IP Library Granted Patent US 11,945,927
Granted Patent B2
US 11,945,927 · App. 17/254,916 · Granted Apr 2, 2024

Foam and method for producing same

Inventors: Ryo Miyamori (Chiba, JP); Daisuke Kuroki (Chiba, JP); Hideya Sekiguchi (Chiba, JP); Akihiro Sato (Chiba, JP)
Assignee: SEIKO PMC CORPORATION
C08J9/0085C08J3/226C08J9/0061C08J9/103C08J2201/026C08J2315/00C08J2323/06C08J2323/16
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Quick Facts
Patent No.
US 11,945,927
App. No.
17/254,916
Granted
Apr 2, 2024
Kind
B2
Abstract

[Problem] An object of the present invention is to provide a foam including a thermoplastic resin and rubber as a main component, in which a micronized product of a cellulose fiber is uniformly dispersed, and uniformity and mechanical properties are excellent. [Solution] A foam includes a modified cellulose fiber (A) covalently bonded with a diene-based polymer, a thermoplastic resin and/or rubber (B), and a diene-based polymer (C) having a functional group capable of covalently bonding with a cellulose fiber, in which the fiber (A) is micronized, the fiber (A) has a content of 0.05 to 20% by mass, and the thermoplastic resin and/or rubber (B) has a glass transition point of −130° C. to 120° C.

Claims (23)

1. A foam comprising:

a modified cellulose fiber (A) in which a cellulose fiber is covalently bonded with a diene-based polymer (a);

a thermoplastic resin (B); and

an unreacted diene-based polymer (C) having a functional group capable of covalently bonding with the cellulose fiber, wherein

the modified cellulose fiber (A) is micronized,

a content amount of the modified cellulose fiber (A) is 0.05 to 20% by mass with respect to the foam,

the thermoplastic resin (B) has a glass transition point of −130° C. to 120° C., and

a mass ratio is (A)/(B)/(C)=1/1.5 to 2000/0.001 to 0.5.

2. The foam according to claim 1 , wherein the thermoplastic resin (B) is crosslinked.

3. A production method of a foam, comprising:

preparing a masterbatch containing:

a micronized modified cellulose fiber (A) in which a cellulose fiber is covalently bonded with a diene-based polymer (a),

a first thermoplastic resin (B) having a glass transition point of −130° C. to 120° C., and

an unreacted diene-based polymer (C) having a functional group capable of covalently bonding with the cellulose fiber;

diluting the masterbatch with a second thermoplastic resin;

adding a foaming agent and, as necessary, a crosslinking agent after diluting the masterbatch with the second thermoplastic resin; and

performing foam molding or crosslinking foam molding after adding the foaming agent and, as necessary, the crosslinking agent.

4. The production method of a foam according to claim 3 ,

wherein the modified cellulose fiber (A) has a content of 0.05 to 20% by mass with respect to the foam, and

the foaming agent is thermally-decomposable.

5. The foam according to claim 1 , wherein the unreacted diene-based polymer (C) is the same as the diene-based polymer (a).

6. The production method of a foam according to claim 3 , wherein the unreacted diene-based polymer (C) is the same as the diene-based polymer (a).

7. The production method of a foam according to claim 3 , wherein a mass ratio in the foam is (A)/(a total mass of the first thermoplastic resin and the second thermoplastic resin)/(C)=1/1.5 to 2000/0.001 to 0.5.

Assignments (2)
CHANGE OF NAME Recorded Nov 6, 2025
From: SEIKO PMC CORPORATION
To: CHEMIPAZ CORPORATION
Reel/Frame 073511/0092 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 22, 2020
From: MIYAMORI, RYO; KUROKI, DAISUKE; SEKIGUCHI, HIDEYA; SATO, AKIHIRO
To: SEIKO PMC CORPORATION
Reel/Frame 054731/0306 →
Priority Claims (1)
JP 2019-072779 · Apr 5, 2019 · national
Continuity (1)
Related Publication 20220025142A1 · Jan 27, 2022