Water spraying and drying integrated cleaning device and pedestal pan
By integrating the water spray and drying components into the same telescopic housing and introducing a drive assembly and movable baffle design, the problem of mismatched positions of the water spray and drying devices in smart toilets is solved, achieving precise and rapid function switching and cleaning effect.
Patent Information
- Application Number
- CN202520020027.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-03
- Publication Date
- 2025-12-05
- Estimated Expiration
- 2035-01-03
AI Technical Summary
The existing smart toilets have mismatched positions for the water spray cleaning device and the drying device, resulting in poor drying effect, which fails to meet user needs. Furthermore, switching functions requires waiting, affecting efficiency and user experience.
The water spraying and drying components are integrated into the same telescopic housing, and their positions can be flexibly adjusted through a drive component. Combined with a movable baffle design and a self-cleaning module, the consistency and accuracy of the water spraying and drying positions are ensured.
It improves drying accuracy and efficiency, simplifies the function switching process, reduces the complexity and noise of the device, and enhances stability and user experience.
Smart Images

Figure CN223634048U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of cleaning devices, and more particularly to a water spraying and drying integrated cleaning device and a toilet. Background Technology
[0002] With the rapid development of smart home technology, smart toilets have become an important bathroom fixture in many homes and public places. Their water-washing function is technologically mature, significantly improving cleaning effectiveness and user experience after use. However, the drying function of smart toilets still has significant shortcomings in practical use, failing to meet user needs.
[0003] Currently, some products are equipped with retractable or adjustable air vents in an attempt to improve drying precision by directly blowing air onto the areas needing drying. However, because the water spray cleaning device in existing products is already installed in the center, the corresponding drying device can only be installed near one side to achieve airflow. Airflow from one side reduces drying precision and can cause localized overheating, reducing user comfort. For these reasons, many users still need to use paper towels to dry themselves or wait several minutes or even longer on the toilet for complete drying. After a water flush, when switching to the drying function in existing smart toilets, the control program requires the water spray bar to retract into the main unit before turning on the fan and heater, or waiting for the air outlet extension bar to extend before turning on the fan and heater. This process requires several seconds of waiting time for the user. These shortcomings seriously affect the efficiency and user experience of smart toilets, becoming a technical bottleneck that the industry urgently needs to address. Summary of the Invention
[0004] To address the aforementioned problems, this utility model provides an integrated water spraying and drying cleaning device. This solution integrates the water spraying component and the drying component, installing them within the same telescopic housing. This design not only simplifies the structure but also ensures that the water spraying and drying positions are consistent. When the user needs to switch between drying and cleaning functions, there is no need to adjust the telescopic rod, allowing for seamless function switching, thereby improving the accuracy and efficiency of drying.
[0005] To achieve the above objectives, the technical solution adopted by this utility model is as follows:
[0006] A water spray and drying integrated cleaning device includes:
[0007] The telescopic housing is provided with a receiving cavity, an air outlet communicating with the receiving cavity, and a water spray nozzle communicating with the receiving cavity;
[0008] A drying assembly is installed inside the receiving cavity, the drying assembly being used to supply air toward the air outlet;
[0009] The water spraying assembly is installed in the telescopic shell and accommodated in the accommodating cavity, and is used for spraying water towards the water outlet.
[0010] The driving assembly is connected with the telescopic shell, and is used for driving the telescopic shell to move.
[0011] Further, the movable baffle is hinged to the air outlet through the elastic member, the movable baffle is fixed with leakage-proof plates on both sides of the surface close to the air outlet, the movable baffle rotates around the rotating shaft, the projection area of the leakage-proof plates on the inner wall of the accommodating cavity is not zero, the movable baffle is opened under the action of the wind of the drying assembly, and the air outlet and the movable baffle form an inclined air outlet channel.
[0012] Further, the bottom of the movable baffle is formed with a first rotating shaft fitting cylinder, a plurality of second rotating shaft fitting cylinders are arranged at the edge of the air outlet, the movable baffle is assembled with the air outlet through the rotating shaft penetrating through the first rotating shaft fitting cylinder and the second rotating shaft fitting cylinder, and a limiting protrusion is arranged below the first rotating shaft fitting cylinder, so that the limiting protrusion is clamped and stopped at the edge of the air outlet to realize limiting when the first rotating shaft fitting cylinder rotates around the rotating shaft.
[0013] Further, the leakage-proof plates are provided with first connecting parts, the inner wall of the accommodating cavity is provided with second connecting parts, the elastic member is a return spring, and the two ends of the return spring are connected with the first connecting parts and the second connecting parts respectively.
[0014] Further, the self-cleaning module comprises a self-cleaning frame and cleaning water spraying holes arranged on the self-cleaning frame, the telescopic shell passes through the self-cleaning frame under the driving of the driving assembly, the self-cleaning module is communicated with the cleaning water spraying holes through the external water pipe, and the outer periphery of the telescopic shell is cleaned through the cleaning water spraying holes.
[0015] Further, the water spraying assembly comprises a water spraying head and a silica gel water pipe communicated with the water spraying head, the water spraying head is assembled in the accommodating cavity, one end of the silica gel water pipe is communicated with the input end of the water spraying head, and the other end of the silica gel water pipe extends to the outside of the telescopic shell.
[0016] Further, the telescopic shell is provided with a water pipe accommodating hole for the silica gel water pipe to pass out, and the water pipe accommodating hole is provided with a water pipe sealing rubber.
[0017] Further, the drying assembly comprises a drying fan and a heating member, and the surface of the heating member is provided with a water pipe accommodating groove for accommodating the silica gel water pipe; the drying fan and the heating member are accommodated in the accommodating cavity, the heating member is arranged between the drying fan and the air outlet, and the heating member is used for heating the air supplied by the drying fan, so that the air blown to the air outlet is hot air.
[0018] Further, the drying assembly further comprises an anti-vibration rubber sleeve, the anti-vibration rubber sleeve is sleeved outside the drying fan, and a motor cavity for placing the drying fan is arranged in the telescopic shell, and the inner wall of the motor cavity is provided with limiting ribs for clamping the upper and lower ends of the drying fan.
[0019] Further, the application further provides a toilet bowl comprising the water spraying and drying integrated cleaning device.
[0020] The application has the advantages that:
[0021] 1. The water spraying cleaning device and the drying device of the existing intelligent toilet are usually designed separately and do not match in position, resulting in poor drying effect, and the technical scheme integrates the water spraying assembly and the drying assembly together and installs them in the same telescopic shell. This design not only simplifies the structure, but also ensures that the positions of water spraying and drying are consistent, and when the user needs to switch the drying or cleaning function, the telescopic rod does not need to be adjusted, and the function can be seamlessly switched, thereby improving the accuracy and efficiency of drying.
[0022] 2. The drying device of the traditional intelligent toilet is fixed in position and is difficult to adapt to the drying needs of different users. The application introduces the telescopic shell and the driving assembly, and the technical scheme realizes flexible adjustment of the positions of the water spraying port and the air outlet. The user can adjust the extension length of the telescopic shell according to needs, thereby ensuring that the water spraying and drying effects are optimal. BRIEF DESCRIPTION OF DRAWINGS
[0023] Figure 1 is a whole structure schematic view of the water spraying and drying integrated cleaning device.
[0024] Figure 2 is a structure schematic view of the water spraying and drying integrated cleaning device without the driving assembly.
[0025] Figure 3 is a structure schematic view of internal devices of the telescopic shell.
[0026] Figure 4 is a structure schematic view of internal devices of the telescopic shell from another perspective.
[0027] Figure 5 is an internal structure schematic view of the telescopic shell.
[0028] Figure 6 is a structure schematic view of the heating piece.
[0029] Figure 7 is a structure schematic view of the movable baffle.
[0030] Figure 8 is a structure schematic view of the water spraying and drying integrated cleaning device without the driving assembly and the movable baffle.
[0031] Figure 9 is a structural schematic diagram of the movable baffle in an open state.
[0032] Figure 10 is another view of the structural schematic diagram of the movable baffle in an open state.
[0033] Explanation of reference numerals: 1, telescopic shell; 101, bidet nozzle; 102, anus washing nozzle; 11, drying fan; 12, shockproof rubber sleeve; 111, motor cavity; 1111, limiting rib; 112, air outlet; 113, accommodating cavity; 114, air outlet channel; 13, heating element; 131, water pipe accommodation groove; 14, wire outlet hole; 15, silica gel water pipe; 16, water spray head; 17, water pipe sealing glue; 18, movable baffle; 181, first rotating shaft fitting cylinder; 182, limiting lug; 183, leakage prevention plate; 184, first connecting part; 185, return spring; 186, second connecting part; 110, second rotating shaft fitting cylinder; 19, rotating shaft; 2, driving assembly; 3, self-cleaning module; 31, self-cleaning frame; 32, external water pipe. DETAILED DESCRIPTION
[0034] Please refer to Figures 1-10 The utility model relates to a water spraying and drying integrated cleaning device, which comprises a telescopic shell 1 provided with an accommodating cavity 113, an air outlet 112 communicating with the accommodating cavity 113, and a water spraying opening communicating with the accommodating cavity 113; a drying assembly installed in the accommodating cavity 113, which is used to supply air to the air outlet 112; a water spraying assembly installed in the telescopic shell 1 and accommodated in the accommodating cavity 113, which is used to spray water to the water spraying opening; and a driving assembly 2 connected with the telescopic shell 1, which is used to drive the telescopic shell 1 to move.
[0035] The water spraying cleaning device and the drying device of the existing intelligent toilet are usually designed separately and do not match in position, resulting in poor drying effect. The water spraying assembly and the drying assembly are integrated in the same telescopic shell 1 in the technical solution, which not only simplifies the structure but also ensures the consistency of the positions of water spraying and drying, thereby improving the accuracy and efficiency of drying.
[0036] The position of the drying device of the traditional intelligent toilet is fixed and difficult to adapt to the drying needs of different users. In the embodiment, the telescopic shell 1 and the driving assembly 2 are introduced, and the technical solution realizes flexible adjustment of the positions of the water spraying opening and the air outlet 112. The user can adjust the extension length of the telescopic shell 1 according to needs, thereby ensuring the best water spraying and drying effect.
[0037] The water spraying cleaning device and the drying device of the traditional intelligent toilet have complex structure and poor stability. The technical scheme optimizes the structure design, so that the water spraying and drying integrated cleaning device has compact structure and good stability. The components are closely matched, reducing vibration and noise, thereby improving the reliability and service life of the device.
[0038] Therefore, in the embodiment, the telescopic shell 1 can move forward and backward along the preset track of the driving assembly 2 under the action of the driving assembly 2 to meet the centering and accurate air outlet and water outlet positions, which is convenient to use. Meanwhile, in the specific embodiment, the telescopic shell 1 has a certain curvature, so that when the telescopic shell 1 is extended, the air outlet 112 has a proper distance from the seat cushion of the toilet bowl. Compared with the scheme in which the telescopic shell 1 adopts a straight pipe structure, the risk of high air outlet temperature due to the small distance between the air outlet 112 and the seat cushion of the toilet bowl is reduced, and the risk of burning the user's hips due to high air outlet temperature is reduced.
[0039] It can be understood that the cross-sectional shape (the shape of the accommodation cavity 113) of the telescopic shell 1 is not limited and can be set as needed, for example, it can be rectangular, trapezoidal or oval. In some embodiments, the telescopic shell 1 includes a first sub-shell and a second sub-shell, which are detachably connected to enclose the accommodation cavity 113 and the air outlet 112 communicating with the accommodation cavity 113, and the surface of the first sub-shell is provided with a water outlet communicating with the accommodation cavity 113.
[0040] The connection mode between the first sub-shell and the second sub-shell can be connecting each other along the thickness direction of the telescopic shell 1 to form the telescopic shell 1 (the structure of left and right shells), or connecting each other perpendicular to the thickness direction of the telescopic shell 1 (i.e., replacing the structure of upper and lower shells). It should be understood that the first sub-shell and the second sub-shell can be connected by snap fitting, and in the embodiment, ultrasonic welding process is preferably used, and glue bonding, bolt sealing and other methods can also be used, because the corresponding connection mode can effectively increase the sealing property of the shell to prevent external water from affecting the components in the shell.
[0041] Please refer to Figures 3-5 and Figure 7 As shown, further, the air outlet 112 is hinged with a movable baffle 18 by an elastic member, the movable baffle 18 is opened under the action of the air of the drying assembly, and the movable baffle 18 and the air outlet 112 form an inclined air outlet channel 114 (see Figures 9-10 ).
[0042] In the non-baking state, the movable baffle 18 can remain closed. This design effectively blocks sewage or other liquids from entering the receiving cavity 113 through the air outlet 112, thereby protecting the baking assembly and other electronic components in the receiving cavity 113 from damage. This function is crucial to ensure the long-term stable operation of the device. When the baking assembly is activated, the movable baffle 18 will be opened under the action of wind. At this time, an inclined upward air outlet channel 114 is formed between the movable baffle 18 and the air outlet 112. This design allows hot air to blow towards the target area in a more concentrated direction, improving the accuracy and efficiency of baking. Meanwhile, the inclined upward air outlet channel 114 helps hot air better contact the parts that need to be baked, further improving the baking effect. In addition, the hinged design of the movable baffle 18 also makes it easier to clean and maintain the device. Users can easily open or close the movable baffle 18 to clean or inspect the inside of the receiving cavity 113.
[0043] Please refer to Figure 7 As shown, further, the bottom of the movable baffle 18 is formed with a first rotating shaft fitting cylinder 181, and the edge of the air outlet 112 is provided with a plurality of second rotating shaft fitting cylinders 110. The movable baffle 18 is assembled with the air outlet 112 by rotating shaft 19 passing through the first rotating shaft fitting cylinder 181 and the second rotating shaft fitting cylinder 110, and the bottom of the first rotating shaft fitting cylinder 181 is provided with a limiting protrusion 182. When the first rotating shaft fitting cylinder 181 rotates around the rotating shaft 19, the limiting protrusion 182 is clamped and stopped at the edge of the air outlet 112 to achieve limiting.
[0044] In this specific embodiment, the movable baffle 18 is assembled with the air outlet 112 by rotating shaft 19 passing through the first rotating shaft fitting cylinder 181 and the second rotating shaft fitting cylinder 110. This assembly allows the movable baffle 18 to rotate around the rotating shaft 19 under the action of wind, thereby opening or closing the air outlet 112. Meanwhile, the bottom of the first rotating shaft fitting cylinder 181 is provided with a limiting protrusion 182. When the first rotating shaft fitting cylinder 181 rotates around the rotating shaft 19, the limiting protrusion 182 is clamped and stopped at the edge of the air outlet 112, thereby limiting the degree of opening of the movable baffle 18. This design ensures that the movable baffle 18 does not open excessively when opened, avoiding possible damage or affecting the baking effect. The movable baffle 18 is designed to have an openable maximum degree, and the presence of the limiting protrusion 182 allows the movable baffle 18 to maintain a suitable angle when opened, ensuring that hot air can be blown out smoothly, and avoiding problems caused by excessive opening (see Figures 9-10 ).
[0045] Please refer to Figure 7As shown, further, the movable baffle 18 is provided with leakage prevention plates 183 on both sides of the surface close to the air outlet 112. The movable baffle 18 rotates around the rotating shaft 19, and the projection area of the leakage prevention plates 183 on the inner wall of the accommodating cavity 113 is not zero.
[0046] The movable baffle 18 is provided with leakage prevention plates 183 on both sides of the surface close to the air outlet 112. These leakage prevention plates 183 are attached to the movable baffle 18 and are designed to solve the problem of air leakage that may occur when the movable baffle 18 is opened.
[0047] The leakage prevention principle is as follows: when the movable baffle 18 is rotated and opened around the rotating shaft 19, the leakage prevention plates 183 on both sides will move. Importantly, the projection area of these leakage prevention plates 183 on the inner wall of the accommodating cavity 113 is not zero, which means that they always partially block the side wall of the accommodating cavity 113, effectively preventing air from leaking out of the gap between the movable baffle 18 and the side wall of the accommodating cavity 113. The leakage prevention plates 183 should not completely exit the accommodating cavity 113 when the movable baffle 18 is opened. This is because if the projection area of the leakage prevention plates 183 on the inner wall of the accommodating cavity 113 is zero, i.e., the leakage prevention plates 183 completely leave the side wall of the accommodating cavity 113, there is a risk of air leakage. Keeping the leakage prevention plates 183 partially in the accommodating cavity 113 ensures that they always play a blocking and sealing role. Therefore, by setting the leakage prevention plates 183, air leakage can be reduced, and hot air can be more concentratedly blown to the target area. This not only improves the accuracy of drying, but also shortens the drying time, thereby improving the overall drying efficiency.
[0048] Please refer to Figure 7 As shown, further, the leakage prevention plates 183 are provided with first connecting parts 184, and the inner wall of the accommodating cavity 113 is provided with second connecting parts 186. The elastic member is a return spring 185, and both ends of the return spring 185 are connected to the first connecting parts 184 and the second connecting parts 186, respectively. In this specific embodiment, the leakage prevention plates 183 are provided with first connecting parts 184, and the inner wall of the accommodating cavity 113 is provided with second connecting parts 186. These two connecting parts provide mounting points for the return spring 185. When the drying assembly is started, the wind force overcomes the elastic force of the return spring 185, causing the movable baffle 18 to rotate and open around the rotating shaft 19. After the drying is completed, the return spring 185 releases the elastic potential energy and pulls the movable baffle 18 back to the closed state.
[0049] It should be understood that, in order to ensure that the elastic member can reliably work to achieve smooth opening and closing of the movable baffle 18, other embodiments can also be adopted, such as not providing the first connecting portion 184 and the second connecting portion 186, but directly sleeving a torsional spring on the rotating shaft 19. One end of the torsional spring is fixed to one end of the rotating shaft 19, and the other end is connected with the movable baffle 18. The working principle of the torsional spring is similar to that of the return spring 185. When the wind force overcomes the torque of the torsional spring, the movable baffle 18 rotates to open around the rotating shaft 19. After the drying is completed, the torsional spring releases the torque to pull the movable baffle 18 back to the closed state.
[0050] Further, the water spraying assembly includes the water nozzle 16 and the silica gel water pipe 15 in communication with the water nozzle 16. The water nozzle 16 is assembled in the accommodation cavity 113, and the output end of the water nozzle 16 is aligned with the water spraying port. One end of the silica gel water pipe 15 is in communication with the input end of the water nozzle 16, and the other end of the silica gel water pipe 15 extends out of the telescopic shell 1.
[0051] The water nozzle 16 is responsible for spraying water flow at a certain pressure and angle. In the present embodiment, the water nozzle 16 is assembled in the accommodation cavity 113, and the output end thereof is aligned with the water spraying port, so as to ensure that the water flow can be accurately sprayed out through the water spraying port. The water nozzle 16 has multiple input ends and multiple output ends, which makes it possible to process two or more kinds of water flow (such as washing the vagina and the buttocks, assisting defecation, etc.) at the same time, thereby improving the flexibility and practicability of the device. The silica gel water pipe 15 serves as a transmission channel for the water flow, and connects the input end of the water nozzle 16 and the external water spraying equipment. In the present embodiment, there are two silica gel water pipes 15 connected with the multiple input ends of the water nozzle 16, which extend out of the telescopic shell 1 so as to be connected with the external water spraying equipment. In the present embodiment, there are two water spraying ports corresponding to the vagina washing port 101 and the buttock washing port 102, which meet the different cleaning needs of users. The position and angle of the water spraying port are designed reasonably, so as to ensure that the water flow can be accurately sprayed to the target area. The external water spraying equipment is the source of the water flow, which can be a water equipment with the functions of constant temperature, pure water, filtration, etc. The processed water flow is delivered to the water nozzle 16 through the multiple silica gel water pipes 15 connected with the water spraying assembly. In the present embodiment, the silica gel water pipe 15 is designed to have sufficient length, so that the silica gel water pipe 15 can move along with the movement of the telescopic shell 1 without being limited in the telescopic range of the shell due to insufficient length. This design makes the device adapt to more different use scenarios and user needs, thereby improving the flexibility and practicability of the device.
[0052] When the user needs to use it, first start the external water spraying device, water flow through the silica gel water pipe 15 to the input end of the water spray head 16. Water spray head 16 according to the user's demand (such as washing or washing), the water distribution to the corresponding output end, and through the water jet with a certain pressure and angle. Users can adjust the intensity, temperature and duration of water spraying parameters according to the needs to obtain the best cleaning effect.
[0053] Please refer to Figures 1-5 As shown, further, the telescopic shell 1 is provided with a water pipe accommodating hole for the silica gel water pipe 15 to pass through, and the water pipe accommodating hole is provided with a water pipe sealing glue 17. Because the drying assembly needs to maintain a certain wind speed and temperature when working to ensure the drying effect. If there is a gap in the water pipe accommodating hole, the wind will leak out of the gap, resulting in reduced drying effect. By setting the water pipe sealing glue 17, the wind can be effectively prevented from leaking out of the gap, ensuring the normal work of the drying assembly. Moreover, the overall performance of the water spraying and drying integrated cleaning device depends on the cooperative work of each component. The setting of the water pipe sealing glue 17 ensures the sealing between the drying assembly and the water spraying assembly, improves the overall performance and reliability of the device.
[0054] Further, the drying assembly includes a drying fan 11 and a heating element 13, both of which are accommodated in the accommodating cavity 113. The heating element 13 is arranged at the air outlet end of the drying fan 11, and the heating element 13 is used to heat the air supplied by the drying fan 11, so that the air blown to the air outlet 112 is hot air.
[0055] In some embodiments, the drying assembly includes a drying fan 11 and a heating element 13, both of which are accommodated in the accommodating cavity 113. The heating element 13 is arranged at the air outlet end of the drying fan 11, and the heating element 13 is used to heat the air supplied by the drying fan 11, so that the air blown to the air outlet 112 is hot air. In this embodiment, the heating element 13 is a heating wire frame, which is composed of a frame body formed by connecting a plurality of heating plates and a cross-shaped shunt plate arranged in the middle of the frame body. The cross-shaped shunt plate helps to divide the air blown by the drying fan 11 and helps to uniformly supply air to the opening. In specific use, the heating wire frame generates heat after being powered on, and the air blown by the drying fan 11 is heated after passing through the heating wire frame, thereby realizing the supply of warm air to the air outlet 112 by the drying assembly. It should be understood that the heating element 13 can also have other shapes, which are not limited to the structure mentioned in this embodiment, as long as it can heat the air blown by the drying fan 11.
[0056] Further, the drying assembly further comprises an anti-vibration rubber sleeve 12, which is sleeved outside the drying fan 11, and the telescopic shell 1 is provided with a motor cavity 111 for placing the drying fan 11, wherein the inner wall of the motor cavity 111 is provided with limiting ribs 1111 for clamping the upper and lower ends of the drying fan 11.
[0057] The anti-vibration rubber sleeve 12 is used to reduce the risk of vibration of the telescopic shell 1 when the drying fan 11 is working, and the telescopic shell 1 is also conducive to reducing the risk of backflow of the drying fan 11 from the periphery of the air outlet 112. In this embodiment, the anti-vibration rubber sleeve 12 is made of silica gel. Of course, the anti-vibration rubber sleeve 12 can also be a ring-shaped body structure made of other materials with cushioning and shock-absorbing properties, such as foam, and is not limited to the silica gel mentioned in this embodiment. The limiting ribs 1111 can fix the position of the drying fan 11 to avoid deviation during work.
[0058] Please refer to Figure 6 As shown, further, the surface of the heating element 13 is provided with a water pipe positioning groove 131 for positioning the silica gel water pipe 15. The heating element 13 is a key component in the drying assembly, responsible for generating heat to dry the target area. The silica gel water pipe 15 is an important part of the water spraying assembly, responsible for conveying water flow. In a limited space, the heating element 13 and the silica gel water pipe 15 may conflict in position. The design of the water pipe positioning groove 131 is to solve this problem, to ensure that the heating element 13 and the silica gel water pipe 15 can work independently without interfering with each other. By providing the water pipe positioning groove 131, the space inside the device can be more reasonably utilized, so that the heating element 13 and the silica gel water pipe 15 can be compactly arranged together, thereby reducing the overall volume of the device. At the same time, in this embodiment, the silica gel water pipe 15 is high-temperature resistant, and can work normally even in a long-term high-temperature environment. The design of the water pipe positioning groove 131 can reduce the direct heat radiation of the heating element 13 to the silica gel water pipe 15 to some extent, thereby prolonging the service life of the water pipe.
[0059] In the embodiment of the water spraying and drying integrated cleaning device, the design of the wire outlet hole 14 and its matching sealing element provided in the telescopic shell 1 is a key detail to ensure the safety and reliability of the electrical connection of the device, and to prevent external moisture, dust and other impurities from entering the internal circuit. The following is a detailed analysis of this design:
[0060] The wire outlet hole 14 is mainly used to realize the electrical connection between the internal electrical components such as the drying fan 11 and the heating element 13 and the external circuit (such as power supply, control panel, etc.). Through the wire outlet hole 14, the wires of the internal components can be led out and connected with the external circuit, thereby ensuring the normal work of the device. During the cleaning process, the device may be in contact with water or other liquids, and there may be dust, dirt and other impurities in the environment. The role of the sealing element is to prevent these external substances from invading the inside of the device through the wire outlet hole 14, causing damage to the circuit or affecting the normal work of the device.
[0061] In the embodiment of the water spraying and drying integrated cleaning device, a high-speed fan (i.e. a brushless motor) is used as the drying fan 11 of the drying assembly. The use of a brushless motor allows for higher rotational speed compared to traditional ordinary motors, thereby enabling the generation of greater air volume. The increased air volume means that in the same drying time, the water in the target area can be removed faster, improving the drying efficiency.
[0062] Due to the increased air volume, the high-speed fan can more quickly blow hot air to the target area, causing the water to evaporate more quickly. This not only shortens the drying time, but also improves the drying effect, making the target area drier and cleaner. High-speed fans generally have a higher energy efficiency ratio, i.e. greater air volume per unit of energy consumption. This means that in the case of achieving the same drying effect, the high-speed fan consumes less electrical energy, reducing the operating cost of the device. Moreover, the noise generated by the brushless motor during operation is generally lower than that of traditional motors. Therefore, the drying assembly using a high-speed fan will be quieter during operation, improving the user's experience.
[0063] In addition, it should be particularly noted that the driving assembly 2 used in the present application is similar in structure to the conventional driving assembly 2 of the intelligent toilet on the market, so the specific structure of the driving assembly 2 is not described in detail in the present application.
[0064] Further, the present application provides a toilet comprising the water spraying and drying integrated cleaning device discussed above.
[0065] Furthermore, it should be noted that the self-cleaning module 3 is arranged around the outer periphery of the telescopic shell, and the self-cleaning module 3 is fixed to one end of the driving assembly 2 in this embodiment. The self-cleaning module 3 comprises a self-cleaning frame 31 and a cleaning water spraying hole arranged around the self-cleaning frame 31. The telescopic shell passes through the self-cleaning frame 31 under the drive of the driving assembly 2. The self-cleaning module 3 is in communication with the cleaning water spraying hole through an external water pipe 32, and cleans the outer periphery of the telescopic shell through the cleaning water spraying hole.
[0066] The following is a detailed description of the self-cleaning function of the driving assembly 2:
[0067] The self-cleaning module 3 frame body can be externally connected to a water pipe 32, through which a cleaning water source such as clean water or a special cleaning agent solution is introduced. The inner wall of the self-cleaning frame 31 is provided with a plurality of cleaning water spray holes, which are arranged at a specific size and angle to ensure that the cleaning water source can fully contact and wash the outer surface of the telescopic shell 1 with a certain degree when the telescopic shell 1 passes through the cleaning water spray hole.
[0068] Due to the arrangement of the cleaning water spray hole and the introduction of the cleaning water source, the telescopic shell 1 realizes automatic cleaning during movement without manual intervention. The design of such a self-cleaning function takes into account the sanitary needs of the device in actual use. Since the telescopic shell 1 directly contacts the external environment and may be contaminated with dirt or bacteria, cleaning each time it is used is crucial to maintaining the hygiene of the device. By introducing the self-cleaning module 3, the water spraying and drying integrated cleaning device of the present embodiment can automatically maintain the cleanliness of the telescopic shell 1 during daily use, reducing the frequency and difficulty of manual maintenance.
[0069] Another embodiment of the present application provides a toilet comprising the water spraying and drying integrated cleaning device in the above-mentioned embodiments. The toilet further comprises a body, a seat cushion arranged on the body, and a control module, the water spraying and drying integrated cleaning device is installed on the body, the water spraying and drying integrated cleaning device is connected with the control module, and the control module is used for controlling the water spraying and drying integrated cleaning device to work. Since the intelligent toilet is a mature product on the market, the water spraying and drying integrated cleaning device of the present application can be installed at the existing water spraying telescopic rod position of the intelligent toilet to replace the water spraying rod assembly and the drying assembly. The other functions and structures of the toilet are not described in detail in the present application since they are mature products.
[0070] The above embodiments only describe the preferred embodiments of the present application, and do not limit the scope of the present application. Without departing from the design spirit of the present application, any equivalent structure or equivalent process conversion, or direct or indirect application in other related technical fields or various modifications and improvements of the technical solutions of the present application made by ordinary engineering technicians in the field shall fall within the protection scope determined by the claims of the present application.
Claims
1. A water spray drying integrated cleaning device, characterized in that, The utility model relates to a water and drying integrated cleaning device, comprising: a telescopic shell provided with a receiving cavity, an air outlet communicated with the receiving cavity, and a water outlet communicated with the receiving cavity; a drying assembly installed in the receiving cavity, the drying assembly being configured to supply air to the air outlet; a water spraying assembly installed on the telescopic shell and accommodated in the receiving cavity, the water spraying assembly being configured to spray water to the water outlet; a driving assembly connected with the telescopic shell, the driving assembly being configured to drive the telescopic shell to move.
2. The integrated cleaning device of claim 1, wherein: The air outlet is hinged with a movable baffle through an elastic member, the movable baffle is fixed with leakage-proof plates on both sides of the surface close to the air outlet, the movable baffle rotates around a rotating shaft, the projection area of the leakage-proof plates on the inner wall of the receiving cavity is not zero, the movable baffle is opened under the action of the wind of the drying assembly, and an air outlet channel in the inclination direction is formed between the movable baffle and the air outlet.
3. The integrated cleaning device of claim 2, wherein: The bottom of the movable baffle is formed with a first rotating shaft fitting cylinder, a plurality of second rotating shaft fitting cylinders are arranged at the edge of the air outlet, the movable baffle is assembled with the air outlet through the rotating shaft penetrating through the first rotating shaft fitting cylinder and the second rotating shaft fitting cylinder, and a limiting protruding block is arranged below the first rotating shaft fitting cylinder to limit the rotation of the first rotating shaft fitting cylinder around the rotating shaft.
4. The integrated cleaning device of claim 3, wherein: The leakage-proof plates are provided with first connecting parts, the inner wall of the receiving cavity is provided with second connecting parts, the elastic member is a return spring, and the two ends of the return spring are connected with the first connecting parts and the second connecting parts, respectively.
5. The integrated cleaning device of claim 1, wherein: The utility model further comprises a self-cleaning module, the self-cleaning module comprises a self-cleaning frame and cleaning water spray holes arranged on the self-cleaning frame, the telescopic shell passes through the self-cleaning frame under the driving of the driving assembly, the self-cleaning module is communicated with the cleaning water spray holes through an external water pipe, and the outer periphery of the telescopic shell is cleaned through the cleaning water spray holes.
6. The integrated cleaning device of claim 1, wherein: The water spraying assembly comprises a water spray head and a silica gel water pipe communicated with the water spray head, the water spray head is assembled in the receiving cavity, one end of the silica gel water pipe is communicated with the input end of the water spray head, and the other end of the silica gel water pipe extends to the outside of the telescopic shell.
7. The integrated cleaning device of claim 6, wherein: The telescopic shell is provided with a water pipe accommodation hole through which the silica gel water pipe extends, and a water pipe sealing rubber is arranged at the water pipe accommodation hole.
8. The integrated cleaning device of claim 6, wherein: The drying assembly comprises a drying fan and a heating member, and the surface of the heating member is provided with a water pipe accommodation groove for accommodating the silica gel water pipe; the drying fan and the heating member are accommodated in the receiving cavity, the heating member is arranged between the drying fan and the air outlet, and the heating member is configured to heat the air supplied by the drying fan so that the air blown to the air outlet is hot air.
9. The integrated cleaning device of claim 8, wherein: The drying assembly further comprises an anti-vibration rubber sleeve, the anti-vibration rubber sleeve is sleeved on the outer side of the drying fan, and a motor cavity for placing the drying fan is arranged in the telescopic shell, wherein the inner wall of the motor cavity is provided with limiting ribs for clamping the upper and lower ends of the drying fan.
10. A toilet bowl characterized by The utility model relates to a water and drying integrated cleaning device, comprising: a telescopic shell provided with a receiving cavity, an air outlet communicated with the receiving cavity, and a water outlet communicated with the receiving cavity; a drying assembly installed in the receiving cavity, the drying assembly being configured to supply air to the air outlet; a water spraying assembly installed on the telescopic shell and accommodated in the receiving cavity, the water spraying assembly being configured to spray water to the water outlet; a driving assembly connected with the telescopic shell, the driving assembly being configured to drive the telescopic shell to move. The air outlet is hinged with a movable baffle through an elastic member, the movable baffle is fixed with leakage-proof plates on both sides of the surface close to the air outlet, the movable baffle rotates around a rotating shaft, the projection area of the leakage-proof plates on the inner wall of the receiving cavity is not zero, the movable baffle is opened under the action of the wind of the drying assembly, and an air outlet channel in the inclination direction is formed between the movable baffle and the air outlet. The bottom of the movable baffle is formed with a first rotating shaft fitting cylinder, a plurality of second rotating shaft fitting cylinders are arranged at the edge of the air outlet, the movable baffle is assembled with the air outlet through the rotating shaft penetrating through the first rotating shaft fitting cylinder and the second rotating shaft fitting cylinder, and a limiting protruding block is arranged below the first rotating shaft fitting cylinder to limit the rotation of the first rotating shaft fitting cylinder around the rotating shaft. The leakage-proof plates are provided with first connecting parts, the inner wall of the receiving cavity is provided with second connecting parts, the elastic member is a return spring, and the two ends of the return spring are connected with the first connecting parts and the second connecting parts, respectively. The utility model relates to a water and drying integrated cleaning device, comprising: a telescopic shell provided with a receiving cavity, an air outlet communicated with the receiving cavity, and a water outlet communicated with the receiving cavity; a drying assembly installed in the receiving cavity, the drying assembly being configured to supply air to the air outlet; a water spraying assembly installed on the telescopic shell and accommodated in the receiving cavity, the water spraying assembly being configured to spray water to the water outlet; a driving assembly connected with the telescopic shell, the driving assembly being configured to drive the telescopic shell to move. The air outlet is hinged with a movable baffle through an elastic member, the movable baffle is fixed with leakage-proof plates on both sides of the surface close to the air outlet, the movable baffle rotates around a rotating shaft, the projection area of the leakage-proof plates on the inner wall of the receiving cavity is not zero, the movable baffle is opened under the action of the wind of the drying assembly, and an air outlet channel in the inclination direction is formed between the movable baffle and the air outlet.