Abstract:
A moisture-curable formulation comprising a (hydrolyzable silyl group)-functional polyolefin prepolymer and an ascorbyl carboxylate ester. Methods of making and using same, a cured polyolefin made therefrom, and articles containing or made from same.
Abstract:
An aqueous composition contains an olefinic polymer having an olefin portion that is substantially saturated and anionic functionality imparting water dispersibility. The olefinic polymer can be prepared by reacting a saturated or substantially saturated olefin polymer with a reactant that provides the water-dispersing functionality. The composition can be an adhesion promoter that provides excellent adhesion of subsequent coating layers to olefinic substrates like TPO or an additive in a different coating composition, which may be a curable coating composition, especially a primer composition, to provide excellent adhesion to olefinic substrates like TPO.
Abstract:
A polymeric composition includes an ethylene-silane copolymer comprising units derived from ethylene monomer and a silane monomer, wherein the ethylene-silane copolymer has a copolymerized silane content from 0.48 mol % to 1.00 mol %, a Brønsted acid catalyst and a filler comprising one or more of a flame retardant and carbon black. A Filler to Catalyst Weight Ratio is from 75 to 1000.
Abstract:
A moisture-curable semiconductive formulation consisting essentially of a mixture of an ethylene/(alkenyl-functional hydrolyzable silane)/(optional olefinic hydrocarbon) copolymer and a conventional carbon black. Also discovered methods of making and using same, a moisture-cured semiconductive product made therefrom, and articles containing or made from same.
Abstract:
The present invention provides a coating comprising cinnamaldehyde, a cinnamaldehyde derivative, an essential oil, or an essential oil-derived compound; and a polyphenol, polyethyleneimine or poly(4-vinylaniline). The invention also provides a coating comprising cinnamaldehyde, a cinnamaldehyde derivative, an essential oil, or an essential oil-derived compound; a metal, metal-salt or metal-compound; and a polyphenol or a polyphenol-containing substance or solution. Substrates including the coatings applied thereto, and methods of preparing the coatings are also provided.
Abstract:
There is provided an insulaled wire, comprising: a conductor; and an insulated coating layer provided on an outer circumference of the conductor, wherein the insulated coating layer is made of a fluorine-containing elastomer composition containing a base polymer containing tetrafluoroethylene-α-olefin copolymer in which tetrafluoroethylene and α-olefin having 2 to 4 carbon atoms are polymerized, and having low smoke emission in which a target value of an optical density at the time of performing a smoke emission test based on a test method BS6853 is A0 (ON) or less represented by the following formula (1), and A0 (OFF) or less represented by the following formula (2), when an outer diameterof the insulated wire is defined as d [mm], A0(ON)={(tan−1(d/45)×180/π)/45}−{(tan−1(d)×180/π)/2025} (1) A0(OFF)=1.5×A0(ON) (2); and low toxicity in which toxic gas total index is 1.0 or less when a toxicity test is performed based on a test method NFX-70-100.
Abstract:
A method for producing composite materials which comprises in one step preparing modified cellulose fibers by treating (A) cellulose fibers with an aqueous emulsion of (B) at least one ethylene copolymer having a molecular weight Mn of up to 20 000 g/mol maximum and comprising as comonomers in incorporated form (a) 50% to 95% by weight of ethylene, (b) 5% to 50% by weight of at least one comonomer having at least one alkylated or cycloalkylated amino group which is connected via a spacer to a polymerizable group, (c) 0% to 30% by weight of other comonomers, and in a further step by mixing modified cellulose fibers with (C) at least one thermoplastic (D) and optionally one or more adjuvants.
Abstract:
An encapsulant for a photovoltaic module, which may inhibit the encapsulant from clouding when a hot spot phenomenon is caused. The encapsulant for a photovoltaic module includes: a resin for an encapsulant containing a silane-modified resin obtained by polymerizing an ethylenically unsaturated silane compound and polyethylene for a light stabilizer, a thermal stabilizer and polyethylene for use in a mater batch. The polyethylene for polymerization and the polyethylene for use in a master batch are metallocene based linear low density polyethylene having a density in the range of 0.895 g/cm3 to 0.910 g/cm3.
Abstract translation:一种用于光伏组件的密封剂,当发生热点现象时,其可能会抑制密封剂的混浊。 光伏模块的密封剂包括:用于密封剂的树脂,其包含通过聚合烯键式不饱和硅烷化合物和用于光稳定剂的聚乙烯获得的硅烷改性树脂,热稳定剂和用于母料的聚乙烯。 用于聚合的聚乙烯和用于母料的聚乙烯是密度在0.895g / cm 3至0.910g / cm 3范围内的金属茂系线性低密度聚乙烯。
Abstract:
Coating compositions for metal substrates comprising a mixture of ethylene-tetrafluoroethylene copolymers, said mixture including an ethylene-tetrafluoroethylene copolymer having 50-60 mol % of tetrafluoroethylene with a melting point from about 250.degree. C to about 315.degree. C and an ethylene-tetrafluoroethylene copolymer having more than 60 or less than 45 mol % of tetrafluoroethylene with a melting point from about 180.degree. C to about 285.degree. C and a latent solvent. The composition may optionally include a fluidizing solvent and various pigments, inert fillers and other additives.