IP Library Granted Patent US 9,873,767
Granted Patent B2
US 9,873,767 · App. 15/321,762 · Granted Jan 23, 2018

Polyimide resin

Inventor: Yuuki Sato (Kanagawa, JP)
Assignee: MITSUBISHI GAS CHEMICAL COMPANY, INC.
C08G73/1082C08J5/18C08J2379/08
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Quick Facts
Patent No.
US 9,873,767
App. No.
15/321,762
Granted
Jan 23, 2018
Kind
B2
Abstract

A polyimide resin containing a repeating structural unit represented by the following formula (1) and a repeating structural unit represented by the following formula (2), a content ratio of the repeating structural unit of formula (1) with respect to the total of the repeating structural unit of formula (1) and the repeating structural unit of formula (2) being 20 mol % or more and less than 40 mol %, and the polyimide resin satisfying predetermined conditions: wherein R 1 represents a divalent group having from 6 to 22 carbon atoms containing at least one alicyclic hydrocarbon structure; R 2 represents a divalent chain aliphatic group having from 5 to 16 carbon atoms; and X 1 and X 2 each independently represent a tetravalent group having from 6 to 22 carbon atoms containing at least one aromatic ring.

Claims (26)

1. A polyimide resin, comprising a repeating structural unit represented by the following formula (1) and a repeating structural unit represented by the following formula (2):

wherein:

R 1 represents a divalent group having from 6 to 22 carbon atoms containing at least one alicyclic hydrocarbon structure;

R 2 represents a divalent chain aliphatic group having from 5 to 16 carbon atoms; and

X 1 and X 2 each independently represent a tetravalent group having from 6 to 22 carbon atoms containing at least one aromatic ring;

a content ratio of the repeating structural unit of formula (1) with respect to a total of the repeating structural unit of formula (1) and the repeating structural unit of formula (2) is 20 mol % or more and less than 40 mol %; and

the polyimide resin satisfies the following conditions (a), (b) and (c):

condition (a): a melting point (Tm) is 280° C. or more and 345° C. or less;

condition (b): a glass transition temperature (Tg) is 150° C. or more and 200° C. or less; and

condition (c): an exothermic amount of a crystallization exothermic peak observed in melting and then cooling at a cooling rate of 20° C./min with differential scanning calorimetric measurement is 17.0 mJ/mg or more.

2. The polyimide resin according to claim 1 , wherein:

R 1 represents a divalent group represented by the following formula (R1-1) or (R1-2):

m 11 and m 12 each independently represent an integer of 0-2; and

m 13 to m 15 each independently represent an integer of 0-2.

3. The polyimide resin according to claim 1 , wherein R 1 represents a divalent group represented by the following formula (R1-3):

4. The polyimide resin according to claim 1 , wherein R 2 represents an alkylene group having from 7 to 12 carbon atoms.

5. The polyimide resin according to claim 1 , wherein:

X 1 and X 2 each independently represent a tetravalent group represented by one of the following formulae (X-1) to (X-4):

R 11 to R 18 each independently represent an alkyl group having from 1 to 4 carbon atoms;

p 11 to p 13 each independently represent an integer of 0-2;

p 14 , p 15 , p 16 and p 18 each independently represent an integer of 0-3;

p 17 represents an integer of 0-4; and

L 11 to L 13 each independently represent a single bond, an ether group, a carbonyl group, or an alkylene group having from 1 to 4 carbon atoms.

6. A molded article, comprising the polyimide resin according to claim 1 .

7. The molded article according to claim 6 , at least partially having a thin portion having a thickness of 1000 μm or less.

8. The molded article according to claim 6 , which is an electronic component, an electric wire, an electrical insulating material or a printed board.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 23, 2016
From: SATO, YUUKI
To: MITSUBISHI GAS CHEMICAL COMPANY, INC.
Reel/Frame 040757/0257 →
Priority Claims (1)
JP 2015-056241 · Mar 19, 2015 · national
Continuity (1)
Related Publication 20170130003A1 · May 11, 2017