C08G18/5045

Hydroxy-functional polyether-based reaction products and aqueous base paint which contains the reaction products

Provided herein is a pigmented aqueous basecoat material including a hydroxy-functional polyether-based reaction product that is prepared by a urethane group-forming reaction of: (a) at least one component including isocyanate groups that is prepared by the urethane group-forming reaction of at least one organic diisocyanate (a1) with at least one polyether (a2) of the general structural formula (I). ##STR00001##
R is a C.sub.3 to C.sub.6 alkylene radical, and n is selected accordingly such that a polyether (b) possesses a number-average molecular weight of 500 to 5000 g/mol,
the components (a1) and (a2) being used in a molar ratio of 1.8/1.7 to 3.0/1.0, and the resulting component (a) having an isocyanate content of 0.5 to 10.0% with (b) at least one organic polyol.

Polyurethane polymer having a hardness of less than or equal to 60 Shore A

The present invention relates to a novel thermoplastically processible polyurethane polymer having a hardness of ≤60 Shore A, to compositions containing this polyurethane polymer, to the uses thereof and to articles containing this polyurethane polymer.

POLYURETHANE POLYMER HAVING A HARDNESS OF LESS THAN OR EQUAL TO 60 SHORE A AND GOOD ABRASION RESISTANCE

The present invention relates to a novel thermoplastically processible polyurethane polymer having a hardness of ≤60 Shore A, to compositions containing this polyurethane polymer, to the uses thereof and to articles containing this polyurethane polymer.

COMPRESSION SET

What are described are shaped hot-cure flexible PU foam articles, preferably mattresses and/or cushions, wherein the hot-cure flexible polyurethane foam has been obtained by reaction of at least one polyol component and at least one isocyanate component in the presence of at least one compound of formula (1a) and at least one compound of formula (1b) and at least one blowing agent and at least one catalyst.

POLYURETHANE PREPOLYMER COMPOSITION, AND POLYURETHANE ELASTOMER AND METHOD FOR PREPARING THE SAME

A polyurethane prepolymer composition is provided. The polyurethane prepolymer composition includes a first prepolymer, a second prepolymer and a third prepolymer. The first prepolymer includes a polyol and diisocyanates. The two ends of the polyol are connected with the diisocyanates. The second prepolymer includes a diisocyanate monomer. The third prepolymer includes a first diisocyanate, polyols and second diisocyanates. The two ends of the first diisocyanate are connected with the polyols. The other ends of the polyols are connected with the second diisocyanates. A polyurethane elastomer and a preparation method thereof are also provided.

THERMOPLASTIC POLYURETHANE FROM RECYCLED RAW MATERIALS

The present invention relates to a process for producing a thermoplastic polyurethane reacting at least one thermoplastic polyurethane (TPU-1) or a polyurethane mixture comprising a thermoplastic polyurethane (TPU-1) with at least one compound (V1) comprising two hydroxyl groups to obtain a mixture (G-a) comprising a thermoplastic polyurethane (TPU-2) and the reaction of the mixture (G-a) with a mixture (G-b) comprising an isocyanate composition (ZI) comprising at least one diisocyanate and optionally and a polyol composition (ZP) comprising at least one polyol (P2) to obtain a thermoplastic polyurethane (TPU target), wherein the proportion of the employed components (ZI) and (ZP) is matched to the hard segment content of the employed thermoplastic polyurethane (TPU-1), (V1) and the hard segment content of the thermoplastic polyurethane (TPU target). The invention further relates to a thermoplastic polyurethane obtained or obtainable by such a process and to the use thereof for producing extruded, injection molded and pressed articles as well as foams, cable sheathings, hoses, profiles, drive belts, fibers, nonwovens, films, moldings, soles, sporting goods, shoes, plugs, housings, damping elements for the electricals industry, automotive industry, mechanical engineering, 3D printing, medicine and consumer goods.

Cross-linkable composition
10889735 · 2021-01-12 · ·

A cross-linkable composition can be provided in the present application. In one embodiment, the cross-linkable composition can allow a membrane formed of the cross-linkable composition to have an excellent interfacial adhesion with another membrane and prevent the occurrence of a detachment phenomenon or the like.

ADHESIVE, LAMINATED FILM, AND PRODUCTION METHOD FOR LAMINATED FILM
20210002530 · 2021-01-07 · ·

Provided are an adhesive including a polyisocyanate composition (X) containing a polyisocyanate (A), and a polyol composition (Y) containing a tertiary amine compound (B) having plural hydroxyl groups, a polyol (C), and an aliphatic cyclic amide compound (D), as essential components, a laminated film using the adhesive, and a method for producing a laminated film including a step of separately applying two components, which includes bringing a polyisocyanate composition (X) containing a polyisocyanate (A) that is applied onto one base material into contact with a polyol composition (Y) containing a tertiary amine compound (B) having plural hydroxyl groups, a polyol (C), and an aliphatic cyclic amide compound (D) that is applied onto the other base material, and performing pressure-bonding.

Cross-linkable composition

The present application relates to a cross-linkable composition, and for example, to a cross-linkable composition which can form a membrane having an excellent interfacial adhesion with other layers and cause no detachment phenomenon when forming a membrane in a structure of a pressure-sensitive adhesive optical member or the like.

Pressure-sensitive adhesive polarizing plate

As a pressure-sensitive adhesive polarizing plate, for example, a pressure-sensitive adhesive polarizing plate allowing a pressure-sensitive adhesive layer in the polarizing plate to have an excellent interfacial adhesion with another layer and have no detachment phenomenon can be provided in the present application.