Abstract:
The present disclosure provides biodegradable adhesive compositions and methods of making the same, including a latex and a biodegradation agent. wherein the latex preferably has a total solids content from 50 wt % to 90 wt %, and wherein the biodegradation agent is preferably present in an amount from about 0.5 wt % to 5 wt % based on the total solids content of the latex. Also, the present disclosure provides biodegradable flooring products and methods of making the same.
Abstract:
A composite structure, a resin film, and a method of manufacturing the resin film are provided. The composite structure includes a release carrier and a resin film. The release carrier includes a release substrate and a release resin layer that is formed on the release substrate. The release resin layer covers the release substrate at a coverage rate of between 60% and 100%. The resin film is formed on the release carrier. The resin film is bonded to each of the release substrate and the release resin layer.
Abstract:
An aqueous emulsion comprising an aqueous continuous phase and a discontinuous oil phase comprising particles having an interpenetrating network (IPN) comprising: i) an MQ resin, ii) a polyorganosiloxane and iii) an organic polymer.
Abstract:
A patient interface comprises a cushion assembly including a textile membrane. The textile membrane includes an air impermeable silicone layer applied to a textile material. The textile material comprises 1) nylon and/or polyester, and 2) elastane. A yarn count of the nylon and/or polyester is in a range of 20-80 denier, and the textile material has stretchability in both a direction of the wales and a direction of the course.
Abstract:
The present invention pertains to a method to manufacture a textile product, in particular a carpet product such as broadloom carpet, carpet tiles, mats and rugs, comprising a first sheet having polyamide yarns fastened to this sheet to form a pile thereon, the method comprising providing the sheet, stitching the polyamide yarns through the sheet to form the pile on a first surface of the sheet, the pile extending for a predetermined length from this first surface, and to form loops of the yarns at a second surface of the sheet, and fastening the yarns to the sheet by creating a layer of fused material on the second surface of the sheet using heat, wherein during creating the layer of fused material, at least the distal half of the length of the pile is maintained at a temperature at least 70° C. below the melting temperature of the polyamide. The invention also pertains to a method to use a textile product obtained with the new method and a device for applying the said method.
Abstract:
The present invention provides a crimped polyamide yarn to which it is possible, using fibers that include low water absorption polyamide, to impart a stretch property and pliability such that it is possible for the inherent stretch properties of the crimped yarn to be appropriately expressed in a woven or knit fabric. The crimped polyamide yarn of the present invention is a side-by-side composite yarn which includes at least 40 mass % of low water absorption polyamide having an average of water absorption ratio of 5% or less at a temperature of 30° C. and a relative humidity (RH) of 90%, and in which the low water absorption polyamide is at least one component. The yarn is false-twisted, and has a crimp elongation ratio of 25% or more.
Abstract:
In one aspect, parachute buffer materials are described herein. In some embodiments, parachute buffer materials described herein comprise a fabric formed from a plurality of fibers and a coating disposed on at least one outer surface of the fabric. The fibers have an inner component formed from a thermoplastic material and an outer component formed from a non-thermoplastic material. In some cases, the fabric is a woven fabric. Additionally, the coating can comprise or contain a silicone along with, or without, other functional components. Moreover, materials described herein can be used to form various structures for parachute buffering applications, and the coatings of materials described herein can enhance the materials' buffering performance.
Abstract:
The present invention concerns a method for coating a textile material with a silicone elastomer composition crosslinkable by condensation reactions, to produce a solid silicone elastomer, optionally in a thin layer, on a flexible support that can be made from a textile material, paper, polyvinyl chloride, polyester, polypropylene, polyamide, polyethylene, polyurethane, non-woven glass fibre fabric or polyethylene terephthalate.
Abstract:
An airbag comprises a textile substrate and a coating on at least a portion of the surface of the textile substrate. The coating comprises a polyurethane polymer and a phosphorous compound. The phosphorous compound can be selected from the group consisting of esters of phosphoric acid, esters of phosphonic acid, esters of phosphinic acid, and mixtures thereof. An airbag module comprises the above-described airbag, a gas generator, and a cover at least partially enclosing the airbag and gas generator.
Abstract:
A stretchable coated fabric is treated for water repellency with a fluorinated water repellent that comprises a copolymer containing a perfluoroalkyl group with six or less carbon atoms (C6 fluorinated water repellent). The use of no C8 fluorinated water repellents that contain perfluorooctanoic acid, perfluorooctane sulfonate, and the like makes the fabric exerts no influence on the environment. And the fluorinated water repellent has a toluene repellency of 100 seconds or longer; a synthetic resin solution applied to at least one side of the stretchable fiber fabric has a thixotropic index at 23° C. in a range from 1.4 to 2.0; and the synthetic resin has a 100% modulus of 5 kgf/cm2 or greater. This prevents the synthetic resin from leaking to the back side and allows formation of a resin coating film that has good film forming properties.
Abstract translation:用包含含有6个以下碳原子的全氟烷基的共聚物(C6氟化防水剂)的氟化防水剂处理可拉伸涂布织物以防水。 使用不含有全氟辛酸,全氟辛烷磺酸等的C8氟化防水剂使织物对环境没有影响。 氟化防水剂的甲苯排斥性为100秒以上, 应用于伸缩性纤维织物的至少一面的合成树脂溶液在23℃下的触变性指数在1.4〜2.0的范围内; 合成树脂的100%模量为5kgf / cm 2以上。 这防止合成树脂泄漏到背面,并且可以形成具有良好成膜性能的树脂涂膜。