Multidirectionally reinforced shape woven preforms for composite structures
원문보기
IPC분류정보
국가/구분
United States(US) Patent
등록
국제특허분류(IPC7판)
B32B-023/00
B32B-001/00
B32B-001/08
B32B-027/02
B32B-027/30
B32B-027/36
B32B-005/26
B32B-025/02
B32B-027/38
B32B-027/04
D06P-007/00
D04C-001/00
D03D-009/00
D03D-011/00
D03D-013/00
출원번호
US-0029223
(2008-02-11)
등록번호
US-8440276
(2013-05-14)
발명자
/ 주소
Rose, Donald
Goering, Jonathan
Biddle, Steve
출원인 / 주소
Albany Engineered Composites, Inc.
대리인 / 주소
Frommer Lawrence & Haug LLP
인용정보
피인용 횟수 :
3인용 특허 :
21
초록▼
The present invention relates to multidirectionally reinforced fiber preforms that conform easily to complex curvatures, such as, composite turbine fan cases, jet engine containment rings, aircraft fuselage frames, aircraft window frames, and flanged rings for attaching nacelles to aircraft engines.
The present invention relates to multidirectionally reinforced fiber preforms that conform easily to complex curvatures, such as, composite turbine fan cases, jet engine containment rings, aircraft fuselage frames, aircraft window frames, and flanged rings for attaching nacelles to aircraft engines. The present invention provides multidirectionally reinforced shape woven preforms with improved strength for composite structures that are axisymmetric as well as non-axisymmetric in nature. The invention is a preform used to reinforce a composite structure which includes a contour woven fabric portion, bi-axially braided, tri-axially braided or bias fabric portion, and/or a polar woven fabric portion, and a method of making thereof. The preform may optionally include a three-dimensionally woven portion. The combination of different forms of fabrics allows the preform to be produced without cutting and darting of the individual plies. Eliminating these cuts and darts improves the strength and performance of the resulting structure.
대표청구항▼
1. A preform used to reinforce a composite structure comprising: a first portion comprising a plurality of alternating fabric layers of a contour woven fabric and a bias fabric, wherein said contour woven fabric comprises one or more layers of warp yarns interwoven with one or more layers of well ya
1. A preform used to reinforce a composite structure comprising: a first portion comprising a plurality of alternating fabric layers of a contour woven fabric and a bias fabric, wherein said contour woven fabric comprises one or more layers of warp yarns interwoven with one or more layers of well yarns,wherein a contoured shape of the contour woven fabric is maintained by said one or more layers of warp yarns having differing warp lengths that give curvature to said contour woven fabric, andwherein said bias fabric comprises a plurality of yarns interwoven or braided at oblique angles of about +/−45 degrees to said one or more layers of warp and weft yarns of the contour woven fabric layer. 2. The preform as claimed in claim 1, further comprising: a second portion comprising a three-dimensionally woven fabric, wherein said second portion is attached to said first portion. 3. The preform as claimed in claim 2, further comprising: a third portion comprising a plurality of alternating layers of a polar fabric and said bias fabric, wherein said polar fabric is formed by performing differential fabric take-up of a plurality of warp yarns or warp steering from one side edge of the polar fabric to an opposite side edge to create curved warp yarns for imparting a flat curved configuration to the polar fabric. 4. The preform as claimed in claim 1, wherein said bias fabric is a flat fabric woven at +/−45 degrees or a slit braided tube. 5. The preform as claimed in claim 1, wherein said composite structure is a turbine fan case, a jet engine containment ring, an aircraft fuselage frame, an aircraft window frame, or a flanged ring for attaching a nacelle to an aircraft engine. 6. The preform as claimed in claim 1, wherein said preform is axisymmetric and/or non-axisymmetric. 7. The preform as claimed in claim 1, wherein said bias fabric is continuous or discontinuous. 8. The preform as claimed in claim 3, wherein said first, second and third portions are made from materials selected from the group consisting of carbon, nylon, rayon, polyester, fiberglass, cotton, glass, ceramic, aramid, and polyethylene. 9. A three-dimensional composite structure reinforced with a preform comprising: a first portion comprising a plurality of alternating layers of a contour woven fabric and a bias fabric, wherein said contour woven fabric comprises one or more layers of warp yarns interwoven with one or more layers of weft yarns,wherein a contoured shape of the contour woven fabric is maintained by said one or more layers of warp yarns having differing warp lengths that give curvature to said contour woven fabric,wherein said bias fabric comprises a plurality of yarns interwoven or braided at oblique angles of about +/−45 degrees to said one or more layers of warp and weft yarns; anda matrix material. 10. The composite structure as claimed in claim 9, further comprising: a second portion comprising a three-dimensionally woven fabric, wherein said second portion is attached to said first portion. 11. The composite structure as claimed in claim 10, further comprising: a third portion comprising a plurality of alternating layers of a polar fabric and said bias fabric, wherein said polar fabric is formed by performing differential fabric take-up of a plurality of warp yarns or warp steering from one side edge of the polar fabric to an opposite side edge to create curved warp yarns for imparting a flat curved configuration to the polar fabric. 12. The composite structure as claimed in claim 9, wherein said bias fabric is a flat fabric woven at +/−45 degrees or a slit braided tube. 13. The composite structure as claimed in claim 9, wherein said composite structure is a turbine fan case, a jet engine containment ring, an aircraft fuselage frame, an aircraft window frame, or a flanged ring for attaching a nacelle to an aircraft engine. 14. The composite structure as claimed in claim 9, wherein said preform is axisymmetric and/or non-axisymmetric. 15. The composite structure as claimed in claim 9, wherein said bias fabric is continuous or discontinuous. 16. The composite structure as claimed in claim 11, wherein said first, second and third portions arc made from materials selected from the group consisting of carbon, nylon, rayon, polyester, fiberglass, cotton, glass, ceramic, aramid, and polyethylene. 17. The composite structure as claimed in claim 9, wherein said composite structure is formed from a process selected from the group consisting of resin film infusion (RFI), resin transfer molding and chemical vapor filtration. 18. The composite structure as claimed in claim 9, wherein said matrix material is selected from the group consisting of epoxy, polyester, vinyl-ester, ceramic, and carbon.
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