Ground scraping silica gel for sweeping robot
By integrating the squeegee and the positioning part into one piece, the silicone floor cleaning material is precisely positioned and securely installed, solving the problems of easy breakage and poor stability of traditional silicone floor cleaning materials, thus improving cleaning effect and durability.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SUZHOU MENGQI ELECTRONIC TECH CO LTD
- Filing Date
- 2025-05-09
- Publication Date
- 2026-04-14
AI Technical Summary
Traditional silicone floor cleaning materials are prone to breakage and have poor stability, making them ineffective at cleaning complex floor environments.
It adopts an integrated design of the scraping skin and the positioning part, and achieves precise positioning and stable installation through positioning grooves and insertion grooves. The positioning part provides a stable support frame, replacing the splicing method of traditional plastic strips.
The durability and stability of the silicone floor cleaning material have been improved, ensuring a tight fit and even cleaning in complex floor environments, thus extending its service life.
Smart Images

Figure CN224112617U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of silicone scraping technology, specifically a silicone scraping material for a sweeping robot. Background Technology
[0002] In the cleaning system of a robotic vacuum cleaner, the silicone scraper is the core functional component for removing stains from the floor. Its main function is to effectively remove dust, hair, sticky stains and other debris through a scraping structure that comes into direct contact with the floor.
[0003] Currently, the most widely used silicone floor cleaning products on the market employ a combination of "rubber sheet + plastic strip + sewing process": The elastic rubber sheet and the rigid plastic strip are connected together through sewing, forming a composite structure that combines flexibility and scraping ability. The rubber sheet conforms to the ground and adapts to different surface undulations through elastic deformation, while the plastic strip acts as a supporting framework to enhance the rigidity of the scraping structure. The two are fixed together by sewing thread, working together to achieve the scraping and cleaning function of the floor.
[0004] However, the aforementioned traditional process has significant drawbacks: First, the sewing connection method makes the joint between the rubber and the plastic strip a weak point in the structure, which is prone to breakage due to friction and pulling during long-term use, causing the silicone body to separate from the supporting structure and affecting the product's service life; Second, the composite structure of multi-layered materials has insufficient stability and is prone to deformation in complex floor surfaces, such as the joints of carpets and floor tiles, resulting in uneven scraping force or loose adhesion, reducing the cleaning effect.
[0005] To address this issue, a silicone scraper for floor cleaning robots is proposed. Utility Model Content
[0006] The purpose of this invention is to provide a silicone floor cleaning material for robotic vacuum cleaners, which has the advantages of a stable structure and high durability, and solves the problems of easy breakage and poor stability in traditional processes.
[0007] To achieve the above objectives, this utility model provides the following technical solution: a floor-scraping silicone for a sweeping robot, comprising a scraping skin and a positioning part, wherein the scraping skin and the positioning part are designed using an integral molding technology, and the scraping skin is provided with a positioning groove and a plug-in groove, wherein the positioning groove and the plug-in groove are used for the installation of the floor-scraping silicone with the sweeping robot;
[0008] The positioning part includes a positioning base plate and a positioning ridge. The positioning ridge is disposed on the positioning base plate, and the positioning base plate is used to connect the positioning ridge with the scraping leather.
[0009] Preferably, the positioning base plate is provided with a reserved groove, which is used for connecting the floor cleaning silicone to the sweeping robot.
[0010] In the design, the reserved groove on the positioning base plate enables the compatibility between the silicone floor cleaning material and the connection structure of the robot vacuum cleaner, providing a clear connection path and space for the installation process.
[0011] Preferably, the positioning edge is provided with a positioning hole, which cooperates with the reserved groove for the installation of the silicone sizing agent.
[0012] In the design, the positioning holes on the positioning ridge and the reserved grooves work together to achieve the position calibration function when installing the silicone floor cleaning material, ensuring the precise docking of the positioning ridge with the corresponding structure of the sweeping robot.
[0013] Preferably, both ends of the positioning ridge are provided with guide bevels, which are used to guide the installation position of the positioning ridge.
[0014] In the design, the guide ramps at both ends of the positioning ridge realize the guiding function during the installation of the positioning ridge, and the collision resistance between the positioning ridge and the installation structure of the sweeping robot is reduced by the guidance of the ramps.
[0015] Preferably, the insertion slots are located at the four corners of the scraper, and the insertion slots are used to position the installation location on the outer side of the scraper.
[0016] In the design, the insertion slots at the four corners of the scraper enable multi-directional positioning of the scraper's outer installation position. The insertion structure distributed at the four corners disperses the installation force and improves the stability of the connection between the scraper and the robot vacuum cleaner.
[0017] Compared with the prior art, the beneficial effects of this utility model are as follows:
[0018] This invention eliminates the problem of weak connection between the rubber and the support structure caused by traditional processes by setting an integrated molding technology for the scraping skin and the positioning part, avoids the risk of breakage caused by long-term friction, and fundamentally improves the durability of the overall silicone structure.
[0019] By setting positioning grooves and insertion grooves on the scraper, precise positioning and stable installation with the robot vacuum cleaner are achieved. Compared with the traditional multi-layer material splicing structure, the risk of deformation in complex ground environments is reduced, ensuring that the scraper adheres tightly to the ground and the force is evenly distributed.
[0020] The integrated connection design of the positioning base plate and positioning edge in the positioning section provides a stable support frame for the scraping structure, replacing the traditional plastic strip splicing method, further enhancing the rigidity and deformation resistance of the overall structure, thus solving the problem of easy breakage and poor stability of the structure in the traditional process. Attached Figure Description
[0021] Figure 1 This is a schematic diagram of the main structure of this utility model;
[0022] Figure 2 This is a cross-sectional structural diagram of the present invention;
[0023] Figure 3 For the present utility model Figure 2 A magnified structural diagram.
[0024] In the diagram: 1. Scratching skin; 11. Positioning groove; 12. Insertion groove; 2. Positioning part; 21. Positioning base plate; 211. Reserved groove; 22. Positioning edge; 221. Positioning hole; 222. Guide slope. Detailed Implementation
[0025] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0026] Example 1
[0027] like Figures 1 to 3 As shown, one embodiment of this utility model is provided: a floor cleaning silicone for a sweeping robot, including a scraping skin 1 and a positioning part 2. The scraping skin 1 and the positioning part 2 are designed using an integrated molding technology. The scraping skin 1 is provided with a positioning groove 11 and a plug-in groove 12. The positioning groove 11 and the plug-in groove 12 are used for the installation of the floor cleaning silicone and the sweeping robot.
[0028] The positioning part 2 includes a positioning base plate 21 and a positioning ridge 22. The positioning ridge 22 is disposed on the positioning base plate 21, and the positioning base plate 21 is used to connect the positioning ridge 22 with the scraping skin 1.
[0029] Specifically, by setting up an integrated molding technology design for the scraping skin 1 and the positioning part 2, the problem of weak connection between the rubber skin and the support structure caused by traditional processes is eliminated, avoiding the risk of breakage caused by long-term friction, and fundamentally improving the durability of the overall silicone structure.
[0030] By setting positioning grooves 11 and insertion grooves 12 on the scraper 1, precise positioning and stable installation with the sweeping robot are achieved. Compared with the traditional multi-layer material splicing structure, the risk of deformation in complex ground environments is reduced, ensuring that the scraper 1 is tightly attached to the ground and the force is even.
[0031] The integrated connection design of the positioning base plate 21 and the positioning ridge 22 in the positioning part 2 provides a stable support frame for the scraping structure, replacing the traditional plastic strip splicing method, further enhancing the rigidity and deformation resistance of the overall structure, thereby solving the problem of easy breakage and poor stability of the structure in the traditional process.
[0032] Example 2
[0033] To achieve a stable connection and precise positioning between the silicone floor cleaning compound and the robotic vacuum cleaner, such as... Figure 2 and Figure 3 As shown, in this embodiment, the positioning base plate 21 is provided with a reserved groove 211, which is used for connecting the floor cleaning silicone to the sweeping robot.
[0034] Specifically, the reserved groove 211 on the positioning base plate 21 enables the compatibility between the floor cleaning silicone and the connection structure of the sweeping robot, providing a clear connection path and space for the installation process.
[0035] Furthermore, the positioning ridge 22 is provided with a positioning hole 221, which cooperates with the reserved groove 211 for the installation of the silicone sizing agent.
[0036] Specifically, the positioning hole 221 on the positioning ridge 22 and the reserved groove 211 cooperate to realize the position calibration function when installing the silicone floor cleaning material, ensuring the precise docking of the positioning ridge 22 with the corresponding structure of the sweeping robot.
[0037] Furthermore, both ends of the positioning ridge 22 are provided with guide bevels 222, which are used to guide the installation position of the positioning ridge 22.
[0038] Specifically, the guide slopes 222 set at both ends of the positioning ridge 22 realize the guiding function of the positioning ridge 22 during installation, and reduce the collision resistance between the positioning ridge 22 and the installation structure of the sweeping robot by guiding the slopes.
[0039] Furthermore, the insertion slots 12 are provided at the four corners of the scraper 1, and the insertion slots 12 are used to position the installation position on the outside of the scraper 1.
[0040] Specifically, the insertion slots 12 at the four corners of the scraper 1 enable multi-directional positioning of the outer installation position of the scraper 1. The insertion structure distributed at the four corners disperses the installation force and improves the stability of the connection between the scraper 1 and the robot vacuum cleaner.
[0041] When using this utility model, prepare the silicone floor cleaning material to be installed, and check whether the positioning protrusions and plug-in structures at the corresponding installation positions of the sweeping robot are intact.
[0042] Align the positioning groove 11 on the scraper 1 with the positioning protrusion on the bottom of the sweeping robot, so that the positioning hole 221 of the positioning ridge 22 is initially aligned with the positioning groove 11. Use the guide slope 222 at both ends of the positioning ridge 22 to guide the positioning direction and reduce installation resistance.
[0043] Push the silicone scraper along the positioning direction to fully insert the four corner slots 12 of the scraper 1 into the corresponding insertion structure of the sweeping robot, ensuring that the insertion slots 12 are tightly engaged with the robot structure and achieving multi-directional positioning.
[0044] Gently pull on the silicone rubber to confirm that the positioning groove 11 and the positioning protrusion, the insertion groove 12 and the insertion structure are not loose, and that the positioning ridge 22, through the positioning base plate 21 and the integrally formed structure of the scraping skin 1, shows no signs of deformation or separation.
[0045] Connect the power supply and start the cleaning mode. The silicone scraper moves with the robot and comes into contact with the ground. The scraper 1 scrapes and removes stains from the ground.
[0046] Because the scraping pad 1 and the positioning part 2 are made of one piece, the overall flexibility and rigidity of the silicone are combined, which can adapt to complex surfaces such as carpets and tile joints. The scraping force is evenly transmitted through the positioning part 2 to ensure tight fit and uniform cleaning.
[0047] It will be apparent to those skilled in the art that this invention is not limited to the details of the exemplary embodiments described above, and that it can be implemented in other specific forms without departing from the spirit or essential characteristics of this invention. Therefore, the embodiments should be considered illustrative and non-limiting in all respects, and the scope of this invention is defined by the appended claims rather than the foregoing description. Thus, it is intended that all variations falling within the meaning and scope of equivalents of the claims be included within this invention. No reference numerals in the claims should be construed as limiting the scope of the claims.
Claims
1. A silicone floor scraper for a robotic vacuum cleaner, comprising a scraping surface (1) and a positioning part (2), characterized in that: The scraper (1) and the positioning part (2) are designed with integrated molding technology. The scraper (1) is provided with a positioning groove (11) and a plug-in groove (12). The positioning groove (11) and the plug-in groove (12) are used for the installation of the floor scraper silicone and the sweeping robot. The positioning part (2) includes a positioning base plate (21) and a positioning edge (22). The positioning edge (22) is disposed on the positioning base plate (21), and the positioning base plate (21) is used to connect the positioning edge (22) with the scraping skin (1).
2. The silicone floor cleaning agent for a sweeping robot according to claim 1, characterized in that, The positioning base plate (21) is provided with a reserved groove (211), which is used for connecting the floor cleaning silicone to the sweeping robot.
3. The silicone floor cleaning agent for a sweeping robot according to claim 1, characterized in that, The positioning ridge (22) is provided with a positioning hole (221), which cooperates with the reserved groove (211) for the installation of the silicone sizing agent.
4. The silicone floor cleaning agent for a sweeping robot according to claim 3, characterized in that, Both ends of the positioning ridge (22) are provided with guide slopes (222), which are used to guide the installation position of the positioning ridge (22).
5. The silicone floor cleaning agent for a sweeping robot according to claim 1, characterized in that, The insertion slots (12) are located at the four corners of the scraper (1) and are used to position the installation position on the outside of the scraper (1).