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Long discontinuous fiber composite structure: Forming and structural mechanicsCost effective composite structure has motivated the investigation of several new approaches to develop composite structure from innovative material forms. Among the promising new approaches is the conversion of planar sheet to components of complex curvature through sheet forming or stretch forming. In both cases, the potential for material stretch in the fiber direction appears to offer a clear advantage in formability over continuous fiber systems. In the present study, the authors have established a framework which allows the simulation of the anisotropic mechanisms of deformation of long discontinuous fiber laminates wherein the matrix phase is a viscous fluid. The initial study focuses upon the establishment of micromechanics models for prediction of the effective anisotropic viscosities of the oriented fiber assembly in a viscous matrix. Next, the developed constitutive relation is employed through an analogy with incompressible elasticity to exercise the finite element technique for determination of local fiber orientation and laminate thickness after forming. Results are presented for the stretch bending of a curved beam from an arbitrary composite laminate and the bulging of a clamped sheet. Structural analyses are conducted to determine the effect of microstructure on the performance of curved beams manufactured from long discontinuous fiber composites. For the purposes of this study, several curved beams with ideal and non-ideal microstructures are compared for response under pure bending. Material parameters are determined from a separate microstructural analysis.
Document ID
19930021248
Acquisition Source
Legacy CDMS
Document Type
Conference Paper
Authors
Pipes, R. B.
(Delaware Univ. Newark, DE, United States)
Santare, M. H.
(Delaware Univ. Newark, DE, United States)
Otoole, B. J.
(Delaware Univ. Newark, DE, United States)
Beaussart, A. J.
(Delaware Univ. Newark, DE, United States)
Deheer, D. C.
(Delaware Univ. Newark, DE, United States)
Okine, R. K.
(Du Pont de Nemours, E. I. and Co., Wilmington DE., United States)
Date Acquired
September 6, 2013
Publication Date
January 1, 1991
Publication Information
Publication: NASA. Langley Research Center, The First NASA Advanced Composites Technology Conference, Part 1
Subject Category
Composite Materials
Accession Number
93N30437
Funding Number(s)
CONTRACT_GRANT: NAS1-18758
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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