IP Library › Granted Patent US 11,566,117
Granted Patent B2
US 11,566,117 · App. 17/266,396 · Granted Jan 31, 2023

Production method for prepreg, prepreg tape, and fiber reinforced composite material, and coating device

Inventors: Takashi Ochi (Ehime, JP); So Nishino (Otsu, JP); Junichi Aoki (Ehime, JP); Yoshikazu Kono (Ehime, JP); Tamotsu Suzuki (Otsu, JP); Takashi Ikushima (Otsu, JP)
Assignee: TORAY INDUSTRIES, INC.
C08J5/24B29B15/125B29C70/20B29C70/50C08J7/06
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Quick Facts
Patent No.
US 11,566,117
App. No.
17/266,396
Granted
Jan 31, 2023
Kind
B2
Abstract

A method of producing a prepreg is described, in which a matrix resin is applied to a reinforcing fiber sheet in which the sheet can continuously run without clogging due to generated fuzz even at a high running speed and where the reinforcing fiber sheet can be efficiently impregnated with the matrix resin. A method of producing a prepreg includes allowing a reinforcing fiber sheet to pass substantially vertically downward through the inside of a coating section storing a matrix resin to apply the matrix resin to the reinforcing fiber sheet; and then applying a resin film to a primary impregnate prepreg withdrawn from the coating section.

Claims (36)

1. A method of producing a prepreg, comprising:

allowing a reinforcing fiber sheet to pass substantially vertically downward through the inside of a coating section storing a matrix resin to apply said matrix resin to said reinforcing fiber sheet; and then

applying a resin film to a primary impregnate prepreg withdrawn from said coating section;

wherein said coating section comprises a liquid pool and a narrowed section which are in communication with each other;

wherein said liquid pool has a portion whose cross-sectional area decreases continuously along a running direction of said reinforcing fiber sheet, and

wherein said narrowed section has a slit-like cross-section and a gap, wherein increased liquid pressure allows the reinforcing fiber sheet to be automatically aligned with the center of the gap, so that the reinforcing fiber sheet is not directly abraded against the wall surfaces of the narrowed section, and said slit-like cross-section has a smaller cross-sectional area than the top side of said liquid pool.

2. The method according to claim 1 , wherein said resin film comprises particles therein.

3. The method according to claim 1 , comprising a step of carrying out an additional-impregnation process after the step of applying said resin film.

4. The method according to claim 1 , comprising:

a step of carrying out an additional-impregnation process on said primary impregnate prepreg; and

a step of applying said resin film after said step of carrying out said additional-impregnation process.

5. The method according to claim 1 , comprising carrying out the resin film application and said additional-impregnation process simultaneously on said primary impregnate prepreg.

6. A method of producing a prepreg, comprising:

allowing a reinforcing fiber sheet to pass substantially vertically downward through the inside of a coating section storing a matrix resin;

applying said matrix resin to said reinforcing fiber sheet to obtain a primary impregnate prepreg; and

providing a surface thereof with particles having an average particle size of 0.1 μm or more and 500 μm or less by at least one method selected from the group consisting of the following [1] to [4]:

[1] a method of causing said particles to fall onto a running base material by their own weight,

[2] a method of causing a base material to pass through a space in which said particles are diffused,

[3] a method using electrostatic coating, and

[4] a method using a gas stream mixed with particles; wherein said coating section comprises a liquid pool and a narrowed section which are in communication with each other,

wherein said liquid pool has a portion whose cross-sectional area decreases continuously along a running direction of said reinforcing fiber sheet, and

wherein said narrowed section has a slit-like cross-section and a gap, wherein increased liquid pressure allows the reinforcing fiber sheet to be automatically aligned with the center of the gap, so that the reinforcing fiber sheet is not directly abraded against the wall surfaces of the narrowed section, and said slit-like cross-section has a smaller cross-sectional area than the top side of said liquid pool.

7. The method according to claim 1 , wherein a vertical height of the portion whose cross-sectional area decreases continuously in said liquid pool is 10 mm or more.

8. The method according to claim 1 , wherein a relationship between a width (L) of the lower portion of said liquid pool in the width direction of said reinforcing fiber sheet and the width (W) of said reinforcing fiber sheet immediately under said narrowed section satisfies the following Formula (1):

L≤W+ 10 (mm)  (1).

9. The method according to claim 1 , wherein said coating section comprises, in said liquid pool, a width regulation mechanism for regulating a width of said reinforcing fiber sheet, and wherein the relationship between the width (W) of said reinforcing fiber sheet immediately under said narrowed section and a width (L2) regulated by said width regulation mechanism at a lower end of said width regulation mechanism satisfies the following Formula (2):

L 2≤ W+ 10 (mm)  (2).

10. A method of producing a prepreg, comprising further carrying out an additional-impregnation process on said prepreg obtained by the method according to claim 4 .

11. A method of producing a prepreg tape, comprising:

obtaining a prepreg by the method according to claim 1 ; and then

slitting said prepreg.

12. A method of producing a fiber reinforced composite material, comprising:

obtaining a prepreg by the method according to claim 1 ; and

then molding said prepreg.

13. A method of producing a fiber reinforced composite material, comprising: obtaining a prepreg tape by the method according to claim 11 ; and then

molding said prepreg tape.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 5, 2021
From: OCHI, TAKASHI; NISHINO, SO; AOKI, JUNICHI; KONO, YOSHIKAZU; SUZUKI, TAMOTSU; IKUSHIMA, TAKASHI
To: TORAY INDUSTRIES, INC.
Reel/Frame 057090/0252 →
Priority Claims (2)
JP JP2018-155072 · Aug 22, 2018 · national
JP JP2018-170400 · Sep 12, 2018 · national
Continuity (1)
Related Publication 20210292496A1 · Sep 23, 2021
Cited By (1)
US 12,466,946