Abstract:
A composite hemp and cotton yarn is formed by blending hemp fibers with cotton fibers which have been regenerated from waste cotton material such as trimmings and cuttings from the apparel manufacturing industry. The fibers are cleaned and blended, then carded to align the fibers into strands. Depending on the size and texture of the desired yarn, the fibers are stretched and drawn into slivers prior to spinning to join the fibers together. The hemp fibers are up to three time longer than the regenerated cotton fibers, so that the hemp fibers overlap and braid onto the regenerated cotton fibers during spinning. The resultant yarn is stronger and more absorbent than yarns made solely out of regenerated cotton fibers or a blend of cotton and acrylic or cotton and polyester fibers.
Abstract:
The present invention relates generally to substrates that exhibit useful, auto adaptable surface energy properties that depend on the environment of the substrate. Such surface energy properties provide relatively high advancing and receding contact angles for liquids when in contact with the target substrate surface. The substrates exhibit low surface energy quantities of at most about 20 millijoules per square meter (mJ/m2) at a temperature of about 25 degrees C. and a surface energy greater than about 20 mJ/m2 at, or with exposure to, a temperature of about 40 degrees C. More specifically, encompassed within the present invention are textile substrates having this highly desirable unique surface energy modification property and which exhibit wash durable oil and water repellency and stain release features. Novel compositions and formulations that impart such surface energy modifications to substrates are also encompassed within this invention, as well as methods for producing such treated substrates.
Abstract translation:本发明一般涉及依赖于衬底环境的有用的,自动适应的表面能特性的衬底。 当与目标基板表面接触时,这种表面能量特性为液体提供相对高的前进和后退接触角。 这些基材在约25℃的温度下表现出低至多约20毫焦耳/平方米(mJ / m 2)的低表面能量,并且在暴露于温度时表面能大于约20mJ / m 2 更具体地,本发明中包括具有这种非常理想的独特表面能改性性能的织物基材,并且具有洗涤耐久的防油和防水性和脱色特性。 赋予基质的这种表面能改变的新型组合物和制剂也包括在本发明内,以及生产这种处理过的基材的方法。
Abstract:
A woven fiber reinforcement material includes a plurality of fiber bundles extending generally parallel to one another in a longitudinal direction and spaced laterally from one another by at least 1/32 of an inch. The fiber bundles are selected from non-elastic fibers. A first transverse thread extends in a continuous serpentine pattern on a first side of the plurality of fiber bundles. A second transverse thread extends in a continuous serpentine pattern on a second side of the plurality of fiber bundles and a pair of connecting threads diagonally cross the first and second transverse threads and secure the first and second transverse threads to the fiber bundles at a plurality of longitudinally spaced locations.
Abstract:
A looped fabric having a ground fabric that is made of cotton and provided with loops of bamboo fiber is disclosed. A terry made from the looped fabric and the use of bamboo fiber in a looped fabric is also disclosed.
Abstract:
The present invention relates generally to substrates that exhibit useful, auto adaptable surface energy properties that depend on the environment of the substrate. Such surface energy properties provide relatively high advancing and receding contact angles for liquids when in contact with the target substrate surface. The substrates exhibit low surface energy quantities of at most about 20 millijoules per square meter (mJ/m2) at a temperature of about 25 degrees C. and a surface energy greater than about 20 mJ/m2 at, or with exposure to, a temperature of about 40 degrees C. More specifically, encompassed within the present invention are textile substrates having this highly desirable unique surface energy modification property and which exhibit wash durable oil and water repellency and stain release features. Novel compositions and formulations that impart such surface energy modifications to substrates are also encompassed within this invention, as well as methods for producing such treated substrates.
Abstract translation:本发明一般涉及依赖于衬底环境的有用的,自动适应的表面能特性的衬底。 当与目标基板表面接触时,这种表面能量特性为液体提供相对高的前进和后退接触角。 在约25℃的温度和大于约20mJ / m 2的表面能的情况下,基材表现出低至多约20毫焦耳每平方米(mJ / m 2)的低表面能量, SUP> 2 SUP>在约40℃的温度下或暴露于约40℃。更具体地说,本发明包括具有这种非常理想的独特的表面能改性性能的织物基材,并且具有洗涤耐久性的油和水 排斥性和脱色特性。 赋予基质的这种表面能改变的新型组合物和制剂也包括在本发明内,以及生产这种处理过的基材的方法。
Abstract:
The present invention is embodied in a composite yarn having fibers of cotton and high-density polyethylene, or fibers of cotton, steel and fiberglass where the cotton fiber is in some fashion exposed to a surface to be engaged by the composite yarn. The present invention is further embodied in a method of making such composite yarns or a fabric including one or more composite yarns in accordance with the present invention. The present invention is further embodied in a method of making protective apparel, such as a glove, from a composite yarn or fabric in accordance with the present invention. By way of example, a knit glove made with either or any of the disclosed composite yarns enjoys the benefits of both cut-resistance and enhanced gripping ability. Such articles of manufacture thus protect a user from sharp or abrasive items while also allowing that user to handle items that may be wet or otherwise difficult to manipulate.
Abstract:
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.
Abstract:
A moisture-absorbing material and method of making same are provided. Hollow fibrous tubes of cotton are sequentially dried, combed in a direction to substantially longitudinally align the hollow fibrous tubes of cotton, and stretched, twisted about and compressed in this direction. A powder material can be mixed with the hollow fibrous tubes of cotton. The powder material is inert with respect to the hollow fibrous tubes of cotton and initiates a chemical reaction that generates water when exposed to water.
Abstract:
Fabrics, articles of apparel, and/or garment structures include infrastructure for transmitting information, such as signals produced by a wearer or from another source. Such fabrics may include: a textile formed through a knitting or weaving process, wherein at least one yarn used in the knitting or weaving process is electrically conductive to form sensor regions and/or other integrated electrically conductive infrastructure for transmitting electrical signals. Additional information is provided relating to methods for forming fabrics, articles of apparel, and/or garment structures of the types described above, as well as methods of using such products, e.g., for monitoring and/or displaying information regarding one or more physical and/or physiological parameters.
Abstract:
A carpet and method for making a carpet suitable for both indoor and outdoor use that has a soft and luxurious finish as well as adaptable to stressful outdoor environments. The carpet includes binding chains with both tight warp yarn and slack warp yarn, the slack warp yarn including synthetic fibers and the tight warp yarn including synthetic fibers and natural fibers. Weft is cut from polypropylene film and the pile is formed of polypropylene extruded yarn. The carpet is formed using a rapier loom with a double rapier head system.