Plastic material capable of reducing aging damage
Through a multi-layered structural design, including a plastic matrix, a composite layer, and a wear-resistant layer, the problem of anti-aging of plastic materials is solved, and the material's tear resistance, water resistance, flame retardancy, and corrosion resistance are improved, thus extending its service life.
Patent Information
- Application Number
- CN202520517374.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-24
- Publication Date
- 2026-02-06
- Estimated Expiration
- 2035-03-24
AI Technical Summary
Existing plastic materials do not fully consider anti-aging structures, leading to rapid material damage and shortened service life.
It adopts a multi-layer structure design, including a plastic matrix, a composite layer and a wear-resistant layer. It utilizes a combination of elastic layer, tear-resistant layer, fiber reinforcement layer, flame-retardant layer, waterproof layer and UV polyurethane coating to enhance the material's tear resistance, waterproofness, flame retardancy and corrosion resistance.
It improves the structural strength and anti-aging properties of plastic materials, extends their service life, and enhances their overall quality.
Smart Images

Figure CN223877682U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the field of plastic material, concretely to a plastic material of reducing aging damage. BACKGROUND
[0002] Plastic material, also known as plastic, is a kind of artificial synthetic or semi-synthetic material made of high molecular polymer as the basis by adding plasticizer, stabilizer and other auxiliary materials, which has the characteristics of strong plasticity, lightweight, corrosion resistance and is widely used in packaging, construction, electronics, medical and other fields.
[0003] However, the current plastic material still has some deficiencies, and the existing plastic material has not been fully considered in the anti-aging structure. If the plastic material is not fully considered in the anti-aging structure during use, the performance of the plastic material will be affected, which may cause the plastic material to be damaged quickly, greatly shorten the service life of the plastic material, and make it inconvenient for the staff to use the plastic material.
[0004] Therefore, it is urgent to improve this defect, and the utility model provides a plastic material for reducing aging damage. UTILITY MODEL CONTENT
[0005] The utility model aims at providing a plastic material for reducing aging damage to solve the problems in the background art.
[0006] To achieve the above object, the utility model provides the following technical scheme: a plastic material for reducing aging damage, comprising a plastic base body, a composite layer and a wear-resistant layer, a base layer support layer is arranged below the plastic base body, the base layer support layer is a dense rubber structure, a reinforcing layer is arranged above the base layer support layer, the reinforcing layer comprises an elastic layer, a through hole, a tear-resistant layer and a fiber reinforced layer, the composite layer is arranged above the reinforcing layer, the composite layer comprises a first surface layer, a flame-retardant layer, a waterproof layer and a second surface layer, and the wear-resistant layer is arranged above the composite layer.
[0007] Further, the elastic layer is an elastic plastic structure, through holes are equidistantly arranged in the interior of the elastic layer, and a tear-resistant layer is arranged on the upper side of the elastic layer.
[0008] Further, the tear-resistant layer is a silica gel structure, and a fiber reinforced layer is arranged in the interior of the tear-resistant layer.
[0009] Further, the fiber reinforced layer is a glass fiber structure, and the fiber reinforced layer has a grid structure.
[0010] Further, the first surface layer is bonded with the flame-retardant layer, the flame-retardant layer is provided with the waterproof layer, and the waterproof layer is bonded with the second surface layer.
[0011] Further, the first surface layer and the second surface layer have equal thickness, and the first surface layer is specifically a composite fiber layer, and the second surface layer is specifically a resin thickening layer.
[0012] Further, the flame-retardant layer is of a chlorinated rubber structure, and the waterproof layer is of a polyurethane structure.
[0013] Further, the wear-resistant layer is of an aluminum oxide structure, a UV polyurethane coating layer is arranged above the wear-resistant layer, a corrosion-resistant coating layer is coated above the UV polyurethane coating layer, and the corrosion-resistant coating layer is of a polyethylene structure.
[0014] The utility model provides a plastic material of reducing aging damage has the following beneficial effects:
[0015] 1, the utility model discloses a reinforcing layer is arranged, and in the use of plastic material, the even distribution of through -hole that is arranged in the elastic layer of the elastic plastic structure is favorable to buffering pressure relief, and the tear -resistant layer of silica gel structure and the fiber reinforced layer of glass fiber structure that is arranged in the tear -resistant layer can effectively improve the tear -resistant effect, enhance structural strength, and then be favorable to improving the comprehensive quality of plastic material, and simple structure is convenient for staff to use plastic material.
[0016] 2, the utility model discloses a UV polyurethane coating layer, and in the use of plastic material, the UV polyurethane coating layer is arranged above the wear-resistant layer, and the UV polyurethane coating layer forms a protective layer through ultraviolet curing, and the UV polyurethane coating layer delays the discoloration and aging of plastic material through the absorption of ultraviolet rays, prolongs the service life of plastic material, and facilitates staff to use plastic material. ACCURACY OF DRAWINGS
[0017] Figure 1 It is a three-dimensional structure schematic view of the utility model discloses a plastic material of reducing aging damage.
[0018] Figure 2 It is a three-dimensional structure split schematic view of the utility model discloses a plastic material of reducing aging damage.
[0019] Figure 3 It is a reinforcing layer three-dimensional structure split schematic view of the utility model discloses a plastic material of reducing aging damage.
[0020] Figure 4 It is a composite layer three-dimensional structure split schematic view of the utility model discloses a plastic material of reducing aging damage.
[0021] In the diagram: 1. Plastic substrate; 2. Base support layer; 3. Reinforcing layer; 301. Elastic layer; 302. Through-hole; 303. Tear-resistant layer; 304. Fiber reinforcement layer; 4. Composite layer; 401. First surface layer; 402. Flame retardant layer; 403. Waterproof layer; 404. Second surface layer; 5. Wear-resistant layer; 6. UV polyurethane coating; 7. Anti-corrosion coating. Detailed Implementation
[0022] The embodiments of this utility model will be described in further detail below with reference to the accompanying drawings and examples. The following examples are for illustrative purposes only and should not be construed as limiting the scope of this utility model.
[0023] like Figures 1-3 As shown, a plastic material for reducing aging damage includes a plastic matrix 1, a composite layer 4, and a wear-resistant layer 5. A base support layer 2 is provided below the plastic matrix 1, and the base support layer 2 is a dense rubber structure. A reinforcing layer 3 is provided above the base support layer 2. The reinforcing layer 3 includes an elastic layer 301, through holes 302, a tear-resistant layer 303, and a fiber reinforcement layer 304. The elastic layer 301 is an elastic plastic structure, and through holes 302 are equidistantly opened inside the elastic layer 301. A tear-resistant layer 303 is provided on the upper side of the elastic layer 301. The tear-resistant layer 303 is a silicone structure, and a fiber reinforcement layer 304 is provided inside the tear-resistant layer 303. The fiber reinforcement layer 304 is a glass fiber structure and has a mesh structure.
[0024] The specific operation is as follows: a base support layer 2 with a dense rubber structure is provided below the plastic substrate 1, and a reinforcing layer 3 is provided above the base support layer 2. The elastic layer 301 with an elastic plastic structure has uniformly distributed through holes 302, which is conducive to buffering and pressure relief. The tear-resistant layer 303 with a silicone structure and the fiber reinforcement layer 304 with a glass fiber structure are provided inside the tear-resistant layer 303, which can effectively improve the tear resistance. The structure is simple and convenient for workers to use the plastic material.
[0025] like Figure 1 , Figure 2 and Figure 4As shown, the composite layer 4 is arranged above the reinforcing layer 3, and the composite layer 4 comprises a first surface layer 401, a flame-retardant layer 402, a waterproof layer 403, and a second surface layer 404, the flame-retardant layer 402 is bonded above the first surface layer 401, the waterproof layer 403 is arranged above the flame-retardant layer 402, and the second surface layer 404 is bonded above the waterproof layer 403, the thicknesses of the first surface layer 401 and the second surface layer 404 are equal, the first surface layer 401 is specifically a composite fiber layer, the second surface layer 404 is specifically a resin thickening layer, the flame-retardant layer 402 is a chlorinated rubber structure, the waterproof layer 403 is a polyurethane structure, the wear-resistant layer 5 is arranged above the composite layer 4, the wear-resistant layer 5 is an aluminum oxide structure, a UV polyurethane coating layer 6 is arranged above the wear-resistant layer 5, and a corrosion-resistant coating layer 7 is coated above the UV polyurethane coating layer 6, and the corrosion-resistant coating layer 7 is a polyethylene structure;
[0026] Specifically, the composite layer 4 is arranged above the reinforcing layer 3, the flame-retardant layer 402 is bonded above the first surface layer 401, and the waterproof layer 403 is arranged above the flame-retardant layer 402, the flame-retardant layer 402 is a chlorinated rubber structure, and the waterproof layer 403 is a polyurethane structure, so that the plastic material has flame-retardant and waterproof properties, in addition, the wear-resistant layer 5 with an aluminum oxide structure is arranged above the composite layer 4, and the UV polyurethane coating layer 6 is arranged above the wear-resistant layer 5 to delay discoloration and aging, and the corrosion-resistant coating layer 7 with a polyethylene structure is coated above the UV polyurethane coating layer 6 to perform certain corrosion-resistant treatment on the plastic material, and the structure is simple, facilitating the use of the plastic material by the staff.
[0027] In summary, the plastic material for reducing aging damage has the following advantages: Figures 1-4 As shown in the structure in the middle, during the use of the plastic material, first, the base layer support layer 2 with a dense rubber structure is arranged below the plastic base body 1, the reinforcing layer 3 is arranged above the base layer support layer 2, the uniformly distributed through holes 302 are arranged inside the elastic layer 301 with an elastic plastic structure, which is beneficial to buffer and pressure relief, the tear-resistant layer 303 with a silica gel structure and the fiber reinforced layer 304 with a glass fiber structure arranged inside the tear-resistant layer 303 can effectively improve the tear-resistant effect, in addition, the composite layer 4 is arranged above the reinforcing layer 3, the flame-retardant layer 402 is bonded above the first surface layer 401, and the waterproof layer 403 is arranged above the flame-retardant layer 402, the flame-retardant layer 402 is a chlorinated rubber structure, and the waterproof layer 403 is a polyurethane structure, so that the plastic material has flame-retardant and waterproof properties, in addition, the wear-resistant layer 5 with an aluminum oxide structure is arranged above the composite layer 4, and the UV polyurethane coating layer 6 is arranged above the wear-resistant layer 5 to delay discoloration and aging, and the corrosion-resistant coating layer 7 with a polyethylene structure is coated above the UV polyurethane coating layer 6 to perform certain corrosion-resistant treatment on the plastic material, and the structure is simple, facilitating the use of the plastic material by the staff.
[0028] The embodiments of the present application are given for the purpose of illustration and description, and are not intended to be exhaustive or to limit the present application to the forms disclosed. Many modifications and variations will be apparent to those of ordinary skill in the art. Embodiments were chosen and described in order to best explain the principles of the present application and its practical application, and to thereby enable others skilled in the art to best utilize the present application with various modifications as are suited to the particular use contemplated.
Claims
1. A plastic material for reducing the effects of aging, comprising a plastic matrix (1), a composite layer (4) and a wear-resistant layer (5), characterized in that, The lower part of the plastic base (1) is provided with a base support layer (2), and the base support layer (2) is a dense rubber structure, and the upper part of the base support layer (2) is provided with a reinforcing layer (3), and the reinforcing layer (3) comprises an elastic layer (301), a through hole (302), a tear-resistant layer (303) and a fiber reinforced layer (304), the composite layer (4) is arranged above the reinforcing layer (3), and the composite layer (4) comprises a first surface layer (401), a flame-retardant layer (402), a waterproof layer (403) and a second surface layer (404), and the wear-resistant layer (5) is arranged above the composite layer (4).
2. The plastic material for reducing aging damage according to claim 1, characterized in that, The elastic layer (301) is an elastic plastic structure, and the through hole (302) is equidistantly arranged in the elastic layer (301), and the upper side of the elastic layer (301) is provided with a tear-resistant layer (303).
3. The plastic material for reducing aging damage according to claim 1, characterized in that, The tear-resistant layer (303) is a silica gel structure, and the fiber reinforced layer (304) is arranged in the tear-resistant layer (303).
4. The plastic material for reducing aging damage according to claim 1, characterized in that, The fiber reinforced layer (304) is a glass fiber structure, and the fiber reinforced layer (304) is in a grid structure.
5. A plastic material for reducing aging damage according to claim 1, characterized in that, The upper part of the first surface layer (401) is bonded with the flame-retardant layer (402), the upper part of the flame-retardant layer (402) is provided with the waterproof layer (403), and the upper part of the waterproof layer (403) is bonded with the second surface layer (404).
6. The plastic material of claim 1, wherein the plastic material is a polyolefin. The thicknesses of the first surface layer (401) and the second surface layer (404) are equal, the first surface layer (401) is a composite fiber layer, and the second surface layer (404) is a resin thickening layer.
7. The plastic material of claim 1, wherein the plastic material is a polyolefin. The flame-retardant layer (402) is a chlorinated rubber structure, and the waterproof layer (403) is a polyurethane structure.
8. The plastic material of claim 1, wherein the plastic material is a polyolefin. The wear-resistant layer (5) is an aluminum oxide structure, the upper part of the wear-resistant layer (5) is provided with a UV polyurethane coating (6), the upper part of the UV polyurethane coating (6) is coated with a corrosion-resistant coating (7), and the corrosion-resistant coating (7) is a polyethylene structure.