Multispectral Camouflage Material
A fabric includes a first flexible fabric layer, 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, 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 extending over at least a part of the fabric.
1 . A camouflage fabric construction comprising:
a base layer including a woven structure of fibers;
a metallic coating over at least a portion of the woven structure of fibers, the metallic coating being designed to at least partially block a subject thermal infrared radiation by partial scattering and partial specular reflecting of the subject thermal infrared radiation;
a patterned pigmentation printed over the base layer and the metallic coating and designed to visually mimic properties of an environment; and
a plurality of perforations sized and dimensioned to provide partial ventilation to reduce heat generated by the subject, each of the plurality of perforations extending through the base layer, the metallic coating, and the patterned pigmentation.
2 . The camouflage fabric construction according to claim 1 , wherein the camouflage fabric construction is cut and sewn to be worn on a human subject.
3 . The camouflage fabric construction according to claim 1 , wherein the camouflage fabric construction is cut and sewn to cover a vehicle.
4 . The camouflage fabric construction according to claim 1 , wherein the patterned pigmentation is printed on opposing sides of the base layer and the metallic coating.
5 . The camouflage fabric construction according to claim 4 , wherein the camouflage fabric construction is cut and sewn so as to provide a first configuration, with an outer fabric surface facing outward designed to provide visual camouflage in a first environment and, when the camouflage fabric construction is turned inside-out, a second configuration designed to provide visual camouflage in a second environment.
6 . The camouflage fabric construction according to claim 1 , wherein the metallic coating is applied to coat alternating fibers of the woven structure of the base layer.
7 . The camouflage fabric construction according to claim 1 , wherein the camouflage fabric construction is configured to scatter microwave radiation.
8 . A method for producing a camouflage fabric, comprising:
weaving a multi-fiber construction into a fabric base, the fabric base include a series of ventilation perforations designed to control heat exchange through the fabric base;
coating at least a portion of the fabric base in a metallic coating configured to at least partially block a subject thermal infrared radiation by partial scattering and partial specular reflecting of the subject thermal infrared radiation; and
printing a patterned ink distribution on at least one side of the fabric base and metallic coating, the patterned ink distribution being designed to visually mimic properties on an environment.
9 . The method according to claim 8 , further comprising:
cutting a plurality of perforations through the fabric base, the metallic coating, and the patterned ink distribution, each of the plurality of perforations being sized and dimensioned to provide partial ventilation to reduce heat generated by a subject.
10 . The method according to claim 8 , further comprising:
cutting and sewing the fabric so as to form a covering to be worn over a subject.
11 . The method according to claim 10 , wherein the subject includes one of: a boat, a land vehicle, and an aerial vehicle.
12 . The method according to claim 10 , wherein cutting and sewing the fabric comprises providing a first configuration of the garment, with the outer surface facing outward, that camouflages the subject in a first environment and, when the fabric is turned inside-out, a second configuration that camouflages the subject in a second environment.
13 . The method according to claim 8 , further comprising calendering the fabric base to provide a smooth surface for covering with the metallic coating.
14 . The method according to claim 8 , wherein weaving multi-fiber construction into a fabric base comprises weaving fibers of varying thicknesses.
15 . A multispectral camouflage fabric comprising:
a fabric base;
a metallized coating provided over at least a portion of the fabric base and designed to partially block a thermal infrared radiation of a subject by partial scattering and partial specular reflecting of the thermal infrared radiation of the subject; and
a patterned pigmentation designed to visually mimic properties of an environment,
wherein the multispectral camouflage fabric has a plurality of perforations sized and dimensioned to provide at least partial ventilation to reduce heat generated by the subject, each of the plurality of perforations extending through the patterned pigmentation, the metallized coating, and the fabric base.
16 . The multispectral camouflage fabric of claim 15 , wherein the multispectral camouflage fabric is cut and sewn to be worn over an ambulatory human subject.
17 . The multispectral camouflage fabric of claim 15 , wherein the multispectral camouflage fabric is cut and sewn to cover a vehicle.
18 . The multispectral camouflage fabric of claim 17 , further comprising an inflatable frame structure designed to support the multispectral camouflage fabric when covering the vehicle.
19 . The multispectral camouflage fabric of claim 17 , wherein the multispectral camouflage fabric is configured to be folded and housed in a roof or side portion of the vehicle when not covering the vehicle.
20 . The multispectral camouflage fabric of claim 17 , further comprising netted window portions designed to provide a field of view to operators inside the vehicle when the multispectral camouflage fabric covers the vehicle.