Multispectral camouflage material
A fabric ( 30 ) includes a first flexible fabric layer ( 32 ), having fabric emissivity properties in a visible radiation range that are selected so as to mimic ambient emissivity properties of a deployment environment of the fabric, and at least one second flexible fabric layer ( 34 ), which is joined to the first flexible fabric layer, and which is configured to scatter long-wave radiation that is incident on the fabric. The first and second flexible fabric layers are perforated by a non-uniform pattern of perforations ( 44 ) extending over at least a part of the fabric.
1. A single-layer camouflage fabric comprising:
a first component formed of a metallic material configured to at least partially block a thermal infrared radiation of a subject and to blend a background thermal infrared radiation by partial scattering and partial specular reflecting of a subject thermal infrared radiation;
a second component configured to scatter and reflect background thermal radiation so as to blur a signature of the subject, wherein the first component is applied to the second component so as to form an internal structure; and
a patterned pigmentation on at least a portion of a surface of the internal structure, wherein the patterned pigmentation is configured to mimic ambient properties of an environment.
2. The single-layer camouflage fabric according to claim 1 , further comprising a plurality of perforations extending through an entire thickness of the single-layer camouflage fabric, wherein the plurality of perforations is configured to provide partial ventilation to reduce heat generated by the subject.
3. The single-layer camouflage fabric according to claim 2 , wherein the plurality of perforations includes a non-uniform pattern of perforation of multiple different sizes and shapes.
4. The single-layer camouflage fabric according to claim 1 , wherein the patterned pigmentation is configured to provide camouflage in a visible spectrum range and wherein the first component and the second component are configured to provide camouflage in a thermal infrared radiation range.
5. The single-layer camouflage fabric according to claim 1 , wherein the second component includes glass microballoons configured to scatter radiation.
6. The single-layer camouflage fabric according to claim 5 , wherein the glass microballoons of the second component are laminated to the first component so as to form the internal structure.
7. The single-layer camouflage fabric according to claim 1 , wherein the first component includes a metallic coating or a metallic film.
8. A multispectral camouflage material comprising:
a base structure including a first component and a second component, wherein the first component is formed of a metallic component and is configured to at least partially block a thermal infrared radiation of a subject and to blend a background thermal infrared radiation, and wherein the second component is configured to scatter and reflect background thermal radiation so as to blur a signature of the subject; and
a patterned pigmentation on at least a portion of a surface of the base structure, wherein the patterned pigmentation is configured to mimic ambient properties of an environment.
9. The multispectral camouflage material according to claim 8 , further comprising a plurality of perforations extending through an entire thickness of the base structure, wherein the plurality of perforations is configured to provide partial ventilation to reduce heat generated by the subject.
10. The multispectral camouflage material according to claim 8 , wherein the plurality of perforations include a non-uniform pattern of perforations of multiple different sizes and shapes.
11. The multispectral camouflage material according to claim 8 , wherein the patterned pigmentation is configured to provide camouflage in a visible spectrum range and wherein the first component and the second component of the base structure is configured to provide camouflage in a thermal infrared radiation range.
12. The multispectral camouflage material according to claim 8 , wherein the second component includes glass microballoons configured to scatter radiation.
13. The multispectral camouflage material according to claim 12 , wherein the glass microballoons of the second component are laminated to the first component so as to form the base structure.
14. The multispectral camouflage material according to claim 8 , wherein the first component includes a metallic coating or a metallic film.