Abstract:
A composite velour fabric garment includes a laminate consisting of an outer woven shell layer, an inner thermal layer of knit construction, and an intermediate layer disposed between and laminated to each of the shell layer and the thermal layer. The outer woven shell layer contains spandex in at least a weft direction for stretch and recovery in a width direction. The knit construction of the inner thermal layer provides stretch in at least a width direction, in harmony with the shell layer, and the inner thermal layer has a raised surface facing inwardly, away from the shell layer. The intermediate layer has controlled air permeability, including zero air permeability.
Abstract:
A double-face velour fabric article consists of a fabric body having a technical face formed by a filament stitch yarn and a technical back formed by a filament loop yarn. The filament stitch yarn includes a heat sensitive material, e.g. a hot melt material or a heat shrinkable material, and/or an elastomeric material, such as spandex. The fabric body has a velour surface formed at both the technical back and the technical face. Raised fibers of at least one of the technical face and the technical back may be entangled, including in and/or through interstices of the fabric body, toward the other of the technical face and the technical back, e.g., by a hydroentanglement process applied after finishing. The fabric body has permeability of about 80 ft3/ft2/min, or less, under a pressure difference of ½ inch of water across the fabric body.
Abstract:
Electric heating/warming composite fabric articles have at least a fabric layer having inner and outer surfaces, and an electric heating/warming element, e.g., including a bus, formed, e.g., of die cut, metallized textile or plastic sheeting or metal foil, affixed at the inner surface of the fabric layer and adapted to generate heating/warming when connected to a power source. A barrier layer may be positioned, for example, adjacent to the inner surface of the fabric layer; e.g., with the electric heating/warming element formed thereupon, including to protect the electric circuit, e.g. against abrasion.
Abstract:
A compression garment includes a plurality of fabric segments having differing elastic properties arranged to provide the garment with regions of differential compression. The fabric segments define an inner surface of the garment. the inner surface includes at least one region of pile or raised fibers for increased thermal insulation.
Abstract:
A hybrid composite fabric garment includes a first fabric portion and a second fabric portion. The first fabric portion includes a first inner fabric layer, a first outer fabric layer, and a first barrier layer disposed therebetween. The first barrier includes a first nonwoven membrane and has a first predetermined air permeability. The second fabric portion includes a second inner fabric layer, a second outer fabric layer, and a second barrier layer disposed therebetween. The second barrier layer includes a second nonwoven membrane and has a second predetermined air permeability substantially greater than the first predetermined air permeability.
Abstract:
A double-face velour fabric article consists of a fabric body having a technical face formed by a filament stitch yarn and a technical back formed by a filament loop yarn. The filament stitch yarn includes a heat sensitive material, e.g. a hot melt material or a heat shrinkable material, and/or an elastomeric material, such as spandex. The fabric body has a velour surface formed at both the technical back and the technical face. Raised fibers of at least one of the technical face and the technical back may be entangled, including in and/or through interstices of the fabric body, toward the other of the technical face and the technical back, e.g., by a hydroentanglement process applied after finishing. The fabric body has permeability of about 80 ft3/ft2/min, or less, under a pressure difference of ½ inch of water across the fabric body.
Abstract:
A textile fabric includes a smooth surface with one or more regions having a bound coating of hydrogel exhibiting expansion or contraction in response to change in relative humidity or exposure to liquid sweat or a combination thereof, adjusting insulation performance, air movement, and/or liquid management of the textile fabric in response to ambient conditions.
Abstract:
A fabric article of knitted or woven construction with multi-filament, interlaced yarns has at least one pile or raised or fleece region on its inner surface and at least one discontinuous coating region of binder material on its outer surface. The binder material provides improved durability against pilling and fraying without substantial adverse effect on characteristics of the base fabric. The same or different binders and/or the same or different densities of binders may be applied to one or more selected regions of the fabric surface using engineered printing technology, the binder regions resisting napping to create predetermined non-raised or non-fleece regions of contrasting thermal insulation and/or breatheability conforming to needs of underlying corresponding regions of the wearer's body. Methods of forming the fabric articles are also described.
Abstract:
A composite textile fabric for rapidly moving moisture away from the skin is provided. The composite fabric includes an inner fabric layer (the technical back) formed therealong with a plurality of vertical and horizontal channels and made of a yarn comprising a plurality of fibers of polyester or nylon which have been rendered hydrophilic. The fabric also includes an outer fabric layer (the technical face) made of a moisture absorbent material, a yarn comprising a plurality of fibers primarily of polyester of other man-made yarn which has also been rendered hydrophilic, or a combination thereof. The inner fabric layer and the outer fabric layer are formed concurrently by knitting a plaited construction so that the layers are distinct and separate, yet integrated one with the other.
Abstract:
An electric heating/warming element consists of a water-resistant, vapor permeable bladder containing an electrical heating/warming circuit that generates heat when attached to a source of electrical power.