EP0402099A2

Reinforcing woven fabric and preformed material, fiber reinforced composite material and beam using it.

Abstract

A reinforcing woven fabric (21) comprises warps of reinforcing filamentary yarns (22, 23) arranged to form a high-density portion of warps (A) and a low-density portion of warps (B) in the transverse direction and wefts of reinforcing filamentary yarns (24) extending obliquely to the warps (22,23). A preformed material can be formed using the plurality of the reinforcing woven fabrics (21) and a fiber reinforced composite material, especially in the form of a beam, can be formed using the preformed material. The high-density portion of warps (A) in the reinforcing woven fabric (21) can provide the strength and rigidity against bending or tensile stress required for the flange of the beam and the obliquely extending wefts (24) in the low-density portion of warps (B) can satisfy the strength against shear stress required for the web of the beam, when a plurality of the reinforcing woven fabrics (21) are laminated to form the preformed material for the beam. The mechanical properties required for the beam can be efficiently obtained.

EP0402099A2, drawing sheet 1
Sheet 1 of 14

Term

Term ended

Projected expiry passed 5 June 2010, 16.3 years ago.

  1. Priority
  2. Filed
  3. Published
  4. Projected expiry
  5. Today

34 claims: 26 independent, 8 dependent

  1. 1
    A reinforcing woven fabric for use in fiber reinforced composite materials comprising:a plurality of warps of reinforcing filamentary yarns extending in the longitudinal direction of said reinforcing woven fabric in parallel to one another in a sheet-like form, said warps being arranged in the transverse direction of said reinforcing woven fabric to form a portion with a high density of said warps and a portion with a low density of said warps;and a plurality of wefts of reinforcing filamentary yarns extending in a direction across said warps and oblique to the direction of the extension of said warps in parallel to one another in a sheet-like form.
  2. 4
    The reinforcing woven fabric according to any of claims 1 and 2, wherein said warps and wefts extend substantially straightly and are held integrally by auxiliary filamentary yarns to form a non-crimp fibrous structure.
  3. 8
    A preformed material for use in fiber reinforced composite materials, said preformed material having a plurality of reinforcing woven fabrics laminated and integrated to each other, each of said reinforcing woven fabrics comprising (a) a plurality of warps of reinforcing filamentary yarns extending in the longitudinal direction of said reinforcing woven fabric in parallel to one another in a sheet-like form, said warps being arranged in the transverse direction of said reinforcing woven fabric to form a portion with a high density of said warps and a portion with a low density of said warps, and (b) a plurality of wefts of reinforcing filamentary yarns extending in a direction across said warps and oblique to the direction of the extension of said warps in parallel to one another in a sheet-like form;said plurality of reinforcing woven fabrics being so laminated that the portions with said high density of said warps of the respective reinforcing woven fabrics are conformed to each other and the portions with said low density of said warps of the respective reinforcing woven fabrics are conformed to each other.
  4. 10
    The preformed material according to any of claims 8 and 9, wherein said warps and wefts are woven as a plain weave, twill weave or satin weave structure.
  5. 11
    The preformed material according to any of claims 8 and 9, wherein said warps and wefts extend substantially straightly and are held integrally by auxiliary filamentary yarns to form a non-crimp fibrous structure.
  6. 12
    The preformed material according to any of claims 8 to 11, wherein said wefts extend obliquely to said warps at an angle in the range of 45° ± 15°.
  7. 13
    The preformed material according to any of claims 8 to 12, wherein said portion with a high density of said warps is present at least at one side end portion of said reinforcing woven fabric in the transverse direction of said reinforcing woven fabric.
  8. 14
    The preformed material according to any of claims 8 to 13, wherein said plurality of reinforcing woven fabrics are such laminated that the directions of extension of said warps and wefts of the respective reinforcing woven fabrics are set at mirror symmetry relative to the center surface of lamination of said plurality of reinforcing woven fabrics.
  9. 15
    The preformed material according to any of claims 8 to 14, wherein said warps and wefts are fixed to each other by a thermoplastic polymer at their intersections, and said plurality of reinforcing woven fabrics are integrated by said thermoplastic polymer.
  10. 16
    The preformed material according to any of claims 8 to 14, wherein said plurality of reinforcing woven fabrics are integrated by stitching by stitch yarns which are reinforcing filamentary yarns composed of at least one member selected from the group consisting of carbon fibers, glass fibers, polyaramide fibers, polyetheretherketone fibers, silicon carbide fibers, alumina fibers and alumina-silica fibers, and having an elongation at break higher than those of both said warps and wefts.
  11. 17
    The preformed material according to any of claims 8 to 16, wherein said preformed material is a preformed material having a flange forming portion and a web forming portion for use in a beam, and said plurality of reinforcing woven fabrics are such laminated that the portions with said high density of said warps of the respective reinforcing woven fabrics are positioned at said flange forming portion, said warps of the respective reinforcing woven fabrics extend in the longitudinal direction of said flange forming portion and the portions with said low density of said warps of the respective reinforcing woven fabrics are positioned at said web forming portion.
  12. 18
    A fiber reinforced composite material including a preformed material comprised of a plurality of reinforcing woven fabrics laminated and integrated to each other and a matrix containing said plurality of reinforcing woven fabrics, each of said reinforcing woven fabrics comprising (a) a plurality of warps of reinforcing filamentary yarns extending in the longitudinal direction of said reinforcing woven fabric in parallel to one another in a sheet-like form, said warps being arranged in the transverse direction of said reinforcing woven fabric to form a portion with a high density of said warps and a portion with a low density of said warps, and (b) a plurality of wefts of reinforcing filamentary yarns extending in a direction across said warps and oblique to the direction of the extension of said warps in parallel to one another in a sheet-like form;said plurality of reinforcing woven fabrics being so laminated that the portions with said high density of said warps of the respective reinforcing woven fabrics are conformed to each other and the portions with said low density of said warps of the respective reinforcing woven fabrics are conformed to each other.
  13. 20
    The fiber reinforced composite material according to any of claims 18 and 19, wherein said warps and wefts are woven as a plain weave, twill weave or satin weave structure.
  14. 21
    The fiber reinforced composite material according to any of claims 18 and 19, wherein said warps and wefts extend substantially straightly and are held integrally by auxiliary filamentary yarns to form a non-crimp fibrous structure.
  15. 22
    The fiber reinforced composite material according to any of claims 18 to 21, wherein said wefts extend obliquely to said warps at an angle in the range of 45° ± 15°.
  16. 23
    The fiber reinforced composite material according to any of claims 18 to 22, wherein said portion with a high density of said warps is present at least at one side end portion of said reinforcing woven fabric in the transverse direction of said reinforcing woven fabric.
  17. 24
    The fiber reinforced composite material according to any of claims 18 to 23, wherein said plurality of reinforcing woven fabrics are such laminated that the directions of extension of said warps and wefts of the respective reinforcing woven fabrics are set at mirror symmetry relative to the center surface of lamination of said plurality of reinforcing woven fabrics.
  18. 25
    The fiber reinforced composite material according to any of claims 18 to 24, wherein said plurality of reinforcing woven fabrics are integrated by stitching by stitch yarns which are reinforcing filamentary yarns composed of at least one member selected from the group consisting of carbon fibers, glass fibers, polyaramide fibers, polyetheretherketone fibers, silicon carbide fibers, alumina fibers and alumina-silica fibers, and having an elongation at break higher than those of both said warps and wefts.
  19. 26
    A beam constructed from a fiber reinforced composite material, said beam having a flange and a web, said fiber reinforced composite material including a preformed material comprised of a plurality of reinforcing woven fabrics laminated and integrated to each other and a matrix containing said plurality of reinforcing woven fabrics;each of said reinforcing woven fabrics comprising (a) a plurality of warps of reinforcing filamentary yarns extending in the longitudinal direction of said reinforcing woven fabric in parallel to one another in a sheet-like form, said warps being arranged in the transverse direction of said reinforcing woven fabric to form a portion with a high density of said warps and a portion with a low density of said warps, and (b) a plurality of wefts of reinforcing filamentary yarns extending in a direction across said warps and oblique to the direction of the extension of said warps in parallel to one another in a sheet-like form;said plurality of reinforcing woven fabrics being so laminated that the portions with said high density of said warps of the respective reinforcing woven fabrics are conformed to each other and the portions with said low density of said warps of the respective reinforcing woven fabrics are conformed to each other.
  20. 28
    The beam according to any of claims 26 and 27, wherein said warps and wefts are woven as a plain weave, twill weave or satin weave structure.
  21. 29
    The beam according to any of claims 26 and 27, wherein said warps and wefts extend substantially straightly and are held integrally by auxiliary filamentary yarns to form a non-crimp fibrous structure.
  22. 30
    The beam according to any of claims 26 to 29, wherein said wefts extend obliquely to said warps at an angle in the range of 45° ± 15°.
  23. 31
    The beam according to any of claims 26 to 30, wherein said portion with a high density of said warps is present at least at one side end portion of said reinforcing woven fabric in the transverse direction of said reinforcing woven fabric.
  24. 32
    The beam according to any of claims 26 to 31, wherein said portion with a high density of said warps has a density of said warps of at least three times that of said portion with a low density of said warps.
  25. 33
    The beam according to any of claims 26 to 32, wherein said plurality of reinforcing woven fabrics are such laminated that the directions of extension of said warps and wefts of the respective reinforcing woven fabrics are set at mirror symmetry relative to the center surface of lamination of said plurality of reinforcing woven fabrics.
  26. 34
    The beam according to any of claims 26 to 33, wherein said plurality of reinforcing woven fabrics are integrated by stitching by stitch yarns which are reinforcing filamentary yarns composed of at least one member selected from the group consisting of carbon fibers, glass fibers, polyaramide fibers, polyetheretherketone fibers, silicon carbide fibers, alumina fibers and alumina-silica fibers, and having an elongation at break higher than those of both said warps and wefts.
Independent claims26