Abstract:
A manufacturing method of a PTC (Positive Temperature Coefficient) element includes: producing a polymer aqueous emulsion solution; producing a polymer aqueous emulsion conductive composite by mixing the polymer aqueous emulsion solution with a conductive agent; and producing the PTC element by coating a substrate with the polymer aqueous emulsion conductive composite, or print the polymer aqueous emulsion conductive composite on the substrate, or dipping the substrate in the polymer aqueous emulsion conductive composite and drying the substrate. Here, the polymer aqueous emulsion solution includes an adhesive polymer, a cross-linking agent, an initiator, and water. The substrate is film, non-woven, textile, inflexible plate, and the like, which are formed of polymer resin.
Abstract:
The present disclosure relates to an aqueous binder composition, comprising a) at least one polymer P constructed from ≧0.1 and ≦2.5 wt % of at least one acid-functional ethylenically unsaturated monomer (monomers A) ≧0 and ≦4.0 wt % of at least one ethylenically unsaturated carboxylic acid nitrile or dinitrile (monomers B) ≧0 and ≦2.0 wt % of at least one crosslinking monomer having two or more nonconjugated ethylenically unsaturated groups (monomers C) ≧0 and ≦10 wt % of at least one α,β-monoethylenically unsaturated C3 to C6 mono- or dicarboxamide (monomers D) ≧25 and ≦69.9 wt % of at least one ethylenically unsaturated monomer whose homopolymer has a glass transition temperature ≦30° C. and which differs from the monomers A to D (monomers E), and ≧30 and ≦70 wt % of at least one ethylenically unsaturated monomer whose homopolymer has a glass transition temperature ≧50° C. and which differs from the monomers A to D (monomers F), in polymerized form, wherein the amounts of monomers A to F sum to 100 wt %, and b) at least one saccharide compound S, the amount of which is determined such that it is ≧10 and ≦400 parts by weight per 100 parts by weight of polymer P.
Abstract:
The present disclosure describes a surfactant treatment for a polyolefinic nonwoven fabric used as a filtration medium or for collecting dust and dirt, e.g. as a mop or similar device. The surfactant treatment consists essentially of carbon, hydrogen and oxygen atoms. The surfactant treated material has a BFE after electret treatment of at least 97 percent and is hydrophilic.
Abstract:
A yarn producing apparatus that produces carbon nanotube yarn at high speed includes a yarn producing unit that aggregates running carbon nanotube fibers. The yarn producing unit includes a nozzle body, a first nozzle provided in the nozzle body to generate a first swirl flow, with compressed air, in a direction orthogonal to the direction of the carbon nanotube fibers running, and a second nozzle provided in the nozzle body to generate a second swirl flow, with compressed air, in a direction orthogonal to the direction of the carbon nanotube fibers running and opposite to the direction of the first swirl flow. The first nozzle and the second nozzle are provided at positions different in the direction of the carbon nanotube fibers running in the nozzle body.
Abstract:
Fabrication of ballistic resistant fibrous composites having improved ballistic resistance properties. More particularly, ballistic resistant fibrous composites having high interlaminar lap shear strength between component fiber plies or fiber layers, which correlates to low composite backface signature. The high lap shear strength, low backface signature composites are useful for the production of hard armor articles, including helmet armor.
Abstract:
Disclosed is a perspiration-absorbing, quick-drying fabric. The fabric including: a hydrophilic fabric body; a water repellent layer formed by embedding a water repellent agent in a direction of a second surface opposite to a first surface, not to reach the second surface; and a plurality of water absorbing holes formed on the water repellent layer.
Abstract:
A method for preparing high-grade and casual fabric with special leather feel using a corn-based fiber that comprises the steps of: 1) selecting 0.3-0.5 D/PF ultrafine corn-based polymeric fiber, i.e., DuPont™ SORONA®, and 0.2-0.4 D/PF long porous bright polyester yarns as raw materials; 2) compositing by air-jet texturing: having the above raw materials composited by low tension air-jet texturing in an air texturing machine, with the tension force controlled in the range of 4.5-6.0 cN, so as to form ATY yarns with a denier number of 120-180 D; 3) weaving, which includes yarn sizing, preliminary drying, oil applying and plain weaving; 4) dyeing and finishing, which include treating a fabric by pre-treating, presetting, splitting and alkali detaching, water washing and dehydrating, dyeing, water repellent treatment, instant ultrahigh temperature treatment, and one-sided lustering.
Abstract translation:一种使用玉米基纤维制备具有特殊皮革感觉的高级和休闲面料的方法,其包括以下步骤:1)选择0.3-0.5 D / PF超细玉米基聚合物纤维,即DuPont TM SORONA,和 0.2-0.4 D / PF长多孔光亮聚酯纱线为原料; 2)通过喷气织造合成:将上述原料通过空气变形机中的低张力喷气织构复合,其张力控制在4.5-6.0cN的范围内,以形成具有 旦尼尔数120-180 D; 3)织造,包括纱线上浆,预干燥,施油和平纹编织; 4)染色和整理,其中包括通过预处理,预浸,分裂和碱剥离,水洗和脱水,染色,防水处理,即时超高温处理和单面光泽处理织物。
Abstract:
A smokeless tobacco product is provided. The tobacco product is configured for insertion into the mouth of a user of that product, which includes a water-permeable pouch containing a tobacco formulation that includes a granular tobacco composition, wherein the pouch is constructed of a spunlaid fleece material, which may be thermally sealed for closure and which may be formed of biodegradable polymer fiber.
Abstract:
Fabrication of ballistic resistant fibrous composites having improved ballistic resistance properties. More particularly, ballistic resistant fibrous composites having high interlaminar lap shear strength between component fiber plies or fiber layers, which correlates to low composite backface signature. The high lap shear strength, low backface signature composites are useful for the production of hard armor articles, including helmet armor.