Environment self-adaptive color-changing camouflage net
By designing the color-changing material layer, corrugated gap area and connection area in the camouflage net, and combining the induction unit layer and optical film layer, the shrinkage effect of the edge lock rope is used to achieve the aggregation of the protective layer, which solves the problem that the camouflage net cannot adjust the color in an extreme or rapidly changing environment, and achieves the camouflage effect of adaptive color distortion in the environment.
Patent Information
- Application Number
- CN202421586859.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-05
- Publication Date
- 2025-05-23
- Estimated Expiration
- 2034-07-05
AI Technical Summary
The camouflage net cannot adjust the color in time to maintain the best camouflage effect under extreme or rapidly changing environmental conditions.
An environmentally adaptive color distortion camouflage network is designed, using a combination of color distortion material layer, corrugated gap area and connection area, combined with the induction unit layer and optical film layer, the area of the protective layer is gathered through the shrinkage effect of the edge lock rope, forming a wavy surface to efficiently absorb and refract light, and realize adaptive color distortion.
The perfect integration of the camouflage net and the surrounding environment is achieved, and the adaptive color distortion characteristics are maximized, thereby achieving excellent camouflage effect.
Smart Images

Figure CN222895619U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of camouflage nets, in particular to an environment-adaptive color-changing camouflage net. Background Art
[0002] Camouflage nets are a tool used to hide targets and blend them into the surrounding environment to avoid being discovered. They usually have colors, textures, and patterns similar to the surrounding natural environment. In certain places that require confidentiality or privacy protection, such as important facilities, scientific research bases, etc., camouflage nets are used to prevent being easily detected by the outside world. By simulating the surrounding environment, the target can be effectively hidden and protected, and better integrated into the surrounding natural environment.
[0003] Under extreme or special environmental conditions, such as extreme cold, high temperature, high humidity, etc., its color, material and performance may be affected. For rapidly changing environments, such as seasonal changes, changes in vegetation and light caused by the temperature difference between day and night, and the surrounding environmental colors, the color absorption effect is weakened as the light changes, which will affect the absorption effect of the camouflage net, so that the camouflage net may not be adjusted in time to maintain the best camouflage effect. Utility Model Content
[0004] The purpose of the utility model is to solve the problem that the camouflage net cannot adapt to the changes of the surrounding environment and change color. The utility model provides an environment-adaptive color-changing camouflage net.
[0005] In order to achieve the above-mentioned purpose, the utility model specifically adopts the following technical solutions:
[0006] An environmentally adaptive color-changing camouflage net comprises a protective layer, wherein the upper and lower sides of the outer side edge of the protective layer are wrapped with a locking layer, and the side walls of the locking layer are provided with locking ropes, and the inner ends of the locking ropes pass through the inside of the locking layer and surround the outer circle of the protective layer, and connecting strips are fixedly connected between the upper and lower ends of the side walls of the protective layer, and the inner plane of the protective layer passes through a net-paved area, and the protective layer comprises a color-changing material layer, a corrugated gap area and a connecting area, and the corrugated gap area and the connecting area are arranged at the edge of the side wall of the color-changing material layer, and the corrugated gap area and the connecting area are arranged and connected together at intervals.
[0007] Furthermore, the side walls of the mesh area are connected to the inner interlayer of the color-changing material layer, the edges of the corrugated gap area and the connecting area are movably connected to the surface of the mesh area, a plurality of the color-changing material layers are arranged laterally, the connecting area set at the top of the color-changing material layer and the corrugated gap area set at the bottom of the top color-changing material layer are connected together by the connecting strip, the inner side of the lock layer is wrapped around the upper and lower outer edges of the color-changing material layer, the corrugated gap area and the connecting area, and the material at the optical film layer is changed color by induction at the sensing unit layer, thereby changing the color of the entire surface of the color-changing material layer.
[0008] Furthermore, an optical film layer and a sensing unit layer are also provided on the surface of the color-changing material layer, the corrugated gap area and the connection area are simultaneously provided at the side ends of the optical film layer and the sensing unit layer, and the inner side of the locking layer is wrapped around the upper and lower outer edges of the optical film layer and the sensing unit layer.
[0009] Furthermore, the bottom side of the sensing unit layer is arranged at the surface of the optical film layer, and the sensing unit layer performs sensing to cause the material at the optical film layer to change color, thereby causing the entire surface of the color-changing material layer to change color.
[0010] Furthermore, the edge locking layer includes a shrink wrap and a rope threading hole. The inner side of the shrink wrap is wrapped around the protective layer and the upper and lower outer edges of the mesh area. The side wall of the edge locking rope passes through the rope threading hole. The inner end of the edge locking rope passes through the rope threading hole and surrounds the inner layer of the shrink wrap. The stretching of the edge locking rope can shrink the side wall of the entire shrink wrap together.
[0011] Furthermore, the rope threading hole is arranged at the side wall of the shrink wrap, and the shrink wrap is located around the outer edge of the protective layer. The length of the shrink wrap is shortened, which can drive the expanded area of the entire protective layer to gather together inward.
[0012] Furthermore, the edge locking rope includes an inner rope and an outer rope. The inner rope runs through the interior of the edge locking layer, and the outer rope is located on the outside of the edge locking layer. The outer rope stretches the inner rope outward to shrink the side wall of the entire shrinkable edge together.
[0013] Furthermore, the inner end of the outer collection rope is fixedly connected to the outer end of the inner threading rope, and the outer collection rope stretches the inner threading rope outward, so that the side wall of the entire shrink wrapping can be shrunk together.
[0014] Compared with the prior art, the utility model provides an environment-adaptive color-changing camouflage net, which has the following beneficial effects:
[0015] The environmentally adaptive color-changing camouflage net can effectively shrink the edge layer through the contraction of the entire edge-locking rope, thereby driving the area of the entire protective layer to gather together. In this process, the entire plane forms an uneven wave state. With the help of the optical film layer on the surface, the light refracted from the surrounding environment can be efficiently absorbed, and then the color is cleverly changed and the processed light is refracted out. In this way, the entire camouflage net can be more perfectly integrated with the surrounding environment, realizing the characteristics of adaptive color change to the greatest extent, thereby achieving an excellent camouflage effect. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 This is a schematic diagram of the outer side of the overall structure of this utility model;
[0017] Figure 2 This is a schematic diagram of the structural connection between the practical protective layers;
[0018] Figure 3 This is a schematic diagram of the structural connection between the protective layer and the connecting strip of the present invention;
[0019] Figure 4 Practical Figure 2 The structure between the protective layer and the net area is shown in Figure A;
[0020] Figure 5 Practical Figure 1 The structure between the edge-locking layer and the edge-locking rope is shown in Figure B;
[0021] Figure 6 This is a structural cross-sectional view of the color-changing material layer of this utility model.
[0022] In the figure: 1, protective layer; 11, color-changing material layer; 111, optical film layer; 112, sensing unit layer; 12, corrugated gap area; 13, connection area; 2, edge locking layer; 21, shrinkage hemming; 22, rope threading hole; 3, edge locking rope; 31, inner rope threading; 32, outer rope collection; 4, connecting strip; 5, net area. DETAILED DESCRIPTION
[0023] The following will be combined with the drawings in the embodiments of the utility model to clearly and completely describe the technical solutions in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all of the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the utility model. Embodiment 1:
[0024] like Figure 1-Figure 6As shown, an environment-adaptive color-changing camouflage net comprises a protective layer 1, wherein the upper and lower sides of the outer side of the protective layer 1 are wrapped with a locking layer 2, a locking rope 3 is arranged at the side wall of the locking layer 2, the inner end of the locking rope 3 passes through the inside of the locking layer 2 and surrounds the outer circle of the protective layer 1, a connecting strip 4 is fixedly connected between the side walls of the upper and lower ends of the protective layer 1, a net area 5 is passed through the inner plane of the protective layer 1, the protective layer 1 comprises a color-changing material layer 11, a corrugated gap area 12 and a connecting area 13, the corrugated gap area 12 and the connecting area 13 are arranged at the edge of the side wall of the color-changing material layer 11, and the corrugated gap area 12 and the connecting area 13 are arranged at intervals and connected together.
[0025] like Figure 1-Figure 4 As shown, the side wall of the mesh area 5 penetrates and is connected to the inner interlayer of the color-changing material layer 11, the edge parts of the corrugated gap area 12 and the connecting area 13 are movably connected to the surface part of the mesh area 5, a plurality of color-changing material layers 11 are arranged together laterally, the connecting area 13 set at the top of the color-changing material layer 11 and the corrugated gap area 12 set at the bottom of the top color-changing material layer 11 are connected together by a connecting strip 4, and the inner side of the locking layer 2 is wrapped around the upper and lower outer edges of the color-changing material layer 11, the corrugated gap area 12, and the connecting area 13;
[0026] like Figure 1 and Figure 6 As shown, an optical film layer 111 and a sensing unit layer 112 are also provided on the surface of the color-changing material layer 11, and the corrugated gap area 12 and the connection area 13 are simultaneously provided at the side ends of the optical film layer 111 and the sensing unit layer 112, and the inner side of the lock layer 2 is wrapped around the upper and lower outer edges of the optical film layer 111 and the sensing unit layer 112, and the bottom side of the sensing unit layer 112 is provided on the surface of the optical film layer 111, and the sensing unit layer 112 is used to sense the material at the optical film layer 111, thereby causing the entire surface of the color-changing material layer 11 to change color. Embodiment 2:
[0027] like Figure 1 and Figure 5 As shown, the edge-locking layer 2 includes a shrink wrapping 21 and a rope threading hole 22. The inner side of the shrink wrapping 21 is wrapped around the upper and lower outer edges of the protective layer 1 and the mesh area 5. The side wall of the edge-locking rope 3 passes through the rope threading hole 22. The inner end of the edge-locking rope 3 passes through the rope threading hole 22 and surrounds the inner layer of the shrink wrapping 21. The rope threading hole 22 is arranged at the side wall of the shrink wrapping 21. The shrink wrapping 21 is located at the outer edge of the protective layer 1 and surrounds it. The edge-locking rope 3 can shrink the side wall of the entire shrink wrapping 21 together, shorten the length of the shrink wrapping 21, and drive the expanded area of the entire protective layer 1 to gather together inward.
[0028] like Figure 1 and Figure 5As shown, the edge locking rope 3 includes an inner threading rope 31 and an outer threading rope 32. The inner threading rope 31 passes through the interior of the edge locking layer 2, and the outer threading rope 32 is located on the outside of the edge locking layer 2. The inner end of the outer threading rope 32 is fixedly connected to the outer end of the inner threading rope 31. The edge locking rope 3 can be shrunk inwards and outwards through the rope threading hole 22. The outer threading rope 32 stretches the inner threading rope 31 outwards, so that the side walls of the entire shrinkable edge 21 can be shrunk together.
[0029] Working principle: Figure 1-Figure 6 As shown, the color-changing material layer 11 includes an optical film layer 111 and a sensing unit layer 112. The sensing unit layer 112 senses the material at the optical film layer 111 to change color, so that the entire surface of the color-changing material layer 11 changes color and blends with the surrounding environment to achieve a camouflage effect.
[0030] The lock edge rope 3 can be shrunk inside and outside through the rope hole 22, and the outer rope 32 stretches the inner rope 31 outward, so that the side wall of the entire shrink wrapping 21 can be shrunk together. The side wall of the entire shrink wrapping 21 is shrunk together by the inner rope 31, and the length of the shrink wrapping 21 is shortened, and the expansion area of the entire protective layer 1 is driven to gather together inward, so that the upper and lower side walls of the color-changing material layer 11 will be merged together, and the gaps between the corrugated gap area 12 can touch the connection area 13 at the upper end, covering the entire mesh area 5, and the side wall of the entire protective layer 1 is wavy and uneven, and the optical film layer 111 covered on its surface can refract the colors of surrounding objects at different angles and be sensed by the sensing unit layer 112, so that the color change of the color-changing material layer 11 is more in line with the surrounding environment;
[0031] The mesh area 5 can maintain air circulation at the bottom cover to reduce humidity and stuffiness; when the side walls of the edge-locking layer 2 are stretched out, the side walls of the entire protective layer 1 are stretched out to expose the mesh area 5. At this time, the side walls of the color-changing material layer 11 are separated and connected by the control area 4, so that the entire color-changing material layer 11 can be kept neatly arranged.
Claims
1. An environment-adaptive color-changing camouflage net, comprising a protective layer (1), characterized in that: The outer side of the protective layer (1) is wrapped with a locking layer (2) on the upper and lower sides, and a locking rope (3) is arranged at the side wall of the locking layer (2). The inner end of the locking rope (3) passes through the inside of the locking layer (2) and surrounds the outer circle of the protective layer (1). A connecting strip (4) is fixedly connected between the upper and lower side walls of the protective layer (1). The inner plane of the protective layer (1) passes through a mesh area (5). The protective layer (1) comprises a color-changing material layer (11), a corrugated gap area (12) and a connecting area (13). The corrugated gap area (12) and the connecting area (13) are arranged at the edge of the side wall of the color-changing material layer (11), and the corrugated gap area (12) and the connecting area (13) are arranged and connected together at intervals.
2. The environmentally adaptive color-changing camouflage net according to claim 1, characterized in that: The side wall of the mesh area (5) is connected to the inner interlayer of the color-changing material layer (11); the edge portions of the corrugated gap area (12) and the connecting area (13) are movably connected to the surface portion of the mesh area (5); a plurality of color-changing material layers (11) are arranged together transversely; the connecting area (13) arranged at the top of the color-changing material layer (11) and the corrugated gap area (12) arranged at the bottom of the color-changing material layer (11) are connected together by the connecting strip (4); the inner side of the locking layer (2) is wrapped around the upper and lower outer edges of the color-changing material layer (11), the corrugated gap area (12), and the connecting area (13).
3. The environmentally adaptive color-changing camouflage net according to claim 1, characterized in that: An optical film layer (111) and a sensing unit layer (112) are also provided on the surface of the color-changing material layer (11); the corrugated gap area (12) and the connection area (13) are simultaneously provided at the side ends of the optical film layer (111) and the sensing unit layer (112); and the inner side of the edge-locking layer (2) is wrapped around the upper and lower outer edges of the optical film layer (111) and the sensing unit layer (112).
4. The environmentally adaptive color-changing camouflage net according to claim 3, characterized in that: The bottom side of the sensing unit layer (112) is arranged on the surface of the optical film layer (111).
5. The environmentally adaptive color-changing camouflage net according to claim 1, characterized in that: The edge-locking layer (2) comprises a shrink wrap (21) and a rope threading hole (22), the inner side of the shrink wrap (21) is wrapped around the protective layer (1) and the upper and lower outer edges of the mesh area (5), the side wall of the edge-locking rope (3) passes through the rope threading hole (22), and the inner end of the edge-locking rope (3) passes through the rope threading hole (22) and surrounds and passes through the inner layer of the shrink wrap (21).
6. The environmentally adaptive color-changing camouflage net according to claim 5, characterized in that: The rope threading hole (22) is arranged on the side wall of the shrink wrapping (21), and the shrink wrapping (21) is located around the outer edge of the protective layer (1).
7. The environmentally adaptive color-changing camouflage net according to claim 1, characterized in that: The edge locking cord (3) comprises an inner threading cord (31) and an outer collecting cord (32), wherein the inner threading cord (31) passes through the interior of the edge locking layer (2), and the outer collecting cord (32) is located outside the edge locking layer (2).
8. The environmentally adaptive color-changing camouflage net according to claim 7, characterized in that: The inner end of the outer collecting rope (32) is fixedly connected to the outer end of the inner threading rope (31).