Intelligent body cleaner handle

By designing the air outlet passage composed of the handle of the integrated control module and the composite tube, the problem of squat toilet users lacking effective water washing and cleaning solutions is solved, achieving a more convenient, comfortable and efficient cleaning effect.

CN222997804UActive Publication Date: 2025-06-20TOUYI TECH (DONGGUAN) CO LTD
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Patent Information

Application Number
CN202422016951.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-19
Publication Date
2025-06-20
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 toilets have insufficient air-drying function and poor drying effect.

Method used

A body intelligent cleaner handle is designed, the handle body is integrated with the control module, the handle and the composite tube form an air outlet passage, the oblique air outlet and water outlet are in line with the human usage habits, and the control module can adjust the air outlet temperature and water outlet.

Benefits of technology

It improves the convenience and comfort of the cleaning process, enhances the flexibility and personalized experience of the product, and achieves better cleaning effects and user experience.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN222997804U_ABST
    Figure CN222997804U_ABST
Patent Text Reader

Abstract

The utility model relates to the field of cleaners, in particular to an intelligent body cleaner handle which comprises a handle body and a composite pipe connected to the tail end of the handle body. An inclined air outlet and an inclined water outlet are formed in the surface of the handle body, and the handle body is provided with a control module used for controlling the air outlet temperature and the water outlet amount. The composite pipe is communicated with the air outlet through an inner cavity of the handle body and is also communicated with the water outlet through a water outlet pipe; the composite pipe is in communication connection with the control module through the control cable. The control module is directly integrated on the handle body, a user does not need to operate at the position far away from the handle, the using process is greatly simplified, convenience is improved, meanwhile, the design of the inclined air outlet and the water outlet better conforms to the using habits of the human body, and the cleaning process is more comfortable.
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Description

Technical Field

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

[0002] 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 areas, the use of toilet paper is not common, and many toilets are equipped with simple wall flush pipes or hanging sprayers 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 intelligent toilets, more and more people around the world have begun to accept and get used to the lifestyle of water washing 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] At present, although intelligent toilets and similar devices on the market provide advanced water washing functions, including warm water flushing and air drying, the air drying of these devices usually does not have a dedicated air outlet facing the body parts that need to be dried, resulting in poor drying effect. Summary of the Invention

[0005] To solve the above problems, the utility model provides a handle of a body intelligent cleaner. A control module is directly integrated on the handle body, which improves the operation convenience. At the same time, the handle and the composite pipe form an air outlet channel, which is convenient for holding and aligning with the body parts that need to be dried. In addition, the inclined air outlet and water outlet design is more in line with the human body usage habit, making the cleaning process more comfortable.

[0006] To achieve the above purpose, the technical solution adopted by the utility model is: a handle of a body intelligent cleaner, including a handle body and a composite pipe connected to the tail end of the handle body; an inclined air outlet and an inclined water outlet are arranged on the surface of the handle body, and a control module for controlling the air outlet temperature and the water output is arranged on the handle body; the composite pipe is communicated with the air outlet through the internal cavity of the handle body, and the composite pipe is also communicated with the water outlet through a water outlet pipe; the composite pipe is communicatively connected with the control module through a control cable.

[0007] Furthermore, the handle body includes a first outer shell. An obliquely configured first opening is arranged at the end of the first outer shell. A first fitting is installed at the first opening. An air outlet and a water outlet are arranged on the first fitting, and a screen is arranged at the air outlet.

[0008] Furthermore, the composite pipe and the handle are connected together to form an air outlet channel. There is a water outlet pipe and a control cable inside the composite pipe, and the water outlet pipe and the control cable are fixed together by means of a nylon sleeve or a heat shrinkable tube.

[0009] Furthermore, the first fitting part and the first opening are fitted together by means of a buckle and glue bonding.

[0010] Furthermore, a second opening for fitting the control module is provided on the surface of the first housing, and glue is coated at the edge of the second opening. The control module and the second opening are fitted together by means of a buckle and glue bonding.

[0011] Furthermore, the control module includes a second housing, a PCB board, and a soft rubber button. The soft rubber button is provided at the bottom of the second housing and the two are of an integral structure. A plurality of positioning posts and screw posts passing through the soft rubber button are provided at the bottom of the second housing, and a plurality of positioning holes and corresponding screw alignment holes are provided on the PCB board. The PCB can be positioned through the positioning holes and the positioning posts, and at the same time, it is fitted through the screw alignment holes and the screw posts.

[0012] Furthermore, a magnetic metal is provided inside the first housing, a first magnet slot is provided on the inner wall of the first housing, and the magnetic metal is clamped at the first magnet slot.

[0013] Furthermore, the handle body further includes a third housing. A third opening is further provided at the end of the first housing away from the first opening. The third housing is fitted at the third opening, and a second magnet slot for fixing the magnetic metal is provided on one side of the third housing.

[0014] Furthermore, the handle body further includes a fourth housing. One end of the composite pipe passes through the fourth housing and is rotatably fitted at the tail end of the third housing. At the same time, the fourth housing is sleeved at the tail end of the third housing to limit the composite pipe.

[0015] Furthermore, a limiting component is fitted at one end of the composite pipe. The limiting component includes a metal joint and a metal buckle. The metal interface is fitted at the opening at one end of the composite pipe, and the metal buckle is sleeved on the surface of the composite pipe at a position aligned with the metal interface. The composite pipe is fixed between the metal buckle and the metal interface by pressing. The fourth housing is provided with an inward flange, and the metal buckle is provided with an outward flange. The composite pipe is limited by the outward flange of the metal buckle against the inward flange of the fourth housing.

[0016] Furthermore, the limiting component further includes a rotating ring, the metal joint is fitted with the rotating ring, an inner ring structure is convexly provided on the inner wall of the third housing, and a rotating groove is provided on the surface of the inner ring structure. A limiting protrusion is convexly provided on the surface of the rotating ring close to the inner ring structure, and the limiting protrusion is arranged in the rotating groove. When the composite pipe rotates, the limiting protrusion on the rotating ring moves accordingly. When the limiting protrusion moves to the end of the rotating groove, the limiting is achieved. This can not only realize the reasonable movement between the composite pipe and the handle during use, but also avoid the twisting of the water pipe and cable inside the composite pipe caused by excessive movement amplitude.

[0017] The beneficial effects of the present utility model are as follows: The control module is directly integrated on the handle body, and users do not need to operate at a position far from the handle, which greatly simplifies the usage process and improves the convenience. In addition, the control module provides dual-mode control and dual-adjustment methods. Users can freely switch and adjust the water spraying and blowing modes according to personal needs, enhancing the flexibility and personalized experience of the product. The control module allows users to adjust the water output and the blowing temperature, and can be personalized according to the cleaning needs of different users, so as to achieve better cleaning effects. The handle and the composite pipe form a handheld air outlet channel, which can facilitate the handheld air outlet to be aligned with the body part to be cleaned. At the same time, the obliquely arranged air outlet enables the wind to blow obliquely upward, which is more in line with the human body's usage habits and facilitates users to align the body part to be cleaned. At the same time, the obliquely arranged water outlet enables the water to be sprayed more accurately onto the part to be cleaned, improving the accuracy and effect of cleaning. Users do not need to overly adjust the handle angle during the use process, reducing the fatigue of the arms and wrists and improving the comfort and convenience of use. Brief Description of the Drawings

[0018] Figure 1 It is a schematic structural diagram of the handle of the intelligent cleaner.

[0019] Figure 2 It is an exploded structural diagram of the handle of the intelligent cleaner.

[0020] Figure 3 It is a sectional structural diagram of the handle of the intelligent cleaner.

[0021] Figure 4 It is a schematic structural diagram of the first fitting.

[0022] Figure 5 It is a sectional structural diagram of the first fitting.

[0023] Figure 6 It is an assembly diagram of components such as the third housing, the fourth housing, and the composite pipe.

[0024] Figure 7 It is an exploded assembly diagram of components such as the third housing, the fourth housing, and the composite pipe.

[0025] Figure 8 It is a schematic diagram of the assembly of a rotating part and a metal joint.

[0026] Explanation of the reference numerals in the attached drawings: the first housing 1, the first opening 11, the second opening 12, the third opening 13, the first magnet slot 14, the second housing 2, the positioning posts 201, the screw posts 202, the soft key 21, the PCB board 22, the control line 23, the third housing 3, the second magnet slot 31, the inner ring structure 32, the rotating slot 321, the fourth housing 4, the inward flanging 41, the composite pipe 5, the rotating ring 61, the limiting protrusion 611, the metal joint 62, the metal buckle 63, the outward flanging 631, the first fitting part 7, the air outlet 71, the water outlet 72, the screen 73, the water spray head 74, the magnetic metal 8, the silicone tube 9. Specific implementation mode

[0027] Please refer to Figure 1-8 As shown, the present utility model relates to a body intelligent cleaner handle, which includes a handle body and a composite pipe 5 connected to the tail end of the handle body; an inclined air outlet 71 and an inclined water outlet 72 are arranged on the surface of the handle body, and the handle body is provided with a control module for controlling the air outlet temperature and the water output; the composite pipe 5 is communicated with the air outlet 71 through the internal cavity of the handle body, and the composite pipe 5 is also communicated with the water outlet 72 through a water outlet pipe;

[0028] The composite pipe 5 realizes communication connection with the control module through a control cable. Specifically, the composite pipe 5 includes an air outlet pipe, a water outlet pipe, and a control cable. The air outlet pipe is communicated with the air outlet 71 through the internal cavity of the handle body, the water outlet pipe is connected to the silicone tube 9 inside the handle body to realize communication with the water outlet 72, and the connection joint at the end of the control cable realizes communication connection with the interface on the corresponding control line 23 of the control module. At the same time, the water outlet pipe and the control cable are fixed together by means of a nylon sleeve or a heat shrinkable tube.

[0029] The control module 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. Additionally, the control module provides dual-mode control and dual-adjustment methods, allowing users to freely switch and adjust the water spray and air blow modes according to their personal needs, enhancing the flexibility and personalized experience of the product. The control module enables users to adjust the water output and air outlet temperature, and can be customized according to the cleaning needs of different users to achieve better cleaning effects. The handle and the composite pipe form a handheld air outlet channel, facilitating the alignment of the handheld air outlet 71 with the body parts to be cleaned. Meanwhile, the obliquely arranged air outlet 71 enables the air to blow obliquely upward, better conforming to the human usage habit and facilitating the operation of aligning the body parts to be cleaned. At the same time, the obliquely arranged water outlet 72 enables more accurate spraying onto the parts to be cleaned, improving the accuracy and effect of cleaning. During use, users do not need to overly adjust the handle angle, reducing the fatigue of the arms and wrists and enhancing the comfort and convenience of use.

[0030] Furthermore, the handle body includes a first housing 1. At the end of the first housing 1, there is an obliquely configured first opening 11, and a first fitting 7 is assembled at the first opening 11. The first fitting 7 is provided with an air outlet 71 and a water outlet 72, and a water spray head 74 communicating with the water outlet 72 is arranged at the bottom of the first fitting 7. Additionally, it should be particularly noted that the first fitting 7 and the first opening 11 are assembled by means of snap connection. Moreover, to further enhance its airtightness, glue is applied to the edge of the first opening 11, and then the first snap of the first fitting 7 is engaged with the first clamping position at the first opening 11 for both snap connection and gluing.

[0031] In this specific embodiment, the air outlet 71 and the water outlet 72 are directly integrated on the first fitting 7, eliminating the use of additional connecting parts and making the entire handle structure more compact and lightweight. This not only reduces the manufacturing cost but also improves the aesthetic appearance of the product. Additionally, as the core functional components of the cleaner, the air outlet 71 and the water outlet 72 are directly integrated on the first fitting 7, enabling smoother and more efficient transmission of air flow and water flow. During use, users can more conveniently enjoy the functions of water spray cleaning and air blow drying.

[0032] In addition, in this specific embodiment, the first fitting 7 and the first housing 1 are connected by a combination of snap connection and adhesive bonding, which not only achieves a stable connection but also significantly improves airtightness, avoiding air leakage. Specifically, the snap connection, as a mechanical locking method, can ensure that the first fitting 7 and the first housing 1 are not easily detached during normal use. This stability is crucial for the user experience and the durability of the product. The addition of adhesive bonding further enhances the airtightness at the connection. The glue can fill the tiny gaps between the two, forming a firm bonding layer to effectively prevent the leakage of gas or liquid. This is particularly important for a cleaner device that requires strict control of gas flow, ensuring the stability and reliability of the cleaning effect.

[0033] Furthermore, a screen 73 (which can be made of metal) is provided at the air outlet 71 corresponding to the first fitting 7. By setting the screen 73 (which can be made of metal or other suitable materials) at the air outlet 71 corresponding to the first fitting 7, the screen 73 can effectively block foreign objects such as dust and hair from entering the interior of the air outlet 71, keeping the interior clean and extending the service life of the product.

[0034] Regarding the fitting sequence of the first fitting 7, special attention should be paid to the installation position of the screen 73 and its connection sequence with other components.

[0035] The specific steps are as follows: First, attach the corresponding screen 73 to the air outlet 71. This step requires ensuring that the screen 73 is closely attached to the air outlet 71 without wrinkles or looseness. At the same time, pay attention to the material and specifications of the screen 73 matching the air outlet 71 to ensure its normal function. Then, connect one end of the water spray head 74 at the bottom of the first fitting 7 to one end of the silicone tube 9. This step requires ensuring a firm connection and good sealing to prevent water leakage. Insert the other end of the silicone tube 9 with the connected water spray head 74 into the cavity inside the first housing 1. During the insertion process, ensure that the silicone tube 9 is smooth and can accurately reach the predetermined position. Finally, firmly connect the first fitting 7 and the first housing 1 in the way of snap connection and adhesive reinforcement as described before. During the connection process, check whether the screen 73 is squeezed or deformed to ensure its normal function.

[0036] Furthermore, a second opening 12 for fitting the control module is provided on the surface of the first housing 1, and the control module is fitted at the corresponding second opening 12. Additionally, it should be particularly noted that the control module and the second opening 12 are also fitted by snap connection. Moreover, to further increase its airtightness, glue is applied to the edge of the second opening 12, and then the second snap of the control module is used to engage and bond with the second position at the second opening 12.

[0037] In this specific embodiment, a second opening 12 for fitting the control module is specially provided on the surface of the first housing 1. This design fully considers the functionality and installation convenience of the control module, enabling the control module to be accurately installed in the predetermined position and form a tight fit with other components. During the specific fitting process, a snap connection is adopted between the control module and the second opening 12 to achieve a stable installation. This mechanical locking mechanism can ensure that the control module is not easily loosened or detached during use, improving the durability and reliability of the product. At the same time, in order to further increase the airtightness at the connection between the control module and the first housing 1, an appropriate amount of glue is applied to the edge of the second opening 12. When the control module is snapped onto the second slot at the second opening 12 through the second snap, the glue will quickly fill the tiny gap between the two, forming a firm bonding layer. This bonding layer not only enhances the structural strength of the connection but also effectively prevents the leakage of gas or liquid, ensuring the cleaning effect and use safety of the product.

[0038] Furthermore, the control module includes a second housing 2, a PCB board 22, and soft rubber buttons. The soft rubber buttons are arranged at the bottom of the second housing 2 and are of an integral structure. Specifically, the two are formed by two-color injection molding process. A number of positioning posts 201 passing through the soft rubber buttons and screw posts 202 passing through the soft rubber buttons are provided at the bottom of the second housing 2. A number of positioning holes and corresponding screw alignment holes are provided on the PCB board 22. The PCB can be positioned through the positioning holes and the positioning posts 201, and at the same time, it can be fitted through the screw alignment holes and the screw posts 202.

[0039] In this specific embodiment, designing the second housing 2 and the soft rubber buttons as an integral structure can greatly simplify the assembly process. During production and manufacturing, this integral structure can be directly assembled with the PCB board 22 without the need to separately handle the fixation and installation of the buttons, thus improving the production efficiency. At the same time, the integral structure design ensures that there are no gaps or looseness between the second housing 2 and the soft rubber buttons, enhancing the stability of the overall structure. This stability helps to improve the durability and reliability of the product, reducing the loosening or damage of components caused by long-term use or external factors.

[0040] Meanwhile, several positioning posts 201 and screw posts 202 are provided at the bottom of the second housing 2. These positioning posts 201 pass through the soft rubber keys and are precisely aligned with the positioning holes on the PCB board 22. Through the cooperation of the positioning holes and the positioning posts 201, the precise positioning of the PCB board 22 inside the second housing 2 is achieved. This positioning mechanism ensures that the PCB board 22 will not shift or shake during the installation process, thus guaranteeing the reliable connection of electronic components and circuits. In addition to the positioning posts 201, screw posts 202 passing through the soft rubber keys are also provided at the bottom of the second housing 2. These screw posts 202 cooperate with the screw alignment holes on the PCB board 22, and the PCB board 22 is firmly fixed inside the second housing 2 by means of screwing. This fixing mechanism not only enhances the stability of the PCB board 22 but also prevents loosening or falling off caused by vibration or impact during use.

[0041] Furthermore, a magnet / iron (or a metal that can achieve magnetic attraction) is provided inside the first housing 1. A first magnet slot 14 is provided on the inner wall of the first housing 1, and the front end of the magnet / iron can be stuck in the corresponding first magnet slot 14 to achieve preliminary positioning. There will be a specific discussion below on how to fix the rear end of the magnet / iron.

[0042] Furthermore, a third housing 3 is also included. A third opening 13 is further provided at the end of the first housing 1 away from the first opening 11, and the third housing 3 is assembled at this third opening 13. A second magnet slot 31 for fixing the rear end of the magnet / iron is provided on one side of the third housing 3, that is, when the third housing 3 is assembled at the third opening 13, the rear end of the magnet / iron can be fixed through the second magnet slot 31. Additionally, it should be specifically noted that, in order to further increase the airtightness of the handle body, the third housing 3 is assembled at the third opening 13 by means of ultrasonic welding.

[0043] Inside the first housing 1, a magnetic metal 8 (here refers to any metal material that can achieve magnetic attraction function, and a magnet is used in this specific embodiment) and corresponding magnet slots are designed to achieve preliminary positioning and fixing of components. The front end of the magnet can precisely be stuck in the first magnet slot 14 on the inner wall of the first housing 1. This slot design provides a preliminary positioning effect, ensuring the accuracy and stability of the magnet during the installation process. Regarding the fixing of the rear end of the magnet, a key component, the third housing 3, is introduced in the design. When the third housing 3 is assembled at the third opening 13 of the first housing 1, the second magnet slot 31 provided inside it can be closely combined with the rear end of the magnet, thus achieving a further fixing effect. This dual fixing mechanism at the front and rear ends ensures that the magnet will not loosen or fall off during use, improving the durability and safety of the product.

[0044] Meanwhile, as an important part of the handle body, the assembly process of the third housing 3 has a crucial impact on the overall performance of the product. To improve the airtightness and stability of the handle body, ultrasonic welding is used in the design to assemble the third housing 3. Ultrasonic welding is an efficient and environmentally friendly welding technology that uses the heat generated by high-frequency vibration to melt and tightly bond the welding materials together. This welding method can not only achieve fast and precise assembly effects, but also ensure that the sealing performance and strength of the welded parts meet the product requirements.

[0045] Meanwhile, the role of the magnet in the handle of the body intelligent cleaner is mainly reflected in its magnetic attraction characteristics, which enable the entire handle to be conveniently magnetically attracted to the wall or the subsequent main body, bringing a more convenient and flexible user experience.

[0046] Specifically, the role of the magnet is reflected in the following aspects: By setting a magnet inside the handle and configuring corresponding magnet slots, users can easily magnetically attract the handle to the wall of the bathroom. This design not only saves space, but also keeps the handle clean and orderly when not in use, avoiding the hygiene problems that may be brought by traditional placement methods. Moreover, through the magnetic attraction design, the handle can also be conveniently connected to the main body without complex plugging or fixing devices, improving the convenience and efficiency of use. The strong magnetic attraction provided by the magnet ensures the stability of the handle during the mounting process. Even when subjected to external forces, the handle can remain stable and not fall off, avoiding damage or safety hazards caused by accidental dropping.

[0047] Furthermore, the handle body further includes a fourth housing 4. One end of the composite tube 5 passes through the fourth housing 4 and is rotatably assembled at the tail end of the third housing 3. At the same time, the fourth housing 4 is sleeved on the tail end of the third housing 3 to limit the composite tube 5. Specifically, an external thread is provided at the tail end of the third housing 3, and an internal thread is provided on the fourth housing 4, and the two are screwed together.

[0048] Furthermore, a limiting component is assembled at one end of the composite tube 5. The limiting component includes a metal joint 62 and a metal buckle 63. The metal interface is assembled at the opening of one end of the composite tube 5, and the metal buckle 63 is sleeved on the surface of the composite tube 5 at a position aligned with the metal interface, and the composite tube 5 is fixed between the metal buckle 63 and the metal interface by pressing. At the same time, the fourth housing 4 is provided with an inward flanging 41, and the metal buckle 63 is provided with a circle of outward flanging 631, and the composite tube 5 is limited by the outward flanging 631 of the metal buckle 63 against the inward flanging 41 of the fourth housing 4.

[0049] The specific analysis of the third housing 3, the limiting component, and the fourth housing 4 is as follows:

[0050] The metal buckle 63 is sleeved on the surface of the composite pipe 5 at a position aligned with the metal joint 62. Through the pressing method, the metal buckle 63 can tightly fix the composite pipe 5 between the metal joints 62, thus realizing the stable fixation of the composite pipe 5. First, the metal joint 62 is assembled at the opening of one end of the composite pipe 5 to ensure tight and stable connection. Then, the metal buckle 63 is sleeved on the surface of the composite pipe 5 and aligned with the metal joint 62. By applying external pressure, the metal buckle 63 deforms and tightly presses on the composite pipe 5 and the metal joint 62, thus realizing the preliminary fixation of the composite pipe 5. Moreover, in this specific embodiment, in the design of the fourth housing 4, an inward flanging 41 structure is specifically provided. When the fourth housing 4 is sleeved on the tail end of the third housing 3, its inward flanging 41 will contact the outward flanging 631 of the metal buckle 63. Since the outward flanging 631 of the metal buckle 63 can limit the composite pipe 5 within the inward flanging 41 of the fourth housing 4, preventing the composite pipe 5 from axially displacing and falling off during rotation or use.

[0051] Furthermore, it further includes a rotating ring 61. The metal joint 62 is assembled with the rotating ring 61. An inner ring structure 32 is convexly provided on the inner wall of the third housing 3, and a rotating groove 321 is provided on the surface of the inner ring structure 32. A limiting protrusion 611 is convexly provided on the surface of the rotating ring 61 close to the inner ring structure 32, and the limiting protrusion 611 is configured in the rotating groove 321. Therefore, the composite pipe 5 can achieve a certain angle of rotation, and at the same time, the composite pipe 5 can also be limited by abutting against the surface of the inner ring structure 32 through the rotating ring 61.

[0052] Generally speaking, the rotating ring 61 is a key component in the handle body. It cooperates with the metal joint 62 and the inner ring structure 32 of the third housing 3 to realize the rotation and limiting functions of the composite pipe 5 within a certain angle range. The rotating ring 61 is tightly assembled with the metal joint 62. When the composite pipe 5 rotates, the metal joint 62 will drive the rotating ring 61 to rotate together. An inner ring structure 32 is convexly provided on the inner wall of the third housing 3, and the rotating groove 321 is carefully designed on the surface of the inner ring structure 32. The rotating groove 321 provides a moving track for the limiting protrusion 611 on the rotating ring 61, restricting the rotation range of the rotating ring 61 (and thus restricting the composite pipe 5). Specifically, the specific length of the rotating groove 321 determines the rotation angle range of the composite pipe 5. The manufacturer can reasonably set the length of the rotating groove 321 according to the actual use situation and user needs, so as to meet the different requirements of users for the rotation angle of the composite pipe 5.

[0053] Moreover, by combining the inner flanging 41 provided on the fourth housing 4 with the outer flanging 631 of the metal buckle 63, in fact, through the rotational limit between the composite tube 5 and the inner ring structure 32 by the rotating ring 61 and the axial limit between the fourth housing 4 and the metal buckle 63, the composite tube 5 achieves double limit in the handle body. This design greatly improves the stability and reliability of the composite tube 5. The stable and flexible design of the composite tube 5 enables users to more conveniently control the spraying direction and angle of the cleaner during use, thereby improving the cleaning effect and the comfort of use.

[0054] In addition, it should be particularly noted that since only the silica gel tube 9 and the control line 23 are contained inside the first housing 1, this simplified design effectively utilizes the internal cavity space and avoids the influence of other messy lines on the wind resistance. In traditional designs, complex line layouts often increase wind resistance and reduce ventilation efficiency, thereby affecting the cleaning performance of the product. However, in this design, by streamlining the internal structure, the smooth flow of air is ensured, and the wind resistance is greatly reduced. Secondly, in this specific embodiment, using the cavity of the entire first housing 1 as a ventilation air duct is an innovative and efficient design. This not only makes full use of the existing space resources but also reduces wind resistance. Because when the air flow flows in the cavity of the first housing 1, the entire cavity plays a role in guiding the air flow, enabling the air flow to blow out more concentratedly and quickly through the air outlet 71. This design not only increases the air volume but also makes the wind force distribution more uniform, improving the cleaning effect and the user experience. The optimized ventilation air duct design significantly increases the air volume, which means that stains and odors can be removed faster and more effectively during the cleaning process. At the same time, the uniform wind force distribution also improves the accuracy and comfort of cleaning.

[0055] 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 engineering and technical personnel 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 body intelligent cleaner handle, characterized in that: It includes a handle body and a composite tube connected to the rear end of the handle body; the handle body surface is provided with an inclined air outlet and an inclined water outlet, and the handle body is provided with a control module for controlling the air outlet temperature and the water outlet volume; the composite tube is connected with the air outlet through the internal cavity of the handle body, and the composite tube is also connected with the water outlet through the water outlet pipe; the composite tube is connected to the control module through a control cable to achieve communication.

2. The handle of the intelligent body cleaner according to claim 1, characterized in that: The handle body comprises a first shell, the end of which is provided with a first obliquely arranged opening, the first opening is equipped with a first fitting, the first fitting is provided with an air outlet and a water outlet, and a gauze is arranged at the air outlet.

3. A body intelligent cleaner handle according to claim 1 or 2, characterized in that: The composite pipe is connected to the handle to form an air outlet channel. The composite pipe is provided with a water outlet pipe and a control cable. The water outlet pipe and the control cable are fixed together by a nylon sleeve or a heat shrink tube.

4. The handle of the intelligent body cleaner according to claim 2, characterized in that: The surface of the first housing is provided with a second opening for mounting the control module, and glue is coated on the edge of the second opening, wherein the control module and the second opening are mounted together by means of snap fastening and adhesive bonding.

5. The handle of the intelligent body cleaner according to claim 4, characterized in that: The control module includes a second shell, a PCB board, and soft rubber buttons, wherein the soft rubber buttons are arranged at the bottom of the second shell, and the two are an integrated structure. The bottom of the second shell is provided with a plurality of positioning columns passing through the soft rubber buttons and a screw column passing through the soft rubber buttons, and the PCB board is provided with a plurality of positioning holes and corresponding screw alignment holes, wherein the PCB can be positioned through the positioning holes and the positioning columns, and assembled through the screw alignment holes and the screw columns.

6. The handle of the intelligent body cleaner according to claim 4, characterized in that: A magnetic metal is arranged inside the first shell, a first magnet clamping position is arranged on the inner wall of the first shell, and the magnetic metal is clamped at the first magnet clamping position.

7. The handle of the intelligent body cleaner according to claim 6, characterized in that: The handle body also includes a third shell. The end of the first shell away from the first opening is also provided with a third opening. The third shell is mounted at the third opening, and a second magnet position for fixing the magnetic metal is provided on one side of the third shell.

8. The handle of the intelligent body cleaner according to claim 7, characterized in that: The handle body also includes a fourth shell. One end of the composite tube passes through the fourth shell and is rotatably mounted on the tail end of the third shell. Meanwhile, the fourth shell is sleeved on the tail end of the third shell and limits the composite tube.

9. The handle of the intelligent body cleaner according to claim 8, characterized in that: One end of the composite pipe is equipped with a limiting component, which includes a metal joint and a metal buckle. The metal interface is equipped at an opening at one end of the composite pipe, and the metal buckle is sleeved on the surface of the composite pipe and aligned with the metal interface. The composite pipe is fixed between the metal buckle and the metal interface by pressing. The fourth shell is provided with an inner flange, and the metal buckle is provided with a circle of outer flange, wherein the composite pipe is limited by the outer flange of the metal buckle being stopped against the inner flange of the fourth shell.

10. The handle of the intelligent body cleaner according to claim 9, characterized in that: The limiting assembly also includes a rotating ring, a metal joint is assembled with the rotating ring, a circle of inner ring structure is protruded on the inner wall of the third shell, and a rotating groove is arranged on the surface of the inner ring structure, a limiting protrusion is protruded on the surface of the rotating ring close to the inner ring structure, and the limiting protrusion is arranged in the rotating groove, and the composite pipe rotates so that the limiting protrusion on the rotating ring follows the movement, and the limiting protrusion moves to the end of the rotating groove to achieve the limit.