C08G18/3814

METHODS FOR CROSS-LINKING THERMOPLASTIC POLYURETHANE COVERS FOR GOLF BALLS
20220273990 · 2022-09-01 · ·

Golf balls having covers made of thermoplastic polyurethane compositions are provided. Multi-piece golf balls can be made. The outer cover layer is formed from a composition comprising a thermoplastic polyurethane, a multi-functional hydroxyl compound, and a multi-functional compound selected from multi-functional amines and imines, and multi-functional isocyanates, and mixtures of two or more thereof. The cover composition can further include catalysts, ultraviolet (UV)-light stabilizers, and other additives.

Methods for cross-linking thermoplastic polyurethane covers for golf balls
11383137 · 2022-07-12 · ·

Golf balls having covers made of thermoplastic polyurethane compositions are provided. Multi-piece golf balls can be made. In one embodiment, the outer cover layer is formed from a composition comprising a thermoplastic polyurethane and multi-functional hydroxyl compound. Mixtures of multi-functional amines and imines, and multi-functional isocyanates, and solvent, can be applied to the outer cover to form at least a partially cross-linked cover. The cover composition can further include catalysts, ultraviolet (UV)-light stabilizers, and other additives. The coating methods have many benefits and the finished balls have good physical properties.

Anhydride Catalysts for Urethane and Urethane-Urea Systems
20220106429 · 2022-04-07 · ·

Polyurethane and polyurethane-urea compositions are prepared by amine cure under catalyzed reaction conditions. The curing reaction is performed with an acid anhydride based curing catalyst which is added to a prepolymer and then subsequently reacted with an amine based curative.

Anhydride Catalysts for Urethane and Urethane-Urea Systems
20220106429 · 2022-04-07 · ·

Polyurethane and polyurethane-urea compositions are prepared by amine cure under catalyzed reaction conditions. The curing reaction is performed with an acid anhydride based curing catalyst which is added to a prepolymer and then subsequently reacted with an amine based curative.

m-PHENYLENEDIAMINE COMPOUND, POLYMER AND METHOD FOR PRODUCING THE SAME, AND GAS SEPARATION MEMBRANE, GAS SEPARATION MODULE, AND GAS SEPARATION APPARATUS USING THE POLYMER
20220105462 · 2022-04-07 · ·

Provided are a compound represented by formula (Ia) below, a polymer obtained by using the compound as a synthesis raw material, a gas separation membrane having a gas separation layer including the polymer, and a gas separation module and a gas separation apparatus that have the gas separation membrane.

##STR00001##

R.sup.A and R.sup.B represent a hydrogen atom, an alkyl group, or a halogen atom.

L.sup.A represents —CF.sub.2—, —CF(CF.sub.3)—, —C(═O)—, —CH.sub.2—, —CH(CH.sub.3)—, or —CH(CF.sub.3)— or a group obtained by combining the foregoing groups. L.sup.A has 4 or less carbon atoms.

Curable compositions containing reactive functional compounds and polysiloxane resins, articles of manufacture and coated articles prepared therefrom, and a method of mitigating dirt build-up on a substrate

A curable composition is provided, comprising: (A) a binder composition; and (B) a polysiloxane resin comprising aromatic functional groups and terminal active hydrogen groups. The composition may be used to prepare articles of manufacture and coated articles, such as footwear components. The composition may additionally be used to mitigate dirt build-up on a substrate.

Curable compositions containing reactive functional compounds and polysiloxane resins, articles of manufacture and coated articles prepared therefrom, and a method of mitigating dirt build-up on a substrate

A curable composition is provided, comprising: (A) a binder composition; and (B) a polysiloxane resin comprising aromatic functional groups and terminal active hydrogen groups. The composition may be used to prepare articles of manufacture and coated articles, such as footwear components. The composition may additionally be used to mitigate dirt build-up on a substrate.

Composition for polishing pad, polishing pad and preparation method thereof

In the composition according to the embodiment, the composition of oligomers that constitute the chains in a urethane-based prepolymer may be adjusted to control the physical properties thereof such as gelation time. Thus, since the micropore characteristics, polishing rate, and pad cut rate of a polishing pad obtained by curing the composition according to the embodiment may be controlled, it is possible to efficiently manufacture high-quality semiconductor devices using the polishing pad.

Composition for polishing pad, polishing pad and preparation method thereof

In the composition according to the embodiment, the composition of oligomers that constitute the chains in a urethane-based prepolymer may be adjusted to control the physical properties thereof such as gelation time. Thus, since the micropore characteristics, polishing rate, and pad cut rate of a polishing pad obtained by curing the composition according to the embodiment may be controlled, it is possible to efficiently manufacture high-quality semiconductor devices using the polishing pad.

SELF-HEALING COMPOSITION

The invention relates to a self-healing composition based on at least one elastomer matrix comprising a segment chosen from polysiloxanes, polyesters, polyethers, polycarbonates and polyolefins and a polyurea or polyurethane segment and on at least one polymer material as healing additive, to its process of preparation, to its uses, to an electrical and/or optical cable comprising a layer obtained from said composition, and to a specific healing additive.