IP Library › Granted Patent US 11,826,940
Granted Patent B2
US 11,826,940 · App. 15/509,226 · Granted Nov 28, 2023

Production method for fiber-reinforced thermoplastic resin composite material, production method for fiber-reinforced thermoplastic resin tape, production method for press-molding material, production method for molded article, unidirectional prepreg, and molded article

Inventor: Osamu Okunaka (Tokyo, JP)
Assignee: MITSUBISHI CHEMICAL CORPORATION
B29C48/05B29B9/06B29B9/14B29B11/16B29C43/22B29C48/12B29C48/16B29C48/92B29C70/50B29B7/90B29B15/122B29C48/0011B29C48/04B29C48/35B29C2948/92523B29K2101/12B29K2105/0881B29K2307/04
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Quick Facts
Patent No.
US 11,826,940
App. No.
15/509,226
Granted
Nov 28, 2023
Kind
B2
Abstract

A production method for a fiber-reinforced thermoplastic resin composite material, the method using a crosshead die ( 1 ) that has a maximum aperture height of 1 mm or more, wherein reinforcing fibers are supplied in a reinforcing fiber bundle to the crosshead die ( 1 ), the reinforcing fibers are conjugated with a melted thermoplastic resin, and the conjugate is brought into contact with a pressurization surface that is at or below the solidification temperature of the thermoplastic resin, is pressurized, and is shaped to have a thickness that is 50% or less of the aperture height.

Claims (25)

1. A production method for a fiber-reinforced thermoplastic resin composite material, the method comprising:

supplying a reinforcing fiber to a crosshead die having a maximum opening height of 1 mm or more in a reinforcing fiber bundle state,

compositing the reinforcing fiber with a thermoplastic resin in a molten state,

subsequently impregnating the reinforcing fiber with the thermoplastic resin while bringing the composite material into contact with a pressurization surface at a pressure of 5 kgf or more and 50 kgf or less at a temperature equal to or lower than the solidification temperature of the thermoplastic resin, and

shaping the composite material through pressurization to have a thickness to be 20% or less of the opening height.

2. The production method for a fiber-reinforced thermoplastic resin composite material according to claim 1 , wherein a reinforced fiber bundle having a basis weight of 800 mg/m or more and 5000 mg/m or less is used.

3. The production method for a fiber-reinforced thermoplastic resin composite material according to claim 2 , wherein a basis weight R (mg/m) of the reinforcing fiber bundle with respect to the maximum opening height L is represented by

L> 0.5×Log( R ).

4. The production method for a fiber-reinforced thermoplastic resin composite material according to claim 1 , wherein adjacent fiber-reinforced thermoplastic resin composite materials are integrated through pressurization using the crosshead die having a plurality of openings with a pitch interval of 5 mm or more and 40 mm or less.

5. The production method for a fiber-reinforced thermoplastic resin composite material according to claim 1 , wherein the reinforcing fiber and the thermoplastic resin in the molten state are composited in the crosshead die having an opening with the maximum height of 1 mm or more and 10 mm or less and subsequently shaped to have an average thickness of 0.05 mm or more and 0.4 mm or less by being pressurized.

6. The production method for a fiber-reinforced thermoplastic resin composite material according to claim 1 , wherein the reinforcing fiber and the thermoplastic resin are composited at 10% by mass or more and 70% by mass or less and 30% by mass or more and 90% by mass or less respectively.

7. The production method for a fiber-reinforced thermoplastic resin composite material according to claim 1 , wherein the outlet opening height of the crosshead die is 1.5 mm or more.

8. The production method for a fiber-reinforced thermoplastic resin composite material according to claim 1 , wherein the reinforcing fiber is impregnated with the thermoplastic resin by contacting a pressure surface and applying pressure.

9. The production method for a fiber-reinforced thermoplastic resin composite material according to claim 1 , wherein the opening runs vertically.

10. The production method for a fiber-reinforced thermoplastic resin composite material according to claim 1 , wherein the opening is an outlet, which is located at a bottom of the crosshead die.

11. The production method for a fiber-reinforced thermoplastic resin composite material according to claim 1 , wherein the reinforcing fiber and the thermoplastic resin are composited at 10% by mass or more and 60% by mass or less and 40% by mass or more and 90% by mass or less respectively.

12. The production method for a fiber-reinforced thermoplastic resin composite material according to claim 1 , wherein the reinforcing fiber and the thermoplastic resin are composited at 15% by mass or more and 49% by mass or less and 51% by mass or more and 85% by mass or less respectively.

13. A production method for a fiber-reinforced thermoplastic resin tape, the method comprising cutting the fiber-reinforced thermoplastic resin composite material obtained by the production method according to claim 1 to have a length of 100 mm or more.

14. The production method for a fiber-reinforced thermoplastic resin tape according to claim 13 , wherein the reinforcing fiber and the thermoplastic resin are composited at 20% by mass or more and 70% by mass or less and 30% by mass or more and 80% by mass or less respectively.

15. A production method for a press-molding material, the method comprising cutting the fiber-reinforced thermoplastic resin composite material obtained by the production method according to claim 1 to have a length of 5 mm or more and 50 mm or less.

16. The production method for a press-molding material according to claim 15 , wherein the reinforcing fiber and the thermoplastic resin are composited at 10% by mass or more and 60% by mass or less and 40% by mass or more and 90% by mass or less respectively.

17. A production method for a press-molding material, the method comprising integrating the press-molding material obtained by the production method according to claim 15 into a sheet shape through heating.

18. A production method for a molded article, wherein

the molded article is obtained by heating the press-molding material according to claim 15 at a temperature equal to or higher than the softening temperature of a thermoplastic resin and then flow press molding the press-molding material, and

a Cv value of an in-plane fiber orientation coefficient is 20% or less.

Assignments (2)
MERGER Recorded Jun 28, 2017
From: MITSUBISHI RAYON CO., LTD.
To: MITSUBISHI CHEMICAL CORPORATION
Reel/Frame 043029/0663 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 7, 2017
From: OKUNAKA, OSAMU
To: MITSUBISHI RAYON CO., LTD.
Reel/Frame 041481/0391 →
Priority Claims (2)
JP 2014-188705 · Sep 17, 2014 · national
JP 2015-047983 · Mar 11, 2015 · national
Continuity (1)
Related Publication 20170259459A1 · Sep 14, 2017