Cleaning device for closestool and intelligent closestool
By designing cleaning devices for toilets, including cleaning components, multiple cleaning pipelines and fluid adjustment components, the problem of single water-cleaning in smart toilets is solved, and the diversity of water-cleaning and user experience is improved.
Patent Information
- Application Number
- CN202420317688.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-02-20
- Publication Date
- 2025-05-13
- Estimated Expiration
- 2034-02-20
AI Technical Summary
The water spray device of the smart toilet is cleaned through direct spraying. The cleaning water is single and lacks diversity, which affects the user experience.
A cleaning device for toilets is designed, including a cleaning assembly, at least two cleaning pipes and a fluid regulation assembly, and different water splashes are formed through the liquid collecting part and the cleaning hole. The fluid regulation assembly controls the flow rate and output frequency of the cleaning liquid through a liquid pump and a solenoid valve to achieve the diversity of water splashes.
It enriches the types and changes of cleaning water splashes, improves the user experience, and provides a variety of cleaning methods such as rotating water splashes, direct spray water splashes and compound water splashes.
Smart Images

Figure CN222862446U_ABST
Abstract
Description
Technical Field
[0001] The present disclosure relates to the technical field of bathroom equipment, and in particular to a cleaning device for a toilet and an intelligent toilet. Background Art
[0002] With the development and progress of technology, the application of smart toilets is becoming more and more widespread. Smart toilets have the function of cleaning the user's body, for example, spraying and cleaning the user's buttocks or genitals. A water spray device is provided in the smart toilet, which can spray cleaning water to clean the user's body. In the related art, the water spray device of the smart toilet cleans by direct spraying, and the cleaning water spray is single.
[0003] It should be noted that the information disclosed in the above background technology section is only used to enhance the understanding of the background of the present disclosure, and therefore may include information that does not constitute the prior art known to ordinary technicians in the field. Summary of the invention
[0004] The purpose of the present disclosure is to provide a cleaning device for a toilet and a smart toilet, thereby improving the diversity of the cleaning splash of the smart toilet at least to a certain extent.
[0005] According to a first aspect of the present disclosure, there is provided a cleaning device for a toilet, the cleaning device comprising:
[0006] A cleaning component, wherein the cleaning component is provided with a liquid collecting portion and a first cleaning hole communicated with the liquid collecting portion;
[0007] At least two cleaning pipelines, the cleaning pipelines are connected to the liquid collecting part;
[0008] A fluid regulating assembly, wherein the fluid regulating assembly includes at least one fluid regulating device, wherein the at least one fluid regulating device is connected to one of the at least two cleaning pipelines to control the cleaning fluid flowing from the corresponding cleaning pipeline into the liquid collection part, wherein the cleaning fluid forms different water splashes through the liquid collection part and the first cleaning hole.
[0009] According to one embodiment of the present disclosure, the cleaning device comprises:
[0010] a first cleaning pipeline, the first cleaning pipeline being connected to the liquid collecting portion;
[0011] a first fluid regulating device, the first fluid regulating device being connected to the first cleaning pipeline to control the cleaning fluid flowing from the first cleaning pipeline into the liquid collecting portion;
[0012] A second cleaning pipeline is connected to the liquid collecting part.
[0013] According to one embodiment of the present disclosure, the cleaning device further includes:
[0014] A second fluid regulating device is connected to the second cleaning pipeline to control the cleaning fluid flowing from the second cleaning pipeline into the liquid collecting part.
[0015] According to one embodiment of the present disclosure, the first fluid regulating device includes:
[0016] a liquid pump, the liquid pump being connected to the first cleaning pipeline, the liquid pump being used to provide a cleaning liquid with a variable flow rate to the liquid collecting part or to open and close the first cleaning pipeline;
[0017] The second fluid regulating device comprises:
[0018] A solenoid valve is connected to the second cleaning pipeline, and the solenoid valve is used to open or close the second cleaning pipeline.
[0019] According to one embodiment of the present disclosure, the cleaning component comprises:
[0020] a first liquid collecting part, the first liquid collecting part being in communication with the first cleaning pipeline;
[0021] a second liquid collecting part, wherein the second liquid collecting part is in communication with the second cleaning pipeline;
[0022] The cleaning component is provided with a first cleaning hole, and the first liquid collecting part and the second liquid collecting part are connected to the first cleaning hole; the first cleaning hole can spray different water splashes according to the changes of the cleaning liquid flowing into the first liquid collecting part and / or the second liquid collecting part.
[0023] According to one embodiment of the present disclosure, the first liquid collecting part includes:
[0024] First base plate;
[0025] A first cofferdam, wherein the first cofferdam is disposed on a side of the first bottom plate close to the first cleaning hole, and the first cofferdam encloses a first liquid collecting cavity on the first bottom plate, and the first liquid collecting cavity is connected to the first cleaning pipeline;
[0026] A guide plate, wherein the guide plate is arranged in the first liquid collecting chamber, and the guide plate is used to form rotating water splashes.
[0027] The second liquid collecting part comprises:
[0028] a second bottom plate, the second bottom plate being arranged on a side of the first bottom plate away from the first cofferdam, with a gap between the second bottom plate and the first bottom plate;
[0029] The second cofferdam is arranged between the first bottom plate and the second bottom plate to form a second liquid collecting chamber between the first bottom plate and the second bottom plate, the second liquid collecting chamber is connected to the second cleaning pipeline, and the first bottom plate is provided with a liquid through hole.
[0030] According to one embodiment of the present disclosure, a plurality of guide plates are arranged in the first liquid collecting chamber, the plurality of guide plates form a guide chamber, a guide gap is formed between two adjacent guide plates, and the guide gap is used to allow the cleaning liquid to enter the guide chamber along a preset direction, thereby forming a rotating water splash.
[0031] According to one embodiment of the present disclosure, the cleaning device further includes:
[0032] A control module is connected to the fluid regulating component, and is used to control the fluid regulating component according to music characteristics to adjust the cleaning water splash.
[0033] According to one embodiment of the present disclosure, the control module includes:
[0034] A processing unit, the processing unit is used to generate a control signal according to the music characteristics;
[0035] A memory, the memory being connected to the processing unit;
[0036] A communication data interface, wherein the communication data is connected to the processing unit;
[0037] A driving circuit is connected to the processing unit and the fluid regulating component to drive the fluid regulating component under the control of the processing unit.
[0038] According to one embodiment of the present disclosure, the cleaning component further includes:
[0039] A cleaning rod is provided with a containing cavity inside the cleaning rod, and the first liquid collecting part and the second liquid collecting part are arranged in the containing cavity.
[0040] According to a second aspect of the present disclosure, a smart toilet is provided, comprising the above-mentioned cleaning device for a toilet.
[0041] The cleaning device for a toilet provided in an embodiment of the present disclosure includes a cleaning component, at least two cleaning pipes and a fluid regulating component, the cleaning component includes a liquid collecting portion and a first cleaning hole connected to the liquid collecting portion, the fluid regulating component includes at least one fluid regulating device, and the at least one fluid regulating device is connected to the at least two cleaning pipes to control the cleaning liquid flowing from the corresponding cleaning pipes into the liquid collecting portion. The cleaning liquid forms different splashes through the liquid collecting portion and the first cleaning hole, thereby enriching the cleaning splashes and improving the user experience.
[0042] It is to be understood that the foregoing general description and the following detailed description are exemplary and explanatory only and are not restrictive of the present disclosure. BRIEF DESCRIPTION OF THE DRAWINGS
[0043] The accompanying drawings herein are incorporated into the specification and constitute a part of the specification, illustrate embodiments consistent with the present disclosure, and together with the specification are used to explain the principles of the present disclosure. Obviously, the accompanying drawings described below are only some embodiments of the present disclosure, and for ordinary technicians in this field, other accompanying drawings can be obtained based on these accompanying drawings without creative work.
[0044] Figure 1 A schematic structural diagram of a cleaning device provided for an exemplary embodiment of the present disclosure;
[0045] Figure 2 A schematic structural diagram of a cleaning assembly provided for an exemplary embodiment of the present disclosure;
[0046] Figure 3 A schematic structural diagram of another cleaning assembly provided for an exemplary embodiment of the present disclosure;
[0047] Figure 4 A schematic block diagram of a control module provided for an exemplary embodiment of the present disclosure;
[0048] Figure 5 A schematic diagram of the flow of cleaning fluid in a first embodiment provided for an exemplary embodiment of the present disclosure;
[0049] Figure 6 A schematic diagram of the flow of cleaning fluid according to a second embodiment provided for an exemplary embodiment of the present disclosure;
[0050] Figure 7 A schematic diagram of the flow of cleaning fluid according to a third embodiment of the present disclosure;
[0051] Figure 8 A flow chart of a control method of a smart toilet provided for an exemplary embodiment of the present disclosure;
[0052] Fig. 9 A histogram of loudness of music provided by an exemplary embodiment of the present disclosure;
[0053] Fig.10 A schematic diagram of a second control signal provided for an exemplary embodiment of the present disclosure;
[0054] Fig.11 A schematic diagram of a first control signal provided for an exemplary embodiment of the present disclosure;
[0055] Fig.12A loudness graph corresponding to the frequency of music provided by an exemplary embodiment of the present disclosure;
[0056] Fig.13 Another loudness graph corresponding to the frequency of music provided by the exemplary embodiment of the present disclosure;
[0057] Fig.14 A schematic diagram of a computer-readable storage medium is provided for exemplary embodiments of the present disclosure.
[0058] In the figure:
[0059] 10. Cleaning assembly; 11. First liquid collecting section; 111. First bottom plate; 112. First cofferdam; 113. Guide plate; 12. Second liquid collecting section; 121. Second bottom plate; 122. Second cofferdam; 101. First cleaning hole; 102. Second cleaning hole; 21. First fluid regulating device; 22. First cleaning pipeline; 31. Second fluid regulating device; 32. Second cleaning pipeline; 40. Third pipeline; 50. Water inlet assembly; 60. Control module; 61. Processing unit; 62. Drive circuit; 63. Memory; 64. Communication data interface. DETAILED DESCRIPTION
[0060] The following will be combined with the accompanying drawings in the exemplary embodiments of the present disclosure to clearly and completely describe the technical solutions in the exemplary embodiments of the present disclosure. The exemplary embodiments described herein are only for illustrative purposes and are not intended to limit the scope of protection of the present disclosure. Therefore, it should be understood that various modifications and changes can be made to the exemplary embodiments without departing from the scope of protection of the present disclosure.
[0061] In the description of the present disclosure, unless otherwise clearly specified and limited, the terms "first" and "second" are used for descriptive purposes only and cannot be understood as indicating or implying relative importance; the term "plurality" refers to two or more; the term "and / or" includes any and all combinations of one or more associated listed items. In particular, reference to "the / the" object or "an" object is also intended to indicate one of a possible plurality of such objects.
[0062] Unless otherwise specified or explained, the terms "connection", "fixation", etc. should be understood in a broad sense. For example, "connection" can be a fixed connection, a detachable connection, an integral connection, an electrical connection, or a signal connection; "connection" can be a direct connection or an indirect connection through an intermediate medium. For those skilled in the art, the specific meanings of the above terms in this disclosure can be understood according to specific circumstances.
[0063] Further, in the description of the present disclosure, it should be understood that the directional words such as "upper", "lower", "inner", "outer" and the like described in the exemplary embodiments of the present disclosure are described at the angles shown in the accompanying drawings and should not be understood as limitations on the exemplary embodiments of the present disclosure. It should also be understood that, in the context, when it is mentioned that an element or feature is connected to another element (one or more) "upper", "lower", or "inner", "outer", it can not only be directly connected to the other (one or more) elements "upper", "lower", "inner", "outer", but also can be indirectly connected to the other (one or more) elements "upper", "lower", "inner", "outer" through an intermediate element.
[0064] The exemplary embodiment of the present disclosure first provides a cleaning device for a toilet, such as Figure 1 , Figure 2 and Figure 3 As shown, the cleaning device includes: a cleaning component 10, at least two cleaning pipelines and a fluid regulating component, wherein a liquid collecting portion and a first cleaning hole 101 connected to the liquid collecting portion are provided in the cleaning component 10; the cleaning pipeline is connected to the liquid collecting portion; the fluid regulating component includes at least one fluid regulating device, and the at least one fluid regulating device is connected to one of the at least two cleaning pipelines to control the cleaning liquid flowing from the corresponding cleaning pipeline into the liquid collecting portion, and the cleaning liquid forms different water splashes through the liquid collecting portion and the first cleaning hole.
[0065] Wherein, the fluid regulating component controls the cleaning liquid flowing from the corresponding cleaning pipeline into the liquid collecting part, including, for example, controlling the flow rate of the cleaning liquid, or the frequency of the output of the cleaning liquid, or shutting off the cleaning liquid of the corresponding cleaning pipeline, etc. The cleaning liquid may include a water flow, or the cleaning liquid includes a water flow containing other substances (such as cleaning agents, etc.). At least one fluid regulating device is connected to one of the at least two cleaning pipelines, which means that a fluid regulating device is provided on at least one cleaning pipeline.
[0066] The cleaning device for a toilet provided in the embodiment of the present disclosure includes a cleaning component 10, at least two cleaning pipelines and a fluid regulating component. The cleaning component 10 includes a liquid collecting portion and a first cleaning hole 101 connected to the liquid collecting portion. The fluid regulating component includes at least one fluid regulating device. The at least one fluid regulating device is connected to one of the at least two cleaning pipelines to control the cleaning liquid flowing from the corresponding cleaning pipeline into the liquid collecting portion. The cleaning liquid forms different splashes through the liquid collecting portion and the first cleaning hole, thereby enriching the cleaning splashes and improving the user experience.
[0067] Further, such as Figure 4As shown, the cleaning device provided by the embodiment of the present disclosure also includes a control module 60, which is connected to the fluid regulating component. The control module 60 is used to control the fluid regulating component according to the music characteristics to adjust the cleaning water splash. By controlling the fluid regulating component by the control module 60, the type of water splash of the cleaning device can be adjusted, and the cleaning rhythm and cleaning intensity of the water splash can be adjusted, thereby improving the user experience.
[0068] The following is a detailed description of each part of the cleaning device provided in the embodiment of the present disclosure:
[0069] In the embodiment of the present disclosure, the cleaning device includes a first cleaning pipeline 22 and a second cleaning pipeline 32 (two-way water splashes are mixed) for illustration, but there is no limitation on the number of cleaning pipelines or the number of water splashes. In the embodiment of the present disclosure, the number of cleaning pipelines can also be three, four, five, six or more.
[0070] The cleaning device includes a first cleaning pipeline 22, a first fluid regulating device 21 and a second cleaning pipeline 32. The first cleaning pipeline 22 is connected to the liquid collecting part; the first fluid regulating device 21 is connected to the first cleaning pipeline 22 to control the cleaning liquid flowing from the first cleaning pipeline 22 into the liquid collecting part; the second cleaning pipeline 32 is connected to the liquid collecting part to control the cleaning liquid flowing from the second cleaning pipeline 32 into the liquid collecting part.
[0071] In some embodiments, the cleaning device further includes a second fluid regulating device 31 , and the second fluid regulating device 31 is connected to the second cleaning pipeline 32 to control the cleaning fluid in the second cleaning pipeline 32 .
[0072] The cleaning assembly 10 includes a first liquid collecting part 11 and a second liquid collecting part 12, the first liquid collecting part 11 is connected to the first cleaning pipeline 22, the second liquid collecting part 12 is connected to the second cleaning pipeline 32, and a first cleaning hole 101 is provided on the cleaning assembly 10, the first liquid collecting part 11 and the second liquid collecting part 12 are connected to the first cleaning hole 101. The first cleaning hole 101 can spray different water splashes according to the changes of the cleaning liquid flowing into the first liquid collecting part 11 and / or the second liquid collecting part 12.
[0073] For example, the first liquid collecting part 11 is used to form a first water splash from the cleaning liquid provided by the first cleaning pipeline 22 and spray it from the first cleaning hole 101, and the second liquid collecting part 12 is used to form a second water splash from the cleaning liquid provided by the second cleaning pipeline 32 and spray it from the first cleaning hole 101. The first water splash and the second water splash are different.
[0074] The first cleaning pipeline 22 is connected to the first liquid collecting part 11; the first fluid regulating device 21 is connected to the first cleaning pipeline 22 to provide cleaning liquid to the first cleaning pipeline 22. The second cleaning pipeline 32 is connected to the second liquid collecting part 12; the second fluid regulating device 31 is connected to the second cleaning pipeline 32 to provide cleaning liquid to the second cleaning pipeline 32.
[0075] Among them, the first fluid regulating device 21 is a liquid pump (the liquid pump can linearly or approximately linearly control the amount of cleaning liquid passing through), and the second fluid regulating device 31 is a solenoid valve (the solenoid valve has two states, on and off. In the on state, the cleaning liquid can pass through the solenoid valve, and in the off state, the cleaning liquid cannot pass through the solenoid valve). The liquid pump is connected to the first cleaning pipeline 22, and the liquid pump is used to provide the first liquid collecting part 11 with cleaning liquid with a variable flow rate or to open and close the first cleaning pipeline 22. The solenoid valve is connected to the second cleaning pipeline 32, and the solenoid valve is used to open or close the second cleaning pipeline 32.
[0076] Of course, in practical applications, the first fluid regulating device 21 may also include a liquid pump and / or a solenoid valve, and the second fluid regulating device 31 may also include a liquid pump and / or a solenoid valve. On this basis, the first cleaning pipeline 22 and the second cleaning pipeline 32 can both realize the functions of shutting off and regulating the cleaning liquid and controlling the flow rate of the cleaning liquid.
[0077] The first cleaning pipeline 22 and the second cleaning pipeline 32 can be connected to the water inlet assembly 50, which can be a water tank or a connector for an external water source. The water inlet assembly 50 can have a water inlet and multiple water outlets, and the first cleaning pipeline 22 and the second cleaning pipeline 32 are respectively connected to a water outlet.
[0078] For example, the direction of the cleaning liquid in the embodiment of the present disclosure can be as follows: Figure 5 As shown, the cleaning liquid provided by the water inlet assembly 50 is divided into two paths, one path passes through the first cleaning pipeline 22, the liquid pump and the first liquid collecting part 11 and is sprayed from the first cleaning hole 101, and the other path passes through the second cleaning pipeline 32, the solenoid valve and the second liquid collecting part 12 and is sprayed from the first cleaning hole 101. Figure 6 As shown, the cleaning liquid provided by the water inlet assembly 50 is divided into two paths, one path passes through the first cleaning pipeline 22 and the first liquid collecting part 11 and is sprayed from the first cleaning hole 101, and the other path passes through the second cleaning pipeline 32, the solenoid valve and the second liquid collecting part 12 and is sprayed from the first cleaning hole 101. Figure 7 As shown, the cleaning liquid provided by the water inlet assembly 50 is divided into two paths, one path passes through the first cleaning pipeline 22, the liquid pump and the first liquid collecting part 11 and is sprayed from the first cleaning hole 101, and the other path passes through the second cleaning pipeline 32 and the second liquid collecting part 12 and is sprayed from the first cleaning hole 101.
[0079] The first cleaning pipeline 22 includes a first pipeline section and a second pipeline section, the first pipeline section connects the water inlet assembly 50 and the first fluid regulating device 21, and the second pipeline section connects the first fluid regulating device 21 and the first liquid collecting part 11. The second cleaning pipeline 32 includes a third pipeline section and a fourth pipeline section, the third pipeline section connects the water inlet assembly 50 and the second fluid regulating device 31, and the fourth pipeline section connects the second fluid regulating device 31 and the second liquid collecting part 12.
[0080] The cleaning assembly 10 includes a cleaning rod, a first liquid collecting part 11 and a second liquid collecting part 12. A receiving cavity is provided in the cleaning rod, and the first liquid collecting part 11 and the second liquid collecting part 12 are provided in the receiving cavity. A first cleaning hole 101 is provided on the cleaning rod, and the first liquid collecting part 11 and the second liquid collecting part 12 are connected to the first cleaning hole 101, and the cleaning liquid in the first liquid collecting part 11 and the second liquid collecting part 12 can be sprayed out through the first cleaning hole 101.
[0081] The accommodating chamber in the cleaning rod may include a first accommodating section and a second accommodating section, the first accommodating section and the second accommodating section are connected, the first liquid collecting section 11 and the second liquid collecting section 12 are arranged in the first accommodating section, and the second accommodating section is used to accommodate at least part of the first cleaning pipeline 22 and the second cleaning pipeline 32.
[0082] The cleaning rod can be formed by connecting a first shell and a second shell, the first shell is provided with a first pit, and the second shell is provided with a second pit, when the first shell and the second shell are connected, the first pit and the second pit form a receiving cavity. The first cleaning hole 101 is provided in the first shell, and the first cleaning hole 101 passes through the first shell, or the first cleaning hole 101 is provided in the second shell, and the first cleaning hole 101 passes through the second shell.
[0083] In the embodiment disclosed herein, the first water splash is a rotating water splash and the second water splash is a direct spray water splash. However, the first water splash and the second water splash are not limited to rotating water splash and direct spray water splash, and the water splash can also be mist water splash, intermittent water splash or contraction water splash.
[0084] The first liquid collecting part 11 and the second liquid collecting part 12 are stacked, and the first liquid collecting part 11 is arranged on the side of the second liquid collecting part 12 close to the first cleaning hole 101. A liquid guide structure is arranged in the first liquid collecting part 11, and the liquid guide structure is used to convert the cleaning liquid provided by the first cleaning pipeline 22 into a rotating water splash. The second liquid collecting part 12 is connected to the first liquid collecting part 11, and the direct spray water splash formed by the second liquid collecting part 12 is sprayed from the first cleaning hole 101 through the first liquid collecting part 11.
[0085] The first liquid collecting part 11 includes a first bottom plate 111, a first cofferdam 112 and a guide plate 113. The first cofferdam 112 is arranged on one side of the first bottom plate 111 close to the first cleaning hole 101, and the first cofferdam 112 forms a first liquid collecting cavity on the first bottom plate 111. The first liquid collecting cavity is connected to the first cleaning pipeline 22. The guide plate 113 is arranged in the first liquid collecting cavity, and the guide plate 113 is used to form rotating water splashes.
[0086] For example, the first cofferdam 112 can be a rectangular cofferdam, and the first cofferdam 112 includes a first enclosure, a second enclosure, a third enclosure, and a fourth enclosure connected end to end. The first enclosure, the second enclosure, the third enclosure, and the fourth enclosure are an integrally molded structure. The first bottom plate 111 and the first cofferdam 112 are an integrally molded structure. For example, the first cofferdam 112 and the first bottom plate 111 can be integrally molded by injection molding, or the first cofferdam 112 and the first bottom plate 111 can be split molding structures. Of course, in actual applications, the first cofferdam 112 can also be other shapes, for example, the first cofferdam 112 is a circular cofferdam or an elliptical cofferdam, etc., and the embodiments of the present disclosure are not limited thereto.
[0087] A plurality of guide plates 113 are arranged in the first liquid collecting chamber, and the plurality of guide plates 113 form a guide chamber, and a guide gap is formed between two adjacent guide plates 113, and the guide gap is used to allow the cleaning liquid to enter the guide chamber along a preset direction, thereby forming a rotating water splash. For example, the plurality of guide plates 113 form a circular or approximately circular guide chamber, and the cleaning liquid sprayed from the first cleaning pipeline 22 flows in the area between the guide plates 113 and the first cofferdam 112, that is, the cleaning liquid flows around the guide structure formed by the guide plates 113, and when flowing around the guide structure, it enters the guide chamber through the gap between the guide plates 113, and at this time, the cleaning liquid entering the guide chamber rotates in the guide chamber, and as the guide liquid further flows in, the rotating water flow sprays out from the first cleaning hole 101, forming a rotating water splash.
[0088] It is understandable that, in the disclosed embodiment, the first liquid collecting part 11 is not limited to passively generating rotating water splashes. Actively rotating blades may be provided in the first liquid collecting part 11, and rotating water splashes are formed in the first liquid collecting part 11 by the rotation of the blades, and the rotating water splashes are ejected through the first cleaning hole 101. For example, a micro motor is provided in the first liquid collecting part 11, and the micro motor is connected to the blades, and the blades are driven to rotate by the micro motor, thereby forming a rotating water splash.
[0089] The second liquid collecting part 12 includes a second bottom plate 121 and a second cofferdam 122. The second bottom plate 121 is arranged on the side of the first bottom plate 111 away from the first cofferdam 112, and there is a gap between the second bottom plate 121 and the first bottom plate 111; the second cofferdam 122 is arranged between the first bottom plate 111 and the second bottom plate 121 to form a second liquid collecting chamber between the first bottom plate 111 and the second bottom plate 121, the second liquid collecting chamber is connected to the second cleaning pipeline 32, and a liquid through hole is provided on the first bottom plate 111.
[0090] In a feasible implementation, the second cofferdam 122 is connected to the first bottom plate 111, for example, the second cofferdam 122 and the first bottom plate 111 are integrally formed. The second cofferdam 122 abuts against the second bottom plate 121, and the second cofferdam 122 and the second bottom plate 121 are sealed, for example, a sealing ring is provided between the second cofferdam 122 and the second bottom plate 121, and the sealing between the second cofferdam 122 and the second bottom plate 121 is achieved by the sealing ring.
[0091] In another feasible embodiment, the second cofferdam 122 is connected to the second bottom plate 121, for example, the second cofferdam 122 and the second bottom plate 121 are integrally formed. The second cofferdam 122 abuts against the first bottom plate 111, and the second cofferdam 122 and the first bottom plate 111 are sealed, for example, a sealing ring is provided between the second cofferdam 122 and the first bottom plate 111, and the sealing of the second cofferdam 122 and the first bottom plate 111 is achieved through the sealing ring.
[0092] It should be noted that, in the disclosed embodiment, the second bottom plate 121 may be an independent flat plate or a structure similar to a flat plate. Alternatively, the second bottom plate 121 may be shared with the bottom wall of the cleaning rod, that is, the second cofferdam 122 is provided on the bottom wall of the cleaning rod.
[0093] It is understandable that the structure of the first liquid collecting part 11 and the second liquid collecting part 12 in the embodiment of the present disclosure is not limited to a stacked structure. For example, the first liquid collecting part 11 and the second liquid collecting part 12 may also be a flat structure. The first liquid collecting part 11 is arranged on the side of the second liquid collecting part 12, and the projection of the first liquid collecting part 11 on the side of the cleaning rod where the first cleaning hole 101 is arranged covers part of the first cleaning hole 101, and the projection of the second liquid collecting part 12 on the side of the cleaning rod where the first cleaning hole 101 is arranged covers part of the first cleaning hole 101. Thereby, the rotating water splash of the first liquid collecting part 11 and the direct spray water splash of the second liquid collecting part 12 can be sprayed out from the first cleaning hole 101 at the same time.
[0094] The control module 60 is a fluid regulating component, and the control module 60 is used to control the fluid regulating component according to the music characteristics to adjust the cleaning water splash. Among them, the control module 60 can obtain the audio characteristics of the music when the smart toilet is working, and the music is ambient music or music played by the smart toilet; generate at least one control signal according to the audio characteristics; use the control signal to control the fluid regulating component, and then form different water splashes through the cleaning component.
[0095] In the embodiment of the present disclosure, the music feature may include one or more of loudness, frequency and music score of the music. When the audio feature includes loudness, generating the first control signal and the second control signal according to the audio feature may include: generating the first control signal according to the loudness of the music, the duty cycle of the first control signal is positively correlated with the loudness of the music; and generating the second control signal when the loudness of the music is greater than a preset loudness threshold.
[0096] The duty cycle of the first control signal can control the flow rate of the cleaning liquid in the first cleaning pipeline 22. The larger the duty cycle of the first control signal, the greater the flow rate of the cleaning liquid in the first cleaning pipeline 22. When the flow rate of the cleaning liquid is greater, the dispersion degree of the rotating water splash is higher, that is, as the loudness of the music increases, the dispersion degree of the water splash increases. The second control signal is a solenoid valve conduction level signal, for example, a high level signal.
[0097] It is understandable that in other feasible implementations, the duty cycle of the first control signal may also be negatively correlated with the loudness of the music. For example, the larger the duty cycle of the first control signal, the greater the flow rate of the cleaning liquid in the first cleaning pipeline 22. When the flow rate of the cleaning liquid is greater, the dispersion degree of the rotating water splash is higher, that is, as the loudness of the music decreases, the dispersion degree of the water splash increases.
[0098] When the audio features include frequency and loudness, generating the first control signal and the second control signal according to the audio features includes: generating the first control signal according to the loudness of music in a preset frequency band, wherein the duty cycle of the first control signal is positively correlated with the loudness of the music in the preset frequency band; and generating the second control signal when the loudness of the music in the preset frequency band is greater than a preset loudness threshold.
[0099] The preset frequency band represents a specific sound in the music. For example, when the preset frequency band is 60Hz-150Hz, the preset frequency band represents the drum beats in the music. In practical applications, the preset frequency band may also be a human voice frequency band, etc., and the embodiments of the present disclosure are not limited thereto.
[0100] When the audio feature includes a music score, the music score includes at least one first rhythm segment and / or at least one second rhythm segment, and a first control signal and a second control signal are generated according to the audio feature, including: when the current music is the first rhythm segment, generating the first control signal; when the current music is the second rhythm segment, generating the second control signal.
[0101] The first rhythm section may be a slow-paced part of the music score, for example, the first rhythm section may be a prelude, an interlude, an ending, etc. The first rhythm section is cleaned by rotating water spray, and the duty cycle of the first control signal may be adjusted according to the loudness of the music during cleaning, thereby adjusting the dispersion of the rotating water spray. The second rhythm section is a cheerful part of the music score, for example, the second rhythm section may be the main song part, and the second rhythm section is cleaned by direct spraying water spray.
[0102] In the disclosed embodiment, when the water inflow of the rotating water circuit (first cleaning pipeline 22) is greater than that of the direct flushing water circuit (second cleaning pipeline 32), the water inflow ratio of the rotating water circuit is continuously increased, and the water splash spreads larger; the water inflow ratio of the direct flushing water circuit is greater than that of the rotating water circuit, and the water inflow ratio of the direct flushing water circuit is continuously increased, the water splash shrinks, and finally turns into columnar water; adjusting the water inflow ratio between the two can achieve a stepless change from columnar water to scattered water. After the rotating water circuit is connected to the series-connected solenoid valve, the rapid switching of the solenoid valve can allow the water splash to quickly switch between scattered water and a column of water. When the direct flushing water circuit is connected to the series-connected liquid pump, controlling the working duty cycle of the liquid pump can also allow the water splash to change in the range of scattered water, which is suitable for expressing the beat part and climax part of the music, and is suitable for the main song, the lead song, and the chorus part. When the rotating water circuit is connected to the series-connected liquid pump, controlling the working duty cycle of the liquid pump can allow the water splash to change in the range of scattered water, and output softly changing water splashes. It is suitable for expressing the prelude, interlude, bridge, and coda parts in music.
[0103] For example, the control module 60 may be presented in the form of a controller, a microcontroller, or an intelligent terminal. Figure 4 As shown, the control module 60 may include but is not limited to: the at least one processing unit 61 (MCU) mentioned above, the at least one memory 63 mentioned above, the communication data interface 64 and the driving circuit 62. The processing unit 61 is used to generate a control signal according to the music characteristics; the memory 63 is connected to the processing unit 61; the communication data interface 64 is connected to the processing unit 61; the driving circuit 62 is connected to the processing unit 61 and the fluid regulating component to drive the fluid regulating component under the control of the processing unit 61.
[0104] The storage unit has a program code, which can be executed by the processing unit 61, so that the processing unit 61 executes the steps according to various exemplary embodiments of the present invention described in the above "Exemplary Method" section of this specification. The driving circuit 62 connects the processing unit 61 and the execution unit (such as a solenoid valve or a liquid pump, etc.), and the driving circuit 62 drives the execution unit to act.
[0105] The memory 63 may include a readable medium in the form of a volatile memory unit, such as a random access memory unit (RAM) and / or a cache memory unit, and may further include a read-only memory unit (ROM).
[0106] Memory 63 may also include a program / utility having a set (at least one) of program modules, such program modules including but not limited to: an operating system, one or more application programs, other program modules, and program data, each of which or some combination may include an implementation of a network environment.
[0107] The control module 60 may also communicate with one or more external devices (e.g., keyboards, pointing devices, Bluetooth devices, etc.), may also communicate with one or more devices that enable a user to interact with the control component, and / or communicate with any device that enables the control component to communicate with one or more other computing devices (e.g., routers, modems, etc.). Such communication may be performed via an input / output (I / O) interface. Furthermore, the control component may also communicate with one or more networks (e.g., local area networks (LANs), wide area networks (WANs), and / or public networks, such as the Internet) via a network adapter. The network adapter communicates with other modules of the control component via a bus. It should be understood that, although not shown in the figure, other hardware and / or software modules may be used in conjunction with the control component, including but not limited to: microcode, device drivers, redundant processing units, external disk drive arrays, RAID systems, tape drives, and data backup storage systems.
[0108] In the embodiment of the present disclosure, the first cleaning hole 101 on the cleaning rod is used to clean the user's anus after the user goes to the toilet. In practical applications, the cleaning device can also be used to clean female genitals. On this basis, the cleaning rod is further provided with a second cleaning hole 102, and the cleaning device includes a third pipeline 40, which is connected to the second cleaning hole 102.
[0109] The cleaning device for a toilet provided in the embodiment of the present disclosure includes a cleaning component 10, at least two cleaning pipelines and a fluid regulating component. The cleaning component 10 includes a liquid collecting portion and a first cleaning hole 101 connected to the liquid collecting portion. The fluid regulating component includes at least one fluid regulating device. The at least one fluid regulating device is connected to one of the at least two cleaning pipelines to control the cleaning liquid flowing from the corresponding cleaning pipeline into the liquid collecting portion. The cleaning liquid forms different splashes through the liquid collecting portion and the first cleaning hole, thereby enriching the cleaning splashes and improving the user experience.
[0110] The exemplary embodiments of the present disclosure also provide a smart toilet, which includes a cleaning device for the toilet.
[0111] Among them, the cleaning device includes a cleaning component 10, at least two cleaning pipelines and a fluid regulating component. The cleaning component 10 is provided with a liquid collecting part and a first cleaning hole 101 connected to the liquid collecting part; the cleaning pipeline is connected to the liquid collecting part; the fluid regulating component includes at least one fluid regulating device, and the fluid regulating device is connected to the cleaning pipeline to control each cleaning pipeline to form different water splashes through the liquid collecting part and the first cleaning hole 101.
[0112] Furthermore, the smart toilet provided by the embodiment of the present disclosure may also include a barrel body and a barrel cover, the barrel cover and the barrel body are hinged, the cleaning device is connected to the barrel cover, and the cleaning rod and the barrel cover may be slidably connected. That is, the cleaning rod can be retracted relative to the cover. A music playing device may be provided on the barrel body or the barrel cover, the music playing device is connected to the control module 60, and the control module 60 obtains the music played by the music playing device and controls the cleaning device according to the music characteristics.
[0113] The smart toilet provided by the embodiment of the present disclosure includes a cleaning device, in which the cleaning component 10 includes a liquid collecting part and a first cleaning hole 101 connected to the liquid collecting part, and the fluid regulating component includes at least one fluid regulating device, and the fluid regulating device is connected to the cleaning pipeline to control each cleaning pipeline to form different water splashes through the liquid collecting part and the first cleaning hole 101, so that the cleaning device can provide a variety of water splashes, enrich the cleaning water splashes, and improve the user experience.
[0114] The exemplary embodiment of the present disclosure also provides a control method of a smart toilet. Figure 8 The control method of the smart toilet comprises the following steps:
[0115] Step S110, when the smart toilet is working, obtaining audio features of music, where the music is ambient music or music played by the smart toilet;
[0116] Step S120, generating at least one control signal according to the audio feature;
[0117] Step S130, using a control signal to control the fluid regulating assembly so that each cleaning pipeline forms different water splashes through the liquid collecting portion and the first cleaning hole.
[0118] The control method of the smart toilet provided by the embodiment of the present disclosure obtains the audio characteristics of music, generates at least one control signal according to the audio characteristics, and uses the control signal to control the fluid regulating component so that each cleaning pipeline forms different water splashes through the liquid collecting part and the first cleaning hole, so that the smart toilet can provide direct spray water splashes, rotating water splashes and compound water splashes, enriching the cleaning water splashes and improving the user experience.
[0119] The following is a detailed description of each step of the control method of the smart toilet provided by the embodiment of the present disclosure:
[0120] In step S110, when the smart toilet is working, the audio characteristics of the music are obtained, and the music is ambient music or music played by the smart toilet.
[0121] The operation of the smart toilet can be understood as the smart toilet performing a cleaning task, for example, detecting that the user has finished using the toilet, or receiving a cleaning instruction from the user, etc. The user's cleaning instruction can be implemented by the user through a button (physical button or touch screen, etc.) on the smart toilet, or the user instruction can also be a voice command (the smart toilet is provided with a voice recognition module), or the user instruction can also be issued by a terminal device connected to the smart toilet (such as a mobile phone or tablet computer, etc.).
[0122] The music is ambient music or music played by the smart toilet. When the music is ambient music (for example, music played by the user through a terminal device such as a mobile phone), a microphone and a voice recognition device may be integrated in the smart toilet to receive the music in the environment through the microphone and recognize the music through the voice recognition device. When the music is music played by the smart toilet, the music features may be obtained by directly obtaining the music signal from the control module 60 of the smart toilet. The music features may include one or more of loudness, frequency, and music score. Of course, in actual applications, the audio features may also include other features, and the embodiments of the present disclosure are not limited thereto.
[0123] In step S120, at least one control signal is generated according to the audio feature.
[0124] For example, the control signal may include a first control signal and a second control signal. Of course, in practical applications, the number of control signals may be one or more, and the embodiments of the present disclosure are not limited thereto. When the audio feature includes loudness, generating the first control signal and the second control signal according to the audio feature may be implemented as follows: generating the first control signal according to the loudness of the music, the duty cycle of the first control signal being related to the loudness of the music; and generating the second control signal when the loudness of the music is greater than a preset loudness threshold.
[0125] In step S130, the fluid regulating assembly is controlled by a control signal so that each cleaning pipeline forms different water splashes through the liquid collecting portion and the first cleaning hole.
[0126] For example, the fluid regulating assembly includes a first fluid regulating device 21 and a second fluid regulating device 31 , the first control signal controls the first fluid regulating device 21 , and the second control signal controls the second fluid regulating device 31 .
[0127] The first fluid regulating device 21 includes a liquid pump, which is a linear control device. That is, the flow rate of the cleaning liquid through the first cleaning pipeline 22 is related to the duty cycle of the first control signal that controls the liquid pump. The greater the duty cycle of the first control signal, the greater the flow rate of the first cleaning pipeline 22. The dispersion (wide angle) of the rotating water splash generated by the first liquid collecting part 11 is proportional to the flow rate of the first cleaning pipeline 22. Therefore, by correlating the duty cycle of the first control signal with the loudness of the music (positive correlation or negative correlation), the dispersion of the rotating water splash can be adjusted according to the loudness of the music.
[0128] For example, there is a control mapping relationship between the loudness of the music and the duty cycle of the first control signal, and the mapping relationship is stored in a storage unit in the smart toilet. The control mapping relationship can be a linear function, a nonlinear function, or a piecewise function of the loudness of the music and the first control signal. For example, the duty cycle of the first control signal can be proportional or inversely proportional to the loudness of the music.
[0129] The second fluid regulating device 31 includes a solenoid valve, which has an on state and an off state. When the solenoid valve receives a second control signal, the solenoid valve switches from the off state to the on state. After the second cleaning pipeline 32 is connected, the second liquid collecting part 12 forms a direct spray of water and sprays out from the first cleaning hole 101.
[0130] When the loudness of the music is greater than a preset threshold, a second control signal is generated, and the second control signal is transmitted to the solenoid valve in the second fluid regulating device 31, and the solenoid valve is turned on in response to the second control signal. For example, the preset threshold may be 40 dB, and when the loudness of the music is greater than 40 dB, a high-level second control signal is generated. Fig. 9 , Fig.10 and Fig.11 , Fig. 9 The horizontal axis is time, and the vertical axis is loudness. Fig.10 The horizontal axis is time, and the vertical axis is level. When the loudness of the music is greater than 40dB, a high-level signal (second control signal) is generated. Fig.11 The horizontal axis is time, and the vertical axis is the duty cycle of the first control signal. The duty cycle of the first control signal is positively correlated with the loudness. Of course, in practical applications, when the conduction level of the solenoid valve is low, the second control signal can also be a low-level signal, and the embodiments of the present disclosure do not specifically limit this.
[0131] When the audio features include frequency and loudness, generating the first control signal and the second control signal according to the audio features can be achieved in the following manner: generating the first control signal according to the loudness of music in a preset frequency band, wherein the duty cycle of the first control signal is related to the loudness of the music in the preset frequency band; and generating the second control signal when the loudness of the music in the preset frequency band is greater than a preset loudness threshold.
[0132] The preset frequency band represents a specific sound in the music. For example, when the preset frequency band is 60Hz-150Hz, the preset frequency band represents the drum beats in the music. In practical applications, the preset frequency band may also be a human voice frequency band, etc., and the embodiments of the present disclosure are not limited thereto.
[0133] The first fluid regulating device 21 includes a liquid pump, which is a linear control device. That is, the flow rate of the cleaning liquid through the first cleaning pipeline 22 is related to the duty cycle of the first control signal that controls the liquid pump. The larger the duty cycle of the first control signal, the larger the flow rate of the first cleaning pipeline 22. The dispersion (wide angle) of the rotating water splash generated by the first liquid collecting part 11 is proportional to the flow rate of the first cleaning pipeline 22. Therefore, by correlating the duty cycle of the first control signal with the loudness of the music in the preset frequency band (positive correlation or negative correlation), the dispersion of the rotating water splash can be adjusted according to the loudness of the music in the preset frequency band.
[0134] For example, there is a control mapping relationship between the loudness of the music in the preset frequency band and the duty cycle of the first control signal, and the mapping relationship is stored in a storage unit in the smart toilet. The control mapping relationship can be a linear function or a nonlinear function of the loudness of the music in the preset frequency band and the first control signal. For example, the duty cycle of the first control signal can be proportional or inversely proportional to the loudness of the music in the preset frequency band.
[0135] The second fluid regulating device 31 is provided with a solenoid valve, which has an on state and an off state. When the solenoid valve receives a second control signal, the solenoid valve switches from the off state to the on state. After the second cleaning pipeline 32 is connected, the second liquid collecting part 12 forms a direct spray of water and sprays out from the first cleaning hole 101.
[0136] When the loudness of the music in the preset frequency band is greater than the preset threshold, a second control signal is generated, and the second control signal is transmitted to the solenoid valve in the second fluid regulating device 31, and the solenoid valve is turned on in response to the second control signal. For example, the preset threshold may be 40dB, and when the loudness of the music in the preset frequency band is greater than 40dB, a high-level second control signal is generated. Fig.12 and Fig.13 In the figure, the horizontal axis is frequency, the vertical axis is loudness, and the preset frequency band is 60Hz-150Hz. Fig.12 The loudness of the 60Hz-150Hz frequency band is greater than 40dB, and the second control signal (high level signal) is output. Fig.13 The loudness in the 60Hz-150Hz frequency band is less than 40dB, and the second control signal (high level signal) is output from time to time, and a low level signal is output.
[0137] When the audio feature includes a music score, the music score includes at least one first rhythm segment and / or at least one second rhythm segment, and generating a first control signal and a second control signal according to the audio feature can be achieved in the following way: when the current music is the first rhythm segment, generating the first control signal; when the current music is the second rhythm segment, generating the second control signal.
[0138] The music score is divided into one or more first rhythm sections and one or more second rhythm sections according to a preset rule. In the first rhythm section, the first cleaning pipeline 22 works, and the second cleaning pipeline 32 does not work. In the second rhythm section, the second cleaning pipeline 32 works, and the first cleaning pipeline 22 does not work.
[0139] The first rhythm section can be a slow-paced part of the music score, for example, the first rhythm section can be a prelude, an interlude, an ending, etc. In the first rhythm section, the water spray is used for cleaning, and the duty cycle of the first control signal can be adjusted according to the loudness of the music during cleaning, thereby adjusting the dispersion of the rotating water spray. The second rhythm section is a cheerful part of the music score, for example, the second rhythm section can be the main song part, and the water spray is used for cleaning in the second rhythm section.
[0140] In the first rhythm section, the duty cycle of the first control signal controlling the first fluid regulating device 21 may also be variable. For example, the duty cycle of the first control signal may be controlled according to the frequency band and loudness of the current music, and the duty cycle of the first control signal may be positively correlated or negatively correlated with the loudness of the music.
[0141] When segmenting a score, the score can be separated according to the features such as the notes, key signatures, rhythms, beats, intervals and bar lines in the score, and the first rhythm segment and the second rhythm segment in the score can be determined. The time values corresponding to the notes can be determined by the features such as the notes, key signatures, rhythms, beats, intervals and bar lines in the score, and the time value of the rhythm segment (such as a measure) formed by one or more notes can be determined according to the time value of a single note. When the time value of the current rhythm segment is greater than a preset threshold, the rhythm segment is determined to be the first rhythm segment (soothing segment); when the time value of the current rhythm segment is less than or equal to the preset threshold, the rhythm segment is determined to be the second rhythm segment (cheerful segment).
[0142] It is understandable that in the embodiment of the present disclosure, the division of the first rhythm segment and the second rhythm segment in the music score can also be achieved through manual calibration, artificial intelligence calibration, etc., and the embodiment of the present disclosure is not limited to this.
[0143] Furthermore, in some other embodiments, the music score may also include a third rhythm segment, in which the first control signal and the second control signal are generated simultaneously, that is, in the third rhythm segment, the first cleaning pipeline 22 and the second cleaning pipeline 32 work simultaneously, and the water splash sprayed by the cleaning rod includes a composite water splash formed by a direct spray water splash and a rotating water splash.
[0144] It should be noted that, although the steps of the method in the present disclosure are described in a specific order in the drawings, this does not require or imply that the steps must be performed in this specific order, or that all the steps shown must be performed to achieve the desired results. Additionally or alternatively, some steps may be omitted, multiple steps may be combined into one step, and / or one step may be decomposed into multiple steps, etc.
[0145] The control method of the smart toilet provided by the embodiment of the present disclosure obtains the audio characteristics of music, generates at least one control signal according to the audio characteristics, and uses the control signal to control the fluid regulating component so that each cleaning pipeline forms different water splashes through the liquid collecting part and the first cleaning hole, so that the smart toilet can provide direct spray water splashes, rotating water splashes and compound water splashes, enriching the cleaning water splashes and improving the user experience.
[0146] refer to Fig.14 As shown, a program product 500 for implementing the above method according to an embodiment of the present disclosure is described, which can adopt a portable compact disk read-only memory 63 (CD-ROM) and include program code, and can be run in a terminal, such as a control module 60 of a smart toilet. However, the program product of the present disclosure is not limited thereto, and in this document, a readable storage medium can be any tangible medium containing or storing a program, which can be used by or in combination with an instruction execution system, an apparatus or a device.
[0147] The program product may employ any combination of one or more readable media. The readable medium may be a readable signal medium or a readable storage medium. The readable storage medium may be, for example, but not limited to, an electrical, magnetic, optical, electromagnetic, infrared, or semiconductor system, device or device, or any combination of the above. More specific examples of readable storage media (a non-exhaustive list) include: an electrical connection with one or more wires, a portable disk, a hard disk, a random access memory 63 (RAM), a read-only memory 63 (ROM), an erasable programmable read-only memory 63 (EPROM or flash memory), an optical fiber, a portable compact disk read-only memory 63 (CD-ROM), an optical storage 63 piece, a magnetic storage 63 piece, or any suitable combination of the above.
[0148] Computer readable signal media may include data signals propagated in baseband or as part of a carrier wave, in which readable program code is carried. Such propagated data signals may take a variety of forms, including but not limited to electromagnetic signals, optical signals, or any suitable combination of the above. Readable signal media may also be any readable medium other than a readable storage medium, which may send, propagate, or transmit a program for use by or in conjunction with an instruction execution system, apparatus, or device.
[0149] The program code embodied on the readable medium may be transmitted using any appropriate medium, including but not limited to wireless, wired, optical cable, RF, etc., or any suitable combination of the foregoing.
[0150] Program code for performing the operations of the present invention may be written in any combination of one or more programming languages, including object-oriented programming languages such as Java, C++, etc., and conventional procedural programming languages such as "C" or similar programming languages. The program code may be executed entirely on the user computing device, partially on the user device, as a separate software package, partially on the user computing device and partially on a remote computing device, or entirely on a remote computing device or server. In cases involving a remote computing device, the remote computing device may be connected to the user computing device through any type of network, including a local area network (LAN) or a wide area network (WAN), or may be connected to an external computing device (e.g., through the Internet using an Internet service provider).
[0151] In addition, the above-mentioned figures are only schematic illustrations of the processes included in the method according to an exemplary embodiment of the present invention, and are not intended to be limiting. It is easy to understand that the processes shown in the above-mentioned figures do not indicate or limit the time sequence of these processes. In addition, it is also easy to understand that these processes can be performed synchronously or asynchronously, for example, in multiple modules.
[0152] Those skilled in the art will readily appreciate other embodiments of the present disclosure after considering the specification and practicing the invention disclosed herein. This application is intended to cover any modification, use or adaptation of the present disclosure, which follows the general principles of the present disclosure and includes common knowledge or customary techniques in the art that are not disclosed in the present disclosure. The specification and examples are intended to be exemplary only, and the true scope and spirit of the present disclosure are indicated by the appended claims.
Claims
1. A cleaning device for a toilet, characterized in that: The cleaning device comprises: A cleaning component, wherein the cleaning component is provided with a liquid collecting portion and a first cleaning hole communicated with the liquid collecting portion; At least two cleaning pipelines, the cleaning pipelines are connected to the liquid collecting part; A fluid regulating assembly, wherein the fluid regulating assembly includes at least one fluid regulating device, wherein the at least one fluid regulating device is connected to one of the at least two cleaning pipelines to control the cleaning fluid flowing from the corresponding cleaning pipeline into the liquid collection part, wherein the cleaning fluid forms different water splashes through the liquid collection part and the first cleaning hole.
2. The cleaning device according to claim 1, characterized in that: The cleaning device comprises: a first cleaning pipeline, the first cleaning pipeline being connected to the liquid collecting portion; a first fluid regulating device, the first fluid regulating device being connected to the first cleaning pipeline to control the cleaning fluid flowing from the first cleaning pipeline into the liquid collecting portion; A second cleaning pipeline is connected to the liquid collecting part.
3. The cleaning device according to claim 2, characterized in that: The cleaning device also includes: A second fluid regulating device is connected to the second cleaning pipeline to control the cleaning fluid flowing from the second cleaning pipeline into the liquid collecting part.
4. The cleaning device according to claim 3, characterized in that: The first fluid regulating device comprises: a liquid pump, the liquid pump being connected to the first cleaning pipeline, the liquid pump being used to provide a cleaning liquid with a variable flow rate to the liquid collecting part or to open and close the first cleaning pipeline; The second fluid regulating device comprises: A solenoid valve is connected to the second cleaning pipeline, and the solenoid valve is used to open or close the second cleaning pipeline.
5. The cleaning device according to claim 2, characterized in that: The cleaning component comprises: a first liquid collecting part, the first liquid collecting part being in communication with the first cleaning pipeline; a second liquid collecting part, wherein the second liquid collecting part is in communication with the second cleaning pipeline; The cleaning component is provided with a first cleaning hole, and the first liquid collecting part and the second liquid collecting part are connected to the first cleaning hole; the first cleaning hole can spray different water splashes according to the changes of the cleaning liquid flowing into the first liquid collecting part and / or the second liquid collecting part.
6. The cleaning device according to claim 5, characterized in that: The first liquid collecting part comprises: First base plate; A first cofferdam, wherein the first cofferdam is disposed on a side of the first bottom plate close to the first cleaning hole, and the first cofferdam encloses a first liquid collecting cavity on the first bottom plate, and the first liquid collecting cavity is connected to the first cleaning pipeline; A guide plate, the guide plate is arranged in the first liquid collecting chamber, and the guide plate is used to form a rotating water splash; The second liquid collecting part comprises: a second bottom plate, the second bottom plate being arranged on a side of the first bottom plate away from the first cofferdam, with a gap between the second bottom plate and the first bottom plate; The second cofferdam is arranged between the first bottom plate and the second bottom plate to form a second liquid collecting chamber between the first bottom plate and the second bottom plate, the second liquid collecting chamber is connected to the second cleaning pipeline, and the first bottom plate is provided with a liquid through hole.
7. The cleaning device according to claim 6, characterized in that: A plurality of guide plates are arranged in the first liquid collecting chamber, the plurality of guide plates enclose a guide chamber, a guide gap is formed between two adjacent guide plates, and the guide gap is used to allow the cleaning liquid to enter the guide chamber along a preset direction, thereby forming a rotating water splash.
8. The cleaning device according to claim 1, characterized in that: The cleaning component also includes: A cleaning rod is provided with a containing cavity inside the cleaning rod, and the liquid collecting part is arranged in the containing cavity.
9. A smart toilet, characterized in that: The smart toilet includes the cleaning device for a toilet as described in any one of claims 1-8.