Patent classifications
C08G18/3234
POLYURETHANE UREA SOLUTIONS FOR TEXTILE COATINGS
The invention relates to a method for coating textiles and/or leather, comprising applying at least one polyurethane urea dissolved in a solvent or solvent mixture, wherein the solvent consists of one or more monohydroxy-functional alcohols, or a solvent mixture consisting of organic solvents, containing >80 wt. % of at least one monohydroxy-functional alcohol in relation to the total mass of the solvent mixture is used, and wherein the polyurethane urea is formed by: a) at least one araliphatic, aliphatic and/or cycloaliphatic diisocyanate; b) at least one polyether polyol having a number average molecular weight M.sub.n≧400 and ≦6000 g/mol and an average hydroxyl functionality of ≧1.5 and ≦4; c) at least one amino-functional compound having at least two isocyanate reactive amino groups; and optionally other components. The invention also relates to a textile or leather coating produced using this method and a dissolved polyurethane urea, and to the use of the polyurethane urea for coating substrates and for producing free films.
POLYURETHANE UREA SOLUTIONS FOR TEXTILE COATINGS
The invention relates to a method for coating textiles and/or leather, comprising applying at least one polyurethane urea dissolved in a solvent or solvent mixture, wherein the solvent consists of one or more monohydroxy-functional alcohols, or a solvent mixture consisting of organic solvents, containing >80 wt. % of at least one monohydroxy-functional alcohol in relation to the total mass of the solvent mixture is used, and wherein the polyurethane urea is formed by: a) at least one araliphatic, aliphatic and/or cycloaliphatic diisocyanate; b) at least one polyether polyol having a number average molecular weight M.sub.n≧400 and ≦6000 g/mol and an average hydroxyl functionality of ≧1.5 and ≦4; c) at least one amino-functional compound having at least two isocyanate reactive amino groups; and optionally other components. The invention also relates to a textile or leather coating produced using this method and a dissolved polyurethane urea, and to the use of the polyurethane urea for coating substrates and for producing free films.
WATER-DISPERSIBLE POLYURETHANE-UREA RESIN COMPOSITION FOR SYNTHETIC LEATHER AND PREPARING METHOD THEREOF
The present disclosure relates to a polyurethane-urea resin composition for synthetic leather and a method of preparing the polyurethane-urea resin composition, the polyurethane-urea resin composition having excellent resin stability, heat resistance and aesthetic properties by including an ionic compound containing a sulfonic acid group, and by not including a neutralizer. In addition, the polyurethane-urea resin composition for synthetic leather may be applicable for various purposes by controlling a polyurethane-urea particle size to a desired size by controlling a content of the ionic compound containing a sulfonic acid group.
WATER-DISPERSIBLE POLYURETHANE-UREA RESIN COMPOSITION FOR SYNTHETIC LEATHER AND PREPARING METHOD THEREOF
The present disclosure relates to a polyurethane-urea resin composition for synthetic leather and a method of preparing the polyurethane-urea resin composition, the polyurethane-urea resin composition having excellent resin stability, heat resistance and aesthetic properties by including an ionic compound containing a sulfonic acid group, and by not including a neutralizer. In addition, the polyurethane-urea resin composition for synthetic leather may be applicable for various purposes by controlling a polyurethane-urea particle size to a desired size by controlling a content of the ionic compound containing a sulfonic acid group.
Dendritic polyurea for solubilizing active substances of low solubility
The present invention provides a composition comprising an amphiphile and an active ingredient whose solubility in water at 20° C. is not more than 10 g/L, wherein the amphiphile comprises a dendritic polyurea which is joined to at least one linear or comb-type polymer, and the joining is effected via a difunctional linker, if the repeat units of the linear polymer are composed of polymerized alkylene oxide. The invention also relates to an amphiphile comprising a dendritic polyurea and a process for preparing the amphiphile.
Methods for Reactive Three-Dimensional Printing by Inkjet Printing
Methods of printing a three-dimensional object using co-reactive components are disclosed. Thermosetting compositions for three-dimensional printing are also disclosed.
Polymeric Material Including a Uretdione-Containing Material, an Epoxy Component, and an Accelerator, Two-Part Compositions, and Methods
The present disclosure provides a polymeric material including a polymerized reaction product of a polymerizable composition including components and has a solids content of 90% or greater. The components include a uretdione-containing material including a reaction product of a diisocyanate reacted with itself; a first hydroxyl-containing compound; an optional second hydroxyl-containing compound having a single OH group; an epoxy component; and an accelerator. The first hydroxyl-containing compound has more than one OH group and the optional second hydroxyl-containing compound is a primary alcohol or a secondary alcohol. The present disclosure also provides a two-part composition, in which a polymeric material is included in the first part and the second part includes at least one thiol-containing compound. Further, a method of adhering two substrates is provided, including obtaining a two-part composition; combining at least a portion of the first part with at least a portion of the second part to form a mixture; disposing at least a portion of the mixture on a first substrate; and contacting a second substrate with the mixture disposed on the first substrate. The disclosure also provides a polymeric material and a method of making a two-part composition. Advantageously, two-part compositions according to the present disclosure can be used as coatings and adhesive systems with handling and performance similar to existing two-part urethane systems, but with less sensitivity to water.
AMINE COMPOSITION, AMINE COMPOUND, PRODUCTION METHOD, AND APPLICATION THEREOF
Provided are a novel amine composition and a novel amine compound. Also provided are a method for producing the amine composition and amine compound, and an epoxy resin curing agent, an epoxy resin composition, a cured product, a urethane prepolymer curing agent, a polyurethane urea resin composition, a polyamide varnish, and a polyamide, each obtained using the amine composition and amine compound. The amine composition contains a compound represented by Formula (1), wherein A is a cyclic alkylene group, and B is a group containing an aryl group or a heteroaryl group.
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AMINE COMPOSITION, AMINE COMPOUND, PRODUCTION METHOD, AND APPLICATION THEREOF
Provided are a novel amine composition and a novel amine compound. Also provided are a method for producing the amine composition and amine compound, and an epoxy resin curing agent, an epoxy resin composition, a cured product, a urethane prepolymer curing agent, a polyurethane urea resin composition, a polyamide varnish, and a polyamide, each obtained using the amine composition and amine compound. The amine composition contains a compound represented by Formula (1), wherein A is a cyclic alkylene group, and B is a group containing an aryl group or a heteroaryl group.
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SOLVENT-FREE MATT POLYUREA COATING AND KIT OF PARTS FOR PRODUCING THE COATING
The present application relates to a solvent-free matt polyurea coating which is obtained by carrying out a reaction through reacting at least following components: a) a polyisocyanate prepolymer; b) a polyether amine; c) a main chain extender, wherein the coating further comprises ground carbon fibers as a matting agent. The carbon fibers have an average fiber length greater than or equal to 50 μm and less than or equal to 150 μm, a weight fraction greater than or equal to 4.5% and less than or equal to 25%. The present application also relates to a kit of parts for producing a solvent-free matt polyurea coating.