Cleaning device and silica gel reverse mold

An automated cleaning system that embeds a liquid reservoir, pump assembly, and flexible tubing within a silicone mold solves the problem of inconvenient cleaning of male adult products after use, achieving comprehensive cleaning, reducing the risk of bacterial growth, and improving user experience and product durability.

CN223669782UActive Publication Date: 2025-12-16SHENZHEN YIGANG TECH TRADE CO LTD
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Patent Information

Application Number
CN202422634284.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-29
Publication Date
2025-12-16
Estimated Expiration
2034-10-29

AI Technical Summary

Technical Problem

Existing male adult products are not easy to clean after use, which can easily breed bacteria and increase the risk of infection during the next use.

Method used

A cleaning device was designed, including a liquid storage tank, a pump assembly, a flushing pipe and a power supply. The cleaning fluid is injected into the silicone mold through an automated system. The device adopts a flexible pipe and a dual pump design to achieve all-round cleaning and reduce manual operation.

Benefits of technology

It improves cleaning efficiency, reduces the risk of bacterial growth, enhances the user experience and product durability, and ensures hygiene and safety after each use.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the technical field of adult products, and relates to a cleaning device and a silica gel reverse mold, the cleaning device is embedded in the silica gel reverse mold, the cleaning device comprises a liquid storage bin, a liquid inlet, a liquid outlet and a liquid outlet, the liquid storage bin is internally provided with a containing cavity used for containing cleaning liquid, and the liquid storage bin is provided with a liquid inlet; the pump assembly is communicated with the liquid storage bin; the power supply is used for supplying power; one end of the flushing pipeline is communicated with a channel in the silica gel reverse mold, and the other end of the flushing pipeline is communicated with the pump assembly; and the pump assembly drives the cleaning liquid in the liquid storage bin to enter a channel in the silica gel reverse mold along the flushing pipeline for cleaning.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to adult products technical field relates to a kind of cleaning device and silica gel reverse mold. BACKGROUND

[0002] With the improvement of living standards and the increase of people's life and work pressure, adult health care products are more and more popular. The normal physiological needs of adults are objectively existing. In the existing male adult products, it is not easy to clean, and if it is not easy to reach the position, it is easy to breed bacteria, and it is easy to cause infection next time. UTILITY MODEL CONTENT

[0003] The utility model aims at the deficiency of prior art, and provides a kind of cleaning device and silica gel reverse mold.

[0004] In order to achieve the above purpose, the utility model adopts the following technical scheme:

[0005] A kind of cleaning device is embedded in silica gel reverse mold, comprising:

[0006] Liquid storage warehouse, the liquid storage warehouse is equipped with the cavity for containing cleaning fluid, the liquid storage warehouse is equipped with liquid inlet;

[0007] Pump assembly, the pump assembly is communicated with liquid storage warehouse;

[0008] Power supply for power supply;

[0009] Flushing pipeline, one end of the flushing pipeline is communicated with the passage in silica gel reverse mold, and the other end is communicated with pump assembly;

[0010] Wherein, the pump assembly drives the cleaning fluid in liquid storage warehouse to enter the passage in silica gel reverse mold along flushing pipeline and carries out cleaning.

[0011] Further, the flushing pipeline includes first pipeline and second pipeline;

[0012] The water outlet of the first pipeline is located at the end of the passage in silica gel reverse mold;

[0013] The water outlet of the second pipeline is located at the middle of the passage in silica gel reverse mold.

[0014] Further, the first pipeline and the second pipeline are flexible materials.

[0015] Further, the water outlet direction of the first pipeline is parallel to the axis of the passage in silica gel reverse mold;

[0016] The water outlet direction of the second pipeline is perpendicular to the axis of the passage in silica gel reverse mold.

[0017] Further, the pump assembly includes a first pump body and a second pump body, which are respectively communicated with the first pipeline and the second pipeline.

[0018] Further, the operation button and the magnetic electrode are exposed on the surface of the device and electrically connected with the power supply.

[0019] A silica gel inverse mold comprises the cleaning device.

[0020] The cleaning system reduces fatigue and bacterial breeding risks caused by manual cleaning, improves the overall durability of the product and the satisfaction of the user, and the liquid storage bin is designed to accommodate a cleaning liquid, and is provided with a convenient liquid adding port to facilitate the user to quickly add the cleaning liquid.

[0021] Other features and advantages of the present application will be further described in the following specification, and some will become apparent from the specification, or will be learned by practice of the present application. The purpose and other advantages of the present application can be achieved and obtained by the structure specifically pointed out in the written specification and the drawings. BRIEF DESCRIPTION OF DRAWINGS

[0022] The present application will be described in detail below with reference to the accompanying drawings, so that the above advantages of the present application are more explicit.

[0023] Figure 1 is a top view of the inverse mold of the present application;

[0024] Figure 2 is a sectional view of the inverse mold of the present application;

[0025] Figure 3 is a schematic view of the inverse mold of the present application;

[0026] Figure 4 is a schematic view of a cleaning device of the present application;

[0027] Figure 5 is an internal schematic view of a cleaning device of the present application. DETAILED DESCRIPTION

[0028] The embodiments of the present application will be described in detail below, and the examples of the embodiments are shown in the accompanying drawings, wherein the same or similar reference signs represent the same or similar elements or elements having the same or similar functions throughout. The embodiments described below by referring to the accompanying drawings are exemplary and are intended to explain the present application, and cannot be understood as a limitation of the present application.

[0029] In the description of the utility model, need understanding is, the term "length", "width", "upper", "lower", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom" "internal", "external" and so on the direction or position relation indicated is based on the direction or position relation described in the drawing, only for the convenience of describing the utility model and simplifying the description, and not indicating or implying that the device or element indicated must have a particular orientation, a particular orientation and operation, therefore, it cannot be understood as a limitation on the utility model.

[0030] In addition, the terms "first", "second" are only for the purpose of description, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of indicated technical features. Therefore, the features defined with "first", "second" can explicitly or implicitly include one or more features. In the description of the utility model, the meaning of "multiple" is two or more than two, unless otherwise explicitly specified and limited.

[0031] In the embodiments of the utility model, unless otherwise explicitly specified and limited, the terms "mounting", "connection", "connection", "fixing" and other terms should be broadly understood, for example, it can be fixedly connected, or it can be detachably connected, or it can be integrated; it can be mechanically connected, or it can be electrically connected; it can be directly connected, or it can be indirectly connected through an intermediate medium; it can be the communication or interaction relationship between two elements. For ordinary skilled in the art, the specific meaning of the above terms in the utility model can be understood according to the specific circumstances.

[0032] Reference drawings Figures 1-5 As shown in the drawings, a cleaning device is inlaid in silica gel reverse mold 100, comprising:

[0033] Liquid storage bin 200, the liquid storage bin 200 is provided with the cavity for containing cleaning fluid, the liquid storage bin 200 is equipped with liquid inlet 210;

[0034] Pump assembly 500, the pump assembly 500 is communicated with liquid storage bin 200;

[0035] Power supply 300 for power supply;

[0036] Flushing pipe 400, one end of the flushing pipe 400 is communicated with the channel 110 in the silica gel reverse mold 100, and the other end is communicated with the pump assembly 500;

[0037] The pump assembly 500 drives the cleaning liquid in the liquid storage bin 200 to enter the channel 110 in the silicone mold 100 through the flushing pipeline 400. This cleaning device aims to solve the cleaning problem of adult products after use, and improves the maintenance convenience and hygiene of the product through an automatic cleaning system. The internal structure of traditional silicone products is complex and difficult to clean, and bacteria can easily breed due to incomplete cleaning. This design closely combines the cleaning system with the structure of the silicone mold 100, avoids the trouble of manual cleaning by the user, and ensures the hygiene and safety before and after each use.

[0038] The liquid storage bin 200 is provided with a cavity for storing cleaning liquid. The user injects cleaning liquid into the liquid storage bin 200 through the liquid inlet 210 for use. This design facilitates the user to quickly add cleaning liquid and reduces the cleaning preparation time. The pump assembly 500 communicates with the liquid storage bin 200 and is responsible for driving the cleaning liquid into the flushing pipeline 400. After starting the cleaning mode, the pump assembly 500 will pump out the cleaning liquid in the liquid storage bin 200 and deliver it to the internal channel 110 of the silicone mold 100 through the pipeline. One end of the flushing pipeline 400 communicates with the channel 110 in the silicone mold 100, and the other end communicates with the pump assembly 500. Under the pushing action of the pump, the cleaning liquid flows along the pipeline and enters the channel 110 of the mold 100 for flushing to remove the residues after use. The system is powered by the power supply 300 to support stable pump body operation. The power supply 300 can use a built-in rechargeable battery or an external power supply 300 interface to ensure long-term use of the device.

[0039] This cleaning device uses a pump body to drive, reducing the cumbersome process of manually disassembling and flushing the traditional product by the user, improving the cleaning efficiency and user experience. The flushing pipeline 400 penetrates into the internal channel 110 of the silicone mold 100, ensuring that the liquid can contact and clean all areas, avoiding bacterial breeding, and providing a more hygienic use experience for the user. The liquid storage bin 200 is provided with a liquid inlet 210, and the user can supplement the cleaning liquid at any time, which is simple and convenient to operate. The independent design of the liquid storage bin 200 also avoids the mixing of cleaning liquid with other components.

[0040] This cleaning device is not only suitable for a specific silicone mold 100, but also can be applied to other similar silicone products, having strong market adaptability.

[0041] In this embodiment, the flushing pipeline 400 includes a first pipeline 410 and a second pipeline 420;

[0042] The water outlet of the first pipeline 410 is located at the end of the channel 110 in the silicone mold 100;

[0043] The water outlet of the second pipeline 420 is located at the middle of the channel 110 in the silicone mold 100.

[0044] By the design of double pipes, comprehensive coverage and cleaning of different areas of the channel 110 are achieved. The first pipe 410 and the second pipe 420 correspond to the end and middle positions inside the silica gel inverse mold 100 respectively, aiming to avoid cleaning dead angles and ensure that every part of the product can be thoroughly cleaned after use, improving hygiene and use convenience. The water outlet is arranged at the end of the channel 110 inside the silica gel inverse mold 100, responsible for cleaning the deep area of the channel 110. This part of the area is often the most difficult to reach during cleaning, and the design of the first pipe 410 ensures that the liquid can flow to the deepest part of the channel 110, removing possible residual substances after use. The water outlet is located at the middle position of the channel 110, responsible for cleaning the middle section of the channel 110. Working in cooperation with the first pipe 410, it ensures that the entire internal space can be covered by the cleaning liquid.

[0045] After starting the pump assembly 500, the cleaning liquid is pumped from the liquid storage compartment 200 to the first pipe 410 and the second pipe 420. The first pipe 410 delivers liquid to the end of the channel 110, ensuring that the deep area is thoroughly cleaned. The second pipe 420 releases liquid in the middle of the channel 110, covering the middle section, achieving a more uniform cleaning effect. The two pipes work simultaneously or in a set sequence to ensure that all areas can be washed clean by the liquid, avoiding any residue. Through the synchronous work or segmented control of the double pipes, it ensures that every part of the product can be thoroughly washed, reducing the risk of residue and bacterial growth, providing users with a safer use experience.

[0046] In this embodiment, the first pipe 410 and the second pipe 420 are made of flexible material. Flexible material reduces the noise of pipe friction inside the inverse mold 100, while also improving comfort and quietness during product use. Flexible pipe design can adapt to these changes while avoiding damage or blockage caused by rigid materials. In addition, the use of flexible materials improves user experience and maintenance convenience.

[0047] In this embodiment, the direction of the water outlet of the first pipe 410 is parallel to the axis of the channel 110 inside the silica gel inverse mold 100;

[0048] The direction of the water outlet of the second pipe 420 is perpendicular to the axis of the channel 110 inside the silica gel inverse mold 100. The directions of the water outlets of the first pipe 410 and the second pipe 420 are designed to be parallel and perpendicular to the axis of the channel 110 inside the silica gel inverse mold 100 respectively. This design aims to achieve a comprehensive and multi-angle cleaning effect, ensuring that the cleaning liquid can cover all surfaces inside the channel 110, avoiding any residue. This structure improves the cleaning efficiency and hygiene of the equipment, so that users do not need to worry about incomplete cleaning.

[0049] The outlet of the first pipe 410 is parallel to the axis of the channel 110 in the silica gel inverse mold 100, so that the cleaning liquid can flow along the direction of the channel 110. The pump body delivers the cleaning liquid to the first pipe 410, and the liquid flows along the length direction of the channel 110, ensuring deep cleaning, especially the part close to the end. The outlet of the second pipe 420 is perpendicular to the axis of the channel 110, so that the water flow can cover the entire inner wall of the channel 110 laterally. The pump body injects the cleaning liquid into the second pipe 420, and the water flow is sprayed from the side, contacting and covering all the inner wall surfaces of the channel 110.

[0050] The multi-angle water flow cleaning reduces the part that needs to be manually operated by the user, improves the automation level of the equipment and the convenience of maintenance. Through deep and comprehensive cleaning, the equipment can maintain good sanitary conditions, reduce the risk of bacterial breeding, and ensure the health and safety of the user.

[0051] In this embodiment, the pump assembly 500 includes a first pump body 510 and a second pump body 520, which are respectively connected with the first pipe 410 and the second pipe 420. The assembly is designed to be composed of the first pump body 510 and the second pump body 520, which are respectively connected with the first pipe 410 and the second pipe 420. This dual-pump design aims to achieve efficient cooperation and flexible control of different cleaning tasks by independently driving the two pipes. Each pump body is responsible for a specific pipe, ensuring that the cleaning liquid can be delivered as needed, avoiding cross interference, and improving cleaning efficiency and user experience. The second pipe 420 is connected with the second pump body 520, which drives the cleaning liquid to be sprayed perpendicular to the axis direction of the channel 110, achieving lateral coverage of the inner wall of the channel 110.

[0052] Both pumps are started at the same time, and the first pump body 510 and the second pump body 520 drive the liquid to clean from two directions at the same time, achieving comprehensive coverage and reducing cleaning time.

[0053] According to the needs, the user can choose to start a certain pump body alone. For example, first start the second pump body 520 to quickly flush the middle section, and then start the first pump body 510 to clean the end area deeply.

[0054] The independent control of each pump body means that the flow and pressure can be adjusted individually as needed. This way, different pressures can be used in different areas to avoid wasting cleaning liquid and ensure that sensitive areas are not damaged.

[0055] In this embodiment, the operation button 600 and the magnetic electrode 700 are also included, and the magnetic electrode 700 is exposed on the surface of the device and is electrically connected with the power supply 300. By adding the operation button 600 and the magnetic electrode 700, the control and charging mode of the device are optimized. The operation button 600 is used to control different working modes and functions, improving the operation convenience and interactivity of the user; the exposed design of the magnetic electrode 700 aims to provide a quick and convenient power supply 300 connection and charging mode, enhancing the durability and protection performance of the device. This integrated design not only improves the automation level of the device, but also reduces the complexity of user operation, prolonging the service life of the product.

[0056] The operation button 600 on the device can be used to start, stop the pump body, or switch different working modes such as single-pump and double-pump synchronous working modes. The device can confirm whether the user's button operation is effective through LED light flashing or sound prompt, and indicate the current working mode.

[0057] The electrode is exposed on the surface of the device, which makes it easy to connect with the magnetic power supply 300, and the user can quickly charge without precise alignment of the socket. The magnetic electrode 700 avoids the wear and poor contact problems of traditional plug-in interfaces, improving the protection performance of the device. During the charging process, the electrode design avoids dust or moisture from entering, adapting to more use environments.

[0058] A silica gel reverse mold includes the above cleaning device. The cleaning device is integrated into the silica gel reverse mold 100 to form a comprehensive product with high cleaning efficiency and convenient use. This design not only solves the cleaning problem of traditional silica gel reverse mold 100 products after use, but also greatly improves the user's health protection and experience. By seamlessly combining the pump body, flexible pipeline, magnetic electrode 700, operation button 600, and silica gel reverse mold 100, full-automatic, multi-angle cleaning and intelligent operation are achieved. The product has a compact overall structure, easy operation, and market competitiveness.

[0059] Finally, it should be noted that: the above only describes the preferred embodiments of the present application, and is not intended to limit the present application. Although the present application has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments, or make equivalent replacements to some technical features. Any modification, equivalent replacement, improvement, etc. made within the spirit and principles of the present application shall be included in the protection scope of the present application.

Claims

1. A cleaning device inlaid in a silicone inverse mold (100), characterized in that, The application relates to a cleaning device for a silica gel mold, which comprises the following parts: a liquid storage bin (200) provided with a cavity for containing cleaning liquid, and provided with a liquid inlet (210); a pump assembly (500) in communication with the liquid storage bin (200); a power supply (300) for supplying power; a flushing pipe (400) having one end in communication with a channel (110) in the silica gel mold (100) and the other end in communication with the pump assembly (500); wherein the pump assembly (500) drives the cleaning liquid in the liquid storage bin (200) to enter the channel (110) in the silica gel mold (100) along the flushing pipe (400) for cleaning.

2. The cleaning apparatus of claim 1, wherein The flushing pipe (400) comprises a first pipe (410) and a second pipe (420). The water outlet of the first pipe (410) is located at the end of the channel (110) in the silica gel mold (100). The water outlet of the second pipe (420) is located at the middle of the channel (110) in the silica gel mold (100).

3. The cleaning apparatus of claim 2, wherein The first pipe (410) and the second pipe (420) are made of flexible material.

4. The cleaning apparatus of claim 2, wherein The direction of the water outlet of the first pipe (410) is parallel to the axis of the channel (110) in the silica gel mold (100). The direction of the water outlet of the second pipe (420) is perpendicular to the axis of the channel (110) in the silica gel mold (100).

5. The cleaning apparatus of claim 2, wherein The pump assembly (500) comprises a first pump body (510) and a second pump body (520), which are respectively in communication with the first pipe (410) and the second pipe (420).

6. The cleaning apparatus of claim 2, wherein The device further comprises an operation button (600) and a magnetic electrode (700) exposed on the surface of the device and electrically connected with the power supply (300).

7. A silicone inverse mold characterized in that, The application further relates to a cleaning device as claimed in any one of claims 1-6. The application relates to a cleaning device for a silica gel mold, which comprises the following parts: a liquid storage bin (200) provided with a cavity for containing cleaning liquid, and provided with a liquid inlet (210); a pump assembly (500) in communication with the liquid storage bin (200); a power supply (300) for supplying power; a flushing pipe (400) having one end in communication with a channel (110) in the silica gel mold (100) and the other end in communication with the pump assembly (500); wherein the pump assembly (500) drives the cleaning liquid in the liquid storage bin (200) to enter the channel (110) in the silica gel mold (100) along the flushing pipe (400) for cleaning. The flushing pipe (400) comprises a first pipe (410) and a second pipe (420). The water outlet of the first pipe (410) is located at the end of the channel (110) in the silica gel mold (100). The water outlet of the second pipe (420) is located at the middle of the channel (110) in the silica gel mold (100). The first pipe (410) and the second pipe (420) are made of flexible material. The direction of the water outlet of the first pipe (410) is parallel to the axis of the channel (110) in the silica gel mold (100). The direction of the water outlet of the second pipe (420) is perpendicular to the axis of the channel (110) in the silica gel mold (100). The pump assembly (500) comprises a first pump body (510) and a second pump body (520), which are respectively in communication with the first pipe (410) and the second pipe (420). The device further comprises an operation button (600) and a magnetic electrode (700) exposed on the surface of the device and electrically connected with the power supply (300). The application further relates to a cleaning device as claimed in any one of claims 1-6.