IP Library Patent Application 15302603
Patent Application
App. No. 15/302,603

ACRYLIC RESIN COMPOSITION, ACRYLIC RESIN FILM, AND MOLDED BODY

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Patent No.
US None
App. No.
15/302,603
Abstract

The present invention addresses the issue of providing an acrylic resin composition having high weather resistance, flexibility, heat resistance, transparency, and stress-whitening resistance. This issue is solved by an acrylic resin composition containing a rubber-containing multi-stage polymer (I) containing at least 30% by mass of an elastic polymer (A).

Claims (41)

1 . An acrylic resin composition comprising a rubber-containing multistage polymer (I) comprising an elastic polymer (A) at 30% by mass or more, wherein:

(1) a value of a total light transmittance of a molded body which has a thickness of 1 mm and is obtained by melting a powdery acrylic resin composition through heating, pressurizing a melted acrylic resin composition for 5 minutes at a temperature of 200° C. and a pressure of 5 MPa, and then cooling the resultant for 5 minutes while applying a pressure of 2 MPa to the resultant is 90% or more, and

(2) a difference in whiteness degree ΔW before and after stretching when:

a test piece 1 obtained from the molded body and having a length of 80 mm and a width of 15 mm; or

a test piece 2 obtained by forming the acrylic resin composition into a film by a T-die method and having a thickness of from 0.05 to 0.1 mm, a length of 80 mm, and a width of 15 mm;

is stretched by 10 mm from an initial distance between chucks of 25 mm to a final distance between chucks of 35 mm at a temperature of 23° C. and a tension rate of 500 mm/min in conformity to ISO 527 is 1 or less.

2 . The acrylic resin composition according to claim 1 , wherein a haze value of the molded body is 2% or less.

3 . The acrylic resin composition according to claim 1 , wherein a test piece 3, obtained by forming the acrylic resin composition into a film by a T-die method, having a thickness of from 0.05 to 0.1 mm, a length of 150 mm, and a width of 15 mm satisfies the following conditions (3) and (4);

(3): a rupture elongation is from 20 to 300% when the test piece 3 is stretched at a temperature of 0° C. and a tension rate of 50 mm/min and

(4): a rupture elongation is from 100 to 500% when the test piece 3 is stretched at a temperature of 23° C. and a tension rate of 50 mm/min.

4 . The acrylic resin composition according to claim 1 , wherein the rubber-containing multistage polymer (I) is a polymer comprising:

an elastic polymer (A) obtained by polymerizing a monomer (a) comprising one or more kinds of monomers selected from the group consisting of an alkyl acrylate (a1) having an alkyl group having from 1 to 8 carbon atoms and an alkyl methacrylate (a2) having an alkyl group having from 1 to 4 carbon atoms and a crosslinkable monomer (a4), and

a hard polymer (B) obtained by polymerizing a monomer (b) comprising an alkyl methacrylate having an alkyl group having from 1 to 4 carbon atoms in the presence of the elastic polymer (A).

5 . The acrylic resin composition according to claim 4 , wherein Tg of the hard polymer (B) is 85° C. or higher.

6 . The acrylic resin composition according to claim 1 , wherein the elastic polymer (A) is a graft polymer obtained from a grafting agent, wherein a content of a grafting agent unit in 100% by mass of the elastic polymer (A) is 1.3% by mass or more.

7 . The acrylic resin composition according to claim 1 , further comprising an elastic modulus in bending of a test piece having a thickness of 4 mm calculated from a bending stress measured in conformity to ISO 178 is 400 MPa or more.

8 . The acrylic resin composition according to claim 1 , further comprising a MFR value under conditions of a temperature of 230° C. and a load of 5.0 kg measured in conformity to ASTM D-1238 is 1 g/10 min or more.

9 . The acrylic resin composition according to claim 1 , wherein a content of the sum of a monomer (a1) unit and a monomer (a2) unit in the elastic polymer (A) is 80% by mass or more.

10 . The acrylic resin composition according to claim 1 , wherein a mass ratio of monomer (a1) unit: monomer (a2) unit is from 50:50 to 100:0 when a total mass of the monomer (a1) unit and the monomer (a2) unit in the elastic polymer (A) is 100.

11 . The acrylic resin composition according to claim 4 , wherein a content of a monomer (b) unit in a hard polymer (B) is 70% by mass or more.

12 . The acrylic resin composition according to claim 1 , wherein 2-[2-hydroxy-3,5-bis(α,α-dimethylbenzyl)phenyl]-2H-benzotriazole and/or 2-[4,6-bis(biphenyl-4-yl)-1,3,5-triazin-2-yl]-5-[(2-ethylhexyl)oxy]phenol is present in the rubber-containing multistage polymer (I).

13 . The acrylic resin composition according to claim 1 , comprising:

a thermoplastic polymer (II) comprising a polymer comprising a methyl methacrylate unit at from 50 to 100% by mass and a unit of one or more kinds of other vinyl monomers copolymerizable with methyl methacrylate at a range from 0 to 50% by mass and having a reduced viscosity of from 0.2 to 2 dL/g and

the rubber-containing multistage polymer (I).

14 . A method for manufacturing a rubber-containing multistage polymer (I) comprising an elastic polymer (A) and a hard polymer (B), the method comprising:

obtaining the elastic polymer (A) by polymerizing a monomer (a) containing one or more kinds of monomers selected from the group consisting of an alkyl acrylate (a1) having an alkyl group having from 1 to 8 carbon atoms and an alkyl methacrylate (a2) having an alkyl group having from 1 to 4 carbon atoms and a crosslinkable monomer (a4), and then

obtaining the hard polymer (B) by polymerizing a monomer (b) comprising an alkyl methacrylate having an alkyl group having from 1 to 4 carbon atoms in the presence of the elastic polymer (A), wherein

a content of a grafting agent unit in 100% by mass of the elastic polymer (A) is 1.3% by mass or more, and

a content of the elastic polymer (A) in 100% by mass of the rubber-containing multistage polymer (I) is 30% by mass or more.

15 . The method for manufacturing a rubber-containing multistage polymer (I) according to claim 14 , wherein the method satisfies the following (5) to (7);

(5) a content of a sum of a monomer (a1) unit and a monomer (a2) unit in the elastic polymer (A) is 80% by mass or more,

(6) a ratio of monomer (a1) unit/monomer (a2) unit in the elastic polymer (A) is from 50 to 100% by mass/from 0 to 50% by mass, and

(7) a content of a monomer (b) unit in the hard polymer (B) is 70% by mass or more.

16 . A rubber-containing multistage polymer (I) obtained by the manufacturing method according to claim 14 .

17 . An acrylic resin composition comprising the rubber-containing multistage polymer (I) according to claim 16 .

18 . A molded body obtained by molding the acrylic resin composition according to claim 1 .

19 . An acrylic resin film obtained by molding the acrylic resin composition according to claim 1 .

20 . A method for manufacturing an acrylic resin film comprising:

forming the acrylic resin composition according to claim 1 into a film through calendering.

21 . A laminate formed by laminating the acrylic resin film according to claim 19 on a substrate.

22 . A laminate formed by laminating the acrylic resin film according to claim 19 on a metal member.

Assignments (2)
MERGER Recorded Jul 17, 2017
From: MITSUBISHI RAYON CO., LTD.
To: MITSUBISHI CHEMICAL CORPORATION
Reel/Frame 043212/0043 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 7, 2016
From: OOAIRA, KAZUYA; HIGASHIKAWA, MEGUMI; ABE, JUNICHI
To: MITSUBISHI RAYON CO., LTD.
Reel/Frame 039964/0831 →