C08F222/06

ALTERNATING COPOLYMERS OF SELECTED UNSYMMETRICALLY SUBSTITUTED STILBENES AND MALEIC ANHYDRIDE OR N-SUBSTITUTED MALEIMIDES

In one aspect, the disclosure relates to the production of alternating polymers of maleic anhydride or an N-substituted maleimide with a stilbene.

Mineral-filled thermoplastic composition having good mechanical properties
11479666 · 2022-10-25 · ·

The invention relates to a composition for producing a thermoplastic moulding material, wherein the composition contains the following constituents: A) at least one polymer selected from the group consisting of aromatic polycarbonate, aromatic polyestercarbonate and polyester, B) at least one anhydride-functionalized ethylene-α-olefin copolymer or ethylene-α-olefin terpolymer having a weight-average molecular weight Mw of 50000 to 500000 g/mol determined by high-temperature gel permeation chromatography using ortho-dichlorobenzene as solvent against polystyrene standards, C) a talc-based mineral filler, and also to a process for producing the moulding material, to the moulding material itself, to the use of the composition or of the moulding material for producing moulded articles and to the moulded articles themselves.

Mineral-filled thermoplastic composition having good mechanical properties
11479666 · 2022-10-25 · ·

The invention relates to a composition for producing a thermoplastic moulding material, wherein the composition contains the following constituents: A) at least one polymer selected from the group consisting of aromatic polycarbonate, aromatic polyestercarbonate and polyester, B) at least one anhydride-functionalized ethylene-α-olefin copolymer or ethylene-α-olefin terpolymer having a weight-average molecular weight Mw of 50000 to 500000 g/mol determined by high-temperature gel permeation chromatography using ortho-dichlorobenzene as solvent against polystyrene standards, C) a talc-based mineral filler, and also to a process for producing the moulding material, to the moulding material itself, to the use of the composition or of the moulding material for producing moulded articles and to the moulded articles themselves.

THERMOPLASTIC MOULDING MATERIALS WITH IMPROVED PROPERTY PROFILE

The invention relates to thermoplastic moulding materials comprising styrene block copolymers and propylene-based copolymers, wherein the SBC polymers comprise a styrene content of 5 to 40% by weight and the backbone of the propylene copolymers has a weight-average molecular weight M.sub.w<10 000 g/mol. The thermoplastic moulding materials are suitable for affixing granules due to their melt viscosity and their mechanical properties.

THERMOPLASTIC MOULDING MATERIALS WITH IMPROVED PROPERTY PROFILE

The invention relates to thermoplastic moulding materials comprising styrene block copolymers and propylene-based copolymers, wherein the SBC polymers comprise a styrene content of 5 to 40% by weight and the backbone of the propylene copolymers has a weight-average molecular weight M.sub.w<10 000 g/mol. The thermoplastic moulding materials are suitable for affixing granules due to their melt viscosity and their mechanical properties.

POLYPROPYLENE RESIN COMPOSITION, METHOD FOR PRODUCING POLYPROPYLENE RESIN COMPOSITION, AND MOLDED BODY
20230078722 · 2023-03-16 · ·

A polypropylene resin composition according to the present invention contains 1 to 41 parts by mass of fibrous basic magnesium sulfate, 50 to 98 parts by mass of a propylene polymer, 0.02 to 1.6 parts by mass of a lubricant, and less than 0.5 times the amount of the basic magnesium sulfate and 0.1 to 20 parts by mass of an acid-modified elastomer.

POLYPROPYLENE RESIN COMPOSITION, METHOD FOR PRODUCING POLYPROPYLENE RESIN COMPOSITION, AND MOLDED BODY
20230078722 · 2023-03-16 · ·

A polypropylene resin composition according to the present invention contains 1 to 41 parts by mass of fibrous basic magnesium sulfate, 50 to 98 parts by mass of a propylene polymer, 0.02 to 1.6 parts by mass of a lubricant, and less than 0.5 times the amount of the basic magnesium sulfate and 0.1 to 20 parts by mass of an acid-modified elastomer.

FLAME-RETARDANT RUBBER COMPOSITION AND OUTER DIAPHRAGM FOR RAIL VEHICLES
20230077643 · 2023-03-16 · ·

A flame-retardant rubber composition containing the following components (A) to (E) and an outer diaphragm for rail vehicles are provided. The outer diaphragm composed of a cross-linked body of the flame-retardant rubber composition. Accordingly, the present disclosure ensures excellent rubber properties such as tensile strength and elongation at break, and exhibits good flame-retardancy. (A) Excluding (B) below, at least one selected from the group consisting of a diene-based rubber, an olefin-based rubber, a urethane rubber, and a silicone rubber. (B) An acid-modified polyolefin. (C) A metal hydroxide. (D) A phosphinic acid metal salt. (E) A cross-linking agent of component (A).

FLAME-RETARDANT RUBBER COMPOSITION AND OUTER DIAPHRAGM FOR RAIL VEHICLES
20230077643 · 2023-03-16 · ·

A flame-retardant rubber composition containing the following components (A) to (E) and an outer diaphragm for rail vehicles are provided. The outer diaphragm composed of a cross-linked body of the flame-retardant rubber composition. Accordingly, the present disclosure ensures excellent rubber properties such as tensile strength and elongation at break, and exhibits good flame-retardancy. (A) Excluding (B) below, at least one selected from the group consisting of a diene-based rubber, an olefin-based rubber, a urethane rubber, and a silicone rubber. (B) An acid-modified polyolefin. (C) A metal hydroxide. (D) A phosphinic acid metal salt. (E) A cross-linking agent of component (A).

BINDER FOR INORGANIC FIBERS AND INORGANIC FIBER MAT

The present invention provides: a binder for inorganic fibers, the binder being characterized by containing (B) an ammonia-modified maleic anhydride-containing copolymer at a quantity of 3 parts by mass or more relative to 100 parts by mass of (A) a cellulose ether having a viscosity at 20° C. of 500 mPa.Math.s or less when in the form of a 2 mass % aqueous solution: and an inorganic fiber mat comprising inorganic fibers treated with the binder for inorganic fibers. By using this binder for inorganic fibers, it is possible to produce an inorganic fiber mat having a high recoverability similar to that of a phenol resin, and the amount of volatile organic compounds released from the inorganic fiber mat is extremely low.