Curable compositions and their use as coatings and footwear components

US10240064B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-10240064-B2
Application numberUS-201615346853-A
CountryUS
Kind codeB2
Filing dateNov 9, 2016
Priority dateNov 9, 2016
Publication dateMar 26, 2019
Grant dateMar 26, 2019

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  1. Title

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  2. Abstract

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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Abstract

Official abstract text for this publication.

Curable compositions are provided comprising: (a) an isocyanate-functional prepolymer having a weight average molecular weight of 4000 to 15,000; (b) a curing agent comprising a mixture of polyamines, wherein at least one polyamine has an amine equivalent weight of 125 to 250; and (c) an abrasion resistant additive comprising organic and inorganic particles. The isocyanate-functional prepolymer is (i) a reaction product of a polyisocyanate and a polyamine having primary and/or secondary amino groups; and/or (ii) a reaction product of a polyisocyanate and a polyol. Upon application of the composition to a substrate as a coating and after curing to form a coated substrate, the coated substrate demonstrates a coating loss of less than 0.33 cm 3 after being subjected to 1000 cycles of a TABER Abrasion Test using S-42 sandpaper strips and two 1000 gram weights. Coated substrates and footwear components prepared from the compositions are also disclosed.

First claim

Opening claim text (preview).

What is claimed is: 1. A curable film-forming coating composition comprising: (a) an isocyanate-functional prepolymer having a weight average molecular weight of 4000 to 15,000, wherein the isocyanate-functional prepolymer comprises (i) a reaction product of a polyisocyanate and a polyamine having primary and/or secondary amino groups; and/or (ii) a reaction product of a polyisocyanate and a polyol; (b) a curing agent comprising a mixture of polyamines, wherein at least one polyamine in the curing agent has an amine equivalent weight of 125 to 250; and (c) an abrasion resistant additive comprising organic and inorganic particles, wherein the organic particles demonstrate a volume average particle size of 5 to 7.5 microns, and the inorganic particles demonstrate a volume average particle size of at least 90 microns. 2. The curable film-forming coating composition according to claim 1 wherein the polyisocyanate used to prepare the isocyanate-functional prepolymer is aliphatic. 3. The curable film-forming coating composition according to claim 1 wherein isocyanate-functional prepolymer has an isocyanate equivalent weight greater than 300. 4. The curable film-forming coating composition according to claim 1 , wherein the isocyanate-functional prepolymer comprises a reaction product of a polyisocyanate and a polyether having primary amino groups. 5. The curable film-forming coating composition according to claim 1 , wherein the curing agent comprises 5 to 50 percent by weight of an aliphatic polyamine having an amine equivalent weight of 125 to 250, and 50 to 95 percent by weight of an aliphatic polyamine having an amine equivalent weight of 900 to 2500. 6. The curable film-forming coating composition according to claim 1 , wherein the organic and inorganic particles of the abrasion resistant additive comprise chemically inert, untreated and uncoated particles. 7. The curable film-forming coating composition according to claim 1 , wherein the abrasion resistant additive is present in the composition in an amount of at least 10 percent by weight, based on the total weight of solids in the composition. 8. The curable film-forming coating composition according to claim 1 , wherein the inorganic particles comprise untreated alumina, and the organic particles comprise polyethylene, polypropylene, and/or saturated, linear primary alcohols with an average carbon chain length of C 20 to C 50 . 9. A coated substrate comprising: A) a substrate having at least one coatable surface, and B) a coating layer formed from a film-forming composition applied to at least one surface of the substrate and cured thereon, wherein the film-forming composition is prepared from; (a) an isocyanate-functional prepolymer having a weight average molecular weight of 4000 to 15,000, wherein the isocyanate-functional prepolymer comprises (i) a reaction product of a polyisocyanate and a polyamine having primary and/or secondary amino groups; and/or (ii) a reaction product of a polyisocyanate and a polyol; (b) a curing agent comprising a mixture of polyamines, wherein at least one polyamine in the curing agent has an amine equivalent weight of 125 to 250; and (c) an abrasion resistant additive comprising organic and inorganic particles, wherein the organic particles demonstrate a volume average particle size of 5 to 7.5 microns, and the inorganic particles demonstrate a volume average particle size of at least 90 microns. 10. The coated substrate according to claim 9 , wherein the substrate comprises wood, metal, glass, fabric, leather, a composite, or a polymeric material. 11. The coated substrate according to claim 10 , wherein the substrate comprises a plasma-treated surface adjacent to the coating layer formed from the film-forming composition. 12. The coated substrate according to claim 10 , further comprising an adhesive layer disposed between the substrate (A) and the coating layer (B), wherein the adhesive layer comprises an adhesion promoter. 13. A footwear component wherein the component is prepared from a curable composition comprising: (a) an isocyanate-functional prepolymer having a weight average molecular weight of 4000 to 15,000, wherein the isocyanate-functional prepolymer comprises (i) a reaction product of a polyisocyanate and a polyamine having primary and/or secondary amino groups; and/or (ii) a reaction product of a polyisocyanate and a polyol; (b) a curing agent comprising a mixture of polyamines, wherein at least one polyamine in the curing agent has an amine equivalent weight of 125 to 250; and (c) an abrasion resistant additive comprising organic and inorganic particles, wherein the organic particles demonstrate a volume average particle size of 5 to 7.5 microns, and the inorganic particles demonstrate a volume average particle size of at least 90 microns. 14. The footwear component according to claim 13 wherein the abrasion resistant additive is present in the composition in an amount of at least 10 percent by weight, based on the total weight of solids in the composition. 15. The footwear component according to claim 13 wherein the inorganic particles comprise untreated alumina, and the organic particles comprise polyethylene, polypropylene, and/or saturated, linear primary alcohols with an average carbon chain length of C 20 to C 50 . 16. The footwear component according to claim 13 wherein said footwear component demonstrates a dry film thickness of 508 to 25400 microns and the weight ratio of organic to inorganic particles in the abrasion resistant additive is less than 10:40. 17. The footwear component according to claim 13 wherein said footwear component demonstrates a dry film thickness of 25.4 to 254 microns and the weight ratio of organic to inorganic particles in the abrasion resistant additive is at least 40:10. 18. The footwear component according to claim 13 wherein the curable composition further comprises an adhesion promoter. 19. A footwear comprising the footwear component according to claim 13 .

Assignees

Inventors

Classifications

  • Slippers, e.g. flip-flops or thong sandals · CPC title

  • having nitrogen · CPC title

  • cycloaliphatic · CPC title

  • with compounds of group C08G18/3225 or polyamines of C08G18/38 · CPC title

  • containing primary and/or secondary amino groups · CPC title

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What does patent US10240064B2 cover?
Curable compositions are provided comprising: (a) an isocyanate-functional prepolymer having a weight average molecular weight of 4000 to 15,000; (b) a curing agent comprising a mixture of polyamines, wherein at least one polyamine has an amine equivalent weight of 125 to 250; and (c) an abrasion resistant additive comprising organic and inorganic particles. The isocyanate-function…
Who is the assignee on this patent?
Ppg Ind Ohio Inc
What technology area does this patent fall under?
Primary CPC classification C09D175/08. Mapped technology areas include Chemistry & Metallurgy.
When was this patent published?
Publication date Tue Mar 26 2019 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 1 related publication on this page (citations in our corpus or others sharing the same primary CPC).