Patent classifications
C08L29/10
Adhesion improver for amine curing epoxy resin paint
An adhesion improver for amine curing epoxy resin paint which, when added in a small amount to amine curing epoxy resin paint, is capable of preventing the inhibition of adhesion caused by amine blushing and of giving good interlayer adhesion is provided. This adhesion improver is a composition which contains a polymer obtained by the polymerization of (A) acrylic acid ester and/or methacrylic acid ester which has a formula as follows: ##STR00001##
wherein R.sub.1 denotes a hydrogen atom or a methyl group, and R.sub.2 denotes a branched alkyl group having 3 to 18 carbon atoms, and (B) acrylic acid ester other than (A) above and/or methacrylic acid ester other than (A) above and/or vinyl ether.
Adhesion improver for amine curing epoxy resin paint
An adhesion improver for amine curing epoxy resin paint which, when added in a small amount to amine curing epoxy resin paint, is capable of preventing the inhibition of adhesion caused by amine blushing and of giving good interlayer adhesion is provided. This adhesion improver is a composition which contains a polymer obtained by the polymerization of (A) acrylic acid ester and/or methacrylic acid ester which has a formula as follows: ##STR00001##
wherein R.sub.1 denotes a hydrogen atom or a methyl group, and R.sub.2 denotes a branched alkyl group having 3 to 18 carbon atoms, and (B) acrylic acid ester other than (A) above and/or methacrylic acid ester other than (A) above and/or vinyl ether.
CARBOXYL-GROUP-CONTAINING POLYMER COMPOSITION
There is provided a carboxyl group-containing polymer composition having excellent water solubility and aqueous solution-thickening properties, having a minimal change in viscosity due to the thermal history in a drying step, and having high transparency of a neutral viscous solution obtained by mixing with water. The carboxyl group-containing polymer composition comprises (A) a carboxyl group-containing polymer obtained by copolymerization of an α,β-unsaturated carboxylic acid (a1) and a compound (a2) having at least two or more ethylenically unsaturated groups per molecule; (B) a polyhydric alcohol fatty acid ester alkylene oxide adduct; and (C) a polyoxyalkylene modified product, which is at least one of an ether (c1) of a polyoxyalkylene with a fatty alcohol, and a polyoxyalkylene fatty acid ester (c2).
CARBOXYL-GROUP-CONTAINING POLYMER COMPOSITION
There is provided a carboxyl group-containing polymer composition having excellent water solubility and aqueous solution-thickening properties, having a minimal change in viscosity due to the thermal history in a drying step, and having high transparency of a neutral viscous solution obtained by mixing with water. The carboxyl group-containing polymer composition comprises (A) a carboxyl group-containing polymer obtained by copolymerization of an α,β-unsaturated carboxylic acid (a1) and a compound (a2) having at least two or more ethylenically unsaturated groups per molecule; (B) a polyhydric alcohol fatty acid ester alkylene oxide adduct; and (C) a polyoxyalkylene modified product, which is at least one of an ether (c1) of a polyoxyalkylene with a fatty alcohol, and a polyoxyalkylene fatty acid ester (c2).
ELECTROLYTE MATERIAL, LIQUID COMPOSITION AND MEMBRANE/ELECTRODE ASSEMBLY FOR POLYMER ELECTROLYTE FUEL CELL
To provide a membrane/electrode assembly excellent in the power generation characteristics in a wide temperature range and a wide humidity range; an electrolyte material suitable for a catalyst layer of the membrane/electrode assembly; and a liquid composition suitable for forming a catalyst layer of the membrane/electrode assembly.
To use an electrolyte material which is formed of a polymer (H) obtained by converting precursor groups in a polymer (F) having structural units (A) based on a perfluoromonomer having a precursor group represented by the formula (g1), structural units (B) represented by the formula (u2), and structural units (C) based on tetrafluoroethylene, wherein the proportion of the structural units (A) is from 8 to 19 mol %, the proportion of the structural units (B) is from 65 to 80 mol %, and the proportion of the structural units (C) is from 1 to 27 mol %, to ion exchange groups.
##STR00001##
Functionalized Triazine Compounds, Compositions Comprising Such Compounds and Cured Fluoropolymer Articles
Described herein are compounds according to Formula (I) wherein Rf is a perfluorinated divalent group comprising 2 to 12 carbon atoms; and Z is selected from —CH═CH.sub.2, and —CH.sub.2CH═CH. A method of making the compound from a functionalized vinyl ether and ammonia is disclosed. In one embodiment, the functionalized triazine-containing compound is used in the polymerization of a fluoropolymer. In another embodiment, the functionalized triazine-containing compound is used in a curable fluoropolymer composition and cured to form articles.
##STR00001##
Functionalized Triazine Compounds, Compositions Comprising Such Compounds and Cured Fluoropolymer Articles
Described herein are compounds according to Formula (I) wherein Rf is a perfluorinated divalent group comprising 2 to 12 carbon atoms; and Z is selected from —CH═CH.sub.2, and —CH.sub.2CH═CH. A method of making the compound from a functionalized vinyl ether and ammonia is disclosed. In one embodiment, the functionalized triazine-containing compound is used in the polymerization of a fluoropolymer. In another embodiment, the functionalized triazine-containing compound is used in a curable fluoropolymer composition and cured to form articles.
##STR00001##
Scale inhibition in high pressure and high temperature applications
Methods are provided to inhibit scale formation in oil or gas production systems. In one embodiment, the scale inhibiting treatment comprises: A) an AAA terpolymer and B) a polycarboxylate such as a polyepoxy succinic acid (PESA). The treatment can be added to these systems in the well area itself, to the well annulus and its associated tubes, casings, etc., to the oil or gas bearing subterranean formation, to injection conduits for injection of steam or fracking fluid to the subterranean formation, to the produced water, or to equipment in fluid contact with the produced water.
Scale inhibition in high pressure and high temperature applications
Methods are provided to inhibit scale formation in oil or gas production systems. In one embodiment, the scale inhibiting treatment comprises: A) an AAA terpolymer and B) a polycarboxylate such as a polyepoxy succinic acid (PESA). The treatment can be added to these systems in the well area itself, to the well annulus and its associated tubes, casings, etc., to the oil or gas bearing subterranean formation, to injection conduits for injection of steam or fracking fluid to the subterranean formation, to the produced water, or to equipment in fluid contact with the produced water.
FLUORINE-CONTAINING ELASTOMER, CROSSLINKABLE COMPOSITION AND MOLDED ARTICLE
A fluorine-containing elastomer including a vinylidene fluoride unit and an unsaturated ether unit selected from a unit based on a monomer (1) represented by the general formula (1): CH.sub.2═CFCF.sub.2—O—Rf.sup.1 and a unit based on a monomer (2) represented by the general formula (2): CH.sub.2═CF—O—Rf.sup.2, and having a glass transition temperature of 20° C. or lower, a crosslinkable composition including the fluorine-containing elastomer, and a molded article obtained from the fluorine-containing elastomer or the crosslinkable composition.