A new type of oil-resistant rubber plate

CN224702685UActive Publication Date: 2026-09-01NANJING CHANGRUI NEW MATERIALS TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202521929212.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-09
Publication Date
2026-09-01
Estimated Expiration
2035-09-09

AI Technical Summary

Technical Problem

[0003]基于此,有必要针对在实际使用中,橡胶板表面常被油液浸润,易形成油膜,导致摩擦系数下降,不仅人员行走时容易打滑,还会使设备或容器放置其上时发生位移,影响安全与稳定的问题,提供一种新型耐油橡胶板

Benefits of technology

[0012]1、通过在橡胶底板上设置耐油替换机构,不仅具备传统耐油与防护功能,还提升了可维护性与使用便捷性。替换组件作为直接接触面,增加摩擦力以防止打滑,并可在磨损后单独更换,避免整板报废;耐油组件则形成油液导排通道,将多余油液及时引入并通过排油孔排出,减少油膜堆积,保持表面干爽,降低打滑与油液侵蚀风险;

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a novel oil -resistant rubber board belongs to oil -resistant rubber board technical field, this novel oil -resistant rubber board, include: rubber bottom plate, oil -resistant replacement mechanism is used for reinforcing oil -resistant rubber board oil -resistant and is individually replaced to the oil -resistant replacement mechanism of easy wearing spare and is arranged in the top of rubber bottom plate, wherein, the oil -resistant replacement mechanism includes the mounting plate of setting in the top of rubber bottom plate, the top of mounting plate is provided with replacement subassembly, through setting up oil -resistant replacement mechanism on rubber bottom plate, not only have traditional oil -resistant and protection function, still promoted the use convenience and maintainability. Replacement subassembly as direct contact surface, increase friction to prevent skidding, and can be individually replaced after wearing, avoid whole board scrap; Oil -resistant component forms oil -liquid guide and arranges passage, introduces and discharges through oil -discharge hole in time to the redundant oil -liquid, reduces oil film accumulation, keeps the surface dry, reduces the risk of skidding and oil -liquid corrosion.
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Description

Technical Field

[0001] This utility model relates to the field of oil-resistant rubber sheet technology, and in particular to a novel oil-resistant rubber sheet. Background Technology

[0002] Rubber sheets are sheet-like elastic materials made primarily of natural or synthetic rubber through calendering or molding processes. They possess excellent elasticity, flexibility, and sealing properties. Depending on the application environment and medium, rubber sheets can be categorized into different types, such as ordinary rubber sheets, oil-resistant rubber sheets, acid and alkali-resistant rubber sheets, and high-temperature resistant rubber sheets. Oil-resistant rubber sheets are a common type, widely used in industries such as petrochemicals, machinery, automotive repair, metallurgy, and power generation. They can be used as sealing gaskets, protective layers for equipment bases, or flooring materials in industrial workshops. However, in these situations, the surface of the rubber sheet is often wetted with lubricating oil, diesel oil, or hydraulic oil. When the oil remains on the surface of the rubber sheet, it easily forms an oil film. Due to the presence of the oil film, the coefficient of friction of the rubber sheet surface is significantly reduced. Not only is it easy for people to slip when walking on it, posing a safety hazard, but it is also easy for equipment bases or transport containers placed on it to shift, affecting stability. Utility Model Content

[0003] Therefore, it is necessary to provide a new type of oil-resistant rubber sheet to address the problem that in actual use, the surface of the rubber sheet is often wetted by oil, which easily forms an oil film and leads to a decrease in the coefficient of friction. This not only makes it easy for people to slip when walking on it, but also causes equipment or containers to shift when placed on it, affecting safety and stability.

[0004] A novel oil-resistant rubber sheet includes: a rubber base plate; and an oil-resistant replacement mechanism, wherein the oil-resistant replacement mechanism is disposed on the top of the rubber base plate for enhancing the oil resistance of the rubber sheet and for individually replacing easily worn parts; wherein the oil-resistant replacement mechanism includes a mounting plate disposed on the top of the rubber base plate, a replacement component is disposed on the top of the mounting plate, and an oil-resistant component is disposed on the bottom of the mounting plate.

[0005] The replacement component includes a shelf disposed on the top of the mounting plate, a plurality of mounting strips are fixedly installed on the bottom of the shelf, and a plurality of mounting slots are opened on the top of the mounting plate, with the plurality of mounting strips being snapped into the plurality of mounting slots.

[0006] The mounting strip is configured in an I-shape, and the mounting groove is adapted to the shape of the mounting strip.

[0007] The surfaces of the mounting plate and the layer plate are each provided with multiple micropores, and the micropores of the mounting plate and the layer plate are interconnected.

[0008] The four sides of the shelf are all beveled, and multiple micro-suction cups are fixedly installed on the bottom of the rubber base plate.

[0009] A reinforcing plate is fixedly installed at the bottom of the mounting plate, and the reinforcing plate is located on top of the rubber base plate.

[0010] The oil-resistant component includes a storage plate fixedly installed on top of a rubber base plate. The storage plate has a storage cavity inside. The bottom of the reinforcing plate is fixedly connected to the top of the storage plate. The storage cavity is interconnected with multiple micropores.

[0011] Multiple oil drain holes are provided on the outer side of the storage cavity, and all of the multiple oil drain holes extend out of the storage plate. Beneficial effects

[0012] 1. By incorporating an oil-resistant replacement mechanism on the rubber base plate, not only are traditional oil-resistant and protective functions enhanced, but maintainability and ease of use are also improved. The replacement component, as the direct contact surface, increases friction to prevent slippage and can be replaced individually after wear, avoiding the need for the entire plate to be scrapped. The oil-resistant component forms an oil drainage channel, promptly introducing excess oil and draining it through the drain hole, reducing oil film accumulation, keeping the surface dry, and lowering the risk of slippage and oil corrosion. 2. When the shelf surface comes into contact with oil, the oil can be quickly introduced into the storage cavity through the micropores, thereby preventing the oil from accumulating on the surface and forming an oil film, keeping the shelf surface dry, and improving the friction and anti-slip effect when people walk on it. Attached Figure Description

[0013] To more clearly illustrate the technical solutions in this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are some embodiments of this utility model. For those skilled in the art, other drawings can be obtained from these drawings without creative effort.

[0014] Figure 1 This is a schematic diagram of the main structure of this utility model; Figure 2 This is a schematic diagram of the oil-resistant replacement mechanism of this utility model; Figure 3 This is a schematic diagram of the shelf and mounting strip structure of this utility model; Figure 4 This is a schematic diagram of the mounting plate and reinforcing plate structure of this utility model; Figure 5 This is a schematic diagram of the storage board and storage cavity structure of this utility model.

[0015] Figure label: 100. Rubber base plate; 200. Oil-resistant replacement mechanism; 210. Mounting plate; 220. Replacement component; 221. Sheet plate; 222. Mounting strip; 223. Mounting groove; 224. Micropore; 225. Reinforcing plate; 226. Micro suction cup; 230. Oil-resistant component; 231. Storage plate; 232. Storage cavity; 233. Oil drain hole. Detailed Implementation

[0016] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, the technical solutions of the embodiments of this utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some, not all, of the embodiments of this utility model. All other embodiments obtained by those skilled in the art based on the embodiments of this utility model without creative effort are within the scope of protection of this utility model.

[0017] The following is combined with Figures 1-5 This invention describes a novel oil-resistant rubber sheet.

[0018] In one embodiment, a novel oil-resistant rubber sheet includes: a rubber base plate 100; and an oil-resistant replacement mechanism 200, which is disposed on the top of the rubber base plate 100 for enhancing the oil resistance of the rubber sheet and for individually replacing easily worn parts. The oil-resistant replacement mechanism 200 includes a mounting plate 210 disposed on the top of the rubber base plate 100, a replacement component 220 disposed on the top of the mounting plate 210, and an oil-resistant component 230 disposed on the bottom of the mounting plate 210.

[0019] In this embodiment, by setting an oil-resistant replacement mechanism 200 on the rubber base plate 100, the rubber plate not only possesses the traditional functions of oil resistance and protection, but also further enhances maintainability and ease of use. The replacement component 220, as the working surface directly stepped on and in contact with, not only increases friction in its structural design, effectively reducing the risk of slipping in oily environments, but also allows for individual disassembly and replacement when it wears down due to long-term use, preventing the entire rubber plate from being scrapped. The oil-resistant component 230 can form an active oil drainage channel on the surface of the rubber plate, promptly introducing excess oil into the interior and then draining it through the discharge hole, achieving rapid oil removal from the surface. This reduces the accumulation of oil film on the rubber plate surface, keeping the surface dry and preventing slipping, while also reducing the long-term corrosive effect of oil on the rubber surface. It should be noted that the existing oil-resistant rubber sheet includes a rubber base plate 100 and a mounting plate 210. The rubber base plate 100 serves as the overall load-bearing substrate, ensuring the support strength and oil resistance of the rubber sheet. The replacement component 220 is the working surface that directly bears the impact of foot traffic or friction. Structurally, it is fixed to the rubber base plate 100 via the mounting plate 210, without changing the overall thickness or stress pattern of the rubber sheet, thus not affecting its normal load-bearing and usage functions. The oil-resistant component 230 is located at the bottom of the mounting plate 210. Its internal structure mainly serves to collect and drain oil, and it forms an integral seal with the rubber base plate 100, without compromising the integrity and stability of the rubber sheet.

[0020] like Figure 2 , Figure 3 and Figure 4 As shown, the replacement component 220 includes a shelf 221 disposed on the top of the mounting plate 210. Multiple mounting strips 222 are fixedly installed on the bottom of the shelf 221. Multiple mounting slots 223 are opened on the top of the mounting plate 210. The multiple mounting strips 222 are all clamped and connected to the multiple mounting slots 223.

[0021] In this embodiment, the shelf 221 serves as the direct bearing surface of the replacement component 220 and is securely connected to the mounting plate 210 via mounting strips 222 and mounting grooves 223. This ensures stability during use and prevents loosening due to long-term friction or pressure. Furthermore, this locking structure allows for quick disassembly and individual replacement of the shelf 221 after severe wear, eliminating the need to replace the entire rubber base plate 100, thus significantly reducing maintenance costs and resource usage.

[0022] The mounting strip 222 is set in an I-shape, and the shape of the mounting groove 223 is adapted to the mounting strip 222.

[0023] In this embodiment, the mounting strip 222 adopts an I-shaped structure design, which can form double-sided limiting when it cooperates with the mounting groove 223, improving the snap-fit ​​stability. Compared with the traditional rectangular or single-sided plug-in structure, the I-shaped shape is less likely to deform or loosen when subjected to vertical pressure and lateral tension, so that the shelf 221 can still maintain a stable connection under frequent stepping or vibration.

[0024] Multiple microholes 224 are formed on the surfaces of both the mounting plate 210 and the shelf 221, and the microholes 224 of the mounting plate 210 and the shelf 221 are interconnected.

[0025] In this embodiment, the multiple micropores 224 on the surfaces of the mounting plate 210 and the layer plate 221 are interconnected. When the layer plate 221 comes into contact with external oil, it can quickly guide the surface oil to the interior of the mounting plate 210, so as to avoid the oil remaining on the surface of the layer plate 221 for a long time, reduce the possibility of forming an oil film, thereby maintaining the friction of the plate surface and improving the anti-slip effect.

[0026] The four sides of the shelf 221 are all beveled, and multiple micro suction cups 226 are fixedly installed on the bottom of the rubber base plate 100.

[0027] In this embodiment, the four edges of the shelf 221 are all designed as bevels, which can effectively prevent the edges from curling up during long-term use. At the same time, it can make the surface layer form a smooth transition with the adjacent rubber sheet or the ground, reduce the risk of tripping and curling, and improve safety and aesthetics. The multiple micro suction cups 226 at the bottom of the rubber base plate 100 can be adsorbed to the ground by negative pressure during installation, so that the rubber sheet can remain firmly positioned even in the presence of oil and is not easily displaced by people stepping on it or by equipment vibration.

[0028] A reinforcing plate 225 is fixedly installed on the bottom of the mounting plate 210, and the reinforcing plate 225 is located on the top of the rubber base plate 100.

[0029] In this embodiment, the reinforcing plate 225 is tightly fitted to the rubber base plate 100, which can significantly improve the overall load-bearing capacity and deformation resistance of the rubber plate during long-term use. With the support of the reinforcing plate 225, the mounting plate 210 is not prone to bending or denting when subjected to personnel stepping on it or equipment pressure, thereby ensuring the stable working state of the replacement component 220 and the oil-resistant component 230; It should be noted that the reinforcing plate 225 can be made of materials with high strength and corrosion resistance, such as metal steel plate, stainless steel plate, and aluminum alloy plate. Alternatively, fiber-reinforced composite materials such as glass fiber reinforced resin plate and carbon fiber composite plate can be selected according to the usage environment. This can enhance the overall bending and compressive strength of the rubber base plate 100 without excessively increasing the weight of the plate and affecting the convenience of laying and maintenance.

[0030] like Figure 2 , Figure 3 and Figure 5 As shown, the oil-resistant component 230 includes a storage plate 231 fixedly installed on the top of the rubber base plate 100. The storage plate 231 has a storage cavity 232 inside. The bottom of the reinforcing plate 225 is fixedly connected to the top of the storage plate 231. The storage cavity 232 is interconnected with a plurality of micropores 224.

[0031] In this embodiment, when the surface of the shelf 221 comes into contact with the oil, the oil can be quickly introduced into the storage cavity 232 through the micropores 224, thereby preventing the oil from accumulating on the surface to form an oil film, keeping the shelf surface dry, and improving the friction and anti-slip effect when people walk.

[0032] Multiple oil drain holes 233 are provided on the outer side of the storage cavity 232, and all the oil drain holes 233 extend out of the storage plate 231.

[0033] In this embodiment, the oil drain hole 233 extends out of the storage plate 231, so that the oil accumulated inside the storage cavity 232 can be drained in time, avoiding the problem of excessive accumulation of oil in the storage cavity 232, which may cause overflow or corrosion. The setting of multiple oil drain holes 233 increases the flexibility of oil drainage. Oil can flow out through any one of the oil drain holes 233, thereby shortening the oil drainage path and improving the oil drainage efficiency.

[0034] Working Principle: During use, the oil-resistant rubber sheet 221 serves as the working surface directly stepped on by personnel and in contact with equipment, primarily providing basic anti-slip and load-bearing functions. The sheet 221 is securely connected to the mounting groove 223 via an I-beam mounting strip 222, ensuring stability during daily use and allowing for individual disassembly and replacement after wear, avoiding the need for complete sheet scrapping and significantly improving maintenance efficiency and cost-effectiveness. The four edges of the sheet 221 are beveled, effectively preventing edge warping and tripping risks when multiple rubber sheets are spliced ​​or when edges are exposed, maintaining a flat and safe installation. When the rubber sheet surface comes into contact with external oil, the oil can be quickly introduced into the internal storage cavity 232 through multiple micro-holes 224 on the sheet 221 and mounting plate 210, reducing oil retention on the surface and preventing the formation of an oil film. The storage cavity 232 serves as a temporary oil collection point. As the capacity increases, the oil is promptly drained through multiple drain holes 233 on the outside, ensuring the surface remains dry and maintaining high friction and anti-slip performance. The interconnected design of the storage cavity 232 and the drain holes 233 forms a complete oil flow and discharge path, enabling the rubber sheet to maintain a stable operating condition in oily environments over a long period of time. In terms of load-bearing capacity, the reinforcing plate 225 at the bottom of the mounting plate 210 fits tightly against the rubber base plate 100, further enhancing the overall compressive and bending resistance, ensuring that the replacement component 220 and the oil-resistant component 230 remain stable and reliable under stress. Meanwhile, the micro-suction cups 226 evenly distributed at the bottom of the rubber base plate 100 adhere to the ground through negative pressure, firmly fixing the entire plate and preventing displacement due to personnel movement or equipment vibration.

[0035] The above embodiments are only used to illustrate the technical solutions of this utility model, and are not intended to limit it. Although this utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some of the technical features. Such modifications or substitutions will not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of this utility model.

Claims

1. A novel oil-resistant rubber sheet, characterized in that, include: Rubber base plate (100); An oil-resistant replacement mechanism (200) for enhancing the oil resistance of the rubber sheet and for individually replacing easily worn parts is provided on the top of the rubber base plate (100); The oil-resistant replacement mechanism (200) includes a mounting plate (210) disposed on the top of the rubber base plate (100), a replacement component (220) disposed on the top of the mounting plate (210), and an oil-resistant component (230) disposed on the bottom of the mounting plate (210).

2. The novel oil-resistant rubber sheet according to claim 1, characterized in that, The replacement component (220) includes a shelf (221) disposed on the top of the mounting plate (210). Multiple mounting strips (222) are fixedly installed on the bottom of the shelf (221). Multiple mounting slots (223) are opened on the top of the mounting plate (210). The multiple mounting strips (222) are all clamped and connected to the multiple mounting slots (223).

3. The novel oil-resistant rubber sheet according to claim 2, characterized in that, The mounting strip (222) is configured in the shape of an I-beam, and the mounting groove (223) is adapted to the shape of the mounting strip (222).

4. The novel oil-resistant rubber sheet according to claim 2, characterized in that, The mounting plate (210) and the layer plate (221) are provided with a plurality of microholes (224), and the microholes (224) of the mounting plate (210) and the layer plate (221) are interconnected.

5. The novel oil-resistant rubber sheet according to claim 2, characterized in that, The four sides of the layer (221) are all set as bevels, and a number of micro suction cups (226) are fixedly installed on the bottom of the rubber base plate (100).

6. The novel oil-resistant rubber sheet according to claim 2, characterized in that, A reinforcing plate (225) is fixedly installed on the bottom of the mounting plate (210), and the reinforcing plate (225) is located on top of the rubber base plate (100).

7. The novel oil-resistant rubber sheet according to claim 6, characterized in that, The oil-resistant component (230) includes a storage plate (231) fixedly installed on the top of a rubber base plate (100), the storage plate (231) having a storage cavity (232) inside, the bottom of a reinforcing plate (225) being fixedly connected to the top of the storage plate (231), and the storage cavity (232) communicating with a plurality of micropores (224).

8. The novel oil-resistant rubber sheet according to claim 7, characterized in that, The storage cavity (232) has multiple oil drain holes (233) on its outer side, and the multiple oil drain holes (233) extend out of the storage plate (231).