity. The steam generator is disposed outside the cleaning cavity, with its output port connected to the cleaning cavity. The high-temperature steam generated by the steam generator is input into the cleaning cavity to sterilize and disinfect the interior of the cleaning cavity. The provision of the disinfection device can further improve the cleanliness of the self-cleaning assembly.
[0027] The smart toilet according to the first aspect of the present invention further includes a storage box, disposed behind or to the side of the toilet bowl, for storing the cleaning cover assembly. The storage box protects the cleaning cover assembly, preventing dirt and dust, and further enhances the appearance of the smart toilet.
[0028] According to the first aspect of the intelligent toilet of the present invention, the first docking member is upwardly arranged on the cleaning cover, and the second docking member is downwardly arranged on the side of the flip cover facing the toilet bowl area. The first docking member and the second docking member are in an upper and lower docking mode.
[0029] It should be noted that the first docking member can be arranged horizontally on the cleaning cover, and correspondingly, the second docking member is arranged horizontally on the side of the flip cover facing the toilet area. The first docking member and the second docking member can be arranged in a horizontal docking mode.
[0030] An intelligent toilet according to a second embodiment of the present invention includes:
[0031] A toilet body, wherein the toilet body is provided with a toilet bowl area and a rotatable flip cover, and when the flip cover is closed, the flip cover covers the upper part of the toilet bowl area;
[0032] A cleaning cover assembly is disposed on the toilet body, comprising a cleaning cover with an upper opening and a moving portion for driving the cleaning cover to move; the cleaning cover is disposed on the moving portion, and a first cleaning mechanism is disposed within the cleaning cover. When the moving portion drives the cleaning cover to move so that the cleaning cover covers a specific area of the user of the intelligent toilet, the first cleaning mechanism cleans the specific area of the user of the intelligent toilet;
[0033] A cleaning cover assembly, the cleaning cover assembly being arranged on a side of the flip cover facing the toilet bowl area, the cleaning cover assembly comprising at least one cleaning cover, each cleaning cover being provided with a second cleaning mechanism;
[0034] A liquid supply assembly, the liquid supply assembly is arranged on the flip cover, the liquid supply assembly includes at least one liquid supply pipe, the liquid supply pipe is connected to the second cleaning mechanism, that is, the positions of the cleaning covers are fixed on the flip cover;
[0035] A control device, the control device monitors the status and position of the cleaning cover assembly, the cleaning cover assembly, and the flip cover and controls their actions;
[0036] In which, the cleaning cover is configured to be combined with the cleaning cover in a detachable manner so that the cleaning cover and the cleaning cover form a self-cleaning combination. When the cleaning cover is combined with the cleaning cover, a cleaning cavity is formed between the cleaning cover and the cleaning cover, and the second cleaning mechanism is located inside the cleaning cavity; when the cleaning cover on the moving part is combined with the cleaning cover, the cleaning cover and the first cleaning mechanism are cleaned by the second cleaning mechanism.
[0037] The intelligent toilet according to the second embodiment of the present invention has at least the following beneficial effects: when the user issues a self-cleaning instruction to the control device, or when the control device detects that the set conditions for self-cleaning of the self-cleaning assembly are met, the control device controls the movement of the moving part and the flip cover to coordinate the movement of the moving part and the flip cover to achieve the combination of the cleaning cover on the moving part and the corresponding cleaning cover on the flip cover. When the cleaning cover on the moving part and the corresponding cleaning cover are combined, the liquid supply component supplies liquid or washing foam to the second cleaning mechanism, and the second cleaning mechanism cleans the interior of the cleaning cavity. These processes have a high degree of automation, which can improve the user experience of the intelligent toilet of this application.
[0038] According to the smart toilet described in the embodiment of the second aspect of the present invention, the second cleaning mechanism includes at least one of a fixed nozzle and a moving nozzle. After installation, the fixed nozzle cannot move relative to the cleaning cover. The advantages of the fixed nozzle are simple structure, low cost, and easy assembly; and the fixed nozzle can focus on spraying and washing specific positions, which is suitable for fixed and focused cleaning of some key areas; the moving nozzle can move relative to the cleaning cover, and the movement may include one or more combinations of up and down movement, translational movement, rotational movement and swinging movement. Therefore, the cleaning method of the moving nozzle can be in the form of scanning. When the fixed nozzle is cleaning, the direct impact area is fixed. The advantages of the moving nozzle: the direct impact area of the scanning cleaning is generated in a scanning manner, which can increase the total area of the direct impact area and achieve better flushing effect.
[0039] According to the smart toilet of the second aspect of the present invention, the fixed nozzle is fixedly mounted on the cleaning cover and is provided with a plurality of nozzles. After installation, the fixed nozzle cannot move relative to the cleaning cover. One or more nozzles may be provided on the fixed nozzle as needed to provide better cleaning.
[0040] According to the smart toilet of the second aspect of the present invention, at least one of the fixed nozzles is a foam nozzle. The nozzle of the foam nozzle is capable of spraying cleaning foam. The cleaning foam is generated by a detergent solution and air through a foam generator. After being sprayed, the cleaning foam remains on the inner wall of the cleaning cavity or the first cleaning mechanism for a long time, thereby enhancing the cleaning effect.
[0041] According to the smart toilet described in the second aspect of the present invention, a foam diverter is provided on the cleaning cover, the inlet of the foam diverter is connected to the foam nozzle, and the foam diverter is provided with at least one foam outlet for diverting washing foam to different locations within the cleaning cavity. The inlet of the foam diverter is connected to the nozzle of the foam nozzle, and washing foam is sprayed through the foam outlet of the foam diverter to different locations within the cleaning cavity, so that the washing foam is relatively evenly distributed on the inner wall of the cleaning cavity and the first cleaning mechanism.
[0042] According to the smart toilet described in the second aspect of the present invention, the moving nozzle can be rotatably connected to the cleaning cover, and a plurality of nozzles are provided on the moving nozzle, and the moving nozzle is configured to rotate while spraying. Since the moving nozzle rotates while spraying, water or washing solution is sprayed in a rotating scanning form, which can increase the area of the direct impact zone during cleaning and improve the cleaning effect. Furthermore, the moving nozzle and the cleaning cover can be directly or indirectly connected by a rotating connecting pipe or a ball joint connector and other components. The moving nozzle can be driven to rotate by a motor, and the moving nozzle can also be configured as a water-driven rotating structure. When the moving nozzle is a water-driven rotating structure, the moving nozzle is driven to rotate by the reaction force generated when the water or washing solution is sprayed.
[0043] According to the smart toilet described in the second aspect of the present invention, the cleaning cover or the flip cover is provided with a lifting device that drives the moving nozzle to move up and down. The moving nozzle can rotate and move up and down simultaneously during spraying, and the moving nozzle is driven by the lifting device to move up and down reciprocatingly. The simultaneous rotation and up and down movement of the moving nozzle during spraying can achieve spiral scanning cleaning of the moving nozzle. This cleaning method can still have a larger direct impact area after reducing the number of nozzles on the moving nozzle, so that the water pressure can be concentrated on a small number of nozzles for release. Under the same liquid supply pressure and liquid supply flow, reducing the number of nozzles on the moving nozzle can increase the flow rate of the jet generated by the nozzle of the moving nozzle and the impact force of the spray, thereby improving the decontamination effect.
[0044] Furthermore, the cleaning cover can be equipped with multiple moving nozzles, each responsible for cleaning a different area. These nozzles can operate simultaneously or sequentially to ensure that no blind spots are left in the cleaning cavity. Under the same supply pressure and flow rate, the multiple moving nozzles can operate sequentially to increase the spray velocity and impact force of each nozzle, thereby enhancing the decontamination effect.
[0045] According to the smart toilet described in the second aspect of the present invention, the nozzle includes at least one of a water column nozzle, a water curtain nozzle, and a foam nozzle. Among them, the water column nozzle produces a clustered liquid column, the water curtain nozzle produces a flat jet water curtain, and the foam nozzle has washing foam flowing out of the outlet. When the liquid supply hydraulic pressure and the liquid supply flow rate are fixed and sufficient, the water column nozzle outlet cut-off area is appropriately large, and a large number of water column nozzles are provided, then the jet liquid column generated by the water column nozzle has a slow flow rate. This type of nozzle has low material strength requirements and low production costs. The water curtain nozzle produces a flat jet, and its shape is a flat plate-shaped water curtain. The water curtain nozzle includes a fan-shaped water curtain nozzle and a curtain-shaped water curtain nozzle. The water curtain generated by the fan-shaped water curtain nozzle has a flat fan-shaped shape. Fan-shaped water curtain nozzles can be designed based on the principles of fan-shaped nozzles used in high-pressure cleaning equipment. These nozzles produce a fan-shaped water curtain with high jet velocity and strong impact force, making them suitable for cleaning stubborn stains. When installed on a moving nozzle, this nozzle eliminates blind spots within the sweeping cleaning area, resulting in effective cleaning. Fan-shaped water curtain nozzles can also be designed with long, curved slits, offering low production costs. Curtain-shaped water curtain nozzles produce a flat curtain-like water curtain, resembling a flat rectangular body. The liquid outlet of a curtain-shaped water curtain nozzle is slit-shaped, and the water curtain produced by a single curtain-shaped nozzle has a continuous, narrow direct impact zone. Curtain-shaped water curtain nozzles are suitable for use on fixed nozzles, which are ideal for cleaning the narrow contact surface between the cleaning hood and the user. The continuous direct impact zone of the curtain-shaped water curtain provides excellent cleaning results. Furthermore, by combining fixed and moving nozzles, if the nozzles of the fixed nozzles use water curtain nozzles, the fixed nozzles can spray a water curtain, and the direct impact area of the water curtain is a narrow and long surface. The direct impact area has good continuity, and the narrow contact surface between the cleaning cover and the user's body can be fixed and focused on for better cleaning effect. If the moving nozzle uses multiple water curtain nozzles and the moving nozzle rotates while spraying, or if the moving nozzle uses a small number of water curtain nozzles and the moving nozzle rotates and moves up and down while spraying, a larger range of cleaning can be achieved, and there is no blind spot in the direct impact area within the cleaning range, and the cleaning effect is good.
[0046] According to the intelligent toilet described in the second aspect of the present invention, the liquid supply component includes a first liquid supply pipe, and the first liquid supply pipe transports water.
[0047] According to the second aspect of the present invention, the intelligent toilet comprises a second liquid supply conduit for conveying at least one of a washing solution and washing foam. It should be noted that the washing solution can be an aqueous solution containing detergent, an aqueous solution containing disinfectant, or an aqueous solution containing ozone. Detergent solutions are the most commonly used, but users can also switch to different washing solutions as needed. Washing foam is generated by mixing detergent solution with air through a foam generator. The foam generator is located on the second liquid supply conduit, on the cleaning cover, or elsewhere. Both the washing solution and washing foam can be delivered to the cleaning cavity. The washing solution can enter the cleaning cavity through the second cleaning mechanism, while the washing foam can reach the cleaning cavity through the foam nozzle or foam diverter on the cleaning cover. Both the washing solution and washing foam can emulsify, soften, dissolve dirt, or chemically react with dirt to improve cleaning effectiveness and eliminate odors. The washing solution, which has bactericidal and disinfecting properties, can also perform bactericidal and disinfecting functions, further improving the cleanliness of the self-cleaning assembly. When the washing solution is sprayed out through the water curtain nozzle on the moving nozzle, the washing solution forms a high-speed jet to flush the cleaning cavity, thereby enhancing the cleaning effect. Furthermore, the first liquid supply pipe and the second liquid supply pipe can be the same pipe.
[0048] According to the intelligent toilet described in the second aspect of the present invention, a pressure boosting device is connected to the first liquid supply pipe and / or the second liquid supply pipe. The pressure boosting device increases the pressure of the water flowing in the first liquid supply pipe and / or the cleaning solution flowing in the second liquid supply pipe, thereby increasing the flow rate of the jet ejected by the second cleaning mechanism and improving the cleaning effect.
[0049] According to the smart toilet described in the second aspect of the present invention, the first liquid supply pipe and the second liquid supply pipe are connected to a plurality of pipe control valves, and the pipe control valves are connected to the control device. The control device controls the liquid or foam output of the second cleaning mechanism through the pipe control valves. The second cleaning mechanism may include at least one of a fixed nozzle and a movable nozzle. Through the control of the pipe control valves, the liquid supply component can supply liquid to multiple nozzles at the same time, or it can supply liquid to a single nozzle alone. Under the same liquid supply pressure and liquid supply flow rate, the advantage of the liquid supply component supplying liquid to a single nozzle alone is that the hydraulic pressure can be concentratedly released to increase the flow rate of the jet ejected from the nozzle, so that the jet has a stronger impact force and significantly improves the cleaning effect.
[0050] The smart toilet according to the second aspect of the present invention further includes a disinfection device, which includes at least one of an ultraviolet lamp, an ozone generator, and a steam generator. The ultraviolet lamp is disposed within the cleaning cavity and sterilizes and disinfects the interior of the cleaning cavity by emitting ultraviolet light. The ozone generator is disposed outside the cleaning cavity, with its output port connected to the cleaning cavity. The ozone gas generated by the ozone generator is input into the cleaning cavity to sterilize and disinfect the interior of the cleaning cavity. The steam generator is disposed outside the cleaning cavity, with its output port connected to the cleaning cavity. The high-temperature steam generated by the steam generator is input into the cleaning cavity to sterilize and disinfect the interior of the cleaning cavity. The provision of the disinfection device can further improve the cleanliness of the self-cleaning assembly.
[0051] The smart toilet according to the second aspect of the present invention further includes a storage box, disposed behind or to the side of the toilet bowl, for storing the cleaning cover assembly. The storage box protects the cleaning cover assembly, preventing dirt and dust, and further enhances the appearance of the smart toilet.
[0052] According to the smart toilet described in the second aspect of the present invention, a baffle that can cover the flip-up cover is movably provided on the side of the flip-up cover facing the toilet bowl area. When the self-cleaning assembly does not need to be self-cleaned, the baffle covers the flip-up cover so that the cleaning cover assembly is located between the baffle and the flip-up cover. The baffle covers the cleaning cover assembly. Before the self-cleaning assembly needs to be self-cleaned, the baffle can be moved from the position covering the cleaning cover assembly by rotating or retracting to release the covering of the cleaning cover assembly, exposing the cleaning cover assembly and providing conditions for the combination of the cleaning cover and the cleaning cover. When the self-cleaning assembly does not need to be self-cleaned, the baffle covers the cleaning cover assembly on the flip-up cover, protecting the cleaning cover assembly, preventing dirt and dust, and making the appearance of the smart toilet beautiful and neat.
[0053] An intelligent toilet according to a third aspect of an embodiment of the present invention includes:
[0054] A toilet body, wherein the toilet body is provided with a toilet bowl area and a rotatable flip cover, and when the flip cover is closed, the flip cover covers the upper part of the toilet bowl area;
[0055] A cleaning cover assembly is disposed on the toilet body, comprising a cleaning cover with an upper opening and a moving portion for driving the cleaning cover to move; the cleaning cover is disposed on the moving portion, and a first cleaning mechanism is disposed within the cleaning cover. When the moving portion drives the cleaning cover to move so that the cleaning cover covers a specific area of the user of the intelligent toilet, the first cleaning mechanism cleans the specific area of the user of the intelligent toilet;
[0056] a storage box, the storage box being arranged at the rear or side of the toilet area and being used for storing the cleaning cover assembly;
[0057] A cleaning cover assembly, the cleaning cover assembly comprising a cleaning cover, the cleaning cover being provided with a second cleaning mechanism and a first docking member, the first docking member being connected to the second cleaning mechanism;
[0058] a liquid supply assembly, the liquid supply assembly being disposed in the receiving box, the liquid supply assembly comprising at least one liquid supply pipe, and a second docking member being disposed on the liquid supply pipe;
[0059] A control device, the control device monitors the status and position of the cleaning cover assembly, the cleaning cover assembly, and the flip cover and controls their actions;
[0060] In which, the cleaning cover is configured to be combined with the cleaning cover in a detachable manner so that the cleaning cover and the cleaning cover are combined to form a self-cleaning combination. When the cleaning cover is combined with the cleaning cover, a cleaning cavity is formed between the cleaning cover and the cleaning cover, and the second cleaning mechanism is located inside the cleaning cavity; the second docking component is configured to dock with the first docking component in a detachable manner; when the cleaning cover on the moving part is combined with the cleaning cover and the second docking component is docked with the first docking component, the second cleaning mechanism cleans the cleaning cover and the first cleaning mechanism.
[0061] The smart toilet according to the third aspect of the present invention has at least the following beneficial effects: the smart toilet of this embodiment has a cleaning cover assembly, and is also provided with a cleaning cover assembly, a liquid supply assembly and a control device. When the user sends a self-cleaning instruction to the control device, or the control device detects that the conditions for self-cleaning of the self-cleaning assembly are met, the cleaning cover and the cleaning cover on the moving part are first combined to form a self-cleaning assembly, and then the control device controls the movement of the moving part to drive the self-cleaning assembly to move, so that the self-cleaning assembly completes the docking of the second docking component and the first docking component inside the storage box; when the cleaning cover and the cleaning cover on the moving part are combined and the second docking component is docked with the first docking component, the second cleaning mechanism cleans the cleaning cover and the first cleaning mechanism. This process is the process of automatically self-cleaning the self-cleaning assembly of the smart toilet of this application. This process has a high degree of automation, is easy to use, and can provide a good user experience.
[0062] According to the smart toilet described in the embodiment of the third aspect of the present invention, the second cleaning mechanism includes at least one of a fixed nozzle and a moving nozzle. After installation, the fixed nozzle cannot move relative to the cleaning cover. The advantages of the fixed nozzle are simple structure, low cost, and easy assembly; and the fixed nozzle can focus on spraying and washing specific positions, which is suitable for fixed and focused cleaning of some key areas; the moving nozzle can move relative to the cleaning cover, and the movement may include one or more combinations of up and down movement, translational movement, rotational movement and swinging movement. Therefore, the cleaning method of the moving nozzle can be in the form of scanning. When the fixed nozzle is cleaning, the direct impact area is fixed. The advantages of the moving nozzle are: the direct impact area of the scanning cleaning is generated in a scanning manner, which can increase the total area of the direct impact area and achieve better flushing effect.
[0063] According to the smart toilet described in the third aspect of the present invention, the fixed nozzle is fixedly mounted on the cleaning cover and is provided with a plurality of nozzles. After installation, the fixed nozzle cannot move relative to the cleaning cover. One or more nozzles may be provided on the fixed nozzle as needed to provide better cleaning.
[0064] According to the smart toilet of the third aspect of the present invention, at least one of the fixed nozzles is a foam nozzle. The nozzle of the foam nozzle can spray cleaning foam. The cleaning foam is generated by a detergent solution and air through a foam generator. After being sprayed, the cleaning foam remains on the inner wall of the cleaning cavity or the first cleaning mechanism for a long time, thereby enhancing the cleaning effect.
[0065] According to the smart toilet described in the third aspect of the present invention, a foam diverter is provided on the cleaning cover, the inlet of the foam diverter is connected to the foam nozzle, and the foam diverter is provided with at least one foam outlet for diverting washing foam to different locations within the cleaning cavity. The inlet of the foam diverter is connected to the nozzle of the foam nozzle, and washing foam is sprayed through the foam outlet of the foam diverter to different locations within the cleaning cavity, so that the washing foam is relatively evenly distributed on the inner wall of the cleaning cavity and the first cleaning mechanism.
[0066] According to the smart toilet described in the third aspect of the present invention, the moving nozzle can be rotatably connected to the cleaning cover, and a plurality of nozzles are provided on the moving nozzle, and the moving nozzle is configured to rotate while spraying. Since the moving nozzle rotates while spraying, water or washing solution is sprayed in a rotating scanning form, which can increase the area of the direct impact zone during cleaning and improve the cleaning effect. Furthermore, the moving nozzle and the cleaning cover can be directly or indirectly connected by a rotating connecting pipe or a ball joint connector and other components. The moving nozzle can be driven to rotate by a motor, and the moving nozzle can also be configured as a water-driven rotating structure. When the moving nozzle is a water-driven rotating structure, the moving nozzle is driven to rotate by the reaction force generated when the water or washing solution is sprayed.
[0067] According to the smart toilet described in the third aspect of the present invention, a lifting device for driving the moving nozzle to move up and down is provided on the cleaning cover or in the storage box. The moving nozzle can rotate and move up and down simultaneously during spraying, and the moving nozzle is driven by the lifting device to move up and down reciprocatingly. The simultaneous rotation and up and down movement of the moving nozzle during spraying can realize the spiral scanning cleaning of the moving nozzle. This cleaning method can still have a larger direct impact area after reducing the number of nozzles on the moving nozzle, so that the water pressure can be concentrated on a small number of nozzles for release. Under the same liquid supply pressure and liquid supply flow, reducing the number of nozzles on the moving nozzle can increase the flow rate of the jet generated by the nozzle of the moving nozzle and the impact force of the spray, thereby improving the decontamination effect.
[0068] Furthermore, the cleaning cover can be equipped with multiple moving nozzles, each responsible for cleaning a different area. The multiple moving nozzles can operate simultaneously or sequentially to achieve a complete cleaning of the inner cavity without blind spots. Under the same liquid supply pressure and flow rate, the multiple moving nozzles can operate sequentially to increase the spray velocity and impact force of each nozzle, thereby improving the decontamination effect.
[0069] According to the smart toilet described in the third aspect of the present invention, the nozzle includes at least one of a water column nozzle, a water curtain nozzle, and a foam nozzle. Among them, the water column nozzle produces a clustered liquid column, the water curtain nozzle produces a flat jet water curtain, and the foam nozzle has washing foam flowing out of the outlet. When the liquid supply hydraulic pressure and the liquid supply flow rate are fixed and sufficient, the water column nozzle outlet cut-off area is appropriately large, and a large number of water column nozzles are provided, then the jet liquid column generated by the water column nozzle has a slow flow rate. This type of nozzle has low material strength requirements and low production costs. The water curtain nozzle produces a flat jet, and its shape is a flat plate-shaped water curtain. The water curtain nozzle includes a fan-shaped water curtain nozzle and a curtain-shaped water curtain nozzle. The water curtain generated by the fan-shaped water curtain nozzle has a flat fan-shaped shape. Fan-shaped water curtain nozzles can be designed based on the principles of fan-shaped nozzles used in high-pressure cleaning equipment. These nozzles produce a fan-shaped water curtain with high jet velocity and strong impact force, making them suitable for cleaning stubborn stains. When installed on a moving nozzle, this nozzle eliminates blind spots within the sweeping cleaning area, resulting in effective cleaning. Fan-shaped water curtain nozzles can also be designed with long, curved slits, offering low production costs. Curtain-shaped water curtain nozzles produce a flat curtain-like water curtain, resembling a flat rectangular body. The liquid outlet of a curtain-shaped nozzle is slit-shaped, and the water curtain produced by a single curtain-shaped nozzle has a continuous, narrow direct impact zone. Curtain-shaped water curtain nozzles are ideal for use on fixed nozzles, particularly those used for cleaning the narrow contact surface between the cleaning hood and the user. The continuous direct impact zone provides excellent cleaning results. Furthermore, by combining fixed and moving nozzles, if the nozzles of the fixed nozzles use water curtain nozzles, the fixed nozzles can spray a water curtain, and the direct impact area of the water curtain is a narrow and long surface. The direct impact area has good continuity, and the narrow contact surface between the cleaning cover and the user's body can be fixed and focused on for better cleaning effect. If the moving nozzle uses multiple water curtain nozzles and the moving nozzle rotates while spraying, or if the moving nozzle uses a small number of water curtain nozzles and the moving nozzle rotates and moves up and down while spraying, a larger range of cleaning can be achieved, and there is no blind spot in the direct impact area within the cleaning range, and the cleaning effect is good.
[0070] According to the intelligent toilet described in the third aspect of the present invention, the liquid supply component includes a first liquid supply pipe, and the first liquid supply pipe transports water.
[0071] According to the third aspect of the present invention, the intelligent toilet comprises a second liquid supply conduit for conveying at least one of a washing solution and washing foam. It should be noted that the washing solution can be an aqueous solution containing detergent, an aqueous solution containing disinfectant, or an aqueous solution containing ozone. Detergent solutions are the most commonly used, but users can also switch to different washing solutions as needed. Washing foam is generated by mixing the detergent solution with air through a foam generator. The foam generator is located on the second liquid supply conduit, on the cleaning cover, or elsewhere. Both the washing solution and washing foam can be delivered to the cleaning cavity. The washing solution can enter the cleaning cavity through the second cleaning mechanism, while the washing foam can reach the cleaning cavity through the foam nozzle or foam diverter on the cleaning cover. Both the washing solution and washing foam can emulsify, soften, dissolve dirt, or chemically react with dirt to improve cleaning effectiveness and eliminate odors. The washing solution, which has bactericidal and disinfecting properties, can also perform bactericidal and disinfecting functions, further improving the cleanliness of the self-cleaning assembly. When the washing solution is sprayed out through the water curtain nozzle on the moving nozzle, the washing solution forms a high-speed jet to flush the cleaning cavity, thereby enhancing the cleaning effect. Furthermore, the first liquid supply pipe and the second liquid supply pipe can be the same pipe.
[0072] According to the intelligent toilet described in the third aspect of the present invention, a pressure boosting device is connected to the first liquid supply pipe and / or the second liquid supply pipe. The pressure boosting device increases the pressure of the water flowing in the first liquid supply pipe and / or the cleaning solution flowing in the second liquid supply pipe, thereby increasing the flow rate of the jet ejected by the second cleaning mechanism and improving the cleaning effect.
[0073] According to the smart toilet described in the third aspect of the present invention, the first liquid supply pipe and the second liquid supply pipe are connected to a plurality of pipe control valves, and the pipe control valves are connected to the control device. The control device controls the liquid or foam output of the second cleaning mechanism through the pipe control valves. The second cleaning mechanism may include at least one of a fixed nozzle and a movable nozzle. Through the control of the pipe control valves, the liquid supply component can supply liquid to multiple nozzles at the same time, or it can supply liquid to a single nozzle alone. Under the same liquid supply pressure and liquid supply flow rate, the advantage of the liquid supply component supplying liquid to a single nozzle alone is that the hydraulic pressure can be concentratedly released to increase the flow rate of the jet ejected from the nozzle, so that the jet has a stronger impact force and significantly improves the cleaning effect.
[0074] The smart toilet according to the third aspect of the present invention further includes a disinfection device, which includes at least one of an ultraviolet lamp, an ozone generator, and a steam generator. The ultraviolet lamp is disposed within the cleaning cavity and sterilizes and disinfects the interior space of the cleaning cavity by emitting ultraviolet rays. The ozone generator is disposed outside the cleaning cavity, with its output port connected to the cleaning cavity. The ozone gas generated by the ozone generator is input into the cleaning cavity to sterilize and disinfect the interior of the cleaning cavity. The steam generator is disposed outside the cleaning cavity, with its output port connected to the cleaning cavity. The high-temperature steam generated by the steam generator is input into the cleaning cavity to sterilize and disinfect the interior space of the cleaning cavity. The provision of the disinfection device can further improve the cleanliness of the self-cleaning assembly.
[0075] According to the smart toilet described in the third aspect of the present invention, a drain pipe is provided at the lower part of the storage box, and the sewage generated by the second cleaning mechanism cleaning the cleaning cover and the first cleaning mechanism is discharged into the storage box through the drain pipe to avoid sewage accumulation in the storage box.
[0076] According to the smart toilet of the third aspect of the present invention, preferably, the first docking member is horizontally arranged on the cleaning cover, and correspondingly, the second docking member is correspondingly horizontally arranged on the liquid supply assembly. The first docking member and the second docking member are in a horizontal docking mode.
[0077] An intelligent toilet according to a fourth aspect of an embodiment of the present invention includes:
[0078] A toilet body, wherein the toilet body is provided with a toilet bowl area and a rotatable flip cover, and when the flip cover is closed, the flip cover covers the upper part of the toilet bowl area;
[0079] A cleaning cover assembly is disposed on the toilet body, comprising a cleaning cover with an upper opening and a moving portion for driving the cleaning cover to move; the cleaning cover is disposed on the moving portion, and a first cleaning mechanism is disposed within the cleaning cover. When the moving portion drives the cleaning cover to move so that the cleaning cover covers a specific area of the user of the intelligent toilet, the first cleaning mechanism cleans the specific area of the user of the intelligent toilet;
[0080] a storage box, the storage box being arranged at the rear or side of the toilet area and being used for storing the cleaning cover assembly;
[0081] A cleaning cover assembly, the cleaning cover assembly being disposed in the storage box, the cleaning cover assembly comprising at least one cleaning cover, each cleaning cover being provided with a second cleaning mechanism;
[0082] a liquid supply assembly, the liquid supply assembly being disposed in the storage box, the liquid supply assembly comprising at least one liquid supply pipe connected to the second cleaning mechanism, and the cleaning cover being connected to the liquid supply assembly;
[0083] A control device, the control device monitors the status and position of the cleaning cover assembly, the cleaning cover assembly, and the flip cover and controls their actions;
[0084] In which, the cleaning cover is configured to be combined with the cleaning cover in a detachable manner so that the cleaning cover and the cleaning cover form a self-cleaning combination. When the cleaning cover is combined with the cleaning cover, a cleaning cavity is formed between the cleaning cover and the cleaning cover, and the second cleaning mechanism is located inside the cleaning cavity; when the cleaning cover on the moving part is combined with the cleaning cover, the cleaning cover and the first cleaning mechanism are cleaned by the second cleaning mechanism.
[0085] The smart toilet according to the fourth aspect of the present invention has at least the following beneficial effects: the smart toilet of this embodiment has a cleaning cover assembly, and is also provided with a cleaning cover assembly, a liquid supply assembly and a control device. The cleaning cover assembly and the liquid supply assembly are connected and arranged inside the storage box. When the user sends a self-cleaning instruction to the control device for the self-cleaning assembly, or the control device detects that the conditions for self-cleaning of the self-cleaning assembly are met, the control device controls the movement of the moving part to make the cleaning cover on the moving part complete the combination with the corresponding cleaning cover in the storage box. Under the drive of the moving part, the cleaning cover on the moving part and the corresponding cleaning cover are combined to form a self-cleaning assembly, and then the liquid supply assembly supplies liquid to the second cleaning mechanism, and the second cleaning mechanism cleans the cleaning cover and the first cleaning mechanism. This process is the process of automatically self-cleaning the self-cleaning assembly of the smart toilet of this application. This process has a high degree of automation, is easy to use, and can provide a good user experience.
[0086] According to the smart toilet described in the embodiment of the fourth aspect of the present invention, the second cleaning mechanism includes at least one of a fixed nozzle and a moving nozzle. After installation, the fixed nozzle cannot move relative to the cleaning cover. The advantages of the fixed nozzle are simple structure, low cost, and easy assembly; and the fixed nozzle can focus on spraying and washing specific positions, which is suitable for fixed and focused cleaning of some key areas; the moving nozzle can move relative to the cleaning cover, and the movement may include one or more combinations of up and down movement, translational movement, rotational movement and swinging movement. Therefore, the cleaning method of the moving nozzle can be in a scanning form. When the fixed nozzle is cleaning, the direct impact area is fixed. The advantages of the moving nozzle: the direct impact area of the scanning cleaning is generated in a scanning manner, which can increase the total area of the direct impact area and achieve a better flushing effect.
[0087] According to the smart toilet described in the fourth aspect of the present invention, the fixed nozzle is fixedly mounted on the cleaning cover and is provided with a plurality of nozzles. After installation, the fixed nozzle cannot move relative to the cleaning cover. One or more nozzles may be provided on the fixed nozzle as needed to provide better cleaning.
[0088] According to the smart toilet of the fourth aspect of the present invention, at least one of the fixed nozzles is a foam nozzle. The nozzle of the foam nozzle is capable of spraying cleaning foam. The cleaning foam is generated by a detergent solution and air through a foam generator. After being sprayed, the cleaning foam remains on the inner wall of the cleaning cavity or the first cleaning mechanism for a long time, thereby enhancing the cleaning effect.
[0089] According to the smart toilet described in the fourth aspect of the present invention, a foam diverter is provided on the cleaning cover, the inlet of the foam diverter is connected to the foam nozzle, and the foam diverter is provided with at least one foam outlet for diverting washing foam to different locations within the cleaning cavity. The inlet of the foam diverter is connected to the nozzle of the foam nozzle, and the washing foam is sprayed through the foam outlet of the foam diverter to different locations within the cleaning cavity, so that the washing foam is relatively evenly distributed on the inner wall of the cleaning cavity and the first cleaning mechanism.
[0090] According to the smart toilet described in the fourth aspect of the present invention, the moving nozzle can be rotatably connected to the cleaning cover, and a plurality of nozzles are provided on the moving nozzle, and the moving nozzle is configured to rotate while spraying. Since the moving nozzle rotates while spraying, water or washing solution is sprayed in a rotating scanning form, which can increase the area of the direct impact zone during cleaning and improve the cleaning effect. Furthermore, the moving nozzle and the cleaning cover can be directly or indirectly connected by a rotating connecting pipe or a ball joint connector and other components. The moving nozzle can be driven to rotate by a motor, and the moving nozzle can also be configured as a water-driven rotating structure. When the moving nozzle is a water-driven rotating structure, the moving nozzle is driven to rotate by the reaction force generated when the water or washing solution is sprayed.
[0091] According to the smart toilet described in the fourth aspect of the present invention, a lifting device for driving the moving nozzle to move up and down is provided on the cleaning cover or in the storage box. The moving nozzle can rotate and move up and down simultaneously during spraying, and the moving nozzle is driven by the lifting device to move up and down reciprocatingly. The simultaneous rotation and up and down movement of the moving nozzle during spraying can realize the spiral scanning cleaning of the moving nozzle. This cleaning method can still have a larger direct impact area after reducing the number of nozzles on the moving nozzle, so that the water pressure can be concentrated on a small number of nozzles for release. Under the same liquid supply pressure and liquid supply flow, reducing the number of nozzles on the moving nozzle can increase the flow rate of the jet generated by the nozzle of the moving nozzle and the impact force of the spray, thereby improving the decontamination effect.
[0092] Furthermore, the cleaning cover can be equipped with multiple moving nozzles, each responsible for cleaning a different area. The multiple moving nozzles can operate simultaneously or sequentially to achieve a complete cleaning of the inner cavity without blind spots. Under the same liquid supply pressure and flow rate, the multiple moving nozzles can operate sequentially to increase the spray velocity and impact force of each nozzle, thereby improving the decontamination effect.
[0093] According to the smart toilet described in the fourth aspect of the present invention, the nozzle includes at least one of a water column nozzle, a water curtain nozzle, and a foam nozzle. Among them, the water column nozzle produces a clustered liquid column, the water curtain nozzle produces a flat jet water curtain, and the foam nozzle has washing foam flowing out of the outlet. When the liquid supply hydraulic pressure and the liquid supply flow rate are fixed and sufficient, the water column nozzle outlet cut-off area is appropriately large, and a large number of water column nozzles are provided, then the jet liquid column generated by the water column nozzle has a slow flow rate. This type of nozzle has low material strength requirements and low production costs. The water curtain nozzle produces a flat jet, and its shape is a flat plate-shaped water curtain. The water curtain nozzle includes a fan-shaped water curtain nozzle and a curtain-shaped water curtain nozzle. The water curtain generated by the fan-shaped water curtain nozzle has a flat fan-shaped shape. Fan-shaped water curtain nozzles can be designed based on the principles of fan-shaped nozzles used in high-pressure cleaning equipment. These nozzles produce a fan-shaped water curtain with high jet velocity and strong impact force, making them suitable for cleaning stubborn stains. When installed on a moving nozzle, this nozzle eliminates blind spots within the sweeping cleaning area, resulting in effective cleaning. Fan-shaped water curtain nozzles can also be designed with long, curved slits, offering low production costs. Curtain-shaped water curtain nozzles produce a flat curtain-like water curtain, resembling a flat rectangular body. The liquid outlet of a curtain-shaped water curtain nozzle is slit-shaped, and the water curtain produced by a single curtain-shaped nozzle has a continuous, narrow direct impact zone. Curtain-shaped water curtain nozzles are suitable for use on fixed nozzles, which are ideal for cleaning the narrow contact surface between the cleaning hood and the user. The continuous direct impact zone of the curtain-shaped water curtain provides excellent cleaning results. Furthermore, by combining fixed and moving nozzles, if the nozzles of the fixed nozzles use water curtain nozzles, the fixed nozzles can spray a water curtain, and the direct impact area of the water curtain is a narrow and long surface. The direct impact area has good continuity, and the narrow contact surface between the cleaning cover and the user's body can be fixed and focused on for better cleaning effect. If the moving nozzle uses multiple water curtain nozzles and the moving nozzle rotates while spraying, or if the moving nozzle uses a small number of water curtain nozzles and the moving nozzle rotates and moves up and down while spraying, a larger range of cleaning can be achieved, and there is no blind spot in the direct impact area within the cleaning range, and the cleaning effect is good.
[0094] According to the intelligent toilet described in the fourth aspect of the present invention, the liquid supply component includes a first liquid supply pipe, and the first liquid supply pipe transports water.
[0095] According to the fourth aspect of the intelligent toilet, the liquid supply assembly includes a second liquid supply pipe, which delivers at least one of a washing solution and washing foam. It should be noted that the washing solution can be an aqueous solution containing detergent, an aqueous solution containing disinfectant, or an aqueous solution containing ozone. Detergent aqueous solutions are the most commonly used, but users can also switch to different washing solutions as needed. The washing foam is generated by mixing the detergent solution with air through a foam generator. The foam generator is located on the second liquid supply pipe, on the cleaning cover, or elsewhere. Both the washing solution and the washing foam can be delivered to the cleaning cavity. The washing solution can enter the cleaning cavity through the second cleaning mechanism, while the washing foam reaches the cleaning cavity through the foam nozzle or foam diverter on the cleaning cover. Both the washing solution and the washing foam can emulsify, soften, dissolve dirt, or chemically react with dirt to improve cleaning effectiveness and eliminate odors. The washing solution, which has bactericidal and disinfecting properties, can also perform bactericidal and disinfecting functions, further improving the cleanliness of the self-cleaning assembly. When the washing solution is sprayed out through the water curtain nozzle on the moving nozzle, the washing solution forms a high-speed jet to flush the cleaning cavity, thereby enhancing the cleaning effect. Furthermore, the first liquid supply pipe and the second liquid supply pipe can be the same pipe.
[0096] According to the intelligent toilet described in the fourth aspect of the present invention, a pressure boosting device is connected to the first liquid supply pipe and / or the second liquid supply pipe. The pressure boosting device increases the pressure of the water flowing in the first liquid supply pipe and / or the cleaning solution flowing in the second liquid supply pipe, thereby increasing the flow rate of the jet ejected by the second cleaning mechanism and improving the cleaning effect.
[0097] According to the smart toilet described in the fourth aspect of the present invention, the first liquid supply pipe and the second liquid supply pipe are connected to a plurality of pipe control valves, and the pipe control valves are connected to the control device. The control device controls the liquid or foam output of the second cleaning mechanism through the pipe control valves. The second cleaning mechanism may include at least one of a fixed nozzle and a movable nozzle. Through the control of the pipe control valves, the liquid supply component can supply liquid to multiple nozzles at the same time, or it can supply liquid to a single nozzle alone. Under the same liquid supply pressure and liquid supply flow rate, the advantage of the liquid supply component supplying liquid to a single nozzle alone is that the hydraulic pressure can be concentratedly released to increase the flow rate of the jet ejected from the nozzle, so that the jet has a stronger impact force and significantly improves the cleaning effect.
[0098] The smart toilet according to the fourth aspect of the present invention further includes a disinfection device, which includes at least one of an ultraviolet lamp, an ozone generator, and a steam generator. The ultraviolet lamp is disposed within the cleaning cavity and sterilizes and disinfects the interior space of the cleaning cavity by emitting ultraviolet rays; the ozone generator is disposed outside the cleaning cavity, with its output port connected to the cleaning cavity, and ozone gas generated by the ozone generator is input into the cleaning cavity to sterilize and disinfect the interior of the cleaning cavity; the steam generator is disposed outside the cleaning cavity, with its output port connected to the cleaning cavity, and high-temperature steam generated by the steam generator is input into the cleaning cavity to sterilize and disinfect the interior space of the cleaning cavity. The provision of the disinfection device can further improve the cleanliness of the self-cleaning assembly.
[0099] According to the smart toilet described in the fourth aspect of the present invention, a drain pipe is provided at the lower part of the storage box, and the sewage generated by the second cleaning mechanism cleaning the cleaning cover and the first cleaning mechanism is discharged from the storage box through the drain pipe to avoid the accumulation of sewage in the storage box.
[0100] Other features and advantages of the present application will be described in the following description, and in part will become apparent from the description, or will be understood by practicing the present application. The purpose and other advantages of the present application can be realized and obtained by the structures particularly pointed out in the description, claims and drawings. BRIEF DESCRIPTION OF THE DRAWINGS
[0101] The accompanying drawings are used to provide further explanation of the technical solution of the present application and constitute a part of the specification. Together with the embodiments of the present application, they are used to explain the technical solution of the present application and do not constitute a limitation on the technical solution of the present application.
[0102] FIG1 is a schematic structural diagram of the first embodiment of the intelligent toilet provided in this application.
[0103] FIG2 is a side view of the intelligent toilet shown in the first embodiment.
[0104] FIG3 is a schematic diagram of the internal structure of the cleaning cover in the first embodiment.
[0105] FIG4 is a schematic diagram of the cleaning cover shown in FIG3 from another perspective.
[0106] FIG5 is a schematic diagram of the cleaning cover assembly in the first embodiment.
[0107] FIG6 is a schematic diagram of the internal structure of the cleaning cover shown in FIG5 .
[0108] FIG7 is a schematic structural diagram of one of the motion nozzles in FIG6 .
[0109] FIG8 is a schematic structural diagram of the cleaning cover after being assembled to the cleaning cover in the first embodiment.
[0110] FIG9 is a schematic structural diagram of the second embodiment of the smart toilet provided in this application.
[0111] FIG10 is a schematic diagram of a cleaning cover assembly in the second embodiment.
[0112] FIG11 is a schematic diagram of the internal structure of the cleaning cover shown in FIG10 .
[0113] FIG12 is a schematic structural diagram of one of the motion nozzles in FIG11 .
[0114] FIG13 is a schematic structural diagram of another motion nozzle in FIG11 .
[0115] FIG14 is a schematic structural diagram of the third type of motion nozzle in FIG11 .
[0116] FIG15 is a schematic diagram of another cleaning cover assembly provided in the present application.
[0117] FIG16 is a schematic diagram of the internal structure of the cleaning cover assembly shown in FIG15.
[0118] FIG17 is a schematic structural diagram of one group of the second cleaning mechanisms in FIG16 .
[0119] FIG18 is a schematic diagram of another cleaning cover assembly provided in the present application.
[0120] FIG19 is a schematic structural diagram of the third embodiment of the smart toilet provided in this application.
[0121] FIG. 20 is a schematic diagram of the internal structure of the flip cover in the third embodiment.
[0122] FIG21 is a schematic structural diagram of the intelligent toilet according to the third embodiment when in the self-cleaning mode.
[0123] FIG22 is an enlarged schematic diagram of the cleaning cover after the flip cover in FIG21 is assembled onto the cleaning cover.
[0124] FIG23 is a schematic structural diagram of the fourth embodiment of the smart toilet provided in this application.
[0125] FIG24 is a schematic structural diagram of the fifth embodiment of the smart toilet provided in this application.
[0126] FIG25 is a schematic structural diagram of the sixth embodiment of the smart toilet provided in this application.
[0127] Description of the accompanying drawings: Toilet body 100, toilet bowl area 110, flip cover 120, baffle 121, flip drive device 122; cleaning cover assembly 200, cleaning cover 210, vulva cover 211, anus cover 212, first cleaning mechanism 213, cleaning cover sealing portion 214, sealing platform 215, drain hole 2151, moving portion 220; cleaning cover assembly 300, cleaning cover 310, second cleaning mechanism 320, moving nozzle 321, first moving nozzle 3211, second moving nozzle 3212, third moving nozzle 3213, fixed nozzle 322, nozzle 323, lower nozzle 3231, upper nozzle 3232, first transmission structure 324, second transmission structure 325, first docking member 330, foam diverter 340, foam outlet 341, cleaning cavity 350; Liquid supply assembly 400 , second docking member 410 , liquid supply pipe 420 ; screen controller 510 ; first driving device 610 ; storage box 700 , collection tank 710 , drainage pipe 720 . DETAILED DESCRIPTION
[0128] In order to make the purpose, technical solutions and advantages of this application more clear, the following further describes this application in detail with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain this application and are not intended to limit this application.
[0129] In the description of this application, it should be noted that, unless otherwise clearly specified and limited, the term "connection" should be understood in a broad sense. For example, it can be a fixed connection or a movable connection, a detachable connection or a non-detachable connection, or an integral connection; it can be a mechanical connection, an electrical connection, or mutual communication; it can be a direct connection, or an indirect connection through an intermediate medium or intermediate structure, and it can be internal connection between two elements, indirect connection, or an interactive relationship between two elements.
[0130] In the description of this application, it should be noted that "several" means one or more, "multiple" means more than two, "greater than," "less than," and "exceed" are understood to exclude the number itself, "above," "below," and "within" are understood to include the number itself, and "include" means including but not limited to. The use of "first," "second," and the like in the description is solely for the purpose of distinguishing technical features and is not to be construed as indicating or implying relative importance, implicitly specifying the number of the indicated technical features, or implicitly specifying the order of the indicated technical features.
[0131] In the description of this application, for the convenience of description, the directions "front, back, left, right, up, and down" are introduced to facilitate the description of spatial relationships. The specific coordinate system of the accompanying drawings shall prevail. It should be understood that the description of spatial relationships does not indicate or imply that the devices or components referred to must have specific directions, specific positional relationships, or be constructed and operated in a specific orientation. Therefore, it should not be construed as limiting the present invention.
[0132] The present invention will be further described below with reference to several embodiments in conjunction with Figures 1 to 25 .
[0133] Contents of the first part:
[0134] Referring to Figures 1 and 2, the first embodiment of the present application is a smart toilet, which includes a toilet body 100, which is provided with a toilet bowl area 110 and a rotatable flip cover 120. One end of the flip cover 120 is rotatably connected to the toilet body 100, allowing the flip cover 120 to flip. When the flip cover 120 is closed, the flip cover 120 covers the upper part of the toilet bowl area 110. When the user uses the smart toilet of the present application, the flip cover 120 is flipped back to expose the toilet bowl area 110. It should be noted that the toilet body 100 here, in addition to the toilet bowl area 110 and the flip cover 120, can also include all other conventional structures used in toilets, such as sewage pipes, flush tanks, etc. The toilet body 100 described in the present invention includes toilet bowls, commode chairs, bed urinals, and other types of toilet bodies. The toilet bodies 100 illustrated in the embodiments of this application are all toilet bowls, and the embodiments of commode chairs, bed urinals, and other types of toilet bodies will not be discussed separately. Furthermore, the flap 120 can be connected to the toilet body 100 via a hinged structure, allowing the user to manually open or close it. In this embodiment, the hinged structure connecting the flap 120 and the toilet body 100 is also equipped with an electric device, which drives the flap 120 to rotate, thereby achieving the effect of automatically opening and closing the flap 120, making the intelligent toilet of this application more automated.
[0135] As shown in Figures 1 and 2, a cleaning cover assembly 200 is provided on the toilet body 100, and the cleaning cover assembly 200 includes a cleaning cover 210 and a moving part 220. The cleaning cover 210 is provided on the moving part 220, and the moving part 220 is used to drive the cleaning cover 210 to move. Among them, the moving part 220 includes at least one moving device, and the moving device constituting the moving part 220 can have various forms of expression, such as an electric push rod device, a cylinder / hydraulic cylinder propulsion device, an airbag lifting device, a mechanical arm, an electric displacement vehicle, etc. For a more detailed description of the moving part 220, please refer to the specific example of the moving part disclosed in Chinese invention patent CN202310763660.4, which will not be elaborated here.
[0136] Furthermore, in this embodiment, a lifting bracket assembly is provided on the toilet body 100, and the lifting bracket assembly is connected to the seat ring. The lifting bracket assembly can also be connected to the flip cover 120. When the lifting bracket assembly is in motion, the flip cover 120, the seat ring, and the person sitting on the seat ring can be lifted upward at the same time, thereby freeing up space for the moving part 220 and the cleaning cover 210 to move.
[0137] As shown in Figure 3, a first cleaning mechanism 213 is disposed within the cleaning cover 210. As shown in Figures 1 and 2, the cleaning cover 210 is connected to the motion unit 220. When only the cleaning cover 210 is connected to the motion unit 220, the first cleaning mechanism 213 cleans the specific area of the intelligent toilet user after the motion unit 220 drives the cleaning cover 210 to move so that the cleaning cover 210 covers the specific area of the intelligent toilet user.
[0138] As shown in Figure 3, an opening is provided at the top of the cleaning cover 210. The cleaning cover 210 of the smart toilet of the present application includes at least one of a vulva cover 211 and an anus cover 212. In this embodiment, the cleaning cover 210 includes both the vulva cover 211 and the anus cover 212, and the vulva cover 211 and the anus cover 212 are arranged in a front-to-back manner. The vulva cover 211 is used to cover the vulva of a female user of the smart toilet of the present application for cleaning, and the anus cover 212 is used to cover the anus of a user of the smart toilet of the present application for cleaning. A cover connecting bracket is provided on the vulva cover 211 and the anus cover 212. The cover connecting bracket allows the front-to-back distance between the vulva cover 211 and the anus cover 212 to be adjusted. Female users have individual differences, and the distance between the vulva and anus is inconsistent. The cover connecting bracket is used to adjust the distance between the vulva cover 211 and the anus cover 212 to accommodate individual differences between users.
[0139] It is easy to understand that in other embodiments, the cleaning cover 210 may include only a vulva cover 211 without an anus cover 212; or the cleaning cover 210 may include only an anus cover 212 without a vulva cover 211.
[0140] As shown in FIG3 , a first cleaning mechanism 213 is provided inside the vulva cover 211 and the anus cover 212 respectively. The first cleaning mechanism 213 is used to wash and clean the anus or vulva.
[0141] As shown in Figures 3 and 4, the upper openings of the vulva cover 211 and the anus cover 212 are provided with a cleaning cover sealing portion 214. The cleaning cover sealing portion 214 can be made of a soft material, such as silicone or rubber material. The cleaning cover sealing portion 214 is sleeved, pasted, or integrally formed on the upper portion of the vulva cover 211 and the anus cover 212. When the cleaning cover 210 is placed on a specific part of the human body, the cleaning cover sealing portion 214 contacts the human body. Of course, the cleaning cover sealing portion 211 at the upper opening of the vulva cover 211 and the anus cover 212 can be a part of the vulva cover 211 and the anus cover 212 body, that is, the edge of the upper opening of the vulva cover 211 and the anus cover 212 is the cleaning cover sealing portion 214. Because the buttocks of the human body are soft and deformable, this cleaning cover sealing portion 214 can also fit well with the human body. Furthermore, a sealing platform 215 extending outward is provided on the outer wall of the upper part of the cleaning cover 210. The sealing platform 215 is arranged around the cleaning cover sealing part 214, and the height of the sealing platform 215 is lower than the height of the cleaning cover sealing part 214. At least one drainage hole 2151 is provided on the sealing platform 215.
[0142] As shown in Figures 1, 2 and 8, the smart toilet of the present application also includes a cleaning cover assembly 300, which includes a cleaning cover 310. The cleaning cover assembly 300 can be covered on the cleaning cover 210. The cleaning cover 310 is provided with a second cleaning mechanism 320 and a first docking member 330, and the first docking member 330 is connected to the second cleaning mechanism 320. The cleaning cover assembly 300 includes at least one cleaning cover 310, which is configured to be detachably assembled onto the corresponding cleaning cover 210. After the cleaning cover 310 is assembled onto the corresponding cleaning cover 210, the cleaning cover 310 and the cleaning cover 210 are combined to form a self-cleaning assembly, and a cleaning cavity 350 is formed between the cleaning cover 310 and the cleaning cover 210. 5 , in this embodiment, the cleaning cover assembly 300 includes two cleaning covers 310, which are arranged front to back and correspond to the vulva cover 211 and the anus cover 212, respectively. The two cleaning covers 310 are provided with a cover connecting bracket, which enables the front-to-back distance between the two cleaning covers 310 to be adjusted to adapt to the change in the distance between the corresponding vulva cover 211 and the anus cover 212, so as to achieve accurate combination.
[0143] It is easy to imagine that in other embodiments, the cleaning cover 310 can also be designed as a plate, and the lower shape of the cleaning cover 310 matches the shape of the cleaning cover sealing part 211 of the cleaning cover 210. The lower side of the cleaning cover 310 can fit well with the cleaning cover sealing part 211 to form a cleaning cavity 350 between the cleaning cover 210 and the cleaning cover 310.
[0144] It is easy to understand that in other embodiments, when the cleaning cover 210 only includes one vulva cover 211 or one anus cover 212 , correspondingly, only one corresponding cleaning cover 310 is provided on the cleaning cover assembly 300 .
[0145] 8 , in this embodiment, when the cleaning cover 310 is assembled onto the cleaning hood 210, the lower edge of the cleaning cover 310 abuts against the sealing platform 215, so that the cleaning hood sealing portion 214 is entirely contained within the space of the cleaning inner cavity 350, thereby emphasizing the cleaning of the cleaning hood sealing portion 214. A sealing gasket made of a soft material can be provided on the sealing platform 215, and when the cleaning cover 310 is assembled onto the cleaning hood 210, the lower edge of the cleaning cover 310 abuts against the sealing gasket on the sealing platform 215 to improve the sealing performance. Among them, the inner wall of the cleaning cover 310 cooperates with the cleaning cover sealing part 214, the upper part of the cleaning cover 210 and the sealing platform 215 to form a cavity that can store water at the sealing platform 215. This cavity can accommodate detergent solution, detergent foam and water, and has a soaking effect on the cleaning cover sealing part 214, so that the cleaning cover sealing part 214 is fully cleaned; a drainage hole 2151 is provided on the sealing platform 215 in this cavity, and the liquid can be discharged downward through the drainage hole 2151. When cleaning is completed, the cavity is fully rinsed with detergent-free water, and the rinsing liquid is finally discharged downward from the drainage hole 2151 to avoid accumulation of liquid here.
[0146] As shown in FIG1 , the smart toilet of the present application further includes a liquid supply assembly 400 , which is disposed on the flip cover 120 . The liquid supply assembly 400 includes at least one liquid supply pipe, on which a second docking member 410 is disposed.
[0147] As shown in Figures 1 and 2, the smart toilet of the present application also includes a control device, which includes a screen controller 510. The control device monitors the status and position of the wash cover assembly 200, the wash cover assembly 300, and the flip cover 120 and controls their operation. It should be noted that the specific composition and structure of the control device, the method of communication between the components, the specific operation method and control mode, the principles and methods for monitoring the status and position of the wash cover assembly 200, the wash cover assembly 300, the flip cover 120, and the like, and the devices used for monitoring, etc., which are not mentioned in this application, do not fall within the scope of protection of this application and belong to the prior art. This application primarily protects the contents described, such as the connection and coordination relationships between the various components.
[0148] As shown in FIG. 5 , at least one first docking member 330 is disposed on the cleaning cover 310 , and the first docking member 330 is disposed upward on the cleaning cover 310 .
[0149] As shown in Figure 6, at least one second cleaning mechanism 320 is provided inside the cleaning cover 310. The second cleaning mechanism 320 is located inside the cleaning cavity 350, and the first docking members 330 are respectively connected to the second cleaning mechanism 320. In this embodiment, there are multiple first docking members 330 and multiple second cleaning mechanisms 320, and each first docking member 330 is connected to a corresponding second cleaning mechanism 320.
[0150] In this embodiment, the second docking member 410 is configured to detachably dock with the first docking member 330. When the cleaning cover 210 on the moving portion 220 is assembled with the corresponding cleaning cap 310 and the second docking member 410 is docked with the first docking member 330, the second cleaning mechanism 320 cleans the cleaning cover 210 and the first cleaning mechanism 213. This process is the process by which the intelligent toilet of this application automatically cleans the self-cleaning assembly. This process is highly automated, convenient, and provides a good user experience.
[0151] The second cleaning mechanism 320 of the smart toilet in this embodiment includes at least one of a fixed nozzle 322 and a moving nozzle 321. It should be noted that if the second cleaning mechanism 320 is equipped with a fixed nozzle 322, at least one of the fixed nozzles 322 is a foam nozzle. The nozzle of the foam nozzle can spray cleaning foam. As shown in Figure 6, in this embodiment, each cleaning cover 310 is provided with a fixed nozzle 322 and a moving nozzle 321. The fixed nozzle 322 is fixedly mounted on the cleaning cover 310 and is equipped with a plurality of nozzles 323. The advantages of the fixed nozzle 322 are simple structure, low cost, and easy assembly. After installation, the fixed nozzle 322 cannot move relative to the cleaning cover 310, allowing for focused cleaning of specific locations. This makes it suitable for fixed, focused cleaning of key areas. The fixed nozzles 322 in this embodiment are all foam nozzles, and a foam generator is provided on the foam nozzle. Detergent solution and air generate washing foam through the foam generator, or detergent, water, and air generate washing foam through the foam generator. The washing foam is sprayed out through the foam nozzle. The washing foam has a wall-hanging effect, which can enhance the cleaning effect. The motion nozzle 321 of the smart toilet of this application can move relative to the cleaning cover 310. The movement may include one or more combinations of up and down movement, translational movement, rotational movement, and swinging movement. In this embodiment, the motion nozzle 321 can be rotatably connected to the cleaning cover 310. A plurality of nozzles 323 are provided on the motion nozzle 321. The motion nozzle 321 is configured to rotate while spraying. The motion nozzle 321 and the cleaning cover 310 are directly or indirectly connected by components such as a rotating connecting pipe or a ball joint connector. The moving nozzle 321 is equipped with a plurality of nozzles 323, and is configured to rotate while spraying. Specifically, when water or cleaning solution is sprayed through the nozzles 323 of the moving nozzle 321, the reaction force thereof propels the moving nozzle 321 to rotate. Because the moving nozzle 321 rotates while spraying, the water or cleaning solution is sprayed in a rotating, scanning pattern, which increases the area directly impacted during cleaning and improves the cleaning effect.As shown in Figure 6, two moving nozzles 321 are set on the front cleaning cover 310, and one moving nozzle 321 is set on the rear moving nozzle 321 cleaning cover 310. Each moving nozzle 321 is provided with a number of nozzles 323. Different moving nozzles 321 perform zone cleaning, and different nozzles 323 on the same moving nozzle 321 also perform zone cleaning; wherein the first docking component 330 connected to the upper moving nozzle 321 on the front cleaning cover 310 is set at the top of the cleaning cover 310, and the first docking component 330 connected to the lower moving nozzle 321 is set on the side wall of the cleaning cover 310; because the vulva cover is large in size, multiple moving nozzles 321 are set for zone cleaning, each moving nozzle 321 can be supplied with liquid separately, and multiple moving nozzles 321 supply liquid in succession, which can release the hydraulic pressure in a concentrated manner, so that the moving nozzle 321 can generate high-speed jets, and the cleaning effect is good.
[0152] As shown in Figure 7, the nozzle 323 on the motion nozzle 321 also includes a lower nozzle 3231 and an upper nozzle 3232, wherein the lower nozzle 3231 sprays obliquely downward, and the upper nozzle 3232 sprays obliquely upward. It should be noted that when the cleaning cover sealing portion 214 is a sealing ring made of soft material, the lower part and inner side of the cleaning cover sealing portion 214 are prone to form a blind spot for cleaning. Therefore, the upper nozzle 3232 is provided to focus on cleaning the lower part and inner side of the cleaning cover sealing portion 214, thereby avoiding dirt accumulation on the lower part and inner side of the cleaning cover sealing portion 214. Several lower nozzles 3231 can focus on spraying the upper part of the cleaning cover sealing portion 214, while several upper nozzles 3232 focus on cleaning the lower part and inner side of the cleaning cover sealing portion 214, thereby avoiding leaving a blind spot for cleaning when cleaning the cleaning cover sealing portion 214. It should be noted that the term "hanging on the wall" here refers to the ability of the washing foam to adhere to the inner wall of the cleaning cavity 350 for a period of time and then slowly descend, allowing the detergent components in the washing foam to fully exert their effect, dissolving, softening, and emulsifying dirt on the inner wall of the cleaning cavity 350 and the first cleaning mechanism 213. The denser the sprayed foam, the longer it hangs on the wall, and the better the cleaning effect. Furthermore, in this embodiment, the nozzle 323 includes at least one of a water column nozzle 323, a water curtain nozzle 323, and a foam nozzle. The water column nozzle 323 produces a concentrated water column; the water curtain nozzle 323 produces a flat water curtain. The water curtain nozzle 323 includes a fan-shaped water curtain nozzle and a curtain-shaped water curtain nozzle. The water curtain produced by the fan-shaped water curtain nozzle has a high jet velocity and high impact force, resulting in a better cleaning effect. Combined with scanning cleaning, the total area of the direct impact zone is larger, achieving a clean area without blind spots. The water curtain produced by the fan-shaped water curtain nozzle has a flat fan-shaped shape. The fan-shaped water curtain nozzle typically adopts the nozzle structure of the fan-shaped nozzle used in high-pressure cleaning equipment. The foam nozzle opening is in the cleaning inner cavity 350, and the washing foam enters the cleaning inner cavity 350 through the foam nozzle. According to the cleaning range and characteristics of the fixed nozzle 322 and the moving nozzle 321, a suitable nozzle and nozzle 323 can be selected.
[0153] Furthermore, in this embodiment, a foam diverter 340 is provided within the cleaning cover 310. The inlet of the foam diverter 340 is connected to the foam nozzle (fixed nozzle 322). The foam diverter 340 is provided with at least one foam outlet 341 for diverting the washing foam to different locations within the cleaning cavity 350. After the foam nozzle sprays the washing foam, the washing foam first flows within the foam diverter 340 and then flows out through the foam outlet 341 to reach different locations within the cleaning cavity 350, so that the washing foam is relatively evenly distributed on the inner wall of the cleaning cavity 350. The foam outlet 341 can be configured as multiple evenly distributed outlets or as a plurality of elongated outlets.
[0154] As shown in FIG1 , the flip cover 120 is provided with a liquid supply assembly 400. The liquid supply assembly 400 includes at least one liquid supply pipe 420. A second docking member 410 is provided on the liquid supply pipe 420. The second docking member 410 is downwardly disposed on the side of the flip cover 120 facing the toilet bowl area 110. The liquid supply pipe 420 in the figure is provided with multiple second docking members 410. These second docking members 410 correspond one-to-one with the first docking members 330 on the cleaning cover assembly 300. The second docking members 410 and the corresponding first docking members 330 can be docked and connected, and this connection is detachable. The multiple second docking members 410 on the liquid supply pipe 420 in the figure are divided into two groups. The first group of second docking members 410 is located in front of the flip cover 120, corresponding to the first docking members 330 on the front cleaning cover 310 of the cleaning cover assembly 300. The second group of second docking members 410 is located in the rear of the flip cover 120, corresponding to the first docking members 330 on the rear cleaning cover 310 of the cleaning cover assembly 300. The first set of second docking members 410 is mounted on the alignment mover of the flip cover 120. The alignment mover is driven by an electric push rod assembly to move the first set of second docking members 410 back and forth to accommodate changes in the distance between the two cleaning covers 310 in the cleaning cover assembly 300. The second set of second docking members 410 is fixedly mounted on the flip cover 120. It should be noted that the second set of second docking members 410 can be mounted on the alignment mover of the flip cover 120, while the first set of second docking members 410 is fixedly mounted on the flip cover 120.
[0155] Furthermore, when the flip cover is closed, the cleaning cover on the moving part is combined with the cleaning cover, and the second docking member is docked with the first docking member, the self-cleaning assembly is in the assembly cleaning position. When the cleaning cover 210 on the moving part 220 and the corresponding cleaning cover 310 are combined to form the self-cleaning assembly, there are three schemes for docking the second docking member 410 with the first docking member 330. In the first docking scheme, the flip cover 120 is first closed, and then the moving part 220 drives the self-cleaning assembly to the assembly cleaning position to achieve docking between the first docking member 330 and the second docking member 410. In the second docking scheme, the moving part 220 moves to drive the self-cleaning assembly to the assembly cleaning position located in the toilet bowl area, and then the flip cover 120 is closed to achieve docking between the second docking member 410 and the first docking member 330. In the third docking scheme, the moving part and the flip cover move in coordination to achieve the closing position of the flip cover 120 and the moving part 220 drives the self-cleaning assembly to the assembly cleaning position to achieve docking between the first docking member 330 and the second docking member 410. After the first docking member 330 and the second docking member 410 are docked, the liquid supply assembly 400 supplies liquid to the second cleaning mechanism 320, and the second cleaning mechanism 320 cleans the cleaning cover 210 and the first cleaning mechanism 213.
[0156] Furthermore, in this embodiment, the liquid supply assembly 400 includes a first liquid supply pipe and a second liquid supply pipe. The first liquid supply pipe transports water, and the second liquid supply pipe transports at least one of a washing solution and washing foam. It should be noted that the second liquid supply pipe can also transport water for rinsing the washing solution or washing foam. The first liquid supply pipe can also transport washing solution. The washing solution generates a high-speed jet through the moving nozzle 321 or the fixed nozzle 320, which can enhance the washing solution's ability to soften and dissolve dirt, thereby enhancing the cleaning effect. Preferably, in this embodiment, the first liquid supply pipe is used to connect to the moving nozzle 321 in the second cleaning mechanism 320, and the second liquid supply pipe is used to connect to the fixed nozzle 320 (foam nozzle) in the second cleaning mechanism 320. It should be noted that the washing solution can be a solution containing detergent, an aqueous solution containing toilet cleaning agent, an aqueous solution containing disinfectant or bactericide, or an aqueous solution containing ozone. Detergent solutions are the most frequently used, but users can also switch to different washing solutions as needed. The use of washing solutions can enhance the cleaning effect and reduce the number of pathogens in the cleaning cavity 350. In addition, a washing solution containing detergent passes through a foam generator to generate foam, which is then delivered to the cleaning cavity 350 via a foam nozzle, thereby improving the cleaning effect. Both the washing solution and the washing foam can emulsify, soften, dissolve dirt, or chemically react with dirt to enhance cleaning effectiveness and eliminate odors. A booster device is connected to the first liquid supply pipeline and / or the second liquid supply pipeline. The booster device increases the pressure of the water flowing in the first liquid supply pipeline and / or the washing solution flowing in the second liquid supply pipeline. The booster device can also increase the pressure of the washing solution flowing through the foam generator. The booster device can cause the second cleaning mechanism 320 to spray a high-speed jet, enhancing the cleaning effect. The booster device can also cause the foam generator to produce denser foam, increasing the time the foam remains on the wall, thereby improving the cleaning effect. The booster device is connected to a control device 510, and its operation is controlled by the control device 510. Furthermore, the first and second liquid supply pipelines are connected to a number of pipeline control valves, which are connected to the control device. The control device can control the liquid or foam output of the second cleaning mechanism 320 by controlling the pipeline control valve. It can enable the liquid supply component to supply liquid to multiple second cleaning mechanisms 320 at the same time, or it can enable the liquid supply component to supply liquid to a second cleaning mechanism 320 alone. It can also control what substances are transported in the first liquid supply pipeline and the second liquid supply pipeline.
[0157] The smart toilet of this embodiment also includes a disinfection device, which includes at least one of an ultraviolet lamp, an ozone generator, and a steam generator. The ultraviolet lamp is located within the cleaning cavity 350 and emits ultraviolet light to sterilize and disinfect the interior of the cleaning cavity 350. The ozone generator is located outside the cleaning cavity 350, with its output port connected to the cleaning cavity 350. The ozone gas generated by the ozone generator is input into the cleaning cavity 350 to sterilize and disinfect the interior of the cleaning cavity 350. The steam generator is located outside the cleaning cavity 350, with its output port connected to the cleaning cavity 350. The high-temperature steam generated by the steam generator is input into the cleaning cavity 350 to sterilize and disinfect the interior of the cleaning cavity 350. The provision of the disinfection device can further improve the cleanliness of the self-cleaning assembly.
[0158] As shown in Figure 1, the smart toilet of the present application also includes a control device, which is used to monitor the status and position of the cleaning cover assembly 200, the cleaning cover assembly 300, and the flip cover 120 and control their operation. Only after the control device is installed can the various functions of the smart toilet be realized. The control device includes a human-computer interaction module. In this embodiment, the human-computer interaction module is preferably a screen controller 510 that can conveniently display and allows the user to input control commands through the screen controller 510.
[0159] The screen controller 510 includes multiple function controls and selections, including the selection of a self-cleaning mode. After the self-cleaning mode is selected, the control device automatically controls the self-cleaning of the self-cleaning assembly. When the control device receives a command for the self-cleaning mode or detects that the conditions for automatic cleaning are met, the control device detects whether the cleaning cover 210 is combined with the corresponding cleaning cover 310. When the two are combined, the control device 510 controls the movement of the moving part 220 and the flip cover 120. The moving part 220 and the flip cover 120 move in coordination to achieve the docking of the first docking member 330 with the second docking member 410, thereby achieving the combination of the cleaning cover 210 on the moving part 220 and the corresponding cleaning cover 310 and the docking of the second docking member 410 with the first docking member 330. Subsequently, the control device 510 controls the operation of the pipeline control valve, and the liquid supply assembly 400 supplies liquid or washing foam to the second cleaning mechanism 320, which cleans the interior of the cleaning cavity 350. The control device 510 can also control the disinfection device to disinfect and sterilize the cleaning cavity 350. The first and second liquid supply pipelines are connected by several pipeline control valves, which are connected to a control device. During the cleaning process, three schemes exist for detergent to enter the cleaning cavity 350: First, the detergent generates washing foam through a foam generator, which then enters the cleaning cavity 350 through a foam nozzle; second, an aqueous detergent solution enters the cleaning cavity 350 through the second cleaning mechanism 320. Preferably, the aqueous detergent solution is sprayed from a moving nozzle 321, which preferably uses a fan-shaped water curtain nozzle capable of generating a high-speed jet. This high-speed spray of the aqueous detergent solution has a better decontamination effect; and third, the aqueous detergent solution enters the cleaning cavity 350 through the first cleaning mechanism 213. The control device controls the pipeline control valves to control the liquid or foam output from the second cleaning mechanism 320. The detergent solution or washing foam entering the cleaning cavity 350 can emulsify, soften, dissolve dirt, or chemically react with the dirt to improve the cleaning effect and eliminate odors. After a period of time, the control device controls the pipeline control valve and the booster device to transport the water pressurized by the booster device to the second cleaning mechanism 320 via the first liquid supply pipeline. Preferably, each first docking component 330 is supplied with liquid separately, with only one first docking component 330 being supplied with liquid at the same time. Different first docking components 330 are supplied with liquid sequentially, thereby achieving concentrated water pressure release to generate high-speed jets to clean dirt and flush out the detergent in the cleaning cavity 350. When the pressurized water is ejected through the moving nozzle 321, the high-speed jets perform a scanning cleaning operation, resulting in an effective cleaning effect and no blind spots within the cleaning range. A drain outlet and drain valve are provided at the bottom of the cleaning cover 210, and the drain valve is connected to the control device.Before the detergent solution or washing foam enters the cleaning cavity 350, the drain valve is closed to close the drain outlet. After the dirt has been immersed for a period of time, the drain valve is opened to open the drain outlet and water flushing begins, completing the self-cleaning of the self-cleaning assembly. It should be noted that the control device can control the pipeline control valve to supply water to the second liquid supply pipeline to flush the detergent solution or washing foam within the pipeline.
[0160] Furthermore, the intelligent toilet of the present application can also preset the self-cleaning conditions of the self-cleaning assembly. When the control device detects that the pre-set self-cleaning conditions of the self-cleaning assembly are met, the self-cleaning of the self-cleaning assembly can be automatically initiated. It should be noted that the specific composition and structure of the control device, the method of communication between the structures, the specific operation method and control mode, the principle and method of monitoring the status and position of the cleaning cover assembly 200, the cleaning cover assembly 300, the flip cover 120, and the monitoring device used, and other matters not mentioned in this application do not fall within the scope of protection of this application and belong to the prior art. This application mainly protects the contents described in the connection relationship and coordination relationship between the various mechanisms.
[0161] Furthermore, as shown in Figures 1 and 2, the screen controller 510 is set in front of the toilet body 100 through a movable rod, which is convenient for the user of the smart toilet to operate; in addition, by adjusting the movable rod, the screen controller 510 can be moved from the front of the toilet body 100 to the side of the toilet body 100, making space for the user of the smart toilet to sit down or stand up.
[0162] Furthermore, the smart toilet of this embodiment also includes a storage box (not shown), which is arranged behind the toilet bowl area 110 and is used to store the cleaning cover assembly 200. The storage box protects the cleaning cover assembly 200 from dirt and dust, while also making the appearance of the smart toilet more beautiful and neat.
[0163] The smart toilet design of the present application utilizes a cleaning cover 210 to cover the target area for cleaning, which not only avoids wetting and contaminating other areas other than the target area during cleaning, but also achieves close cleaning, resulting in a better cleaning experience and cleaning effect. After the cleaning cover 210 of the smart toilet of this embodiment is used, the self-cleaning assembly is automatically cleaned through the control of the control device. The control device 510 can also control the disinfection device to disinfect and sterilize the interior of the cleaning cavity 350. The smart toilet of this embodiment can enable different users to use different cleaning covers 210, and each cleaning cover 210 has a corresponding cleaning cover 310. When the self-cleaning assembly is self-cleaning, the cleaning cover 210 is only combined with the corresponding cleaning cover 310 for self-cleaning. In this way, each user can exclusively use his or her own cleaning cover 210 and cleaning cover 310 to avoid cross infection.
[0164] These processes are highly automated, which can improve the user experience of the smart toilet of this application.
[0165] Contents of the second part:
[0166] 9 to 14 provide a second embodiment of the present application.
[0167] Referring to Figure 9 , this embodiment provides another smart toilet, comprising a toilet body 100, which is similarly provided with a toilet bowl area 110 and a rotatable flip cover 120. When the flip cover 120 is closed, it covers the upper portion of the toilet bowl area 110. The specific structure, inter-structural relationships, operating principles, and effects of the toilet body 100 of this embodiment are consistent with those of the toilet body 100 of the first embodiment and will not be further elaborated here.
[0168] As shown in Figure 9, a wash cover assembly 200 is mounted on the toilet body 100. This assembly also includes a wash cover 210 and a moving portion 220. The wash cover 210 is mounted on the moving portion 220, which is used to drive the wash cover 210. It should be noted that the specific structure, inter-structural relationships, operating principles, and effects of the wash cover assembly 200 in this embodiment are consistent with those of the wash cover assembly 200 in the first embodiment. The structure of the wash cover assembly 200 in this embodiment can be referred to the description of the first embodiment and will not be elaborated upon here.
[0169] Furthermore, in this embodiment, a lifting bracket assembly is provided on the toilet body 100, and the lifting bracket assembly is connected to the seat ring. The lifting bracket assembly can also be connected to the flip cover 120. When the lifting bracket assembly is in motion, the flip cover 120, the seat ring, and the person sitting on the seat ring can be lifted upward at the same time, thereby freeing up space for the moving part 220 and the cleaning cover 210 to move.
[0170] As shown in FIG9 , the smart toilet of this embodiment further includes a cleaning cover assembly 300 . In FIG9 , the cleaning cover assembly 300 has been assembled onto the corresponding cleaning cover 210 . The cleaning cover assembly 300 is covered on the upper portion of the cleaning cover 210 , and the two constitute a self-cleaning assembly.
[0171] As shown in Figure 10, the cleaning cover assembly 300 includes at least one cleaning cover 310, which is configured to be combined with the upper part of the corresponding cleaning cover 210 in a detachable manner. When the cleaning cover 310 is combined with the corresponding cleaning cover 210, a cleaning cavity 350 is formed between the cleaning cover 310 and the cleaning cover 210, and the second cleaning mechanism 320 is located inside the cleaning cavity 350.
[0172] Referring to Figure 10 , in this embodiment, the cleaning cover assembly 300 also includes two cleaning covers 310, arranged in a front-to-back arrangement, corresponding to the vulva cover 211 and the anus cover 212, respectively. A cover connecting bracket is provided on each cleaning cover 310. This bracket allows the front-to-back distance between the two cleaning covers 310 to be adjusted to accommodate variations in the distance between the corresponding vulva cover 211 and the anus cover 212, thereby ensuring accurate assembly. In this embodiment, the cleaning covers 310 are provided with a second cleaning mechanism 320 and a first docking member 330, which is connected to the second cleaning mechanism 320. The cleaning cover 310 includes multiple first docking members 330 and multiple second cleaning mechanisms 320, each first docking member 330 being connected to a corresponding second cleaning mechanism 320.
[0173] It is easy to understand that in other embodiments, when the cleaning cover 210 only includes one vulva cover 211 or one anus cover 212 , correspondingly, only one corresponding cleaning cover 310 is provided on the cleaning cover assembly 300 .
[0174] The arrangement, specific structure, inter-structural relationships, operating principles, and effects of the cleaning cover seal 214, sealing platform 215, and drain hole 2151 of this embodiment are consistent with those of the first embodiment and will not be further elaborated here. The cleaning cover 310 of this embodiment can also be designed as a plate; for specific design details, please refer to the corresponding design descriptions of the first embodiment.
[0175] As shown in Figure 9, the intelligent toilet of this embodiment also includes a liquid supply assembly 400, which is mounted on the flip cover 120. The liquid supply assembly 400 includes at least one liquid supply pipe, on which multiple second docking members 410 are mounted. The number of first docking members 330 and second docking members 410 is the same, and they are arranged in corresponding positions. The first docking member 330 is mounted upward on the cleaning cover 310, while the second docking member 410 is mounted downward on the side of the flip cover 120 facing the toilet bowl 110. The second docking member 410 is configured to detachably dock with the first docking member 330. When the cleaning cover 210 on the moving part 220 is assembled with the corresponding cleaning cover 310 and the second docking member 410 is docked with the first docking member 330, the second cleaning mechanism 320 cleans the cleaning cover 210 and the first cleaning mechanism 213. This process is the process by which the intelligent toilet of this application automatically cleans the self-cleaning assembly. This process is highly automated, convenient, and provides a good user experience.
[0176] As shown in Figures 10 and 11, the cleaning cover 310 is provided with at least one first docking member 330, which is disposed upward on the cleaning cover 310. Two first docking members 330 and two second cleaning mechanisms 320 are disposed on the rear cleaning cover 310, and the two first docking members 330 are disposed on the top of the cleaning cover 310. Four first docking members 330 and four second cleaning mechanisms 320 are disposed on the front cleaning cover 310, two first docking members 330 are disposed on the top of the cleaning cover 310, and two first docking members 330 are disposed on the side walls of the cleaning cover 310.
[0177] As shown in FIG. 11 , at least one second cleaning mechanism 320 is disposed inside the cleaning cover 310 , and the first docking members 330 are respectively connected to the corresponding second cleaning mechanisms 320 .
[0178] As shown in FIG9 , the smart toilet of the present application also includes a control device, which includes a screen controller 510. The control device monitors the status and position of the wash cover assembly 200, the wash cover assembly 300, and the flip cover 120 and controls their operation. It should be noted that the specific composition and structure of the control device, the method of communication between the components, the specific operation method and control mode, the principle and method of monitoring the status and position of the wash cover assembly 200, the wash cover assembly 300, the flip cover 120, and the like, and the device used for monitoring, etc., which are not mentioned in this application, do not fall within the scope of protection of this application and belong to the prior art. This application primarily protects the connection and coordination relationships between the various components, etc.
[0179] As shown in Figure 11, the second cleaning mechanism 320 includes at least one of a fixed nozzle 322 and a moving nozzle 321, each of which is provided with a plurality of nozzles 323. The moving nozzle 321 of the smart toilet of the present application can move relative to the cleaning cover 310, and the movement may include one or more combinations of up and down movement, translational movement, rotational movement, and swinging movement. As shown in Figure 11, in this embodiment, the moving nozzle 321 is rotatably connected to the cleaning cover 310, and is provided with a plurality of nozzles 323. The moving nozzle 321 is configured to rotate while spraying. In this embodiment, each cleaning cover 310 is respectively provided with a fixed nozzle 322 and a moving nozzle 321. Among them, the fixed nozzle 322 is fixedly provided on the cleaning cover 310. In this embodiment, the fixed nozzle 322 is all foam nozzles, and a foam generator is provided on the foam nozzle. The washing solution forms washing foam after passing through the foam generator. In this embodiment, multiple types of motion nozzles 321 are provided, including a first motion nozzle 3211 , a second motion nozzle 3212 , and a third motion nozzle 3213 .
[0180] The nozzles 323 of the smart toilet in this embodiment include at least one of a water column nozzle, a water curtain nozzle, and a foam nozzle. As shown in Figures 11, 12, and 13, the nozzles in this embodiment include a fan-shaped water curtain nozzle and a foam nozzle. The placement, structural features, operating principles, and effects of these two nozzles 323 are consistent with those in the first embodiment and will not be further elaborated here.
[0181] As shown in Figure 12, the first moving nozzle 3211 is semi-cylindrical, with several fan-shaped water curtain nozzles evenly distributed on the curved surface of the first moving nozzle 3211. The top of the first moving nozzle 3211 is connected to the first docking member 330. The first moving nozzle 3211 is rotatably mounted on the cleaning cover 310. The top of the cleaning cover 310 is provided with a first transmission structure 324. The first transmission structure 324 is connected to the first moving nozzle 3211 and drives the first moving nozzle 3211 to rotate about the vertical axis. In this embodiment, the first transmission structure 324 is a gear set.
[0182] As shown in Figure 13, the second moving nozzle 3212 is vertically arranged in the up-down direction. The second moving nozzle 3212 is provided with two nozzles 323, one of which is a lower nozzle 3231 and the other is an upper nozzle 3232; the top of the second moving nozzle 3212 is connected to the first docking member 330. The second moving nozzle 3212 is rotatably arranged on the cleaning cover 310. The second moving nozzle 3212 is rotatably connected to the cleaning cover 310 through a rotating connecting pipe. The second moving nozzle 3212 is driven by water to rotate around an axis in the up-down direction. The cleaning cover 310 or flip cover 120 of the smart toilet of the present application is provided with a lifting device that drives the moving nozzle 321 to move up and down. As shown in Figure 9, the first docking member 330 on the second moving nozzle 3212 can be connected to the second docking member 410 provided with a lifting device. The lifting device can drive the second moving nozzle 3212 to reciprocate up and down to achieve spiral scanning cleaning of the second moving nozzle 3212.
[0183] As shown in Figures 10 and 11, two third motion nozzles 3213 are provided on the sidewalls of the cleaning cover 310. As shown in Figure 14, the third motion nozzle 3213 is a horizontally arranged motion nozzle. The third motion nozzle 3213 is located inside the cleaning cavity and is provided with a plurality of nozzles 323. One end of the third motion nozzle 3213 is connected to a first docking member 330 via a ball joint. This first docking member 330 is fixedly connected to the front cleaning cover 310 to ensure that the third motion nozzle 3213 can rotate and the first docking member 330 connected thereto is always facing upward. The third moving nozzle 3213 is rotatably mounted on the cleaning cover 310. A second transmission structure 325 is provided on the third moving nozzle 3213. The second transmission structure 325 is connected to the third moving nozzle 3213 and drives the third moving nozzle 3213 to rotate about a horizontal axis. The third moving nozzle 3213 is provided with a fan-shaped water curtain nozzle. A single rotation of the third moving nozzle 3213 can simultaneously clean the cleaning cover 210, the first cleaning mechanism 213, and the cleaning cover 310. In this embodiment, the second transmission structure 325 is a worm gear transmission mechanism.
[0184] Furthermore, in this embodiment, a foam diverter 340 is also provided in the cleaning cover 310, the inlet of the foam diverter 340 is connected to the foam nozzle (fixed nozzle 322), and the foam diverter 340 is provided with at least one foam outlet 341 for diverting foam to different positions of the cleaning cavity 350.
[0185] Furthermore, in this embodiment, the liquid supply assembly 400 also includes a first liquid supply pipe and a second liquid supply pipe. The first liquid supply pipe conveys water, and the second liquid supply pipe conveys at least one of a washing solution and washing foam. It should be noted that the second liquid supply pipe can also convey water for flushing the washing solution or washing foam in the pipe, and the first liquid supply pipe can also convey a washing solution, and the washing solution generates a high-speed jet through the moving nozzle 321 or the fixed nozzle 322, which can enhance the softening and dissolving effect of the washing solution and enhance the cleaning effect. The first liquid supply pipe and the second liquid supply pipe are respectively connected to a plurality of pipeline control valves, and the pipeline control valves are connected to the control device. The control device 510 controls the liquid or foam output of the second cleaning mechanism 320 by controlling the pipeline control valves.
[0186] As shown in Figure 9 , several first drive devices 610 are disposed within the flip cover 120. The first drive devices 610 are indirectly connected to the first transmission structure 324 and the second transmission structure 325 via triangular sheaves and triangular cams in a detachable manner, thereby driving the first and third moving nozzles 3211 and 3213, respectively. As shown in Figure 9 , the triangular cams are disposed on the transmission shaft of the first drive device 610, and corresponding triangular sheaves are disposed on the first and second transmission structures 324 and 325. It should be noted that the second moving nozzle 3212 can also be driven by a motor.
[0187] As shown in FIG9 , the control device of this embodiment not only realizes the same functions as the control device in the first embodiment, but also needs to control the first driving device 610 and the lifting device.
[0188] Furthermore, the smart toilet of this embodiment also includes a storage box (not shown in the figure), which is arranged behind the toilet bowl area 110 and is used to store the cleaning cover assembly 200.
[0189] The intelligent toilet of this embodiment may further include a disinfection device and a pressurization device. The structural features, relationship between the structures, operating principles and effects of the two are consistent with those of the first embodiment and will not be elaborated here.
[0190] The intelligent toilet of this embodiment is designed to use a cleaning cover 210 to cover a target area for cleaning. After use, the cleaning cover 210 completes the self-cleaning of the self-cleaning assembly under the control of a control device. The control device 510 can also control a disinfection device to disinfect and sterilize the interior of the cleaning cavity 350. The intelligent toilet of this embodiment allows different users to use different cleaning covers 210, and each cleaning cover 210 has a corresponding cleaning cover 310. When the self-cleaning assembly is performing self-cleaning, the cleaning cover 210 is only combined with the corresponding cleaning cover 310 for self-cleaning. This way, each user can enjoy their own cleaning cover 210 and cleaning cover 310, preventing cross-infection. Comparing the intelligent toilet of this embodiment with the first embodiment, this embodiment changes the structure of the cleaning cover assembly 300, and the corresponding liquid supply assembly 400 on the flip cover 120 has been modified accordingly. A first drive device 610 and a transmission device are added to drive the partially moving nozzle 321 to rotate, and a lifting device for the partially moving nozzle 321 is also added.
[0191] By comparing the first embodiment and the second embodiment, it can be seen that the smart toilet of the present application can achieve different cleaning effects and have different manufacturing costs by using cleaning cover assemblies 300 of different structures.
[0192] Contents of the third part:
[0193] As shown in Figures 15 to 17, the figures provide a schematic structural diagram of another cleaning cover assembly 300 of the smart toilet of the present application. The second cleaning mechanism 320 of the cleaning cover assembly 300 provided in this embodiment includes multiple fixed nozzles 322 and multiple moving nozzles 321. As shown in Figure 15, the cleaning cover assembly 300 includes two cleaning covers 310, each of which is equipped with a fixed nozzle 322 that is a foam nozzle (connected to a foam diverter 340). The front cleaning cover 310 is also provided with another fixed nozzle 322. When the front cleaning cover 310 and the front cleaning cover 210 are combined into a self-cleaning assembly, the nozzle 323 of the fixed nozzle 322 is facing the cleaning cover sealing part 214 on the front cleaning cover 210 to achieve focused cleaning of the cleaning cover sealing part 214. The fixed nozzle 322 is provided with a water dividing partition, which divides the nozzle 323 on the fixed nozzle 322 into two groups. As shown in Figure 17, the fixed nozzle 322 is connected to two first docking components 330, and these two first docking components 330 can supply liquid to the two groups of nozzles 323 separately. The motion nozzle 3211 arranged in the rear cleaning cover 310 is semi-cylindrical, and a long arc-shaped slit is provided on the curved surface of the semi-cylinder. The semi-cylindrical motion nozzle 321 is connected to a first connecting pipe and a second connecting pipe in the horizontal direction. The first connecting pipe and the second connecting pipe are rotatably connected to two first docking components 330 through two ball head connectors. The two first docking components 330 are fixedly connected to the rear cleaning cover 310. The first connecting pipe or the second connecting pipe is connected to a turbine worm gear transmission device, and a second driving device is correspondingly provided on the flip cover 120. The second driving device and the corresponding turbine worm gear transmission device are detachably connected through a triangular cam and a triangular groove wheel. The second driving device drives the first connecting pipe or the second connecting pipe to rotate through the turbine worm gear transmission device to drive the semi-cylindrical motion nozzle 321 to swing or rotate. The motion nozzle 321 arranged in the front cleaning cover 310 is a U-shaped motion nozzle 321 that can swing or rotate. The U-shaped motion nozzle 321 is located at the lower part of the foam diverter 340. A number of nozzles 323 are evenly distributed on the U-shaped outer curved surface of the U-shaped motion nozzle 321. This nozzle 323 is preferably a fan-shaped water curtain nozzle. The U-shaped motion nozzle 321 is connected to a third connecting pipe and a fourth connecting pipe in the horizontal direction. The third connecting pipe and the fourth connecting pipe are rotatably connected to two first docking components 330 through two ball head connectors. The two first docking components 330 are fixedly connected to the front cleaning cover 310. The third connecting pipe or the fourth connecting pipe is connected to a turbine worm gear transmission device. A second drive device is correspondingly arranged on the flip cover 120. The second drive device and the corresponding turbine worm gear transmission device are detachably connected through a triangular cam and a triangular groove wheel. The second drive device drives the third connecting pipe or the fourth connecting pipe to rotate through the turbine worm gear transmission device to drive the U-shaped motion nozzle 321 to swing or rotate.The semi-cylindrical and U-shaped motion nozzles 321 and 321 are each equipped with a water divider, which divides the nozzles 323 on the semi-cylindrical and U-shaped motion nozzles 321 into two groups. The semi-cylindrical and U-shaped motion nozzles 321 and 321 are each connected to two first docking members 330. The four first docking members 330 can independently supply liquid to the corresponding groups of nozzles 323. A worm gear transmission is provided on both the front and rear cleaning covers 310. A triangular sheave is provided on the power input shaft of each worm gear transmission. A triangular cam is provided on the power output shaft of the corresponding second drive device on the flip cover 120. The triangular cam and the triangular sheave can be mated or separated. After the two are mated, the triangular cam can drive the triangular sheave to rotate. If the semi-cylindrical motion nozzle 3211 or the U-shaped motion nozzle 3211 performs rotational spraying, the cleaning scanning range is approximately spherical, and the cleaning range may include the cleaning cover 210 , the first cleaning mechanism 213 , and the cleaning cover 310 .
[0194] As shown in Figure 18, this is a schematic diagram of another cleaning cover assembly 300 of the smart toilet of the present application. The second cleaning mechanism 320 of the cleaning cover assembly 300 provided in this embodiment is only provided with a plurality of fixed nozzles 322, of which at least one fixed nozzle 322 is a foam nozzle (connected to the foam diverter 340), and the other fixed nozzles 322 are liquid spray nozzles, which spray water or washing solution. The cleaning cover assembly 300 includes two cleaning covers 310, each of which is provided with a foam nozzle and a liquid spray nozzle. The liquid spray nozzle in the figure is a spherical nozzle, the curved surface of the spherical nozzle is spherical or partially spherical, and a plurality of nozzles 323 are evenly distributed on the curved surface of the spherical nozzle. Each nozzle 323 has a different orientation, and the cleaning coverage is wide, and the cleaning cover 210 and the first cleaning mechanism 213 can be cleaned. The cleaning cover assembly 300 provided in this embodiment does not need to be provided with a moving nozzle 321, and the structure is simpler.
[0195] Contents of Part 4:
[0196] 19 to 22 provide a third embodiment of the smart toilet of the present application.
[0197] Referring to Figure 19 , this embodiment provides a third smart toilet of the present application. This smart toilet includes a toilet body 100, which is also provided with a toilet bowl area 110 and a rotatable flip cover 120. When the flip cover 120 is closed, it covers the upper portion of the toilet bowl area 110. The specific structure, inter-structural relationships, operating principles, and effects of the toilet body 100 of this embodiment are consistent with those of the toilet body 100 of the first embodiment and will not be further elaborated here.
[0198] As shown in Figure 19, a wash cover assembly 200 is mounted on the toilet body 100. This assembly also includes a wash cover 210 and a moving portion 220. The wash cover 210 is mounted on the moving portion 220, which is used to drive the wash cover 210. It should be noted that the specific structure, inter-structural relationships, operating principles, and effects of the wash cover assembly 200 in this embodiment are consistent with those of the wash cover assembly 200 in the first embodiment and will not be further elaborated here.
[0199] Furthermore, in this embodiment, a lifting bracket assembly is provided on the toilet body 100, and the lifting bracket assembly is connected to the seat ring. The lifting bracket assembly can also be connected to the flip cover 120. When the lifting bracket assembly is in motion, the flip cover 120, the seat ring, and the person sitting on the seat ring can be lifted upward at the same time, thereby freeing up space for the moving part 220 and the cleaning cover 210 to move.
[0200] The smart toilet of this application also includes a control device, which includes a screen controller 510. The control device monitors the status and position of the wash cover assembly 200, the wash cover assembly 300, and the flip cover 120 and controls their operation. It should be noted that the specific composition and structure of the control device, the method of communication between the components, the specific operation method and control mode, the principles and methods for monitoring the status and position of the wash cover assembly 200, the wash cover assembly 300, the flip cover 120, and the like, and the devices used for monitoring, etc., are not described in this application and are not within the scope of protection of this application. They belong to the prior art. This application primarily protects the connection and coordination relationships between the various components, etc.
[0201] The cleaning cover 210 of this embodiment also includes a cleaning cover seal 214, a sealing platform 215, and a drain hole 2151. The arrangement, specific structure, inter-structural relationships, operating principles, and effects of these components are consistent with those of the first embodiment and will not be further elaborated here. The cleaning cover 310 of this embodiment can also be designed in a plate-like shape. For specific design details, please refer to the corresponding design descriptions in the first embodiment.
[0202] The second cleaning mechanism 320 of the smart toilet in this embodiment includes at least one of a fixed nozzle 322 and a moving nozzle 321. The setting, specific structure, relationship between the structures, operating principle and effect of the fixed nozzle 322 and the moving nozzle 321 can be selected from the corresponding solutions in the first part, the second part and the third part, and will not be elaborated here.
[0203] As shown in Figure 20, a cleaning cover assembly 300 and a liquid supply assembly (not shown) are provided on the flip cover 120. The cleaning cover assembly 300 is fixedly positioned on the side of the flip cover 120 facing the toilet bowl area 110. The cleaning cover assembly 300 includes at least one cleaning cover 310, each of which is internally provided with at least one second cleaning mechanism 320. The cleaning cover assembly 300 is divided into multiple groups of cleaning covers 310, each group of cleaning covers 310 corresponding to the cleaning cover 210 of only one user. In FIG20 , there are four groups of cleaning covers 310, corresponding to the cleaning covers 210 of four users. The two cleaning covers 310 on the left rear side are the first group, corresponding to the cleaning cover 210 of a female user. The front cleaning cover 310 corresponds to the vulva cover 211, and the rear cleaning cover 310 corresponds to the anus cover 212. The distance between the two cleaning covers 310 is adjustable. The two cleaning covers 310 on the right rear side are the second group, corresponding to the cleaning cover 210 of another female user. The front cleaning cover 310 corresponds to the vulva cover 211, and the rear cleaning cover 310 corresponds to the anus cover 212. The distance between the two cleaning covers 310 is adjustable. The first cleaning cover 310 on the left front side is the third group, corresponding to the anus cover 212 of a male user. The first cleaning cover 310 on the right front side is the fourth group, corresponding to the anus cover 212 of another male user. In the figure, a plurality of second cleaning mechanisms 320 are provided in each cleaning cover 310. The specific structure, relationship between the structures, operating principle and effect of the second cleaning mechanism 320 in each cleaning cover 310 can adopt the design of the second cleaning mechanism 320 in the first, second and third parts, or can be a new structure obtained by simply changing the second cleaning mechanism 320 provided in the first, second and third parts. The cleaning cover 310 can be disassembled and assembled onto the corresponding cleaning cover 210. After the cleaning cover 310 is covered on the upper part of the corresponding cleaning cover 210, a self-cleaning assembly is formed. A cleaning cavity 350 is formed between the two, and the second cleaning mechanism 320 is located inside the cleaning cavity 350. The liquid supply component 400 is arranged on the flip cover 120, and the liquid supply component 400 includes at least one liquid supply pipe, which is directly connected to the second cleaning mechanism 320. Each cleaning cover 310 is connected to the liquid supply component 400 and is fixedly arranged on the flip cover 120. The liquid supply component 400 supplies water, washing solution, and washing foam to the second cleaning mechanism 320 to achieve self-cleaning of the self-cleaning assembly. The process, method, and method of self-cleaning of the self-cleaning assembly are consistent with the process, method, and method of self-cleaning of the self-cleaning assembly in the first embodiment, and will not be elaborated here.The liquid supply assembly 400 is connected to a plurality of pipeline control valves, which are connected to a control device. The control device, by controlling the pipeline control valves, can control the liquid or foam output of the second cleaning mechanism 320 in each cleaning cover 310. This allows the liquid supply assembly to supply liquid to multiple second cleaning mechanisms 320 simultaneously, or to supply liquid to a single second cleaning mechanism 320, and can also control the type of substance output by the second cleaning mechanism 320. If the moving nozzle 321 on the cleaning cover 310 is electrically driven, a corresponding drive device is provided on the flip cover 120 or the liquid supply assembly 400. The drive device drives the moving nozzle 321 to rotate or swing through a transmission mechanism. Alternatively, a lifting device can be provided on the cleaning cover 310 or the flip cover 120 to drive the moving nozzle 321 to reciprocate up and down.
[0204] Furthermore, as shown in FIG19 , a baffle 121 is movably provided on the side of the flip cover 120 facing the toilet bowl area 110. The front end of the baffle 121 is hinged to the flip cover 120. A flip drive device 122 is provided at the hinge between the baffle 121 and the flip cover 120 to drive the baffle 121 to rotate. When the self-cleaning assembly does not need to be self-cleaned, the cleaning cover assembly 300 is located between the baffle 121 and the flip cover 120. The baffle 121 covers the cleaning cover assembly 300 on the flip cover 120, protecting the cleaning cover assembly 300 from dirt and dust, and making the appearance of the smart toilet more neat. When the self-cleaning assembly needs to be self-cleaned, the baffle 121 is driven by the flip drive device 122 to flip and move away from the position covering the cleaning cover assembly 300, exposing the cleaning cover assembly 300 and providing conditions for the combination of the cleaning cover 310 and the corresponding cleaning cover 210. As shown in Figures 21 and 22, the cleaning cover 210 has been combined with the corresponding cleaning cover 310 on the flip cover 120. It should be noted that there are multiple groups of cleaning cover assemblies 300 on the flip cover 120, and each group of cleaning cover assemblies 300 has a corresponding cleaning cover 210 corresponding to it.
[0205] The smart toilet in this embodiment includes a booster device and a disinfection device. The settings, specific structures, relationships between the structures, operating principles, and effects of the booster device and the disinfection device are consistent with those of the booster device and the disinfection device in the first embodiment and will not be elaborated here.
[0206] As shown in FIG19 , in this embodiment, in addition to performing the same functions as the control device in the first embodiment, the control device also monitors the position and state of the baffle 121 and controls its operation. The control device controls the operation of the flip drive device 122 to switch the position and state of the baffle 121. Specifically, in this embodiment, when the user issues a self-cleaning instruction to the control device 510, or when the control device 510 detects that the self-cleaning conditions of the self-cleaning assembly are met, the control device first detects the position and state of the flip cover 120 and the baffle 121. When the flip cover 120 is opened manually or the control device controls the flip cover 120 to open, the control device controls the baffle 121 to switch to the open state to expose the cleaning cover assembly 300, providing conditions for the combination of the cleaning cover 310 and the cleaning cover 210. The control device controls the movement of the moving part and the flip cover, and the moving part and the flip cover cooperate to achieve the combination of the cleaning cover on the moving part and the corresponding cleaning cover on the flip cover. As shown in FIG21 , after the baffle 121 is flipped open, the cleaning cover 210 is assembled with the corresponding cleaning cover 310 on the flip cover 120. As shown in FIG22 , after the cleaning cover 210 is assembled with the corresponding cleaning cover 310 on the flip cover 120, a cleaning cavity 350 is formed between the cleaning cover 210 and the cleaning cover 310. The second cleaning mechanism 320 is located within the cleaning cavity 350. The liquid supply assembly 400 supplies liquid to the second cleaning mechanism 320, which then cleans the cleaning cover 210 and the first cleaning mechanism 213.
[0207] Furthermore, the smart toilet of this embodiment also includes a storage box (not shown in the figure), which is arranged behind the toilet bowl area 110 and is used to store the cleaning cover assembly 20.
[0208] The intelligent toilet of this embodiment utilizes a cleaning cover 210 to cover a target area for cleaning. After the cleaning cover 210 is used, the control device controls the cleaning cover 210 on the moving portion 220 to assemble with the corresponding cleaning cover 310 on the flip cover 120. The second cleaning mechanism 320 then cleans the cleaning cover 210 and the first cleaning mechanism 213. The intelligent toilet of this embodiment allows different users to use different cleaning covers 210, and each cleaning cover 210 has a corresponding cleaning cover 310. When the self-cleaning assembly is performing self-cleaning, the cleaning cover 210 is only combined with the corresponding cleaning cover 310 for self-cleaning. This allows each user to have their own cleaning cover 210 and cleaning cover 310, preventing cross-infection. Comparing the intelligent toilet of this embodiment with the first and second embodiments, this embodiment changes the installation position of the cleaning cover assembly 300, installing multiple sets of cleaning cover assemblies 300 on the flip cover 120, eliminating the need for the first docking member 330 and the second docking member 410.
[0209] Contents of the fifth part:
[0210] Figure 23 provides a fourth embodiment of the intelligent toilet of the present application. Referring to Figure 23 , the intelligent toilet of this embodiment includes a toilet body 100 , which is also provided with a toilet bowl area 110 and a rotatable flap 120 . When the flap 120 is closed, it covers the upper portion of the toilet bowl area 110 . The specific structure, inter-structural relationships, operating principles, and effects of the toilet body 100 of this embodiment are consistent with those of the toilet body 100 of the first embodiment and will not be further elaborated here. In this embodiment, a storage box 700 (partially shown) is also provided at the rear of the toilet body 100 .
[0211] As shown in Figure 23, a cleaning cover assembly 200 is provided on the toilet body 100, and the cleaning cover assembly 200 also includes a cleaning cover 210 and a moving part 220. The cleaning cover 210 is provided on the moving part 220, and the moving part 220 is used to drive the cleaning cover 210 to move. It should be noted that the specific structure, relationship between structures, operating principle and effect of the cleaning cover assembly 200 in this embodiment are consistent with the cleaning cover assembly 200 of the first embodiment and will not be elaborated here. The intelligent toilet of the present application also includes a control device, which includes a screen controller 510. The control device monitors the status and position of the cleaning cover assembly 200, the cleaning cover assembly 300, and the flip cover 120 and controls their actions. It should be noted that the specific composition and structure of the control device, the method of communication between the structures, the specific operation method and control mode, the principle and method of monitoring the status and position of the cleaning cover assembly 200, the cleaning cover assembly 300, the flip cover 120, and the like, and the monitoring device used, etc., which are not mentioned in this application, do not fall within the scope of protection of this application and belong to the prior art. This application mainly protects the connection relationship and coordination relationship between the various mechanisms. The cleaning cover 210 of the smart toilet in this embodiment is also provided with a cleaning cover sealing portion 214, a sealing platform 215, and a drain hole 2151. The arrangement, specific structure, relationship between the structures, operation principle and effect of these components are consistent with the design of the first embodiment and will not be elaborated here. The cleaning cover 310 of this embodiment can also be designed as a plate. The specific design situation can refer to the design description of the corresponding part in the first embodiment.
[0212] Furthermore, in this embodiment, a lifting bracket assembly is provided on the toilet body 100, and the lifting bracket assembly is connected to the seat ring. The lifting bracket assembly can also be connected to the flip cover 120. When the lifting bracket assembly is in motion, the flip cover 120, the seat ring, and the person sitting on the seat ring can be lifted upward at the same time, thereby freeing up space for the moving part 220 and the cleaning cover 210 to move.
[0213] The second cleaning mechanism 320 of the smart toilet in this embodiment includes at least one of a fixed nozzle 322 and a moving nozzle 321. The setting, specific structure, relationship between the structures, operating principle and effect of the fixed nozzle 322 and the moving nozzle 321 can adopt the corresponding solutions in the first part, the second part and the third part, and will not be elaborated here.
[0214] As shown in Figure 23, the intelligent toilet of this embodiment also includes a storage box 700, a cleaning cover assembly 300, and a liquid supply assembly 400. The liquid supply assembly 400 is disposed within the storage box 700 and includes at least one liquid supply pipe, on which at least one second docking member 410 is disposed. The liquid supply assembly 400 supplies water, washing solution, and washing foam to the second cleaning mechanism 320 to achieve self-cleaning of the self-cleaning assembly. The process, method, and method of self-cleaning the self-cleaning assembly are consistent with those of the first embodiment and will not be further elaborated here. The liquid supply assembly 400 is connected to several pipeline control valves, which are connected to a control device. The control device, by controlling the pipeline control valves, can control the liquid or foam output of the second cleaning mechanism 320 in each cleaning cover 310. This allows the liquid supply assembly 400 to supply liquid to multiple second cleaning mechanisms 320 simultaneously, or to supply liquid to a single second cleaning mechanism 320. It can also control the type of substance output by the second cleaning mechanism 320. The cleaning cover assembly 300 includes at least one cleaning cover 310, which is provided with at least one second cleaning mechanism 320 and at least one first docking member 330. Each first docking member 330 is connected to a corresponding second cleaning mechanism 320. The cleaning cover is configured to be detachably assembled with its corresponding cleaning cover 210. The cleaning cover 310 and the corresponding cleaning cover 210 are combined to form a self-cleaning assembly. A cleaning cavity 350 is formed between the cleaning cover 210 and the cleaning cover 310, and the second cleaning mechanism 320 is located within the cleaning cavity 350. The second docking member 410 is configured to detachably dock with the first docking member 330. When the cleaning cover 210 on the moving part 220 is assembled with the corresponding cleaning cover 310, the moving part 220 drives the self-cleaning assembly to complete the docking of the second docking member 410 with the first docking member 330. After docking, the second cleaning mechanism 320 cleans the cleaning cover 210 and the first cleaning mechanism 213. The second cleaning mechanism 320 of the present embodiment includes at least one of a fixed nozzle 322 and a motion nozzle 321. The setting situation, specific structure, relationship between structures, operating principle and effect of the fixed nozzle 322 and the motion nozzle 321 can be selected from the corresponding schemes in the first part, the second part and the third part, which will not be elaborated here. It should be noted that the structure of the second cleaning mechanism can also be obtained by simply changing the schemes in the first part, the second part and the third part to obtain a new structure and scheme. If the motion nozzle 321 on the cleaning cover 310 is an electrically driven movement, a corresponding drive device and a transmission mechanism are set on the liquid supply component 400 or in the storage box 700, and a transmission device is set on the cleaning cover 310. These settings can refer to the description of the corresponding parts in the first part, the second part and the third part, which will not be elaborated here.As shown in Figure 23, the liquid supply assembly 400 is disposed within the storage box 700 and includes at least one liquid supply pipe 420, which is connected to at least one second docking member 410. The liquid supply pipe 420 also includes a first liquid supply pipe and a second liquid supply pipe. The first liquid supply pipe transports water, while the second liquid supply pipe transports at least one of a cleaning solution and a foaming foam. It should be noted that the second liquid supply pipe can also transport water for flushing the cleaning solution or foaming foam within the pipe. The first liquid supply pipe can also transport cleaning solution. The cleaning solution is generated by the moving nozzle 321 or the fixed nozzle 322 to generate a high-speed jet, which can enhance the cleaning solution's ability to soften and dissolve dirt, thereby enhancing the cleaning effect. Several pipeline control valves are provided on the first and second liquid supply pipes, which are connected to the control device 510. The control device 510 controls the liquid or foam output of the second cleaning mechanism 320 by controlling the pipeline control valves. It should be noted that the first and second liquid supply pipes can be the same pipe.
[0215] As shown in FIG23 , the intelligent toilet of this embodiment also includes a control device, which includes a screen controller 510. In this embodiment, when a user issues a self-cleaning instruction to the control device 510, or when the control device 510 detects that the self-cleaning conditions of the self-cleaning assembly are met, the control device 510 controls the moving portion 220 to move the self-cleaning assembly on the moving portion 220 to achieve docking between the first docking member 330 and the second docking member 410. When the cleaning cover 210 on the moving portion 220 is assembled with the corresponding cleaning cap 310 and the second docking member 410 is docked with the first docking member 330, the control device 510 controls the pipeline control valve to operate, and the liquid supply assembly 400 supplies liquid or washing foam to the second cleaning mechanism 320, which then cleans the interior of the cleaning cavity 350.
[0216] Furthermore, in this embodiment, a drain pipe 720 is provided at the bottom of the storage box 700, and a collection tank 710 is provided between the cleaning cover assembly 200 and the drain pipe 720. Wastewater generated after cleaning the cleaning cavity 350 and the first cleaning mechanism 213 is discharged downward, collected and gathered in the collection tank 710, and then flows into the drain pipe 720. It is then discharged from the storage box 700 through the drain pipe 720, preventing wastewater from accumulating within the storage box 700. The drain pipe 720 can be connected to the toilet bowl area 110, as shown in Figure 23; in addition, the drain pipe 720 can also be directly connected to the sewage pipe on the toilet body 100.
[0217] The smart toilet in this embodiment includes a booster device and a disinfection device. The settings, specific structures, relationships between the structures, operating principles, and effects of the booster device and the disinfection device are consistent with those of the booster device and the disinfection device in the first embodiment and will not be elaborated here.
[0218] The smart toilet of this embodiment utilizes a cleaning cover 210 to cover a target area for cleaning. After use, the cleaning cover 210 automatically cleans the self-cleaning assembly under the control of a control device. The smart toilet of this embodiment allows different users to use different cleaning covers 210, and each cleaning cover 210 has a corresponding cleaning cover 310. When the self-cleaning assembly is performing self-cleaning, the cleaning cover 210 is only combined with the corresponding cleaning cover 310 for self-cleaning. This way, each user can enjoy their own cleaning cover 210 and cleaning cover 310, avoiding cross-infection. Comparing the smart toilet of this embodiment with the aforementioned embodiments, this embodiment changes the installation position of the liquid supply assembly 400, as well as the self-cleaning position of the self-cleaning assembly. In this embodiment, the liquid supply assembly 400 is placed within the storage box 700, where the self-cleaning assembly completes its self-cleaning process.
[0219] Contents of Part 6:
[0220] Figure 24 provides a fifth embodiment of the intelligent toilet of the present application. Referring to Figure 24 , the intelligent toilet of this embodiment includes a toilet body 100 , which is also provided with a toilet bowl area 110 and a rotatable flap 120 . When the flap 120 is closed, it covers the upper portion of the toilet bowl area 110 . The specific structure, inter-structural relationships, operating principles, and effects of the toilet body 100 of this embodiment are consistent with those of the toilet body 100 of the first embodiment and will not be further elaborated here. In this embodiment, a storage box 700 is provided on the side of the toilet body 100 .
[0221] As shown in Figure 24, the toilet body 100 is provided with a wash cover assembly 200, which also includes a wash cover and a moving part. The wash cover is mounted on the moving part, which is used to drive the wash cover to move. It should be noted that the specific structure, relationship between the components, operating principles, and effects of the wash cover assembly 200 in this embodiment are consistent with those of the wash cover assembly 200 in the first embodiment and will not be elaborated here. The intelligent toilet of this application also includes a control device, which includes a screen controller 510. The control device monitors the status and position of the wash cover assembly 200, the wash cover assembly 300, and the flip cover 120 and controls their operation. It should be noted that the specific composition and structure of the control device, the method of communication between the components, the specific operating method and control mode, the principle and method of monitoring the status and position of the wash cover assembly 200, the wash cover assembly 300, the flip cover 120, and the like, and the monitoring device used for monitoring, etc., are not described in this application and are not within the scope of protection of this application. This application primarily protects the connection and coordination relationships between the various components. The wash cover 210 of this embodiment also includes a wash cover seal 214, a sealing platform 215, and a drain hole 2151. The arrangement, specific structure, inter-structural relationships, operating principles, and effects of these components are consistent with those of the first embodiment and will not be elaborated upon here. The wash cover 310 of this embodiment can also be designed in a plate-like shape. For specific design details, refer to the corresponding design descriptions in the first embodiment.
[0222] Furthermore, in this embodiment, a lifting bracket assembly is provided on the toilet body 100, and the lifting bracket assembly is connected to the seat ring. The lifting bracket assembly can also be connected to the flip cover 120. When the lifting bracket assembly is in motion, the flip cover 120, the seat ring, and the person sitting on the seat ring can be lifted upward at the same time, thereby freeing up space for the moving part 220 and the cleaning cover 210 to move.
[0223] The second cleaning mechanism 320 of the smart toilet in this embodiment includes at least one of a fixed nozzle 322 and a moving nozzle 321. The setting, specific structure, relationship between the structures, operating principle and effect of the fixed nozzle 322 and the moving nozzle 321 can adopt the corresponding solutions in the first part, the second part and the third part, and will not be elaborated here.
[0224] As shown in Figure 24, the smart toilet of this embodiment also includes a storage box 700, a cleaning cover assembly 300, and a liquid supply assembly 400. The liquid supply assembly 400 is disposed within the storage box 700 and includes at least one liquid supply pipe, on which at least one second docking member 410 is disposed. The liquid supply assembly 400 supplies water, washing solution, and washing foam to the second cleaning mechanism 320 to achieve self-cleaning of the self-cleaning assembly. The process, method, and method of self-cleaning the self-cleaning assembly are consistent with those of the first embodiment and will not be further elaborated here. The liquid supply assembly 400 is connected to several pipeline control valves, which are connected to a control device. The control device, by controlling the pipeline control valves, can control the liquid or foam output of the second cleaning mechanism 320 in each cleaning cover 310. This allows the liquid supply assembly to supply liquid to multiple second cleaning mechanisms 320 simultaneously, or to supply liquid to a single second cleaning mechanism 320. It can also control the type of substance output by the second cleaning mechanism 320. The cleaning cover assembly 300 includes at least one cleaning cover 310 . The cleaning cover 310 is provided with at least one second cleaning mechanism 320 and at least one first docking component 330 . Each first docking component 330 is connected to a corresponding second cleaning mechanism 320 . The cleaning cover is configured to be combined with the corresponding cleaning cover 210 in a detachable manner. The cleaning cover 310 and the corresponding cleaning cover 210 are combined to form a self-cleaning assembly. A cleaning cavity 350 is formed between the cleaning cover 210 and the cleaning cover 310, and the second cleaning mechanism 320 is located inside the cleaning cavity 350; the second docking component 410 is configured to dock with the first docking component 330 in a detachable manner. The first docking component 330 and the second docking component 410 are arranged horizontally to complete the docking in the horizontal direction; when the cleaning cover 210 on the moving part 220 is combined with the corresponding cleaning cover 310, the moving part 220 drives the self-cleaning assembly to move to complete the docking of the second docking component 410 with the first docking component 330. After docking, the second cleaning mechanism 320 cleans the cleaning cover 210 and the first cleaning mechanism 213. The second cleaning mechanism 320 of this embodiment includes at least one of a fixed nozzle 322 and a moving nozzle 321. The arrangement, specific structure, relationship between the structures, operating principle, and effect of the fixed nozzle 322 and the moving nozzle 321 can be based on the corresponding solutions in the first, second, and third parts, and will not be elaborated here. The structure of the second cleaning mechanism can be consistent with the second cleaning mechanism in the first, second, and third parts, or it can be a new structure obtained by simply modifying the second cleaning mechanism provided in the first, second, and third parts.If the moving nozzle 321 on the cleaning cover 310 is electrically driven, a corresponding driving device and transmission mechanism are set on the liquid supply component 400 or in the storage box 700, and a transmission device is set on the cleaning cover 310. These settings can refer to the description of the corresponding parts in the first part, the second part, and the third part, and will not be elaborated here. The liquid supply pipe 420 also includes a first liquid supply pipe and a second liquid supply pipe. The first liquid supply pipe transports water, and the second liquid supply pipe transports at least one of a washing solution and a washing foam. It should be noted that the second liquid supply pipe can also transport water for flushing the washing solution or washing foam in the washing pipe, and the first liquid supply pipe can also transport washing solution. The washing solution generates a high-speed jet through the moving nozzle 321 or the fixed nozzle 322, which can enhance the softening and dissolving effect of the washing solution and enhance the cleaning effect. It should be noted that the first liquid supply pipe and the second liquid supply pipe can be the same pipe.
[0225] As shown in FIG24 , the intelligent toilet of this embodiment also includes a control device, which includes a screen controller 510. In this embodiment, when a user issues a self-cleaning instruction to the control device 510, or when the control device 510 detects that the self-cleaning assembly meets the set self-cleaning conditions, the control device 510 controls the moving portion 220 to drive the self-cleaning assembly on the moving portion 220 to achieve docking between the first docking member 330 and the second docking member 410. When the cleaning cover 210 on the moving portion 220 is assembled with the corresponding cleaning cover 310 and the second docking member 410 is docked with the first docking member 330, the control device 510 controls the pipeline control valve to operate, and the liquid supply assembly 400 supplies liquid or washing foam to the second cleaning mechanism 320, which then cleans the interior of the cleaning cavity 350.
[0226] Furthermore, in this embodiment, a drain pipe 720 is provided at the bottom of the storage box 700, and a collection tank 710 is provided between the cleaning cover assembly 200 and the drain pipe 720. Wastewater generated after cleaning the cleaning cavity 350 and the first cleaning mechanism 213 is discharged downward, collected and gathered in the collection tank 710, and then flows into the drain pipe 720. It is then discharged from the storage box 700 through the drain pipe 720, preventing wastewater from accumulating within the storage box 700. The drain pipe 720 can be connected to the toilet bowl area 110, as shown in Figure 24; in addition, the drain pipe 720 can also be directly connected to the sewage pipe on the toilet body 100.
[0227] The smart toilet in this embodiment also includes a booster device and a disinfection device. The settings, specific structures, relationships between the structures, operating principles and effects of the booster device and the disinfection device are consistent with those of the booster device and the disinfection device in the first embodiment and will not be elaborated here.
[0228] The intelligent toilet of this embodiment utilizes a cleaning cover 210 to cover a designated area for cleaning. After use, the cleaning cover 210 automatically cleans the self-cleaning assembly under the control of a control device. This intelligent toilet of this embodiment allows different users to use different cleaning covers 210, and each cleaning cover 210 has a corresponding cleaning cover 310. When the self-cleaning assembly is performing self-cleaning, the cleaning cover 210 is combined only with the corresponding cleaning cover 310. This allows each user to have their own cleaning cover 210 and cleaning cover 310, preventing cross-contamination. Comparing the smart toilet of this embodiment with the aforementioned embodiments, the main difference is that the storage box 700 is located on the side of the toilet body 100, and an electric push rod device is provided on the drain pipe 720 to enable the drain pipe 720 to move left and right. When the self-cleaning assembly performs self-cleaning, the electric push rod device connected to the drain pipe 720 drives the drain pipe 720 to move toward the toilet bowl area 110 so that the drain pipe 720 is connected to the toilet bowl area 110. When the self-cleaning assembly does not need to be self-cleaned, the electric push rod device connected to the drain pipe 720 drives the drain pipe 720 to move in the opposite direction, and the drain pipe 720 evacuates the toilet bowl area 110.
[0229] Comparing the smart toilet of this embodiment with the above-mentioned embodiments, the storage box 700 of this embodiment is located on the side of the toilet bowl area 110, and the liquid supply component 400 is installed in the storage box 700. After the self-cleaning assembly on the moving part 220 reaches the storage box 700 on the side, the first docking component 330 and the second docking component 410 are connected in the storage box 700. The self-cleaning position of the self-cleaning assembly is located in the storage box 700, and an electric push rod device is provided on the drain pipe 720 to realize the left and right movement of the drain pipe 720.
[0230] Contents of Part 7:
[0231] Figure 25 provides a sixth embodiment of the intelligent toilet of the present application. Referring to Figure 25 , the intelligent toilet of this embodiment includes a toilet body 100 , which is also provided with a toilet bowl area 110 and a rotatable flap 120 . When the flap 120 is closed, it covers the upper portion of the toilet bowl area 110 . The specific structure, inter-structural relationships, operating principles, and effects of the toilet body 100 of this embodiment are consistent with those of the toilet body 100 of the first embodiment and will not be further elaborated here. In this embodiment, a storage box 700 (partially shown) is also provided at the rear of the toilet body 100 .
[0232] As shown in Figure 25, a cleaning cover assembly 200 is provided on the toilet body 100, and the cleaning cover assembly 200 also includes a cleaning cover 210 and a moving part 220. The cleaning cover 210 is provided on the moving part 220, and the moving part 220 is used to drive the cleaning cover 210 to move. It should be noted that the specific structure, relationship between structures, operating principle and effect of the cleaning cover assembly 200 in this embodiment are consistent with the cleaning cover assembly 200 in the first embodiment. The structure of the cleaning cover assembly 200 in this embodiment can refer to the description in the first embodiment and will not be elaborated here. The intelligent toilet of the present application also includes a control device, which includes a screen controller 510. The control device monitors the status and position of the cleaning cover assembly 200, the cleaning cover assembly 300, and the flip cover 120 and controls their actions. It should be noted that the specific composition and structure of the control device, the method of communication between the structures, the specific operation method and control mode, the principle and method of monitoring the status and position of the cleaning cover assembly 200, the cleaning cover assembly 300, the flip cover 120, and the like, and the monitoring device used, etc., which are not mentioned in this application, do not fall within the scope of protection of this application and belong to the prior art. This application mainly protects the connection relationship and coordination relationship between the various mechanisms. The cleaning cover 210 of the smart toilet in this embodiment is also provided with a cleaning cover sealing portion 214, a sealing platform 215, and a drain hole 2151. The arrangement, specific structure, relationship between the structures, operation principle and effect of these components are consistent with the design of the first embodiment and will not be elaborated here. The cleaning cover 310 of this embodiment can also be designed as a plate. The specific design situation can refer to the design description of the corresponding part in the first embodiment.
[0233] Furthermore, in this embodiment, a lifting bracket assembly is provided on the toilet body 100, and the lifting bracket assembly is connected to the seat ring. The lifting bracket assembly can also be connected to the flip cover 120. When the lifting bracket assembly is in motion, the flip cover 120, the seat ring, and the person sitting on the seat ring can be lifted upward at the same time, thereby freeing up space for the moving part 220 and the cleaning cover 210 to move.
[0234] The second cleaning mechanism 320 of the intelligent toilet in this embodiment includes at least one of a fixed nozzle 322 and a moving nozzle 321. The placement, specific structure, relationship between the structures, operating principles, and effects of the fixed nozzle 322 and the moving nozzle 321 can be adapted from the corresponding solutions described in Parts 1, 2, and 3, and will not be further elaborated here. If the moving nozzle 321 on the cleaning cover 310 is electrically driven, a corresponding drive device and transmission mechanism will be provided on the liquid supply assembly 400 or within the storage box 700, and a transmission mechanism will be provided on the cleaning cover 310. These arrangements can be referred to the corresponding descriptions in Parts 1, 2, and 3, and will not be further elaborated here.
[0235] As shown in Figure 25, the liquid supply assembly 400 of the smart toilet of this embodiment is set in the storage box 700. The liquid supply assembly 400 includes at least one liquid supply pipe. The liquid supply assembly 400 supplies water, washing solution, and washing foam to the second cleaning mechanism 320 to achieve self-cleaning of the self-cleaning assembly. The process, method, and method of self-cleaning of the self-cleaning assembly are consistent with the process, method, and method of self-cleaning of the self-cleaning assembly in the first embodiment and will not be elaborated here. The liquid supply assembly 400 is connected to a number of pipeline control valves, which are connected to the control device. The control device can control the liquid or foam output of the second cleaning mechanism 320 in each cleaning cover 310 by controlling the pipeline control valves. The liquid supply assembly can supply liquid to multiple second cleaning mechanisms 320 at the same time, or it can supply liquid to a second cleaning mechanism 320 alone, and it can also control what substance the second cleaning mechanism 320 outputs. The cleaning cover assembly 300 includes at least one cleaning cover 310 . The cleaning cover assembly 300 is fixed in the storage box 700 and connected to the liquid supply assembly 400 . The opening of the cleaning cover 310 faces downward. At least one second cleaning mechanism 320 is provided inside each cleaning cover 310 . The cleaning cover assembly 300 is divided into multiple groups of cleaning covers 310, each group of cleaning covers 310 corresponds to the cleaning cover 210 of only one user. There are four groups of cleaning covers 310 in Figure 25, corresponding to the cleaning covers 210 of four users; among them, the two cleaning covers 310 distributed front and back on the leftmost side are the first group, corresponding to the cleaning cover 210 of a female user, the front cleaning cover 310 corresponds to the vulva cover 211, and the rear cleaning cover 310 corresponds to the anus cover 212, and the distance between the two cleaning covers 310 is adjustable (the spacing adjustment mechanism is not shown); the two cleaning covers 310 distributed front and back in the middle are the second group, corresponding to the cleaning cover 210 of another female user, the front cleaning cover 310 corresponds to the vulva cover 211, and the rear cleaning cover 310 corresponds to the anus cover 212, and the distance between the two cleaning covers 310 is adjustable (the spacing adjustment mechanism is not shown). The two cleaning covers 310 on the far right, front and back, are the third and fourth groups. The front cleaning cover 310 is the third group, corresponding to the anus cover 212 of a male user, and the rear cleaning cover 310 is the fourth group, corresponding to the anus cover 212 of another male user. Each cleaning cover 310 is provided with multiple second cleaning mechanisms 320.
[0236] The cleaning cover 310 is configured to be assembled to the corresponding cleaning cover 210 in a detachable manner so that the cleaning cover 310 and the cleaning cover 210 are combined to form a self-cleaning assembly. When the cleaning cover 310 is assembled on the cleaning cover 210, a cleaning cavity 350 is formed between the two, and the second cleaning mechanism 320 is located inside the cleaning cavity 350. After the cleaning cover 210 is installed on the moving part 220, the moving part 220 drives the cleaning cover 210 to move so as to form a self-cleaning assembly with the corresponding cleaning cover 310. When the cleaning cover 210 on the moving part 220 is assembled with the corresponding cleaning cover 310, the second cleaning mechanism 320 cleans the cleaning cover 210 and the first cleaning mechanism 213. The second cleaning mechanism 320 of this embodiment includes at least one of a fixed nozzle 322 and a moving nozzle 321. The arrangement, specific structure, relationship between the structures, operating principle and effect of the fixed nozzle 322 and the moving nozzle 321 can be selected from the corresponding solutions in the first part, the second part and the third part, which will not be elaborated here. 25 , multiple sets of cleaning covers 310 have been installed in the storage box 700 and connected to the liquid supply assembly 400 .
[0237] In this embodiment, multiple sets of cleaning covers 310 are provided within the storage box 700, along with corresponding sets of cleaning covers 210. Different users use different cleaning covers 210, and each cleaning cover 210 has a corresponding cleaning cover 310. When the self-cleaning assembly is performing self-cleaning, the cleaning cover 210 is only combined with the corresponding cleaning cover 310 for self-cleaning. This allows each user to use their own cleaning cover 210 and cleaning cover 310, preventing cross-contamination.
[0238] As shown in Figure 25, the smart toilet of this embodiment also includes a control device, which includes a screen controller 510. When the user issues a self-cleaning instruction to the control device, or when the control device detects that the set conditions for self-cleaning of the self-cleaning assembly are met, the control device controls the movement portion 220 to operate, and the movement portion 220 drives the cleaning cover 210 on it to enter the storage box 700 and complete the combination with the corresponding cleaning cover 310 in the storage box 700. The control device controls the pipeline control valve to supply liquid or washing foam to the second cleaning mechanism 320 of the corresponding cleaning cover 310, and the corresponding second cleaning mechanism 320 cleans the interior of the cleaning cavity 350; the control device can also control the disinfection device to disinfect and sterilize the interior of the cleaning cavity 350. These processes are highly automated, which can improve the user experience of the smart toilet of this application.
[0239] Furthermore, in this embodiment, a drain pipe 720 is provided at the bottom of the storage box 700, and a collection trough 710 is provided between the cleaning cover assembly 200 and the drain pipe 720. The collection trough 710 can be provided on the movable portion 220, the drain pipe 720, or the storage box 700. In this embodiment, the collection trough 710 is provided on the movable portion 220. Sewage generated after cleaning the cleaning cavity 350 and the first cleaning mechanism 213 is discharged downward, collected and gathered in the collection trough 710, and then flows into the drain pipe 720 and out of the storage box 700, thereby preventing accumulation of sewage within the storage box 700. The drain pipe 720 can be connected to the toilet bowl area 110, as shown in FIG. 25 ; further, the drain pipe 720 can be directly connected to the sewage pipe on the toilet body 100.
[0240] The smart toilet in this embodiment also includes a booster device and a disinfection device. The settings, specific structures, relationships between the structures, operating principles and effects of the booster device and the disinfection device are consistent with those of the booster device and the disinfection device in the first embodiment and will not be elaborated here.
[0241] During the entire self-cleaning process of the self-cleaning assembly of the smart toilet of this embodiment, the self-cleaning assembly is located in the storage box 700. When the self-cleaning assembly is self-cleaning, the toilet bowl area 110 of the smart toilet of this application can still be used.
[0242] Comparing the smart toilet of this embodiment with the above-mentioned embodiments, the storage box 700 of this embodiment is located behind the toilet bowl area 110, and the liquid supply component 400 is installed in the storage box 700. The liquid supply component 400 is connected to multiple sets of cleaning covers 310. The cleaning covers 310 are fixed in the storage box 700 and do not move with the moving part 220. After the cleaning cover 210 on the moving part 220 reaches the storage box 700, it is combined with the corresponding cleaning cover 310 to form a self-cleaning assembly. The self-cleaning assembly completes self-cleaning in the storage box 700.
[0243] In summary, the above is a specific description of the preferred implementation methods of the present application, but the present application is not limited to the above implementation methods. Technical personnel familiar with the field can also make various equivalent modifications or substitutions under the sharing conditions that do not violate the spirit of the present application. These equivalent modifications or substitutions are all included in the scope defined by the claims of the present application.
Claims
1. A smart toilet, characterized in that: include: A toilet body, wherein the toilet body is provided with a toilet bowl area and a rotatable flap, and when the flap is closed, the flap covers the upper part of the toilet bowl area; A cleaning cover assembly, the cleaning cover assembly is arranged on the toilet body, the cleaning cover assembly includes a cleaning cover with an upper opening, and a moving part for driving the cleaning cover to move; the cleaning cover is arranged on the moving part, and a first cleaning mechanism is arranged inside the cleaning cover, when the moving part drives the cleaning cover to move so that the cleaning cover is arranged on a specific part of the user of the smart toilet, the first cleaning mechanism cleans the specific part of the user of the smart toilet; A cleaning cover assembly, the cleaning cover assembly comprising a cleaning cover, the cleaning cover being provided with a second cleaning mechanism and a first docking component, the first docking component being connected to the second cleaning mechanism; A liquid supply assembly, the liquid supply assembly is arranged on the flip cover, the liquid supply assembly comprises at least one liquid supply pipeline, and a second docking member is arranged on the liquid supply pipeline; A control device, the control device monitors the status and position of the cleaning cover assembly, the cleaning cover assembly, and the flip cover and controls their actions; In which, the cleaning cover is configured to be combined with the cleaning cover in a detachable manner so that the cleaning cover and the cleaning cover are combined to form a self-cleaning assembly. When the cleaning cover is combined with the cleaning cover, a cleaning cavity is formed between the cleaning cover and the cleaning cover, and the second cleaning mechanism is located inside the cleaning cavity; the second docking component is configured to dock with the first docking component in a detachable manner; when the cleaning cover on the moving part is combined with the cleaning cover and the second docking component is docked with the first docking component, the second cleaning mechanism cleans the cleaning cover and the first cleaning mechanism.
2. The intelligent toilet according to claim 1, characterized in that: The second cleaning mechanism includes at least one of a fixed nozzle and a moving nozzle.
3. The intelligent toilet according to claim 2, characterized in that: The fixed nozzle is fixedly arranged on the cleaning cover, and a plurality of nozzles are arranged on the fixed nozzle.
4. The intelligent toilet according to claim 3, characterized in that: At least one of the fixed spray heads is a foam spray head.
5. The intelligent toilet according to claim 4, characterized in that: The cleaning cover is provided with a foam diverter, the inlet of the foam diverter is connected to the foam nozzle, and the foam diverter is provided with at least one foam outlet for diverting washing foam to different positions of the cleaning inner cavity.
6. The intelligent toilet according to claim 2, characterized in that: The motion nozzle is rotatably connected to the cleaning cover, a plurality of nozzles are arranged on the motion nozzle, and the motion nozzle is arranged to rotate while spraying and washing.
7. The intelligent toilet according to claim 6, characterized in that: The cleaning cover or the flip cover is provided with a lifting device for driving the moving nozzle to move up and down.
8. The intelligent toilet according to claim 3 or 6, characterized in that: The nozzle includes at least one of a water column nozzle, a water curtain nozzle, and a foam nozzle.
9. The intelligent toilet according to any one of claims 1 to 7, characterized in that: The liquid supply assembly includes a first liquid supply pipeline, which transports water.
10. The intelligent toilet according to claim 9, characterized in that: The liquid supply assembly includes a second liquid supply pipeline, and the second liquid supply pipeline transports at least one of a washing solution and washing foam.
11. The intelligent toilet according to claim 10, characterized in that: The first liquid supply pipeline and / or the second liquid supply pipeline is connected with a pressurizing device.
12. The intelligent toilet according to claim 10, characterized in that: The first liquid supply pipeline and the second liquid supply pipeline are connected to a plurality of pipeline control valves, and the pipeline control valves are connected to the control device.
13. The intelligent toilet according to claim 1, characterized in that: A disinfection device is also included, and the disinfection device includes at least one of an ultraviolet lamp, an ozone generator, and a steam generator.
14. The intelligent toilet according to claim 1, characterized in that: It also includes a storage box, which is arranged at the rear or side of the toilet area and is used to store the cleaning cover assembly.
15. The intelligent toilet according to claim 1, characterized in that: The first docking member is arranged upward on the cleaning cover, and the second docking member is arranged downward on a side of the flip cover facing the toilet bowl area.
16. An intelligent toilet, characterized in that: include: A toilet body, wherein the toilet body is provided with a toilet bowl area and a rotatable flap, and when the flap is closed, the flap covers the upper part of the toilet bowl area; A cleaning cover assembly, the cleaning cover assembly is arranged on the toilet body, the cleaning cover assembly includes a cleaning cover with an upper opening, and a moving part for driving the cleaning cover to move; the cleaning cover is arranged on the moving part, and a first cleaning mechanism is arranged inside the cleaning cover, when the moving part drives the cleaning cover to move so that the cleaning cover is arranged on a specific part of the user of the smart toilet, the first cleaning mechanism cleans the specific part of the user of the smart toilet; A cleaning cover assembly, the cleaning cover assembly is arranged on a side of the flip cover facing the toilet bowl area, the cleaning cover assembly includes at least one cleaning cover, and each cleaning cover is provided with a second cleaning mechanism; A liquid supply assembly, the liquid supply assembly is arranged on the flip cover, the liquid supply assembly comprises at least one liquid supply pipeline, and the liquid supply pipeline is connected to the second cleaning mechanism; A control device, the control device monitors the status and position of the cleaning cover assembly, the cleaning cover assembly, and the flip cover and controls their actions; In which, the cleaning cover is configured to be combined with the cleaning cover in a detachable manner so that the cleaning cover and the cleaning cover are combined to form a self-cleaning assembly. When the cleaning cover is combined with the cleaning cover, a cleaning cavity is formed between the cleaning cover and the cleaning cover, and the second cleaning mechanism is located inside the cleaning cavity; when the cleaning cover on the moving part is combined with the cleaning cover, the cleaning cover and the first cleaning mechanism are cleaned by the second cleaning mechanism.
17. The intelligent toilet according to claim 16, characterized in that: The second cleaning mechanism includes at least one of a fixed nozzle and a moving nozzle.
18. The intelligent toilet according to claim 17, characterized in that: The motion nozzle is rotatably connected to the cleaning cover, a plurality of nozzles are arranged on the motion nozzle, and the motion nozzle is arranged to rotate while spraying and washing.
19. The intelligent toilet according to claim 16, characterized in that: The liquid supply assembly is connected with a pressurizing device.
20. The intelligent toilet according to claim 16, characterized in that: A baffle plate that can cover the flap is movably provided on one side of the flap facing the toilet bowl area. When the self-cleaning assembly does not need to be self-cleaned, the baffle plate covers the flap so that the cleaning cover assembly is located between the baffle plate and the flap. The baffle plate covers the cleaning cover assembly. Before the self-cleaning assembly needs to be self-cleaned, the baffle plate can be moved from the position covering the cleaning cover assembly by rotating or retracting to release the covering of the cleaning cover assembly and expose the cleaning cover assembly.
21. An intelligent toilet, characterized in that: include: A toilet body, wherein the toilet body is provided with a toilet bowl area and a rotatable flap, and when the flap is closed, the flap covers the upper part of the toilet bowl area; A cleaning cover assembly, the cleaning cover assembly is arranged on the toilet body, the cleaning cover assembly includes a cleaning cover with an upper opening, and a moving part for driving the cleaning cover to move; the cleaning cover is arranged on the moving part, and a first cleaning mechanism is arranged inside the cleaning cover, when the moving part drives the cleaning cover to move so that the cleaning cover is arranged on a specific part of the user of the smart toilet, the first cleaning mechanism cleans the specific part of the user of the smart toilet; A storage box, the storage box is arranged at the rear or side of the toilet area, and the storage box is used to store the cleaning cover assembly; A cleaning cover assembly, the cleaning cover assembly comprising a cleaning cover, the cleaning cover being provided with a second cleaning mechanism and a first docking component, the first docking component being connected to the second cleaning mechanism; A liquid supply assembly, the liquid supply assembly is arranged in the storage box, the liquid supply assembly comprises at least one liquid supply pipeline, and the liquid supply pipeline is provided with a second docking member; A control device, the control device monitors the status and position of the cleaning cover assembly, the cleaning cover assembly, and the flip cover and controls their actions; The cleaning cover is configured to be assembled to the cleaning cover in a detachable manner so that the cleaning cover and the cleaning cover are assembled to form a The cleaning cover is combined with the cleaning hood to form a self-cleaning assembly. When the cleaning cover is combined with the cleaning cover, a cleaning cavity is formed between the cleaning cover and the cleaning cover, and the second cleaning mechanism is located inside the cleaning cavity. The second docking component is configured to dock with the first docking component in a detachable manner. When the cleaning cover on the moving part is combined with the cleaning cover and the second docking component is docked with the first docking component, the second cleaning mechanism cleans the cleaning cover and the first cleaning mechanism.
22. The intelligent toilet according to claim 21, characterized in that: The second cleaning mechanism includes at least one of a fixed nozzle and a moving nozzle.
23. The intelligent toilet according to claim 22, characterized in that: The motion nozzle is rotatably connected to the cleaning cover, a plurality of nozzles are arranged on the motion nozzle, and the motion nozzle is arranged to rotate while spraying and washing.
24. The intelligent toilet according to claim 21, characterized in that: The liquid supply assembly is connected with a pressurizing device.
25. The intelligent toilet according to claim 21, characterized in that: A drain pipe is provided at the lower part of the storage box, and sewage generated by the second cleaning mechanism cleaning the cleaning cover and the first cleaning mechanism is discharged from the storage box through the drain pipe.
26. An intelligent toilet, characterized in that: include: A toilet body, wherein the toilet body is provided with a toilet bowl area and a rotatable flap, and when the flap is closed, the flap covers the upper part of the toilet bowl area; A cleaning cover assembly, the cleaning cover assembly is arranged on the toilet body, the cleaning cover assembly includes a cleaning cover with an upper opening, and a moving part for driving the cleaning cover to move; the cleaning cover is arranged on the moving part, and a first cleaning mechanism is arranged inside the cleaning cover, when the moving part drives the cleaning cover to move so that the cleaning cover is arranged on a specific part of the user of the smart toilet, the first cleaning mechanism cleans the specific part of the user of the smart toilet; A storage box, the storage box is arranged at the rear or side of the toilet area, and the storage box is used to store the cleaning cover assembly; A cleaning cover assembly, the cleaning cover assembly is arranged in the storage box, the cleaning cover assembly includes at least one cleaning cover, and each cleaning cover is provided with a second cleaning mechanism; A liquid supply assembly, the liquid supply assembly is arranged in the storage box, the liquid supply assembly comprises at least one liquid supply pipeline, and the liquid supply pipeline is connected to the second cleaning mechanism; A control device, the control device monitors the status and position of the cleaning cover assembly, the cleaning cover assembly, and the flip cover and controls their actions; In which, the cleaning cover is configured to be combined with the cleaning cover in a detachable manner so that the cleaning cover and the cleaning cover are combined to form a self-cleaning assembly. When the cleaning cover is combined with the cleaning cover, a cleaning cavity is formed between the cleaning cover and the cleaning cover, and the second cleaning mechanism is located inside the cleaning cavity; when the cleaning cover on the moving part is combined with the cleaning cover, the cleaning cover and the first cleaning mechanism are cleaned by the second cleaning mechanism.
27. The intelligent toilet according to claim 26, characterized in that: The second cleaning mechanism includes at least one of a fixed nozzle and a moving nozzle.
28. The intelligent toilet according to claim 27, characterized in that: The motion nozzle is rotatably connected to the cleaning cover, a plurality of nozzles are arranged on the motion nozzle, and the motion nozzle is arranged to rotate while spraying and washing.
29. The intelligent toilet according to claim 26, characterized in that: The liquid supply assembly is connected with a pressurizing device.
30. The intelligent toilet according to claim 26, characterized in that: The liquid supply assembly is connected to a plurality of pipeline control valves, and the pipeline control valves are connected to the control device.
31. The intelligent toilet according to claim 26, characterized in that: A drain pipe is provided at the lower part of the storage box, and sewage generated by the second cleaning mechanism cleaning the cleaning cover and the first cleaning mechanism is discharged from the storage box through the drain pipe.
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