摘要:
The present invention provides fabrics that have unique chemical, electrical, and thermal properties. The fabrics comprise layers of yarns woven together wherein the yarns further comprise carbon nanotube fibers. These carbon nanotube fibers may be either single-walled or multi-walled carbon nanotubes. The use of carbon nanotube fibers allows the fabrics to insulate, semi-conduct or super-conduct electrical charges. Additionally, the thermal properties of carbon nanotubes allow thermal energy to flow efficiently between the fabric and a heat sink or source. Additional yarns of materials other than carbon nanotubes can be integrated or woven into the fabric to provide other unique properties for the fabric. These fabrics can be layered to form unique garments or structures.
摘要:
A composite fabric garment includes a first garment portion disposed in one or more upper regions of the fabric garment, i.e. those regions relatively more likely in use to be exposed to wind and rain, and a second garment portion disposed in one or more lower regions of the fabric garment, i.e. those regions relatively less likely in use to be exposed to wind and rain. The first garment portion is formed of a first composite fabric having first inner and outer fabric layers and a first intermediate barrier layer disposed between and bonded to at least one of the first inner and outer fabric layers, the first intermediate barrier layer being breathable and substantially impermeable to wind and liquid water. The second garment portion is formed of a second composite fabric formed of second inner and outer fabric layers and having predetermined air permeability. In one embodiment, the second garment portion further includes a second intermediate, breathable, air-permeable barrier layer disposed between and bonded to at least one of the second inner and outer fabric layers. In another embodiment, the second garment portion is formed of a composite fabric having controlled air permeability in a non-laminate absent a barrier.
摘要:
A clothing material structure of fiber cloth containing PAN series activated carbon includes an air-permeable textile as a support layer and fiber cloth containing PAN series activated carbon as an adsorption layer. The support layer and the adsorption layer are bonded together to form the clothing material suitable for the hunter clothing and the protective clothing by way of bonding or needle punching. Accordingly, when the wearer's body heat and body odor try to pass through the clothing made from the material, the body heat may smoothly pass through the adsorption layer while the body odor is blocked and filtered out by the activated carbon fiber. Thus, the requirements of hunter clothing may be satisfied. Furthermore, the odors or toxins trying to pass through the adsorption layer may be filtered out, and the requirements of the chemically protective clothing and hunter clothing may be satisfied.
摘要:
A thermoplastic spatial fabric application includes at least two chemical fibers having different melting points. The chemical fibers are processed by a weaving technology, so that the chemical fibers may be intersected and formed, thereby forming a spatial fabric having multiple layers. In addition, the spatial fabric may be treated by a heating process, so that the chemical fiber having a lower melting point may be melted to form a layer having a greater strength and stiffness, and the chemical fiber having a higher melting point may maintain the original features to form a layer having an excellent softness, permeability and elasticity, thereby forming a spatial fabric product with predetermined physical features. Accordingly, the physical features (such as the stiffness, elasticity, softness or the like) of the spatial fabric may be designed previously so as to satisfy the practical requirements.
摘要:
An ionic substance removing material for use in a super-clean room and a method of manufacturing the material are disclosed. The material includes an ion exchanger capable of an ion exchange reaction.
摘要:
A fiber comprising at least about 80% by weight linear low density polyethylene and having a melting point >109.degree. C. is disclosed. Also disclosed are thermally consolidated fiber structures comprising (1) at least about 3% by weight, based on the total weight of the structure, of lower melting binder fibers comprising at least 80% by weight linear low density polyethylene, and (2) not more than 97% by weight, based on the total weight of the structure, of nonmelting fibers, or fibers having a melting point higher than the linear low density polyethylene fibers. The fiber structures can be in the form of multifilament yarns, woven or nonwoven textile fabrics, carpets, or laminates. The linear low density polyethylene binder fibers in the structures preferably have a melting point
摘要:
An epoxy resin laminate comprising a center base layer of glass fiber woven cloth and outer base layers of sheet-like material more expansible and compressible than glass fiber woven cloth provided on both faces of the center base layer and integrally impregnated with composite produced by reacting polybutadiene-acrylonitrile copolymer having carboxyl groups at its terminal with epoxy resin having more than two functional groups.
摘要:
A flame resistant fire barrier fabric comprising a preformed self-extinguishing thermoplastic face fabric laminated to an underlying glass fabric wherein the glass fibers are coated with a thin adherent encapsulating coating, and wherein the encapsulating coating substantially minimizes fiber to fiber self abrasion.
摘要:
A GARMENT HAVING DURABLE ANTISTATIC PROPERTIES AND COMPRISING AN OUTSIDE FABRIC AND A LINING OR INTERLINING FIBROUS MATERIAL, AT LEAST A PART OF WHICH CONTAINS AT LEAST ABOUT 0.01% BY WEIGHT OF AN ELECTRICALLY CONDUCTIVE FIBER, SAID ELECTRICALLY CONDUCTIVE FIBER COMPRISING A SUBSTRATE OF CHEMICAL FIBER AND AN ELECTRICALLY CONDUCTIVE COATING THEREON, AND SAID ELECTRICALLY CONDUCTIVE FIBER HAVING THE FUNCTIONAL PROPERTIES OF TEXTILE FIBERS.