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Experimental Characterization And Micromechanical Modeling Of Woven Carbon Copper Composites
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Book Synopsis Experimental Characterization and Micromechanical Modeling of Woven Carbon/Copper Composites by :
Download or read book Experimental Characterization and Micromechanical Modeling of Woven Carbon/Copper Composites written by and published by . This book was released on 1997 with total page 112 pages. Available in PDF, EPUB and Kindle. Book excerpt:
Author :National Aeronautics and Space Administration (NASA) Publisher :Createspace Independent Publishing Platform ISBN 13 :9781723047749 Total Pages :110 pages Book Rating :4.0/5 (477 download)
Book Synopsis Experimental Characterization and Micromechanical Modeling of Woven Carbon/Copper Composites by : National Aeronautics and Space Administration (NASA)
Download or read book Experimental Characterization and Micromechanical Modeling of Woven Carbon/Copper Composites written by National Aeronautics and Space Administration (NASA) and published by Createspace Independent Publishing Platform. This book was released on 2018-07-17 with total page 110 pages. Available in PDF, EPUB and Kindle. Book excerpt: The results of an extensive experimental characterization and a preliminary analytical modeling effort for the elastoplastic mechanical behavior of 8-harness satin weave carbon/copper (C/Cu) composites are presented. Previous experimental and modeling investigations of woven composites are discussed, as is the evolution of, and motivation for, the continuing research on C/Cu composites. Experimental results of monotonic and cyclic tension, compression, and Iosipescu shear tests, and combined tension-compression tests, are presented. With regard to the test results, emphasis is placed on the effect of strain gauge size and placement, the effect of alloying the copper matrix to improve fiber-matrix bonding, yield surface characterization, and failure mechanisms. The analytical methodology used in this investigation consists of an extension of the three-dimensional generalized method of cells (GMC-3D) micromechanics model, developed by Aboudi (1994), to include inhomogeneity and plasticity effects on the subcell level. The extension of the model allows prediction of the elastoplastic mechanical response of woven composites, as represented by a true repeating unit cell for the woven composite. The model is used to examine the effects of refining the representative geometry of the composite, altering the composite overall fiber volume fraction, changing the size and placement of the strain gauge with respect to the composite's reinforcement weave, and including porosity within the infiltrated fiber yarns on the in-plane elastoplastic tensile, compressive, and shear response of 8-harness satin C/Cu. The model predictions are also compared with the appropriate monotonic experimental results. Bednarcyk, Brett A. and Pauly, Christopher C. and Pindera, Marek-Jerzy Glenn Research Center WOVEN COMPOSITES; METAL MATRIX COMPOSITES; MICROMECHANICS; MATHEMATICAL MODELS; ELASTOPLASTICITY; TENSILE TESTS; COMPRESSION TESTS; TENSILE STRENGTH; COMPRESSIVE STRENGTH; CARBON; COPPER; SHEAR...
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Book Synopsis Physics and Process Modeling (PPM) and Other Propulsion R and T by :
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Book Synopsis An Efficient Implementation of the GMC Micromechanics Model for Multi-Phased Materials with Complex Microstructures by : Marek-Jerzy Pindera
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Book Synopsis Science and Engineering of Short Fibre-Reinforced Polymer Composites by : Shao-yun Fu
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Book Synopsis Analysis and Performance of Fiber Composites by : Bhagwan D. Agarwal
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