Handheld body cleaner

By designing a handheld cleaner with control module, the problem of squat toilet users lacking convenient water washing and cleaning solutions is solved, and accurate water washing and drying is achieved, improving user experience and convenience.

CN222968448UActive Publication Date: 2025-06-13TOUYI TECH (DONGGUAN) CO LTD
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Patent Information

Application Number
CN202422016851.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-19
Publication Date
2025-06-13
Estimated Expiration
2034-08-19

AI Technical Summary

Technical Problem

Squat toilet users lack convenient and sanitary water washing and cleaning solutions. The existing smart toilet has accuracy problems with the warm air drying design. Some smart toilets only provide warm water flushing without warm air drying function.

Method used

A hand-held body cleaner is designed, including a cleaner main unit and a handle, which is connected through a composite pipe. The handle is equipped with a control module to adjust the water outlet volume and air outlet temperature. It is built-in constant pressure valve, flow regulating valve, instant heat module and hot air module to ensure comfortable water temperature and effective drying.

Benefits of technology

It realizes precise washing and drying of body parts, simplifies the operation process, improves convenience and comfort, is suitable for squat toilet users, and provides a better drying experience.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN222968448U_ABST
    Figure CN222968448U_ABST
Patent Text Reader

Abstract

The utility model relates to the field of body cleaners, in particular to a handheld body cleaner which comprises a cleaner main machine and a cleaner handle, the cleaner main machine is communicated with the cleaner handle through a composite pipe, and a control module used for controlling the water yield and the air outlet temperature is arranged on the cleaner handle. A constant pressure valve, a flow adjusting valve, an instant heating module, a hot air module and a main control module are arranged in the cleaning main machine, the input end of the constant pressure valve is connected with an external water pipe, the output end of the constant pressure valve is communicated with the instant heating module through the flow adjusting valve, the instant heating module outputs hot water to the composite pipe, and meanwhile an air outlet of the hot air module is communicated with the composite pipe. The main control module is electrically connected with the flow adjusting valve, the instant heating module and the hot air module, and the main control module achieves power supply and data transmission through a control cable penetrating through the composite pipe and the handle control module. And meanwhile, the control module is arranged on the cleaning handle, so that the use process is greatly simplified, and the convenience is improved.
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Description

Technical Field

[0001] The utility model relates to the field of body cleaners, especially a handheld body cleaner. Background Art

[0002] In many Asian and Southeast Asian countries, traditional personal hygiene habits include using water to clean after urination and defecation instead of using toilet paper. This practice is considered to be not only more effective in cleaning but also able to reduce the occurrence of anorectal diseases, such as hemorrhoids. In these regions, the use of toilet paper is not widespread, and many toilets are equipped with simple wall flush pipes or hanging sprinklers or similar facilities for water washing, but usually without the function of water temperature adjustment, let alone the function of warm air drying.

[0003] With the gradual popularization of smart toilets, more and more people around the world have begun to accept and get used to the lifestyle of washing with water after using the toilet. However, although the way of using water washing has many health benefits, this habit is mainly limited to the environment of using sit-down toilets. For squat toilet users, such sanitary facilities often lack modern cleaning equipment. Squat toilets are still very common in many countries, especially in public places and family public bathrooms. Therefore, the main problem faced by squat toilet users is the lack of convenient and hygienic water washing and cleaning solutions.

[0004] Although the smart toilets on the market at present provide advanced water washing functions, including warm water rinsing and warm air drying, most of the designs of the warm air drying outlets cannot accurately align with the body parts that need to be dried, resulting in poor drying effects. Some smart toilets simply only provide the warm water rinsing function without the warm air drying function. Content of the Utility Model

[0005] To solve the above problems, the utility model provides a handheld body cleaner, which can accurately control the water outlet and air outlet, and the handheld handle facilitates the user to align the body parts that need to be rinsed or dried by himself, can efficiently realize body rinsing and drying, and at the same time, a control module is arranged on the cleaning handle, so that the user does not need to operate at a position far away from the handle, greatly simplifies the use process and improves the convenience. The inclined air outlet and water outlet designs are more in line with the human body's usage habits, making the cleaning process more comfortable.

[0006] To achieve the above object, the technical solution adopted by the utility model is: a handheld body cleaner, including a cleaner main body and a cleaner handle, wherein the cleaner main body is communicated with the cleaner handle through a composite pipe, and a control module for controlling the water output and the air outlet temperature is arranged on the cleaning handle;

[0007] The cleaning host is internally provided with a constant pressure valve, a flow regulating valve, an instant heating module, a hot air module, and a main control module. The input end of the constant pressure valve is connected to an external water pipe, and the output end of the constant pressure valve is communicated with the instant heating module through the flow regulating valve. The instant heating module outputs hot water to a composite pipe, and at the same time, the air outlet of the hot air module is communicated with the composite pipe. The main control module is electrically connected to the flow regulating valve, the instant heating module, and the hot air module respectively, and the main control module realizes power supply and data transmission with the control module through a control cable passing through the composite pipe.

[0008] Furthermore, a water inlet temperature sensor is arranged at the water inlet end of the instant heating module, and a water outlet temperature sensor is arranged at the water outlet end of the instant heating module. The water inlet temperature sensor and the water outlet temperature sensor transmit temperature signals to the main control module.

[0009] Furthermore, the hot air module includes a fan module and a heating module. The heating module is arranged at the air outlet of the fan module, and an air outlet temperature sensor is also arranged at the air outlet of the fan module. The fan module, the heating module, and the air outlet temperature sensor all realize data transmission with the main control module.

[0010] Furthermore, the cleaning host further includes a host shell. An outer surface of a host bottom plate installed against the wall in the host shell is provided with a wire slot that can be set up and down bidirectionally. A power interface electrically connected to the main control module is arranged at the wire slot. At the same time, a power cord is arranged at the wire slot, and the power cord is connected to the power interface.

[0011] Furthermore, a first backplane bracket is further included. The host bottom plate is further provided with a first wall surface mounting slot, and the first backplane bracket is clamped in the first wall surface mounting slot. A first buckle portion is arranged at an edge of the first wall surface mounting slot, and a second clamping portion corresponding to the first buckle portion is further arranged at a side of the first backplane bracket. The first backplane bracket is assembled with the first buckle portion of the first wall surface mounting slot through the second clamping portion.

[0012] Furthermore, the second clamping portion is a bevel structure, and its thickness increases sequentially from top to bottom. At the same time, a plurality of first clamping protrusions are arranged on surfaces of the second clamping portions on both sides of the first backplane bracket, and first clamping slots are arranged at corresponding positions of the first buckle portion. When the second clamping portion is clamped at the first buckle portion, the first clamping protrusions cooperate with the first clamping slots.

[0013] Furthermore, a humidity sensor electrically connected to the main control module is arranged inside the input end of the composite pipe.

[0014] Furthermore, a filter and a microbubble generator are further included. The output end of the filter is connected to the input end of the microbubble generator, and the output end of the microbubble generator is connected to the input end of the constant pressure valve.

[0015] Furthermore, the cleaner handle includes a handle body; an oblique air outlet and an oblique water outlet are arranged on the surface of the handle body; independent water outlet channels and air outlet channels are arranged in the handle body, wherein the composite pipe includes an air outlet pipe, a water outlet pipe, and a control cable, wherein the air outlet pipe is directly sleeved on the output end of the heating cylinder, that is, the water outlet end of the heat module is connected with the water outlet channel through the water outlet pipe, the main control module is communicated with the control module through the control cable, and the air outlet of the fan module is connected with the air outlet channel through the air outlet pipe.

[0016] Furthermore, the control cable and the water outlet pipe are both built inside the air outlet pipe, and the control cable and the water outlet pipe are wrapped by a nylon braided layer or a heat shrink tube or a winding tape, wherein a clearance hole is opened at the output end of the heating cylinder, and the clearance hole is used to facilitate the insertion of the control cable and the water outlet pipe.

[0017] The beneficial effect of the utility model is that the control module is integrated into the handle, and the user can easily adjust the water output and air outlet temperature, which greatly simplifies the operation process and makes the use process smoother and more convenient. The instant heating module ensures that the water outlet temperature is always comfortable. Even in the cold winter, users can enjoy a warm cleaning experience and avoid the discomfort caused by cold water. The addition of the hot air module allows users to choose warm air for drying after cleaning, further improving the comfort and satisfaction of use.

[0018] Compared with traditional toilet paper, using water flow for cleaning can clean more effectively, reduce bacterial growth, and improve personal hygiene. The flow adjustment function allows users to flexibly adjust the flushing force according to the different cleaning parts, whether it is gentle cleaning or deep cleaning, it can achieve the ideal cleaning effect. At the same time, this solution takes into account the needs of squat toilet users, fills the gap in cleaning solutions for this user group in the market, and brings them a convenient and hygienic post-processing cleaning experience. At the same time, this solution can bring a better drying experience to toilet users.

[0019] In this application, a flow regulating valve is introduced into the water circuit system of the main unit of the cleaner, and the flow regulating valve can adjust the water flow according to the instruction of the control module. Through electronic control and adjustment, the user can increase or decrease the required amount of water. In the air circuit system of the hot air module, the air outlet temperature can also be controlled by electronic control and adjustment by changing the heating power of the heating module to meet the different needs of users. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] Figure 1 It is a schematic diagram of the internal structure of the cleaner host.

[0021] Figure 2 It is a schematic diagram of the structure of the cleaner handle.

[0022] Figure 3It is a schematic diagram of the principle of the lower wire routing method for the mainframe bottom plate.

[0023] Figure 4 It is a schematic diagram of the principle of the upper wire routing method for the mainframe bottom plate.

[0024] Figure 5 It is a schematic cross-sectional view of the upper wire routing method for the mainframe bottom plate.

[0025] Figure 6 It is a schematic structural diagram of the first backplane bracket.

[0026] Figure 7 It is a schematic structural diagram of the second backplane bracket.

[0027] Figure 8 It is a schematic structural diagram of the bottom of the cleaner main body.

[0028] Explanation of the reference numerals in the drawings: Cleaner main body 1, Constant pressure valve 11, Flow regulating valve 12, Instant heating module 13, Inlet water temperature sensor 131, Outlet water temperature sensor 132, Fan module 14, Heating module 15, Outlet air temperature sensor 151, Heating cylinder 152, Relief hole 153, Main control module 16, Main body housing 17, Wire slot 171, Power cord 172, Mainframe bottom plate 173, First backplane bracket 101, Second backplane bracket 102, First wall mounting slot 103, Second wall mounting slot 104, Wall 105, First buckle part 1031, Second clamping part 1011, First clamping protrusion 1012, First clamping slot 1032, Second buckle part 1021, Third clamping part 1041, Control cable 18, Outlet water pipe 19, Outlet air pipe 3, Cleaner handle 2, Control module 21, Obliquely arranged air outlet 22, Obliquely arranged water outlet 23, Water inlet 31, Air inlet 32, Composite pipe outlet 33. Specific implementation mode

[0029] Please refer to Figure 1-4 As shown in the figure, the present utility model relates to a body handheld cleaner, including a cleaner main body 1 and a cleaner handle 2. The cleaner main body 1 is connected to the cleaner handle 2 through a composite pipe, and a control module 21 for controlling the water output and the outlet air temperature is arranged on the cleaner handle. The cleaner main body is internally provided with a constant pressure valve 11, a flow regulating valve 12, an instant heating module 13, a hot air module, and a main control module 16. The input end of the constant pressure valve 11 is connected to an external water pipe, and the output end of the constant pressure valve 11 is connected to the instant heating module 13 through the flow regulating valve 12. The instant heating module 13 outputs hot water to the composite pipe, and at the same time, the air outlet of the hot air module is connected to the composite pipe. The main control module 16 is electrically connected to the flow regulating valve 12, the instant heating module 13, and the hot air module respectively, and the main control module 16 supplies power and transmits data to the control module 21 (a control button in this specific embodiment) through the control cable 18 passing through the composite pipe.

[0030] Integrate the control module 21 on the handle, so that users can easily adjust the water output and air outlet temperature without bending down or turning around, greatly simplifying the operation process and making the use process smoother and more convenient. The instant heating module 13 ensures that the water outlet temperature is always comfortable. Even in the cold winter, users can enjoy a warm and clean experience, avoiding the discomfort caused by cold water. The addition of the hot air module allows users to choose warm air for drying after cleaning, further enhancing the comfort and satisfaction of use.

[0031] Using water flow for cleaning can clean more effectively than traditional toilet paper, reduce bacteria growth, and improve personal hygiene. The flow rate adjustment function allows users to flexibly adjust the flushing intensity according to different cleaning parts. Whether it is gentle cleaning or deep cleaning, ideal cleaning effects can be achieved. At the same time, this solution takes into account the usage needs of squat toilet users, and then designs corresponding solutions to fill the gap in the cleaning solutions for this user group in the market, bringing them a convenient and hygienic post-treatment cleaning experience. At the same time, this solution can bring a better drying experience to sitting toilet users.

[0032] At the same time, the precise control of the constant pressure valve 11 and the flow regulating valve 12 effectively reduces the waste of water resources, conforming to the concept of water conservation. The instant heating module 13 and the hot air module adopt high-efficiency designs, reducing energy consumption. In the long run, it can effectively save electricity expenses and reduce the impact on the environment. The waterproof and anti-electric leakage designs ensure the safety of users during use, allowing them to use it with confidence even in a humid environment. The use of high-quality materials and easy-to-clean designs makes the cleaner more durable, reducing maintenance costs and failure rates during use.

[0033] In this application, a flow regulating valve 12 is introduced into the water circuit system of the cleaner host. The flow regulating valve 12 can adjust the water flow according to the instructions of the control module 21. Through electronic control adjustment, users can increase or decrease the required water volume. In the air circuit system of the hot air module, similarly, through electronic control adjustment, by changing the heating power of the heating module, the air outlet temperature can be controlled to meet different needs of users. Specifically, there is a "+" and "-" adjustment button on the handle. In the water washing state, the water flow can be adjusted, and in the warm air drying mode, the temperature of the warm air can be adjusted.

[0034] As a specific solution for discussion, a water inlet temperature sensor 131 is provided at the water inlet end of the instant heating module 13, and a water outlet temperature sensor 132 is provided at the water outlet end of the instant heating module 13. The water inlet temperature sensor 131 and the water outlet temperature sensor 132 transmit temperature signals to the main control module 16. The water inlet temperature sensor 131 can monitor the water temperature entering the instant heating module 13 in real time to ensure that the instant heating module 13 has an accurate understanding of the water inlet temperature before heating. The water outlet temperature sensor 132 monitors the water temperature after heating to ensure that the water outlet temperature always remains within the comfortable range set by the user. The data of these two sensors are jointly transmitted to the main control module 16, enabling the main control module 16 to more precisely control the heating power and time to achieve constant temperature water output.

[0035] The user can set the ideal water outlet temperature through the control module 21 (corresponding temperature adjustment buttons can be set at the host). The instant heating module 13 will make real-time adjustments according to the feedback of the water inlet temperature and the water outlet temperature sensor 132 to ensure that the water outlet temperature always meets the user's setting. This avoids the discomfort caused by too high or too low water temperature and improves the comfort and satisfaction of the user during use. The real-time monitoring of the water inlet temperature sensor 131 and the water outlet temperature sensor 132 helps prevent safety problems caused by too high water temperature. If the water outlet temperature rises abnormally, the main control module 16 can immediately cut off the power supply to prevent accidents such as scalding. Through precise temperature control, the instant heating module 13 can use energy more efficiently for heating, reducing unnecessary energy consumption. This not only helps reduce the long-term use cost but also conforms to the concept of energy conservation and environmental protection.

[0036] As a specific solution for discussion, the hot air module includes a fan module 14 and a heating module 15. The heating module 15 includes a heating cylinder 152 and heating wires built inside the heating cylinder 152. The heating cylinder 152 is directly arranged at the air outlet of the fan module 14. An air outlet temperature sensor 151 is also provided at the output end of the heating cylinder 152. The fan module 14, the heating wires, and the air outlet temperature sensor 151 all achieve data transmission with the main control module 16.

[0037] The heating module 15 includes a heating cylinder 152 and a heating wire built inside the heating cylinder 152. The heating cylinder 152 is directly arranged at the air outlet of the fan module 14. This design ensures that the hot air can be distributed quickly and evenly, improving the heat transfer efficiency. The setting of the air outlet temperature sensor 151 enables the system to monitor and adjust the air outlet temperature in real time, ensuring precise temperature control, avoiding overheating or overcooling, and thus improving the stability and safety of the device. The fan module 14, the heating module 15, and the air outlet temperature sensor 151 all achieve data transmission with the main control module 16, which enables the entire hot air system to achieve intelligent control. Users can operate through the control module 21 (corresponding air outlet temperature adjustment buttons can be set on the main unit), and then the main control module 16 automatically adjusts parameters such as the heating power according to preset conditions or user input to achieve the best hot air output effect, improving the automation degree and user experience of the device.

[0038] As a specific solution for discussion, the instant heating module 13 is used to quickly heat the input water and can maintain the effect of constant output temperature. Its specific structure can refer to the structure in the prior art.

[0039] The constant temperature instant heating module 13 adopts advanced heating technology, which can quickly heat the input water to the set temperature and maintain the constant water outlet temperature at the same time. Users can enjoy a continuous and stable comfortable water temperature during the cleaning process without worrying about the discomfort caused by water temperature fluctuations. Since the constant temperature instant heating module 13 is based on an authorized patent technology, its technical maturity and reliability are guaranteed. This helps to reduce the failure rate of the product during use, improving user satisfaction and the overall quality of the product.

[0040] Refer to Figure 3-5 , as a specific solution for discussion, the cleaning host also includes a host shell 17, and an up-and-down bidirectional wire slot 171 is arranged on the outer surface of the host bottom plate 173 on the back of the host shell 17, and a corresponding power interface is also arranged on the wire slot 171. The design of the wire slot 171 enables the power cord 172 to be routed to the ceiling (such as refer to Figure 4-5 ) or below (refer to Figure 3 ) more conveniently when installing the cleaning host. This avoids the wires being exposed in a messy manner, improving the aesthetics and neatness of the installation. At the same time, hiding the wires in the wire slot 171 can reduce the risk of damage or short circuit caused by accidental touch or trampling of the wires, and also reduces the risk of electric shock due to wire exposure, enhancing the use safety of the product.

[0041] As a specific solution for discussion, a humidity sensor electrically connected to the main control module 16 is arranged inside the input end of the composite pipe.

[0042] The setting of the humidity sensor can detect in a timely manner whether there is water vapor intrusion into the composite pipe, which is the first line of defense against water vapor entering the heating module 15. Once the humidity sensor detects water, it will immediately send a signal to the main control module 16 to trigger the power-off protection mechanism. In this way, the power supply can be quickly cut off to avoid damage to the heating module 15 due to contact with water vapor or safety problems such as short circuits. Through the real-time monitoring of the humidity sensor and the immediate power-off protection, the failure rate of the device caused by water vapor intrusion can be greatly reduced, thus improving the overall safety of the device. Preventing water vapor from invading the heating module 15 can reduce problems such as corrosion and short circuits caused by water, thereby extending the service life of the device. Users do not need to worry about device damage or safety hazards caused by water entering the handle air outlet during use, improving the sense of security and satisfaction during use.

[0043] As a specific solution for discussion, it also includes a filter and a microbubble generator. The output end of the filter is connected to the input end of the microbubble generator, and the output end of the microbubble generator is connected to the input end of the constant pressure valve 11. The filter can effectively remove impurities, particulate matter, and harmful substances in the input water, ensuring that the water quality entering the microbubble generator is pure. The microbubble generator uses special technology to convert the purified water into fine microbubbles. These microbubbles have a larger contact area and a longer residence time in water, thus enhancing the cleaning and sterilization effects. The constant pressure valve 11 can ensure that the microbubbles generated by the microbubble generator maintain a constant pressure when output. This is very important for maintaining a stable cleaning effect and avoiding damage to the device due to pressure fluctuations. Therefore, the three components of the overall filter, microbubble generator, and constant pressure valve 11 work together to form an efficient and stable cleaning system. The three links of water quality purification, microbubble generation, and constant pressure output support each other and jointly improve the overall performance of the cleaner. The pure water quality, enhanced cleaning effect, and stable device performance together bring a more comfortable and convenient cleaning experience to users. For the specific structure of the microbubble generator, existing microbubble generators can be adopted, so the specific structure will not be elaborated here.

[0044] The cleaner handle 2 includes a handle body; an inclined air outlet 22 and an inclined water outlet 23 are arranged on the surface of the handle body; an independent water outlet channel 1271 and an air outlet channel are arranged inside the handle body. The composite pipe includes an air outlet pipe 3, a water outlet pipe 19, and a control cable 18. The air outlet pipe 3 is directly sleeved at the air outlet of the heating cylinder body 152. The water outlet end of the instant heating module 13 is communicated with the water outlet channel 1271 through the water outlet pipe 19. The main control module 16 is communicatively connected to the control module 21 through the control cable 18. The air outlet of the fan module 14 is communicated with the air outlet channel through the air outlet pipe 3.

[0045] The control module 21 is directly integrated on the handle body, eliminating the need for users to operate at a location far from the handle, greatly simplifying the usage process and enhancing convenience. The inclined air outlet 22 and inclined water outlet 23 are designed to better conform to the human usage habit, making the cleaning process more comfortable. The control module 21 provides dual-mode control and dual-adjustment methods. Users can freely switch and adjust the water spray and air blowing modes according to personal needs, enhancing the flexibility and personalized experience of the product. The control module 21 allows users to adjust the water output and air outlet temperature, and can be personalized according to the cleaning needs of different users to achieve better cleaning effects.

[0046] At the same time, the inclined air outlet 22 enables the wind to blow obliquely upward, better conforming to the human usage habit and facilitating the cleaning operation by users. At the same time, the inclined water outlet enables more accurate spraying onto the parts to be cleaned, improving the accuracy and effect of cleaning. During the use process, users do not need to overly adjust the handle angle, reducing the fatigue of the arms and wrists and improving the comfort and convenience of use.

[0047] Furthermore, the control cable 18 and the water outlet pipe 19 are both built inside the air outlet pipe 3, and the control cable 18 and the water outlet pipe 19 are wrapped by a nylon braid layer or a heat shrink tube or a winding tape. A relief hole 153 is opened at the output end of the heating cylinder body 152, and this relief hole 153 is used to facilitate the penetration of the control cable 18 and the water outlet pipe 19.

[0048] The nylon braid layer is usually used to protect slender objects such as electric wires and data cables. Its main functions include: The nylon material has good wear resistance and tensile resistance, and can effectively prevent damage to the internal wire cores by external physical factors such as friction and pulling. The braid layer tightly wraps around the wire core, forming a strong protection barrier to prevent external forces from directly acting on the wire core, thereby extending the service life of the data cable or electric wire. The nylon braid layer has a beautiful appearance, can enhance the overall texture of the product, and has a certain stain resistance, being easy to clean and maintain.

[0049] Using a heat shrink tube, its main functions include: The heat shrink tube has excellent electrical insulation performance and is widely used in the joints, branches of electric wires and cables, and the insulation encapsulation of electronic components to prevent current leakage, short circuits or grounding faults, ensuring the safe operation of the electrical system. At the same time, the heat shrink tube can also provide a sealing effect to prevent the intrusion of external substances such as moisture and dust. Resistance to chemical corrosion and wear resistance: The heat shrink tube has good chemical corrosion resistance and wear resistance, and can effectively protect the exposed electric wires and pipe fittings from damage by the external environment, especially suitable for extreme environments such as chemical industry, petroleum, navigation, and aerospace.

[0050] The winding tape is adopted, and its functions and characteristics include: by closely winding around the pipe weld, a corrosion and heat insulation layer is formed, effectively preventing the corrosion of the pipe by soil, water, mildew, etc., and at the same time providing a certain heat insulation effect. The winding tape has good abrasion resistance and corrosion resistance, and can maintain its protective effect for a long time in harsh environments.

[0051] In this specific embodiment, the design of the composite pipe simplifies the connection between the handle and the host, making the installation process faster and simpler. The water outlet pipe 19 and the control cable 18 are both integrated in the air outlet pipe 3, reducing the number of external pipelines and lowering the complexity and cost of maintenance. The design of the relief hole 153 fully considers the complexity of the internal structure of the composite pipe. Since the air outlet pipe 3 contains both the water outlet pipe 19 and the control cable 18 at the same time, a suitable hole needs to be opened on the surface of the heating cylinder 152 to introduce these pipelines in an orderly manner. The function of the relief hole 153 is to provide a convenient channel for the water outlet pipe 19 and the control cable 18 to penetrate smoothly.

[0052] Refer to Figure 3-4 , further, it also includes a first backplane bracket 101. A first wall mounting slot 103 is also provided on the main board 173 on the back of the host shell, and the first backplane bracket 101 is clamped in the first wall mounting slot 103; specifically, the first backplane can be installed on the wall 105 by means of gluing / screwing, etc.

[0053] The beneficial effects of this design scheme are mainly reflected in multiple aspects such as space saving, convenient installation, firmness and reliability, aesthetic improvement, and easy maintenance. Through wall-mounted installation, the host no longer occupies the space on the ground or desktop, making the environment cleaner and more orderly, especially suitable for places with limited space. At the same time, the first backplane bracket 101 can be easily installed on the wall 105 by various means such as gluing or screwing, providing users with flexible installation options and adapting to different wall 105 materials and installation conditions. The host shell is closely matched with the first backplane bracket 101 through the first wall mounting slot 103, ensuring the stable hanging of the host on the wall 105 and reducing the risk of shaking or tipping.

[0054] At the edge of the first wall mounting slot 103, a first buckle part 1031 is provided, and a second clamping part 1011 corresponding to the first buckle part 1031 is also provided on the side of the first backplane bracket 101. The first backplane bracket 101 is assembled with the first buckle part 1031 of the first wall mounting slot 103 through the second clamping part 1011.

[0055] At the edge of the first wall mounting slot 103, a first buckle portion is provided, and on the side of the first backplane bracket 101, a second clamping portion 1011 corresponding to the first buckle portion is provided. This ingenious design enables the first backplane bracket 101 to be stably mounted through the second clamping portion 1011 and the first buckle portion of the first wall mounting slot 103. This mounting method not only ensures the stable hanging of the host on the wall 105, reducing the risk of shaking or tipping, but also further improves the installation convenience and reliability.

[0056] In addition, it should be particularly noted that the second clamping portion 1011 is a bevel structure, and its thickness increases sequentially from top to bottom. At the same time, several first clamping protrusions 1012 are provided on the surfaces of the second clamping portions 1011 on both sides of the first backplane bracket 101, and a first clamping slot 1032 is provided at the corresponding position of the first buckle portion. When the second clamping portion 1011 is clamped at the first buckle portion, the first clamping protrusion 1012 cooperates with the first clamping slot 1032.

[0057] The second clamping portion 1011 is designed as a bevel structure, and its thickness increases sequentially from top to bottom. This ingenious design not only helps to provide a guiding function during installation, making the mounting process smoother, but also enhances the stability after mounting. When the second clamping portion 1011 is clamped at the first buckle portion 1031, the first clamping protrusion 1012 closely cooperates with the first clamping slot 1032. This design can actually serve as a reminder for the mounting to be in place, ensuring that the user can clearly perceive whether the mounting has been completed. At the same time, to a certain extent, it can also prevent the motherboard bottom plate from moving in the vertical direction, enhancing the stability of the installation. If the user needs to separate the two, they may need to apply greater force, which further ensures the stability and reliability after mounting.

[0058] Furthermore, it also includes a second backplane bracket 102. A second wall mounting slot 104 is also provided on the host bottom plate 173 on the back of the host shell, and the second backplane bracket 102 is clamped in the second wall mounting slot 104; specifically, the second backplane can be installed on the wall 105 by means of gluing / screwing, etc. This solution not only includes the first backplane bracket 101 and the corresponding first wall mounting slot 103, but also ingeniously adds the second backplane bracket 102 and the second wall mounting slot 104. These two additional components enable the host to be more stably hung on the wall 105 according to actual needs. Specifically, the second backplane bracket 102 can be easily installed on the wall 105 by means of gluing or screwing, etc., and a second wall mounting slot 104 is provided on the host bottom plate 173 on the back of the host shell, and the second backplane bracket 102 can be firmly clamped in this slot.

[0059] Furthermore, a second buckle portion 1021 is provided at the edge of the second wall surface mounting slot 104, and a third clamping portion 1041 corresponding to the second buckle portion 1021 is further provided on the side of the second backplate bracket 102. The second backplate bracket 102 is assembled with the second wall surface mounting slot 104 through the third clamping portion 1041 and the third buckle portion. A second buckle portion 1021 is provided at the edge of the second wall surface mounting slot 104, while a corresponding third clamping portion 1041 is provided on the side of the second backplate bracket 102. This design enables the second backplate bracket 102 to be stably assembled with the second buckle portion 1021 of the second wall surface mounting slot 104 through the third clamping portion 1041. This assembly method not only enhances the stability of the host on the wall surface, but also effectively prevents the host from moving in the vertical direction, improving the reliability of the installation.

[0060] Refer to Figure 5 , when the host bottom plate 173 is assembled with the first backplate bracket 101 and the second backplate bracket 102, the host bottom plate 173 is tightly attached to the wall surface 105. This design not only enhances the stability of the host on the wall surface 105, but also effectively prevents the gap between the host and the wall surface 105, improving the overall aesthetics. At the same time, this close fit also makes the host hang more firmly on the wall surface 105, reducing the risk of shaking or falling due to external forces.

[0061] Refer to Figure 8 , in addition, an inlet 31 for connecting an external water pipe, an air inlet 32 for allowing external air to enter the interior of the host housing, and a composite pipe outlet 33 for allowing the composite pipe to extend outside the host housing are provided at the lower part of the host housing.

[0062] In addition, this design solution also takes into account the functionality and practicality of the host. An inlet 31 for connecting an external water pipe is cleverly provided at the lower part of the host housing, which enables users to easily connect the water pipe to the host according to needs, providing the necessary water source for the host. At the same time, an air inlet 32 for allowing external air to enter the interior of the host housing is provided to ensure the air circulation inside the host and maintain the normal operation of the host. In addition, a composite pipe outlet 33 for allowing the composite pipe to extend outside the host housing is specifically provided, which provides more convenience and flexibility for users, enabling users to easily extend the composite pipe outside the host housing according to actual needs to meet different usage scenarios and requirements.

[0063] The above embodiments are only descriptions of the preferred embodiments of the present invention, and do not limit the scope of the present invention. Without departing from the design spirit of the present invention, various deformations and improvements made by those of ordinary skill in the art to the technical solutions of the present invention shall fall within the protection scope determined by the claims of the present invention.

Claims

1. A handheld body cleaner, characterized in that: The cleaning device comprises a cleaning main body and a cleaning handle, wherein the cleaning main body is connected to the cleaning handle through a composite pipe, and a control module for controlling the water output and the air output temperature is arranged on the cleaning handle; The cleaning host is equipped with a constant pressure valve, a flow regulating valve, an instant heating module, a hot air module, and a main control module. The input end of the constant pressure valve is connected to the external water pipe, and the output end of the constant pressure valve is connected to the instant heating module through the flow regulating valve. The instant heating module outputs hot water to the composite pipe, and the air outlet of the hot air module is connected to the composite pipe; and the main control module is electrically connected to the flow regulating valve, the instant heating module, and the hot air module, respectively, and the main control module realizes power supply and data transmission through the control cable passing through the composite pipe and the control module.

2. A handheld body cleaner according to claim 1, characterized in that: The water inlet end of the heating module is provided with an inlet water temperature sensor, and the water outlet end of the heating module is provided with an outlet water temperature sensor, and the inlet water temperature sensor and the outlet water temperature sensor transmit temperature signals to the main control module.

3. A handheld body cleaner according to claim 1, characterized in that: The hot air module includes a fan module and a heating module, wherein the heating module includes a heating cylinder and a heating wire built into the heating cylinder, the heating cylinder is arranged at the air outlet of the fan module, and an outlet air temperature sensor is also arranged at the output end of the heating cylinder, and the fan module, the heating wire and the outlet air temperature sensor all realize data transmission with the main control module.

4. A handheld body cleaner according to claim 1, characterized in that: The cleaning host also includes a host shell, and the outer surface of the host base plate mounted against the wall in the host shell is provided with a bidirectional wiring slot that can be moved up and down, and the wiring slot is provided with a power interface electrically connected to the main control module. At the same time, the wiring slot is provided with a power cord, and the power cord is connected to the power interface.

5. A handheld body cleaner according to claim 4, characterized in that: It also includes a first back panel bracket, and the main unit bottom plate is also provided with a first wall mounting slot, and the first back panel bracket is clamped in the first wall mounting slot; wherein a first snap-in portion is provided at the edge of the first wall mounting slot, and a second snap-in portion corresponding to the first snap-in portion is also provided on the side of the first back panel bracket, wherein the first back panel bracket is assembled with the first snap-in portion of the first wall mounting slot via the second snap-in portion.

6. A handheld body cleaner according to claim 5, characterized in that: The second locking portion is a sloped structure, and its thickness increases from top to bottom. At the same time, a plurality of first locking protrusions are arranged on the surface of the second locking portion on both sides of the first back panel bracket, and a first locking groove is arranged at the corresponding position of the first locking portion. When the second locking portion is locked at the first locking portion, the first locking protrusion cooperates with the first locking groove.

7. A handheld body cleaner according to claim 1, characterized in that: A humidity sensor electrically connected to the main control module is arranged in the input end of the composite tube.

8. A handheld body cleaner according to claim 1, characterized in that: It also includes a filter and a micro-bubble generator, wherein the output end of the filter is connected to the input end of the micro-bubble generator, and the output end of the micro-bubble generator is connected to the input end of the constant pressure valve.

9. A handheld body cleaner according to claim 3, characterized in that: The cleaner handle includes a handle body; an oblique air outlet and an oblique water outlet are arranged on the surface of the handle body; independent water outlet channels and air outlet channels are arranged in the handle body, wherein the composite pipe includes an air outlet pipe, a water outlet pipe, and a control cable, wherein the air outlet pipe is directly sleeved on the output end of the heating cylinder, that is, the water outlet end of the heat module is connected with the water outlet channel through the water outlet pipe, the main control module is connected with the control module through the control cable, and the air outlet of the fan module is connected with the air outlet channel through the air outlet pipe.

10. A handheld body cleaner according to claim 9, characterized in that: The control cable and the water outlet pipe are both built into the air outlet pipe, and the control cable and the water outlet pipe are wrapped by a nylon braided layer or a heat shrink tube or a winding tape. A clearance hole is opened at the output end of the heating cylinder, and the clearance hole is used to facilitate the insertion of the control cable and the water outlet pipe.

Citation Information

Cited By

  • Body cleaner

    CN119655647A