C09D5/04

Method for modifying a casting resin and/or coating composition

Suggested is a method for modifying the rheology of a casting resin and/or coating composition, comprising the following steps: providing a composition comprising at least one monomer capable of forming a casting resin or coating upon polymerisation; and adding to said composition a working amount of a urea urethane obtained under specific conditions as a thixotropic agent.

Method for modifying a casting resin and/or coating composition

Suggested is a method for modifying the rheology of a casting resin and/or coating composition, comprising the following steps: providing a composition comprising at least one monomer capable of forming a casting resin or coating upon polymerisation; and adding to said composition a working amount of a urea urethane obtained under specific conditions as a thixotropic agent.

Thickening anionic copolymer

The invention relates to a copolymer obtained by polymerisation reaction of at least three comonomers: a first anionic monomer, a second monomer comprising an olefin unsaturation, and a third monomer comprising a hydrophobic group. The invention likewise relates to the use of said copolymer as a thickening agent, in particular in aqueous suspensions of mineral particles with high solids content. The copolymer according to the invention makes it possible to improve the compromise between viscosity with high shear gradient and viscosity with low shear gradient, while also improving water retention inside the suspension.

Thickening anionic copolymer

The invention relates to a copolymer obtained by polymerisation reaction of at least three comonomers: a first anionic monomer, a second monomer comprising an olefin unsaturation, and a third monomer comprising a hydrophobic group. The invention likewise relates to the use of said copolymer as a thickening agent, in particular in aqueous suspensions of mineral particles with high solids content. The copolymer according to the invention makes it possible to improve the compromise between viscosity with high shear gradient and viscosity with low shear gradient, while also improving water retention inside the suspension.

Process for preparing urea urethane polymer

The presently claimed invention relates to a process for preparing urea urethane polymer, liquid compositions comprising the urea urethane polymer and the use of the urea urethane polymer as a thickening and thixotropic agent for water based and solvent based paint and coating formulations, lacquer, varnish, paper coating, wood coating, adhesive, ink, cosmetic formulation, detergent formulation, textile and drilling muds plaster formulations, PVC plastisol and cement formulations.

Process for preparing urea urethane polymer

The presently claimed invention relates to a process for preparing urea urethane polymer, liquid compositions comprising the urea urethane polymer and the use of the urea urethane polymer as a thickening and thixotropic agent for water based and solvent based paint and coating formulations, lacquer, varnish, paper coating, wood coating, adhesive, ink, cosmetic formulation, detergent formulation, textile and drilling muds plaster formulations, PVC plastisol and cement formulations.

UREA URETHANE COMPOUNDS
20230348731 · 2023-11-02 ·

The presently claimed invention relates to urea urethane compounds obtainable by reacting toluene diisocyanate with a mixture of monohydroxy alcohols followed by reaction with a diamine. The presently claimed invention provides a process for preparing the urea urethane compounds, liquid compositions comprising the urea urethane compounds and the use of the urea urethane compounds as a thickening and thixotropic agent for water based and solvent based paint and coating formulations, lacquer, varnish, paper coating, wood coating, adhesive, ink, cosmetic formulation, detergent formulation, textile and drilling muds plaster formulations, PVC plastisol and cement formulations.

UREA URETHANE COMPOUNDS
20230348731 · 2023-11-02 ·

The presently claimed invention relates to urea urethane compounds obtainable by reacting toluene diisocyanate with a mixture of monohydroxy alcohols followed by reaction with a diamine. The presently claimed invention provides a process for preparing the urea urethane compounds, liquid compositions comprising the urea urethane compounds and the use of the urea urethane compounds as a thickening and thixotropic agent for water based and solvent based paint and coating formulations, lacquer, varnish, paper coating, wood coating, adhesive, ink, cosmetic formulation, detergent formulation, textile and drilling muds plaster formulations, PVC plastisol and cement formulations.

ICI thickener composition and uses

A viscosity regulating composition and its method of manufacture. The composition comprises a mixture of (a) a branched polymer having the formula [M]-[(A.sup.1O)-L.sup.1-(A.sup.1O)—R.sup.1].sub.n, wherein M is polybranched hydrophobe; A.sup.1O is a polyoxyalkylene unit; L.sup.1 is an aliphatic linking segment or an aromatic linking segment each having at least two hydroxyl reactive linking groups; and R.sup.1 is an aliphatic end unit or aromatic end unit having 6 to 32 carbon atoms; n ranges from 3 to 6; and (b) a polymer having the formula R.sup.2-(A.sup.2O)-L.sup.2-(A.sup.2O)—R.sup.2, wherein (A.sup.2O) is a polyoxyalkylene unit, L.sup.2 is a aliphatic linking segment or an aromatic linking segment, and R.sup.2 is a aliphatic unit or an aromatic unit each having 6 to 32 carbon atoms.

ICI thickener composition and uses

A viscosity regulating composition and its method of manufacture. The composition comprises a mixture of (a) a branched polymer having the formula [M]-[(A.sup.1O)-L.sup.1-(A.sup.1O)—R.sup.1].sub.n, wherein M is polybranched hydrophobe; A.sup.1O is a polyoxyalkylene unit; L.sup.1 is an aliphatic linking segment or an aromatic linking segment each having at least two hydroxyl reactive linking groups; and R.sup.1 is an aliphatic end unit or aromatic end unit having 6 to 32 carbon atoms; n ranges from 3 to 6; and (b) a polymer having the formula R.sup.2-(A.sup.2O)-L.sup.2-(A.sup.2O)—R.sup.2, wherein (A.sup.2O) is a polyoxyalkylene unit, L.sup.2 is a aliphatic linking segment or an aromatic linking segment, and R.sup.2 is a aliphatic unit or an aromatic unit each having 6 to 32 carbon atoms.