Abstract:
The invention relates to a multi-layer finish on a substrate, containing at least one radiation-curable paint system (F) and at least one elastic intermediate layer (D) which is located between the substrate and the radiation-curable paint system (F) and has a maximum glass transition temperature (Tg) of -20 DEG C.
Abstract:
The invention relates to a thermoplastic moulding material containing a) 1 to 97.5 wt. % of at least one aromatic polycarbonate, b) 1 to 97.5 wt. % of at least one graft polymer consisting of optionally alkyl-substituted styrene and an unsaturated nitrile on an elastomeric graft base, c) 1 to 97.5 wt. % of at least one thermoplastic copolymerisate consisting of optionally alkyl-substituted styrene and an unsaturated nitrile, d) 0.5 to 50 wt. % of a copolymerisate, d1) consisting of a copolymer consisting of optionally alkyl-substituted styrene, an unsaturated nitrile and monomers with epoxy, hydroxy, carboxyl or oxazoline groups, and d2) 5 to 95 wt. % of at least one thermoplastic polyester, said copolymer d being producible by common extrusion of d1 and d2; and optionally, other ingredients.
Abstract:
The invention relates to non-flammable, thermoplastic moulded materials containing (A) at least one polyphenylene ether, (B) at least one vinyl aromatic polymer, and (C) at least one flame-proofing agent. Said materials are characterised in that they also comprise (D) and as the non-drip agent a high-molecular polymer based on acrylamide with a viscosity approximately of above 1.5 mPas, measured in an aqueous solution of 0.1 % at 25 °C. The invention also relates to the use of said materials in the production of fibres, sheets and moulded structures.
Abstract:
The invention relates to thermoplastic moulding materials containing A) 10 to 97.9 wt.% of a semi-crystalline polyamide, B) 0.1 to 50 wt.% of a copolyamide consisting of B1) 60 to 90 mol.% units derived from epsilon -caprolactam and B2) 10 to 40 mol.% units derived from aliphatic dicarboxylic acids and aliphatic diamines,C) 1 to 40 wt.% of a copolymer with a base of styrene or substituted styrenes and unsaturated nitriles, D) 1 to 50 wt.% of a fibrous filler and E) 0 to 30 wt.% of other additives, the weight percentages of the components A) to E) totalling 100 %.
Abstract:
The invention relates to a method for producing a coated substrate by applying at least one coating agent to the substrate and then hardening said coating agent in order to obtain a coat of lacquer on the substrate. The invention also relates to the coated substrates obtained by said method, and a coating agent.
Abstract:
The invention relates to a method for producing stabilized polyester/polycarbonate blends, whereby; A) 40 to 99.9 wt. % of a polyester and B) 0.1 to 60 wt. % of a stabilizer containing phosphorous are mixed in the melt, are removed, cooled, and granulated, and component A' which is obtained in this manner is subsequently mixed with a polycarbonate C), is optionally mixed with a polyester A) and a rubber elastic polymerizate D), and is optionally mixed with additional additives E).
Abstract:
The invention relates to thermoplastic molding compounds that contain A) 40 to 95 % by weight of a polyamide, B) 4 to 30 % by weight of an impact modifier polymer having functional groups, C) 1 to 50 % by weight of fibrous or particulate fillers or the mixtures thereof, D) 0 to 50 % by weight of other additives, the weight percentages of components A) to D) adding up to 100 %.
Abstract:
Thermoplastic molding materials, comprising A) 10 to 97.5 % by weight of at least one thermoplastic polyester A; B) 1 to 97.5 % by weight of at least one graft polymer B from b1) 40 to 80 % by weight of a graft base from a rubber-elastic polymer B1 on the basis of alkylacrylates with 1 to 8 C atoms in the alkyl group, ethylene/propylene, dienes or siloxanes and having a glass transition temperature of below 0 ~C, b2) 20 to 60 % by weight of a graft base B2 from b21) 60 to 95 % by weight of styrene or substituted styrenes B21 of general formula (I), wherein R represents a C1-8 alkyl group or hydrogen and R1 represents a C1-8 alkyl group and n is 1, 2 or 3, or the mixtures thereof and b22) 5 to 40 % by weight of at least one unsaturated nitrile B22; C) 1 to 97.5 % by weight of at least one thermoplastic copolymer C, from c1) 60 to 85 % by weight of styrene or substituted styrenes C1 of general formula (I) or the mixtures thereof and c2) 15 to 40 % by weight of at least one unsaturated nitrile C2; D) 0.5 to 50 % by weight of at least one copolymer D, which is obtainable by reacting d1) 5 to 95 % by weight of at least one thermoplastic methacrylate polymer D1 comprising at least one kind of functional groups, selected from the group including epoxy, carboxyl, hydroxyl, anhydride and oxazoline, with d2) 5 to 95 % by weight of at least one thermoplastic polyester D2; E) 0 to 40 % by weight of at least one filler E; F) 0 to 2 % by weight of at least one organic acid F; G) 0 to 25 % by weight of at least one halogen-free phosphorus compound G; H) 0 to 45 % by weight of other additives H; the sum of components A to H always adding up to 100 %.
Abstract:
Lighting elements composed of thermoplastic molding compositions comprising A) from 10 to 99.9% by weight of at least one thermoplastic polyester, B) from 0.1 to 50% by weight of at least one terpolymer, obtainable from b1) at least one vinylaromatic monomer, b2) at least one C1-C4-alkyl (meth)acrylate or (meth)acrylonitrile, and b3) from 0.1 to 10% by weight, based on the total weight of the components b1) to b3), of at least one monomer which comprises an alpha,beta-unsaturated anhydride, and C) from 0 to 60% by weight of other additives, where the total of the percentages by weight of components A) to C) is 100%.