Multifunctional silica gel non-slip mat
By embedding antistatic fiber mesh within the anti-slip mat and designing hooks, slots, adhesive grooves, anti-slip particles, and suction cup structures, the problem of static electricity interference in electronic device areas is solved, achieving a multi-functional effect of static discharge, anti-slip, and stable placement.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-17
- Publication Date
- 2026-03-13
Smart Images

Figure CN223989976U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of anti-slip mat technology, specifically a multifunctional silicone anti-slip mat. Background Technology
[0002] Silicone anti-slip mats are made from imported high-grade silicone raw materials, which have excellent high and low temperature resistance, are non-toxic, odorless, transparent, and have high strength. Anti-slip mats come in various types, mainly including car anti-slip mats, bathroom anti-slip mats, hotel anti-slip mats, foot mats, door mats, stair anti-slip mats, yoga anti-slip mats, carpet anti-slip mats, toolbox anti-slip mats, etc.
[0003] However, existing silicone anti-slip mats still have some problems in use:
[0004] Existing anti-slip mats have a relatively simple function, mainly focusing on providing anti-slip properties by increasing the friction between the object and the surface to prevent the object from sliding. When anti-slip mats are placed in the area of electronic devices, the presence of static electricity can affect the normal operation of the electronic devices and may cause damage to them.
[0005] Therefore, we propose a multifunctional silicone anti-slip mat to solve the problems mentioned above. Utility Model Content
[0006] The purpose of this utility model is to provide a multifunctional silicone anti-slip mat to solve the problem that the anti-slip mats mentioned in the background art have relatively simple functions, mainly focusing on providing anti-slip effects, preventing items from sliding by increasing the friction between the object and the placement surface, and when the anti-slip mat is placed in the area of electronic devices, the presence of static electricity will affect the normal operation of the electronic devices and inevitably cause damage to the electronic devices.
[0007] To achieve the above objectives, this utility model provides the following technical solution: a multifunctional silicone anti-slip mat, comprising an anti-slip mat body and an antistatic fiber mesh:
[0008] The anti-slip mat body has an anti-static fiber mesh embedded inside. A first pad is integrally formed on the upper surface of the anti-slip mat body. Hooks are integrally formed on the upper surfaces of both ends of the first pad. A second pad is formed on the upper surface of the first pad. The two ends of the second pad have slots that match the hooks. An anti-slip pad is integrally formed on the upper surface of the second pad. Several anti-slip particles are embedded on the upper surface of the anti-slip pad. Four sets of drainage grooves are formed on the outer surface of the anti-slip pad. A third pad is integrally formed on the bottom of the anti-slip mat body. An adsorption plate is attached to the lower surface of the third pad. Several suction cups are integrally formed on the bottom of the adsorption plate.
[0009] Using the above technical solution, an anti-static fiber mesh is embedded in the main body of the anti-slip mat to conduct static electricity and prevent it from affecting electronic devices when it is in the electronic device area. The first pad on the upper surface is connected to the second pad through a hook and a slot, supporting the anti-slip pad with anti-slip particles and drainage grooves on top, realizing the anti-slip and drainage functions. The third pad at the bottom of the anti-slip mat is attached to the adsorption plate, and the suction cup at the bottom uses atmospheric pressure to adsorb onto the placement surface, so that the anti-slip mat is placed stably and meets the needs of various scenarios.
[0010] Preferably, the antistatic fiber mesh is arranged in a grid pattern along the interior of the antislip mat body.
[0011] Using the above technical solution, the antistatic fiber mesh is arranged in a grid pattern inside the anti-slip mat body, which can capture and conduct static electricity generated by friction in an all-round and rapid manner, greatly improving the efficiency of static electricity dissipation and effectively protecting the placed items from static electricity damage.
[0012] Preferably, the outer surface of the first pad has four sets of adhesive grooves, and the bottom of the second pad is covered with adhesive tape corresponding to the adhesive grooves.
[0013] Using the above technical solution, the four sets of adhesive grooves opened on the outer surface of the first pad correspond to the positions of the adhesive tape pasted on the bottom of the second pad. By utilizing the adhesive properties of the adhesive tape, the stability of the connection between the first pad and the second pad can be further enhanced, preventing relative displacement between the two due to external forces during use.
[0014] Preferably, the anti-slip particles are irregularly distributed, and the surface of the anti-slip particles has a fine texture, and the longitudinal section of the drainage groove is triangular.
[0015] Using the above technical solution, the anti-slip particles are irregularly distributed and have a fine texture on the surface. By increasing the contact area and friction, they effectively prevent the placed items from sliding. The longitudinal section of the drainage channel is triangular, which facilitates the rapid collection and discharge of liquid. This allows the anti-slip mat to provide strong anti-slip performance while efficiently draining water, preventing items from slipping due to water accumulation and ensuring the safety and stability of the usage scenario.
[0016] Preferably, the bottom of the third pad is provided with three sets of embedding grooves, and the upper end surface of the adsorption plate is integrally provided with three sets of silicone rods, which are T-shaped and are correspondingly engaged with the embedding grooves.
[0017] Using the above technical solution, the embedded groove at the bottom of the third pad corresponds to the T-shaped silicone clip on the upper surface of the adsorption plate, which can achieve a tight engagement between the two, ensuring that the adsorption plate is firmly connected to the third pad, so that the bottom suction cup can effectively perform its adsorption function and enhance the overall stability of the anti-slip mat.
[0018] Preferably, the suction cups are evenly distributed along the bottom of the suction plate, and an annular groove is formed on the bottom surface of the suction cups.
[0019] Using the above technical solution, the suction cups are evenly arranged at the bottom of the adsorption plate, which can contact the placement surface in all directions, increasing the adsorption area. At the same time, the annular groove on the bottom surface of the suction cup can accelerate the expulsion of air when pressed, so as to improve the adsorption force and make the anti-slip pad more firmly fixed on the placement surface, preventing the anti-slip pad from shifting due to uneven placement surface or external interference.
[0020] Compared with the prior art, the beneficial effects of this utility model are:
[0021] 1. By embedding an anti-static fiber mesh arranged in a grid pattern inside the anti-slip mat body, the anti-slip mat body can quickly discharge static electricity generated by friction when placed in the electronic device area, effectively protecting the placed items from static damage, providing safety for the use of electronic devices, improving usage efficiency, and extending the service life of electronic devices;
[0022] 2. The upper surface of the anti-slip mat body is connected to the first and second pads via hooks and slots, achieving a simple and stable connection. The addition of adhesive grooves and adhesive tape further enhances the connection stability, ensuring a tight bond between the first and second pads. The second pad features irregularly distributed anti-slip particles with a finely textured surface, significantly increasing friction and effectively preventing items from sliding, ensuring safety during use. Four sets of triangular drainage grooves are formed on the outer surface of the anti-slip pads, quickly collecting and draining water to prevent items from slipping due to water accumulation, thus improving the anti-slip mat's performance in humid environments. Attached Figure Description
[0023] Figure 1 This is a schematic diagram of the external structure of this utility model from the front view;
[0024] Figure 2 This is a schematic diagram of the disassembled structure of the main body of this utility model;
[0025] Figure 3 This is a schematic diagram of the connection structure between the anti-slip mat and the anti-slip mat body of this utility model;
[0026] Figure 4 This is a schematic diagram of the connection structure between the adsorption plate and the anti-slip mat of this utility model;
[0027] Figure 5 This is a schematic diagram of the main structure of the antistatic fiber mesh and antislip mat of this utility model;
[0028] Figure 6 This is a schematic diagram of the connection structure between the suction cup and the adsorption plate of this utility model.
[0029] In the diagram: 1. Anti-slip mat body; 2. Antistatic fiber mesh; 3. First mat plate; 4. Adhesive groove; 5. Hook; 6. Second mat plate; 7. Adhesive tape; 8. Slot; 9. Anti-slip mat plate; 10. Anti-slip particles; 11. Drainage groove; 12. Third mat plate; 13. Embedded groove; 14. Adsorption plate; 15. Clip rod; 16. Suction cup; 17. Groove. Detailed Implementation
[0030] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present utility model. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments.
[0031] Please see Figures 1-6 This utility model provides a technical solution: a multifunctional silicone anti-slip mat, comprising an anti-slip mat body 1 and an antistatic fiber mesh 2. The antistatic fiber mesh 2 is embedded inside the anti-slip mat body 1. A first pad 3 is integrally formed on the upper surface of the anti-slip mat body 1. Hooks 5 are integrally formed on the upper surfaces of both ends of the first pad 3. A second pad 6 is formed on the upper surface of the first pad 3. Slots 8 adapted to the hooks 5 are formed at both ends of the second pad 6. An anti-slip pad 9 is integrally formed on the upper surface of the second pad 6. Several anti-slip particles 10 are embedded on the upper surface of the anti-slip pad 9. Four sets of drainage grooves 11 are formed on the outer surface of the anti-slip pad 9. A third pad 12 is integrally formed on the bottom of the anti-slip mat body 1. An adsorption plate 14 is attached to the lower surface of the third pad 12. Several suction cups 16 are integrally formed on the bottom of the adsorption plate 14. The antistatic fiber mesh 2 is arranged in a crisscross pattern along the interior of the anti-slip mat body 1. The outer surface of the first pad 3 has four sets of adhesive grooves 4, and the bottom of the second pad 6 is covered with adhesive tape 7 corresponding to the adhesive grooves 4. The anti-slip particles 10 are irregularly distributed and have a fine texture on their surface. The longitudinal section of the drainage groove 11 is triangular. The bottom of the third pad 12 has three sets of embedding grooves 13, and the upper end face of the adsorption plate 14 is integrally provided with three sets of silicone rods 15, which are T-shaped and engage with the embedding grooves 13. The suction cups 16 are evenly distributed along the bottom of the adsorption plate 14, and the bottom surface of the suction cups 16 has an annular groove 17.
[0032] The anti-slip mat body 1 contains an anti-static fiber mesh 2 arranged in a grid pattern inside, which can efficiently capture and conduct static electricity generated by friction, providing all-round protection against static damage to placed items and ensuring the normal operation of electronic devices when the anti-slip mat body 1 is in an electronic area. The first pad 3 on the upper surface of the anti-slip mat body 1 is connected to the second pad 6 by the hooks 5 at both ends, which are matched with the slots 8 at both ends, thus achieving an initial connection between the first pad 3 and the second pad 6. At the same time, the adhesive groove 4 on the outer surface of the first pad 3 cooperates with the adhesive tape 7 on the bottom of the second pad 6 to further strengthen the connection and improve the stability of the connection. The anti-slip pad 9 on the second pad 6 has several irregularly distributed anti-slip particles 10 with fine texture on the upper surface, which can significantly increase the friction. Meanwhile, to effectively prevent items from sliding, the outer surface of the anti-slip mat 9 has four sets of drainage grooves 11 with a triangular longitudinal section, which can quickly collect and drain water, preventing items from slipping due to water accumulation. The third pad 12 at the bottom of the anti-slip mat body 1 is locked in place with the T-shaped silicone clip 15 on the upper surface of the adsorption plate 14 by means of the bottom embedded groove 13, which securely connects the adsorption plate 14 and prevents the adsorption plate 14 from separating from the third pad 12 when the anti-slip mat is disassembled, thus enhancing the tightness of the connection. The suction cups 16 are evenly arranged at the bottom of the adsorption plate 14, and the bottom surface has an annular groove 17. When pressed, the groove 17 accelerates the expulsion of air, allowing the suction cups 16 to be firmly adsorbed on the placement surface by atmospheric pressure, greatly enhancing the overall stability of the anti-slip mat, meeting the needs of various scenarios, and improving the efficiency of use.
[0033] Working Principle: For this type of multi-functional silicone anti-slip mat, the main body 1 contains a grid-like arrangement of anti-static fiber mesh 2. When static electricity is generated due to friction between the mat and an object, it can be quickly conducted away through the fiber mesh, providing all-around protection for the placed object and ensuring the normal operation of electronic devices. The first pad 3 on the upper surface of the main body 1 is initially engaged with the second pad 6 using hooks 5 at both ends and slots 8 at both ends, thus connecting the two. Simultaneously, the adhesive groove 4 on the outer surface of the first pad 3 is tightly adhered to the adhesive tape 7 on the bottom of the second pad 6, further reinforcing the connection and ensuring overall structural stability. The anti-slip pad 9 on the second pad 6 has irregularly distributed, finely textured anti-slip particles 10 on its upper surface. To prevent items from sliding, the anti-slip mat increases the contact area and friction. The drainage groove 11, with a triangular longitudinal section on the outer surface, can quickly collect and drain water based on the drainage characteristics of the triangle, maintaining the anti-slip performance. The third pad 12 at the bottom of the anti-slip mat body 1 is tightly engaged with the T-shaped silicone rod 15 on the upper end of the adsorption plate 14 through the bottom embedded groove 13, which securely connects the adsorption plate 14 and ensures the structural integrity. The suction cups 16 evenly arranged at the bottom of the adsorption plate 14 accelerate the expulsion of air when pressed, forming a negative pressure. The atmospheric pressure is used to firmly adhere the suction cups 16 to the placement surface, enhancing the overall stability of the anti-slip mat to meet the usage needs of different scenarios and improve usage efficiency.
[0034] This completes a series of tasks. The contents not described in detail in this specification are existing technologies known to those skilled in the art.
[0035] Although the present invention 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 substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention.
Claims
1. A multifunctional silica gel non-slip pad, comprising a non-slip pad body (1) and an anti-static fiber net (2), characterized in that: the anti-static fiber net (2) is embedded in the inside of the non-slip pad body (1), the upper end face of the non-slip pad body (1) is integrally provided with a first pad plate (3), the upper end faces of both ends of the first pad plate (3) are integrally provided with clamping hooks (5), the upper end face of the first pad plate (3) is provided with a second pad plate (6), both ends of the second pad plate (6) are provided with clamping grooves (8) matched with the clamping hooks (5), the upper surface of the second pad plate (6) is integrally provided with a non-slip pad plate (9), the upper end face of the non-slip pad plate (9) is inlaid with a plurality of non-slip particles (10), the outer surface of the non-slip pad plate (9) is provided with four groups of drainage grooves (11), the bottom of the non-slip pad body (1) is integrally provided with a third pad plate (12), the lower end face of the third pad plate (12) is connected with an adsorption plate (14), and the bottom of the adsorption plate (14) is integrally provided with a plurality of suction cups (16).
2. The multifunctional silica gel non-slip pad according to claim 1, characterized in that: The anti-static fiber net (2) is staggered and arranged in a cross shape along the inside of the non-slip pad body (1).
3. The multifunctional silica gel non-slip pad according to claim 1, characterized in that: The outer surface of the first pad plate (3) is provided with four groups of sticking grooves (4), and the bottom of the second pad plate (6) is stuck with adhesive tape (7) corresponding to the sticking grooves (4).
4. The multi-functional silica gel non-slip pad according to claim 1, characterized in that: The non-slip particles (10) are irregularly distributed, and the surface of the non-slip particles (10) is provided with fine textures, and the longitudinal section of the drainage groove (11) is triangular.
5. The multi-functional silica gel non-slip mat according to claim 4, characterized in that: The bottom of the third pad plate (12) is provided with three groups of embedding grooves (13), the upper end face of the adsorption plate (14) is integrally provided with three groups of silica gel clamping rods (15), the clamping rods (15) are T-shaped, and the clamping rods (15) and the embedding grooves (13) are correspondingly connected.
6. The multi-functional silicone anti-slip mat as claimed in claim 1, wherein: The suction cups (16) are uniformly arranged along the bottom of the adsorption plate (14), and the bottom surface of the suction cup (16) is provided with an annular groove (17).