IP Library Granted Patent US 8,557,167
Granted Patent B2
US 8,557,167 · App. 13/122,571 · Granted Oct 15, 2013

Composite material manufacturing device and composite material manufacturing method

Inventors: Masayuki Kanemasu (Aichi, JP); Shigeru Nishiyama (Aichi, JP); Hideki Horizono (Aichi, JP)
Assignee: Mitsubishi Heavy Industries, Ltd.
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Quick Facts
Patent No.
US 8,557,167
App. No.
13/122,571
Granted
Oct 15, 2013
Kind
B2
Abstract

In manufacturing composite material by curing fluid, strength deterioration of the composite material due to repair before the fluid is cured is reduced. A suction hole is formed in a bag film ( 3 ) for sealing a space for fibers being impregnated with resin, after start of impregnation. The suction hole is covered by a plate ( 56 ) with holes ( 57 ). The resin is sucked from the space through the plate ( 56 ). According to such composite material manufacturing method, a defect, which occurs during fibers are impregnated with resin, can be repaired before the resin is cured without causing disorder and damage in the fibers. In a composite material formed from one repaired in the above way, the repaired portion is strong, namely, there is no strength deterioration due to repair after curing, and thus, the material is preferred as compared with a composite material which is repaired after resin is cured.

Claims (35)

1. A composite material manufacturing method comprising:

injecting resin through an injection port into an impregnation space sealed by a bag film to impregnate fibers with the resin;

sucking the resin through a suction port;

forming a suction hole different from the suction port in the bag film for a non-impregnation portion;

attaching a suction tool to the suction hole, the suction tool having a porous portion in which a plurality of holes are formed; and

sucking the resin through the porous portion from the impregnation space.

2. The composite material manufacturing method of claim 1 , further comprising:

forming an injection hole in the bag film; and

injecting the resin into the impregnation space through the injection hole during said sucking the resin through the suction hole.

3. The composite material manufacturing method of claim 2 , wherein the resin is sucked through the suction hole and the resin is injected into the impregnation space through the injection hole while the resin is sucked through the suction port and the resin is injected into the impregnation space through the injection port.

4. The composite material manufacturing method of claim 3 , further comprising:

detecting a position of the non-impregnation portion in the impregnation space.

5. The composite material manufacturing method of claim 4 , further comprising closing a hole formed in the bag film at a position corresponding to the position of the non-impregnation portion,

wherein said sucking the resin through the porous portion is performed after said hole is closed.

6. The composite material manufacturing method of claim 1 , further comprising:

sealing the impregnation space by covering an opening formed in the bag film with another bag film.

7. The composite material manufacturing method of claim 1 , wherein the suction tool has a passage for conveying resin, and the porous portion extends across an entire cross section of the passage.

8. A composite material manufacturing method comprising:

injecting resin through an injection port into an impregnation space sealed by a bag film to impregnate fibers with the resin;

sucking the resin through a suction port;

forming a suction hole different from the suction port in the bag film adjacent to a non-impregnation portion of the fibers, the non-impregnation portion being a portion of the fibers having a failure of resin impregnation;

attaching a suction tool to the suction hole, the suction tool having a porous portion in which a plurality of holes are formed;

sucking the resin through the porous portion from the impregnation space; and

during said sucking the resin through the porous portion, impregnating the non-impregnation portion with the resin.

9. The composite material manufacturing method of claim 7 , further comprising:

forming an injection hole in the bag film; and

injecting the resin into the impregnation space through the injection hole during said sucking the resin through the suction hole.

10. The composite material manufacturing method of claim 8 , wherein the resin is sucked through the suction hole and the resin is injected into the impregnation space through the injection hole while the resin is sucked through the suction port and the resin is injected into the impregnation space through the injection port.

11. The composite material manufacturing method of claim 9 , further comprising:

detecting a position of the non-impregnation portion in the impregnation space.

12. The composite material manufacturing method of claim 10 , further comprising closing a hole formed in the bag film at a position corresponding to the position of the non-impregnation portion,

wherein said sucking the resin through the porous portion is performed after said hole is closed.

13. The composite material manufacturing method of claim 7 , further comprising:

sealing the impregnation space by covering an opening formed in the bag film with another bag film.

14. The composite material manufacturing method of claim 7 , wherein the suction tool has a passage for conveying resin, and the porous portion extends across an entire cross section of the passage.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 5, 2011
From: KANEMASU, MASAYUKI; NISHIYAMA, SHIGERU; HORIZONO, HIDEKI
To: MITSUBISHI HEAVY INDUSTRIES, LTD.
Reel/Frame 026074/0786 →
Priority Claims (1)
JP 2008-294417 · Nov 18, 2008 · national
Continuity (1)
Related Publication 20110204534A1 · Aug 25, 2011