High-elasticity oil-proof rubber pad
By using a multi-layered structure and a removable finish pad, the problem of cleaning and replacing rubber pads after prolonged use is solved, enabling easy cleaning and replacement of highly elastic, oil-resistant rubber pads and keeping the surface clean.
Patent Information
- Application Number
- CN202520405854.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-10
- Publication Date
- 2026-01-13
- Estimated Expiration
- 2035-03-10
AI Technical Summary
Existing rubber pads are difficult to keep clean after prolonged use and fail to meet the requirements for easy cleaning and replacement, while also lacking sufficient oil resistance.
It adopts a multi-layer structure design, including a support base, a decorative pad, an elastic base layer, a reinforcing layer, and an anti-slip layer. The design of the removable decorative pad and the combination of clearance grooves and replacement operation holes enable convenient replacement and cleaning of the decorative pad.
It improves the cleanliness of the rubber pad surface, enhances the ease of cleaning and replacement, and also has good oil-resistant properties.
Smart Images

Figure CN223791143U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of rubber pad technology, specifically to a highly elastic oil-resistant rubber pad. Background Technology
[0002] Rubber mats are sheet-like products with a certain thickness and area, made primarily of rubber. They have many uses and are widely used in industrial and mining enterprises, transportation departments, and building floors. For example, as a household product, rubber mats can be laid on the floor or tabletop.
[0003] Some products add anti-slip textures or coatings to the surface of the rubber mat to improve its anti-slip performance and wear resistance; others adopt a multi-layer composite structure to enhance its overall strength and oil resistance. However, while these improvements enhance the stain resistance of the rubber mat to some extent, the surface still becomes dirty after prolonged use, and they also fail to meet users' needs for easy cleaning, replacement, and enhanced adsorption capacity. Utility Model Content
[0004] (a) Technical problems to be solved
[0005] This invention provides a highly elastic oil-resistant rubber pad, which solves the problems mentioned in the background art.
[0006] (II) Technical Solution
[0007] To achieve the above objectives, this utility model provides the following technical solution: a highly elastic oil-resistant rubber pad, comprising a support, a decorative pad, an elastic base layer, a reinforcing layer, and an anti-slip layer. The support, elastic base layer, reinforcing layer, and anti-slip layer are stacked sequentially from top to bottom and adjacent layers are bonded and fixed to each other. The top of the support has a placement groove that mates with the decorative pad. The decorative pad is detachably placed in the placement groove, and the upper surface of the decorative pad in the placement groove is flush with the top of the support.
[0008] Preferably, an opening is formed at the center of the support, and a thin-walled protrusion is formed on the side of the support facing away from the veneer pad. The thin-walled protrusion is located outside the opening and can pass through the opening and push out of the veneer pad by its own deformation. The thin-walled protrusion is configured as a hemispherical thin-walled structure, and the diameter of the thin-walled protrusion is larger than the diameter of the opening.
[0009] In a further preferred embodiment, a first clearance groove is formed at the center of the elastic base layer, and a second clearance groove is formed at the center of the reinforcing layer, wherein the first clearance groove and the second clearance groove cooperate to accommodate the thin-walled protrusion formed at the bottom of the support.
[0010] In a further preferred embodiment, a replacement operation hole is formed at the center of the anti-slip layer, the replacement operation hole protrudes towards the thin wall, and the diameter of the replacement operation hole is smaller than the diameter of the first clearance groove and the second clearance groove.
[0011] In a further preferred embodiment, the finishing pad is a diatomaceous earth pad, and the length, width, and height of the finishing pad are adapted to the length, width, and depth of the placement groove, respectively.
[0012] (III) Beneficial Effects
[0013] Compared with the prior art, this utility model provides a highly elastic oil-resistant rubber pad, which has the following beneficial effects:
[0014] In this invention, the detachable decorative pad on the top of the support allows the rubber pad to be removed and replaced or cleaned after prolonged use, thereby improving the cleanliness of the rubber pad surface. In addition, the combination of the first clearance groove, the second clearance groove, and the replacement operation hole allows the user to push the thin-walled protrusion out of the decorative pad through the replacement operation hole when it is necessary to remove the decorative pad, thus improving the convenience of removing the decorative pad. Attached Figure Description
[0015] Figure 1 This is a schematic diagram of the disassembled structure of a highly elastic, oil-resistant rubber pad according to the implementation plan.
[0016] Figure 2 for Figure 1 A schematic diagram of the structure of a combination of medium- and high-elasticity oil-resistant rubber pads;
[0017] Figure 3 for Figure 2 Cross-sectional view of a medium-high elasticity oil-resistant rubber pad after the finishing pad has been removed.
[0018] In the diagram: 10, support; 11, placement groove; 12, thin-walled protrusion; 13, opening; 20, finishing pad; 30, elastic base layer; 31, first clearance groove; 40, reinforcing layer; 41, second clearance groove; 50, anti-slip layer; 51, replacement operating hole. Detailed Implementation
[0019] 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.
[0020] Please see Figures 1 to 3A highly elastic, oil-resistant rubber pad includes a support 10, a finishing pad 20, an elastic base layer 30, a reinforcing layer 40, and an anti-slip layer 50. The support 10, elastic base layer 30, reinforcing layer 40, and anti-slip layer 50 are stacked sequentially from top to bottom, and adjacent layers are bonded and fixed together, forming an integral structure. The top of the support 10 has a placement groove 11 that mates with the finishing pad 20. The length, width, and height of the finishing pad 20 are adapted to the length, width, and depth of the placement groove 11, respectively. The finishing pad 20 is detachably disposed in the placement groove 11, and after the finishing pad 20 is placed in the placement groove 11, its upper surface is flush with the top of the support 10. The decorative mat 20, serving as the primary working surface when using rubber mats, can be made of diatomaceous earth. Diatomaceous earth mats possess exceptional absorbency, rapidly absorbing moisture and allowing it to evaporate naturally through their porous structure, thus keeping the mat dry. This characteristic makes diatomaceous earth mats perform exceptionally well in humid environments such as bathrooms and kitchens. Made from natural diatomaceous earth, diatomaceous earth mats contain no harmful chemicals and are harmless to the environment and human health. Compared to some plastic mats that may release harmful substances, diatomaceous earth mats do not produce any harmful gases during use, making them safer and healthier. Diatomaceous earth mats also possess antibacterial properties, inhibiting the growth of bacteria and mold. Their porous structure can trap bacteria and absorb their moisture, making it difficult for bacteria to survive and multiply. This characteristic allows diatomaceous earth mats to remain clean and hygienic over long-term use, reducing the risk of cross-contamination. Furthermore, if the surface of the decorative mat 20 becomes heavily soiled with oil, it can be disassembled for cleaning or replacement.
[0021] In this embodiment, an opening 13 is formed at the center of the support 10, penetrating the support 10. Additionally, a thin-walled protrusion 12 is formed on the side of the support 10 facing away from the decorative pad 20. This thin-walled protrusion 12 can be made of elastic rubber material and bonded to the support 10. The thin-walled protrusion 12 is a hemispherical thin-walled structure, and the diameter of the protrusion 12 is larger than the diameter of the opening 13, allowing it to deform and protrude through the opening 13 when pressed. Furthermore, the decorative pad 20 can be pushed out of the placement groove 11 by pushing the thin-walled protrusion 12, so that when the decorative pad 20 and the placement groove 11 fit closely, it can be easily removed. Additionally, the inner cavity of the thin-walled protrusion 12 faces the decorative pad 20, allowing it to catch excess moisture that seeps into the decorative pad 20, preventing moisture from seeping into the underlying structure.
[0022] In this embodiment, a first clearance groove 31 is formed at the center of the elastic base layer 30, and a second clearance groove 41 is formed at the center of the reinforcing layer 40. The first clearance groove 31 and the second clearance groove 41 cooperate to accommodate the thin-walled protrusion 12 formed at the bottom of the support seat 10, so that the rubber pad as a whole avoids bulging in the central area. A replacement operation hole 51 is formed at the center of the anti-slip layer 50. The replacement operation hole 51 faces the thin-walled protrusion 12, and the diameter of the replacement operation hole 51 is smaller than the diameter of the first relief groove 31 and the second relief groove 41. When replacing the trim pad 20, the user can use a long and thin object to insert it through the replacement operation hole 51, pass through the second relief groove 41 and the first relief groove 31, push the thin-walled protrusion 12, and push the trim pad 20 out. The trim pad 20 is removable at the top of the support 10, which allows the rubber pad to be removed and replaced or cleaned after long-term use, thereby improving the cleanliness of the rubber pad surface. In addition, the cooperation of the first relief groove 31, the second relief groove 41 and the replacement operation hole 51 allows the user to push the thin-walled protrusion 12 out of the trim pad 20 from the replacement operation hole 51 when it is necessary to remove the trim pad 20, which improves the convenience of removing the trim pad 20.
[0023] In this embodiment, the main function of the anti-slip layer 50 is to provide a certain amount of friction to reduce the sliding of the rubber pad on the placement surface. Therefore, a rubber material with a high coefficient of friction and wear resistance can be selected, such as natural rubber or chlorosulfonated polyethylene. The main function of the reinforcing layer 40 is to enhance the overall strength and stability of the rubber pad, reducing its deformation or breakage under external forces. It can be made of materials with high strength and chemical corrosion resistance, such as nitrile rubber or neoprene rubber. The main function of the elastic base layer 30 is to provide shock absorption and cushioning, protecting items placed on the rubber pad from impact and vibration. Ethylene propylene rubber is very suitable for making the elastic base layer 30 due to its heat resistance, cold resistance, aging resistance, and excellent elasticity. Alternatively, natural rubber, due to its excellent resilience and fatigue resistance, can also be used as a material for the elastic base layer 30.
[0024] Of all the solutions mentioned above, those involving the connection between two components can be selected according to the actual situation, such as bonding, welding, bolt and nut connection, bolt or screw connection, or other known connection methods, which will not be elaborated here. For all the fixed connections mentioned above, bonding is preferred. Although embodiments of this utility model have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of this utility model. The scope of this utility model is defined by the appended claims and their equivalents.
Claims
1. A highly elastic oil-resistant rubber pad, characterized in that, The device includes a support (10), a decorative pad (20), an elastic base layer (30), a reinforcing layer (40), and an anti-slip layer (50). The support (10), elastic base layer (30), reinforcing layer (40), and anti-slip layer (50) are stacked sequentially from top to bottom and adjacent layers are bonded and fixed to each other. The top of the support (10) has a placement groove (11) that mates with the decorative pad (20). The decorative pad (20) is detachably disposed in the placement groove (11), and the upper surface of the decorative pad (20) in the placement groove (11) is flush with the top of the support (10).
2. The highly elastic oil-resistant rubber pad according to claim 1, characterized in that: An opening (13) is formed at the center of the support (10) through the support (10). A thin-walled protrusion (12) is formed on the side of the support (10) facing away from the decorative pad (20). The thin-walled protrusion (12) is located outside the opening (13), and the thin-walled protrusion (12) can pass through the opening (13) and push out of the decorative pad (20) by its own deformation.
3. The highly elastic oil-resistant rubber pad according to claim 2, characterized in that: The thin-walled protrusion (12) is configured as a hemispherical thin-walled structure, and the diameter of the sphere of the thin-walled protrusion (12) is larger than the diameter of the opening (13).
4. The highly elastic oil-resistant rubber pad according to claim 3, characterized in that: A first clearance groove (31) is formed at the center of the elastic base layer (30), and a second clearance groove (41) is formed at the center of the reinforcing layer (40). The first clearance groove (31) and the second clearance groove (41) cooperate to accommodate the thin-walled protrusion (12) formed at the bottom of the support (10).
5. The highly elastic oil-resistant rubber pad according to claim 4, characterized in that: A replacement operation hole (51) is formed at the center of the anti-slip layer (50). The replacement operation hole (51) protrudes towards the thin wall protrusion (12), and the diameter of the replacement operation hole (51) is smaller than the diameter of the first clearance groove (31) and the second clearance groove (41).
6. The highly elastic oil-resistant rubber pad according to claim 1, characterized in that: The finishing pad (20) is a diatomaceous earth pad, and the length, width and height of the finishing pad (20) are adapted to the length, width and depth of the placement groove (11), respectively.