Combined military tarpaulin cover structure
By combining simulated grass fabric and multi-band fabric in a modular design, along with wear-resistant, radar-absorbing, and infrared camouflage layers, the problem of limited color options and insufficient multi-band reconnaissance capabilities of existing military tarpaulins has been solved, achieving multi-environment adaptability and excellent camouflage effects.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- WUXI HONGLINPENG NET CO LTD
- Filing Date
- 2025-06-09
- Publication Date
- 2026-07-21
AI Technical Summary
Existing military tarpaulins are limited to a single color, failing to effectively simulate the diverse colors and textures of the natural environment. Their camouflage effect is poor, making them easy for the enemy to detect. Furthermore, they are inadequate in multi-band reconnaissance and cannot meet the requirements of modern military camouflage.
It adopts a hexagonal structure splicing design using simulated grass fabric and multi-band fabric, combined with a wear-resistant layer, a radar-absorbing layer and an infrared camouflage layer to form a combined military tarpaulin cover, simulating various colors and textures of the natural environment, and reducing infrared radiation through the infrared camouflage layer and absorbing radar wave energy through the radar-absorbing layer.
It improves the camouflage effect of the tarpaulin cover, reduces target visibility, adapts to various environments, does not require frequent replacement, and enhances stability and camouflage effect on different terrains.
Smart Images

Figure CN224534893U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of tarpaulin cover technology, and in particular to a combined military tarpaulin cover structure. Background Technology
[0002] Tarpaulins are an important camouflage and concealment device, serving as a "protective umbrella" for military targets such as weapons, equipment, and facilities on the battlefield. To conceal weapons, the military covers them with old fishing nets used by fishermen. In modern military operations, military equipment and facilities need to be deployed and used in a variety of complex environments, such as jungles, deserts, grasslands, and urban ruins.
[0003] For example, patent CN216330602U discloses a military tarpaulin cover fabric with good corrosion resistance. The tarpaulin cover includes an internal abrasion-resistant layer, a waterproof layer, a fire-resistant layer, a corrosion-resistant layer, an absorbent layer, and a water-absorbing layer. The abrasion-resistant layer prevents the tarpaulin cover from being damaged by minor bumps during installation after being taken from the vehicle, thus extending its service life. The waterproof layer prevents water from entering the tarpaulin cover and affecting the gunpowder in the weapon, thus enhancing the waterproof function of the tarpaulin cover.
[0004] However, the existing tarpaulin technology has limitations. Due to its single color, military tarpaulins cannot effectively simulate the various colors and textures in the natural environment, resulting in poor camouflage. At close range or from a specific perspective, the difference between the monochrome tarpaulin and the surrounding environment is quite obvious, making it easy for the enemy to detect. At the same time, monochrome tarpaulins are also insufficient in dealing with multi-band reconnaissance (such as visible light, infrared, radar, etc.) and cannot fully meet the requirements of modern military camouflage. Utility Model Content
[0005] Given that the existing military tarpaulins are limited by their single color, making them unable to effectively simulate the diverse colors and textures of the natural environment and resulting in poor camouflage, and that the difference between the monochrome tarpaulin and the surrounding environment is quite obvious at close range or from a specific perspective, making them easy for the enemy to detect, and that monochrome tarpaulins are also insufficient in dealing with multi-band reconnaissance (such as visible light, infrared, radar, etc.), and cannot fully meet the requirements of modern military camouflage, this utility model is proposed.
[0006] Therefore, the purpose of this utility model is to provide a combined military tarpaulin cover structure, which is designed to use a combination of artificial grass fabric and multi-band fabric in an internal hexagonal shape to simulate a variety of colors and textures in the natural environment. The green, brown and other colors of the artificial grass fabric match the colors of natural vegetation, so that the tarpaulin cover can be visually integrated with the surrounding environment and effectively reduce the visibility of targets.
[0007] To solve the above-mentioned technical problems, this utility model provides the following technical solution: a combined military tarpaulin cover structure, including a tarpaulin cover, the tarpaulin cover including a wear-resistant layer, a radar-absorbing layer, an infrared camouflage layer and a combined layer, the top of the combined layer is provided with multiple sets of first fabric and second fabric, the bottom of the combined layer is provided with an infrared camouflage layer, the bottom of the infrared camouflage layer is provided with a radar-absorbing layer, and the bottom of the radar-absorbing layer is provided with a wear-resistant layer.
[0008] As a preferred embodiment of the combined military tarpaulin cover structure of this utility model, the tarpaulin cover is provided with sealing strips at both ends and both sides, and the sealing strips are used to wrap the edges of the wear-resistant layer, radar-absorbing layer, infrared camouflage layer and combined layer.
[0009] As a preferred embodiment of the combined military tarpaulin cover structure of this utility model, the first fabric and the second fabric are composed of multiple sets of hexagonal structures spliced together, the first fabric is a multi-band fabric, and the second fabric is a simulated grass fabric.
[0010] As a preferred embodiment of the combined military tarpaulin cover structure of this utility model, the base layer of the infrared camouflage layer is a polyimide film with low infrared emissivity, which is as low as 0.1-0.3, and the surface layer of the infrared camouflage layer is covered with a transparent conductive film doped with oxides, with a thickness of about 0.1-0.2 mm.
[0011] As a preferred embodiment of the combined military tarpaulin structure of this utility model, the radar absorbing layer is made of a honeycomb-shaped skeleton using carbon fiber or graphite fiber reinforced composite material.
[0012] As a preferred embodiment of the combined military tarpaulin cover structure of this utility model, the wear-resistant layer is made of high-density polyester fiber or nylon fiber, and the wear-resistant layer is formed by a tight weave of plain weave, twill weave or satin weave. At the same time, the surface of the wear-resistant layer is coated with a layer of polyurethane wear-resistant coating.
[0013] Compared with the prior art, the present invention has at least the following beneficial effects: 1. This utility model, through the design of using a hexagonal structure of artificial grass fabric and multi-wavelength fabric spliced together, can simulate a variety of colors and textures in the natural environment. The green, brown and other colors of the artificial grass fabric match the colors of natural vegetation, making the tarpaulin cover visually blend into the surrounding environment, effectively reducing the visibility of targets. At the same time, the tarpaulin cover can adapt to a variety of different environments, whether it is a jungle, desert or grassland. The combination of multi-colored artificial grass fabric and multi-wavelength fabric can coordinate with the surrounding environment, eliminating the need to frequently change different colored tarpaulins for different combat environments, thus improving the versatility and adaptability of the tarpaulin cover.
[0014] 2. This utility model can effectively reduce the infrared energy radiated by the tarpaulin cover to the outside world by setting an infrared camouflage layer, reduce the infrared contrast with the surrounding environment, and thus maintain a good camouflage effect. In addition, the radar absorbing layer has good conductivity and electromagnetic loss characteristics, and can effectively absorb radar wave energy.
[0015] 3. This utility model uses high-density polyester or nylon fiber for the wear-resistant layer and a layer of polyurethane wear-resistant coating on the surface, which can effectively resist friction and scratches during the construction, storage and use process, just like putting a tough "outer coat" on the tarpaulin cover to prevent surface damage. Attached Figure Description
[0016] Figure 1 This is a top view schematic diagram of the overall structure of the combined military tarpaulin cover of this utility model; Figure 2 This is a schematic diagram of the front sectional view of the combined military tarpaulin cover structure of this utility model.
[0017] Explanation of reference numerals in the attached figures: 1. Tarpaulin cover; 2. Abrasion-resistant layer; 3. Radar-absorbing layer; 4. Infrared camouflage layer; 5. Composite layer; 6. First fabric; 7. Second fabric; 8. Edge sealing strip. Detailed Implementation
[0018] To make the above-mentioned objectives, features and advantages of this utility model more apparent and understandable, the specific embodiments of this utility model will be described in detail below with reference to the accompanying drawings.
[0019] Reference Figures 1-2 As an embodiment of this utility model, a combined military tarpaulin cover structure is provided. This combined military tarpaulin cover structure includes a tarpaulin cover 1, which includes a wear-resistant layer 2, a radar-absorbing layer 3, an infrared camouflage layer 4, and a combined layer 5. The top of the combined layer 5 is provided with multiple sets of first fabric 6 and second fabric 7. The bottom of the combined layer 5 is provided with an infrared camouflage layer 4, the bottom of the infrared camouflage layer 4 is provided with a radar-absorbing layer 3, and the bottom of the radar-absorbing layer 3 is provided with a wear-resistant layer 2.
[0020] The tarpaulin cover 1 has sealing strips 8 at both ends and sides. The sealing strips 8 are used to wrap the edges of the wear-resistant layer 2, radar absorbing layer 3, infrared camouflage layer 4 and combined layer 5. The sealing strips 8 can protect the main body of the tarpaulin cover 1, reduce edge deformation and swaying, and improve the stability and reliability of the tarpaulin cover in various environments.
[0021] The first fabric 6 and the second fabric 7 are composed of multiple sets of hexagonal structures spliced together. The first fabric 6 is a multi-wavelength fabric, and the second fabric 7 is a simulated grass fabric.
[0022] The base layer of the infrared camouflage layer 4 is a polyimide film with low infrared emissivity, which is as low as 0.1-0.3. This effectively reduces the infrared energy radiated by the tarpaulin 1 to the outside world and reduces the infrared contrast with the surrounding environment. The surface of the infrared camouflage layer 4 is covered with a transparent conductive film doped with oxides, with a thickness of about 0.1-0.2 mm. This further reduces the infrared emissivity and improves the transparency and uniformity of the entire infrared camouflage layer 4, so that it can maintain a good camouflage effect in the visible light band.
[0023] The radar absorbing layer 3 uses a honeycomb-shaped skeleton made of carbon fiber or graphite fiber reinforced composite material. This configuration has good electrical conductivity and electromagnetic loss characteristics, and can effectively absorb radar wave energy.
[0024] The wear-resistant layer 2 is made of high-density polyester or nylon fibers, which are tightly woven in plain, twill, or satin patterns to form the basic structure of the wear-resistant layer. At the same time, the surface of the wear-resistant layer 2 is coated with a polyurethane wear-resistant coating, which can effectively resist friction and scratches during the setup, storage, and use process, just like putting a tough "outer coat" on the tarpaulin cover to prevent surface damage.
[0025] During use, the tarpaulin cover 1 can adapt to a variety of different environments through the splicing and combination structure of the first fabric 6 and the second fabric 7 on the combination layer 5. Whether it is a jungle, desert or grassland, the combination of multi-color simulated grass fabric and multi-wavelength fabric of the tarpaulin cover can be coordinated with the surrounding environment. There is no need to frequently change the tarpaulin cover of different colors according to different combat environments, which improves the versatility and adaptability of the tarpaulin cover. Meanwhile, the hexagonal splicing method of the first fabric 6 and the second fabric 7 gives the tarpaulin 1 a certain degree of flexibility and plasticity, which can better fit various complex terrains. On mountainous and hilly terrains, the tarpaulin can be tightly covered on military equipment and facilities, adapting to the terrain undulations and further enhancing the camouflage effect.
[0026] It should be noted that the above embodiments are only used to illustrate the technical solution of this utility model and are not intended to limit it. Although this utility model has been described in detail with reference to preferred embodiments, those skilled in the art should understand that modifications or equivalent substitutions can be made to the technical solution of this utility model without departing from the spirit and scope of the technical solution of this utility model, and all such modifications or substitutions should be covered within the scope of the claims of this utility model.
Claims
1. A modular military tarpaulin cover structure, comprising a tarpaulin cover (1), characterized in that: The tarpaulin cover (1) includes a wear-resistant layer (2), a radar-absorbing layer (3), an infrared camouflage layer (4), and a composite layer (5). The top of the composite layer (5) is provided with multiple sets of first fabric (6) and second fabric (7). The bottom of the composite layer (5) is provided with an infrared camouflage layer (4). The bottom of the infrared camouflage layer (4) is provided with a radar-absorbing layer (3). The bottom of the radar-absorbing layer (3) is provided with a wear-resistant layer (2).
2. The combined military tarpaulin cover structure according to claim 1, characterized in that: The tarpaulin cover (1) is provided with sealing strips (8) at both ends and sides, and the sealing strips (8) are used to wrap the edges of the wear-resistant layer (2), the radar absorbing layer (3), the infrared camouflage layer (4) and the combined layer (5).
3. The combined military tarpaulin cover structure according to claim 1, characterized in that: The first fabric (6) and the second fabric (7) are composed of multiple hexagonal structures spliced together. The first fabric (6) is a multi-band fabric, and the second fabric (7) is a simulated grass fabric.
4. The combined military tarpaulin cover structure according to claim 3, characterized in that: The base layer of the infrared camouflage layer (4) is a polyimide film with low infrared emissivity, which is as low as 0.1-0.
3. The surface of the infrared camouflage layer (4) is covered with a transparent conductive film doped with oxides, with a thickness of about 0.1-0.2 mm.
5. The combined military tarpaulin cover structure according to claim 4, characterized in that: The radar absorbing layer (3) is made of a honeycomb skeleton using carbon fiber or graphite fiber reinforced composite material.
6. The combined military tarpaulin cover structure according to claim 5, characterized in that: The wear-resistant layer (2) is made of high-density polyester fiber or nylon fiber, and is formed by a tight weave of plain weave, twill weave or satin weave. At the same time, a layer of polyurethane wear-resistant coating is applied to the surface of the wear-resistant layer (2).