IP Library › Granted Patent US 10,099,436
Granted Patent B2
US 10,099,436 · App. 15/503,857 · Granted Oct 16, 2018

Process and apparatus for producing fiber-reinforced thermoplastic resin tape

Inventors: Naoyuki Tashiro (Takasago, JP); Takayasu Fujiura (Kobe, JP); Kazuya Takamura (Kobe, JP); Seiji Zenke (Takasago, JP)
Assignee: Kobe Steel, Ltd.
B29C70/521B29B11/06B29B11/16B29B15/122B29C70/52B29K2023/12B29K2307/04
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Quick Facts
Patent No.
US 10,099,436
App. No.
15/503,857
Granted
Oct 16, 2018
Kind
B2
Abstract

Provided are a process and an apparatus for producing a fiber-reinforced thermoplastic resin tape, the process and the apparatus being capable of preventing fiber cut from occurring at the start of production of the fiber-reinforced thermoplastic resin tape. The provided process includes a resin impregnation step of opening a fiber bundle and impregnating the fiber bundle with molten thermoplastic resin and a through-nozzle passing step of passing the fiber bundle having undergone the resin impregnation step through a slit formed in a nozzle. The through-nozzle passing step includes setting, at the start of production, a gap dimension of the slit to a dimension larger than a normal dimension and changing the gap dimension of the slit to the normal dimension when a predetermined condition is satisfied, after the production start.

Claims (21)

1. A process for producing a fiber-reinforced thermoplastic resin tape, the process comprising:

a resin impregnation step of opening a fiber bundle and impregnating the opened fiber bundle with molten thermoplastic resin; and

a through-nozzle passing step of passing the fiber bundle having undergone the resin impregnation step through a slit formed in a nozzle to form the resin bundle into a tape shape, the slit having a gap dimension that corresponds to a thickness dimension of the resin bundle formed into the tape shape through the slit, wherein

the through-nozzle passing step includes passing the fiber bundle, at the start of production, through the slit in a state where the gap dimension of the slit is set to a production-start dimension that is larger than a normal dimension corresponding to a target thickness dimension of the fiber-reinforced thermoplastic resin tape and changing the gap dimension of the slit, at a point in time when a predetermined condition is satisfied after the start of production, into the normal dimension from the production-start dimension and then passing the fiber bundle through the slit.

2. A process for producing a fiber-reinforced thermoplastic resin tape, the process comprising:

a resin impregnation step of opening a fiber bundle and impregnating the opened fiber bundle with molten thermoplastic resin; and

a through-nozzle passing step of passing the fiber bundle having undergone the resin impregnation step through a slit formed in a nozzle to form the resin bundle into a tape shape, wherein

the through-nozzle passing step includes passing the fiber bundle, at the start of production, through the slit in a state where the slit has a gap dimension larger than a normal dimension corresponding to a target thickness dimension of the fiber-reinforced thermoplastic resin tape and changing the gap dimension of the slit, at a point in time when a predetermined condition is satisfied after the start of production, into the normal dimension and then passing the fiber bundle through the slit, and

the predetermined condition is that predetermined time elapses after the production start.

3. A process for producing a fiber-reinforced thermoplastic resin tape, the process comprising:

a resin impregnation step of opening a fiber bundle and impregnating the opened fiber bundle with molten thermoplastic resin; and

a through-nozzle passing step of passing the fiber bundle having undergone the resin impregnation step through a slit formed in a nozzle to form the resin bundle into a tape shape, wherein

the through-nozzle passing step includes passing the fiber bundle, at the start of production, through the slit in a state where the slit has a gap dimension larger than a normal dimension corresponding to a target thickness dimension of the fiber-reinforced thermoplastic resin tape and changing the gap dimension of the slit, at a point in time when a predetermined condition is satisfied after the start of production, into the normal dimension and then passing the fiber bundle through the slit, and

the predetermined condition is that the fiber bundle is opened enough to allow a width of the fiber bundle to reach a target width which is a width of the fiber-reinforced thermoplastic resin tape to be produced.

4. The process for producing a fiber-reinforced thermoplastic resin tape according to claim 2 , wherein the through-nozzle passing step includes increasing production speed, which is speed at which the fiber bundle passes through the slit, with the elapse of time from the production start and wherein the predetermined condition is that the production speed reaches predetermined speed.

5. An apparatus for producing a fiber-reinforced thermoplastic resin tape, the apparatus comprising:

a resin impregnation device that opens a fiber bundle and impregnates the opened fiber bundle with molten thermoplastic resin; and

a nozzle provided in an outlet section of a container of the resin impregnation device and defining a slit allowing the fiber bundle impregnated with the thermoplastic resin to pass through the slit, the nozzle bringing the fiber bundle passing through the slit into a tape shape, the slit having a gap dimension that corresponds to a thickness dimension of the resin bundle formed into the tape shape through the slit, wherein

the nozzle includes a dimension selection mechanism allowing a gap dimension of the slit defined by the nozzle to be selected between a normal dimension equivalent to a target thickness dimension of the fiber-reinforced thermoplastic resin tape and a production-start dimension larger than the normal dimension.

6. The apparatus for producing a fiber-reinforced thermoplastic resin tape according to claim 5 , wherein the nozzle includes a first nozzle member and a second nozzle member disposed to be opposed to each other across the slit, a pair of first shim plates having respective first thickness dimensions corresponding to the normal dimension and configured to be sandwiched between the first nozzle member and the second nozzle member at an interval between the first sim plates widthwise of the slit to thereby determine the gap dimension of the slit to a dimension corresponding to the first thickness dimension, and a pair of second shim plates having respective second thickness dimensions larger than the first thickness dimension and equivalent to the production-start dimension and configured to be sandwiched between the first nozzle member and the second nozzle member at an interval between the second sim plates widthwise of the slit to thereby determine the gap dimension of the slit to a dimension corresponding to the second thickness dimension.

7. The process for producing a fiber-reinforced thermoplastic resin tape according to claim 3 , wherein the through-nozzle passing step includes increasing production speed, which is a speed at which the fiber bundle passes through the slit, with the elapse of time from the production start and wherein the predetermined condition is that the production speed reaches a predetermined speed.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 14, 2017
From: TASHIRO, NAOYUKI; FUJIURA, TAKAYASU; TAKAMURA, KAZUYA; ZENKE, SEIJI
To: KABUSHIKI KAISHA KOBE SEIKO SHO (KOBE STEEL, LTD.)
Reel/Frame 041252/0033 →
Priority Claims (1)
JP 2014-184834 · Sep 11, 2014 · national
Continuity (1)
Related Publication 20170252988A1 · Sep 7, 2017