Functional composite garment materials
Composite materials for use in garments or footwear, and a process for manufacture, and use thereof. Composite materials may have one or more functional properties including water repellency, antimicrobial function, insulation, moisture wicking, directional moisture transfer, body heat reflection, exterior heat reflection, body heat redistribution through conduction, as well as prevention of body heat loss through heat conduction.
1. A heat reflective composite, comprising:
a substrate comprising a moisture vapor permeable, substantially liquid impermeable material;
an insulating layer disposed over the substrate, the insulating layer comprising gaps that expose the substrate; and
a reflective layer comprising an infrared-reflective metallic material, the reflective layer being disposed on the insulating layer, within substantially all gaps of the insulating layer that expose the substrate, and on substantially all surfaces of the substrate that are exposed through gaps of the insulating layer.
2. The heat reflective composite of claim 1 , wherein the substrate comprises one or more of polyether ester, polyether amide, or polyether urethane film; nonwoven fabric, woven fabric, nonwoven fabric-film laminate, woven fabric-film laminate, microperforated film; or, a microporous, air-permeable, moisture vapor transmissive, water resistant and drapeable polymeric membrane.
3. The heat reflective composite of claim 1 , wherein the reflective layer comprises one or more of aluminum, gold, silver, zinc, tin, lead, copper, AgGe, CuZn, CuSn, CuAg, CuAgSn, or any alloy, oxide, or combination of these materials having an emissivity less than 0.5.
4. The heat reflective composite of claim 1 , wherein the insulating layer comprises a hydrophilic or porous textile.
5. The heat reflective composite of claim 1 , wherein the insulating layer is laminated to the substrate; printed on the substrate; knitted into the substrate; or is vapor deposited onto the substrate.
6. The heat reflective composite of claim 1 , wherein the reflective layer is not disposed on surfaces of the substrate that are (i) covered by the insulation layer and (ii) exposed through gaps of the insulating layer.
7. The heat reflective composite of claim 1 , wherein the reflective layer is disposed within all of the gaps of the insulating layer that expose the substrate, and on all surfaces of the substrate that are exposed through gaps of the insulating layer.
8. The heat reflective composite of claim 1 , wherein all gaps of the insulating layer that expose the substrate collectively define a predetermined pattern.
9. The heat reflective composite of claim 8 , wherein the predetermined pattern comprises an array or lattice of circles or polygons.