IP Library Granted Patent US 8,974,906
Granted Patent B2
US 8,974,906 · App. 13/981,676 · Granted Mar 10, 2015

Weather-resistant adhesive composition

Inventors: Yuko Nakamura (Otsu, JP); Kenichi Eguchi (Otsu, JP)
Assignee: Toyobo Co., Ltd.
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Quick Facts
Patent No.
US 8,974,906
App. No.
13/981,676
Granted
Mar 10, 2015
Kind
B2
Abstract

The present invention is to provide a weather-resistant adhesive which achieves adhesive property, moist heat resistance and weather resistance in a practical level by means of aging at low temperature and for short time. There is provided a weather-resistant adhesive composition, characterized in containing (A) a polyester polyol having an acid value of 30 to 150 equivalents/10 6 g and (B) a polyisocyanate compound comprising an aliphatic polyisocyanate compound and/or an alicyclic polyisocyanate compound. Also, there is provided a layered product, characterized in being prepared by laminating films using said composition.

Claims (12)

1. A weather-resistant adhesive composition, containing (A) a polyester polyol having an acid value of 30 to 150 equivalents/10 6 g and (B) a polyisocyanate compound comprising an aliphatic polyisocyanate compound and/or an alicyclic polyisocyanate compounds, wherein the polyester polyol (A) contains 60 molar % or more of isophthalic acid and/or orthophthalic acid as a whole to the total acid components constituting the polyester polyol, and wherein a glass transition temperature of the polyester polyol (A) is −20 to 20° C. and a number-average molecular weight of the polyester polyol (A) is 5,000 to 40,000.

2. The weather-resistant adhesive composition according to claim 1 , wherein the polyester polyol (A) contains an aliphatic glycol having carbon number of 5 or more.

3. The weather-resistant adhesive composition according to claim 1 , wherein the polyisocyanate compound (B) contains at least one component selected from the group consisting of an adduct of hexamethylene diisocyanate (HDI), an isocyanurate of HDI, a biuret of HDI, an adduct of isophorone diisocyanate (IPDI), an isocyanurate of IPDI and a biuret of IPDI.

4. The weather-resistant adhesive composition according to claim 1 , wherein the compounding ratio of the polyisocyanate compound (B) to the polyester polyol (A) is 1 to 20 part(s) by weight of the polyisocyanate compound (B) to 100 parts by weight of the polyester polyol (A).

5. A layered product, characterized in being prepared by laminating two or more layers of a film being composed of a polymer selected from polyester, fluorine polymer and polyethylene using the weather-resistant adhesive composition according to claim 1 as an adhesive layer, wherein the two or more layers of film may be composed of the same of different polymers.

6. A method for manufacturing a layered product, characterized in comprising the steps of applying the weather-resistant adhesive composition according to claim 1 to a film which is composed of a polymer selected from polyester, fluorine polymer and polyethylene, then layering a film which is composed of a polymer selected from polyester, fluorine polymer and polyethylene on the applied surface by means of dry lamination and, after that, conducting aging treatment at 40 to 70° C. until the gel fraction reaches 40% by weight or more.

7. A layered product, prepared by laminating two or more layers of a film being composed of a polymer selected from polyester, fluorine polymer and polyethylene using the weather-resistant adhesive composition according to claim 2 as an adhesive layer, wherein the two or more layers of film may be composed of the same of different polymers.

8. A method for manufacturing a layered product, comprising the steps of applying the weather-resistant adhesive composition according to claim 2 to a film which is composed of a polymer selected from polyester, fluorine polymer and polyethylene, then layering a film which is composed of a polymer selected from polyester, fluorine polymer and polyethylene on the applied surface by means of dry lamination and, after that, conducting aging treatment at 40 to 70° C. until the gel fraction reaches 40% by weight or more.

9. A layered product, prepared by laminating two or more layers of a film being composed of a polymer selected from polyester, fluorine polymer and polyethylene using the weather-resistant adhesive composition according to claim 3 as an adhesive layer, wherein the two or more layers of film may be composed of the same of different polymers.

10. A method for manufacturing a layered product, comprising the steps of applying the weather-resistant adhesive composition according to claim 3 to a film which is composed of a polymer selected from polyester, fluorine polymer and polyethylene, then layering a film which is composed of a polymer selected from polyester, fluorine polymer and polyethylene on the applied surface by means of dry lamination and, after that, conducting aging treatment at 40 to 70° C. until the gel fraction reaches 40% by weight or more.

11. A layered product, prepared by laminating two or more layers of a film being composed of a polymer selected from polyester, fluorine polymer and polyethylene using the weather-resistant adhesive composition according to claim 4 as an adhesive layer, wherein the two or more layers of film may be composed of the same of different polymers.

12. A method for manufacturing a layered product, comprising the steps of applying the weather-resistant adhesive composition according to claim 4 to a film which is composed of a polymer selected from polyester, fluorine polymer and polyethylene, then layering a film which is composed of a polymer selected from polyester, fluorine polymer and polyethylene on the applied surface by means of dry lamination and, after that, conducting aging treatment at 40 to 70° C. until the gel fraction reaches 40% by weight or more.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 25, 2013
From: NAKAMURA, YUKO; EGUCHI, KENICHI
To: TOYOBO CO., LTD.
Reel/Frame 030877/0929 →
Priority Claims (1)
JP 2011 070200 · Mar 28, 2011 · national
Continuity (1)
Related Publication 20130309504A1 · Nov 21, 2013