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|a 104629:104652
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|a Failure criteria in fibre reinforced polymer composites :
|b the World-Wide Failure Exercise /
|c edited by M.J. Hinton, A.S. Kaddour, P.D. Soden.
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|a Amersterdam ;
|a London :
|b Elsevier,
|c 2004.
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300 |
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|a 1 online resource (xii, 1255) :
|b illustrations
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336 |
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|a text
|b txt
|2 rdacontent
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|a computer
|b c
|2 rdamedia
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|a online resource
|b cr
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|a "This volume contains 34 previously published papers from the journal Special Issue Composites Science and Technology and four new papers."
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|a Includes bibliographical references and index.
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|a The world-wide failure exercise : its origin, concept and content -- Lamina properties, lay-up configurations and loading conditions for a range of fibre reinforced composite laminates / P.D. Soden, M.J. Hinton and A.S. Kaddour -- Biaxial test results for strength and deformation of a range of E-glass and carbon fibre reinforced composite laminates : failure exercise benchmark data / P.D. Soden, M.J. Hinton and A.S. Kaddour -- Prediction of composite laminate fracture : micromechanics and progressive fracture / P.K. Gotsis, C.C. Chamis and L. Minnetyan -- Failure criteria for use in the design environment / G.C. Eckold -- Stress-based Grant-Sanders method for predicting failure of composite laminates / E.C. Edge -- Predicting transverse crack formation in cross-ply laminates / L.N. McCartney -- Predictions of the original and truncated maximum-strain failure models for certain fibrous composite laminates / L.J. Hart-Smith -- Predictions of a generalized maximum-shear-stress failure criterion for certain fibrous composite laminates / L.J. Hart-Smith -- Failure analysis of FRP laminates by means of physically based phenomenological models / A. Puck and H. Schürmann -- Prediction of laminate failure with the Rotem failure criterion / A. Rotem -- Prediction of failure envelopes and stress/strain behavior of composite laminates / C.T. Sun and Jianxin Tao -- A progressive quadratic failure criterion for a laminate / Kuo-Shih Liu and Stephen W. Tsai -- A strain-energy based failure criterion for non-linear analysis of composite laminates subjected to biaxial loading / William E. Wolfe and Tarunjit S. Butalia -- The strength of multilayered composites under a plane-stress state / Peter A. Zinoviev, Sergei V. Grigoriev, Olga V. Lebedeva and Ludmilla P. Tairova -- Predicting the nonlinear response and progressive failure of composite laminates / Travis A. Bogetti, Christopher P.R. Hoppel, Vasyl M. Harik, James F. Newill and Bruce P. Burns -- The predictive capability of failure mode concept-based strength criteria for multidirectional laminates / R.G. Cuntze and A. Freund -- Composite laminate failure analysis using multicontinuum theory / J. Steven Mayes and Andrew C. Hansen -- A bridging model prediction of the ultimate strength of composite laminates subjected to biaxial loads / Zheng-Ming Huang -- Expanding the capabilities of the ten-percent rule for predicting the strength of fibre-polymer composites / L.J. Hart-Smith -- A comparative study of failure theories and predictions for fibre polymer composite laminates, part A / A.S. Kaddour, M.J. Hinton and P.D. Soden -- Application of progressive fracture analysis for predicting failure envelopes and stress-strain behaviors of composite laminates : a comparison with experimental results / P.K. Gotsis, C.C. Chamis and L. Minnetyan -- Failure criteria for use in the design environment / G.C. Eckold -- A comparison of theory and experiment for the stress-based Grant-Sanders method / E.C. Edge -- Comparison between theories and test data concerning the strength of various fibre-polymer composites / L.J. Hart-Smith -- Prediction of ply crack formation and failure in laminates / L.N. McCartney -- Failure analysis of FRP laminates by means of physically based phenomenological models / A. Puck and H. Schürmann -- The Rotem failure criterion : theory and practice / A. Roten -- The prediction of failure envelopes and stress/strain behavior of composite laminates : comparison with experimental results / C.T. Sun, J. Tao and A.S. Kaddour -- A progressive quadratic failure criterion, part B / Akira Kuraishi, Stephen W. Tsai and Kevin K.S. Liu -- A strain-energy-based non-linear failure criterion : comparison of numerical predictions and experimental observations for symmetric composite laminates / Tarunjit S. Butalia and William E. Wolfe -- A coupled analysis of experimental and theoretical results on the deformation and failure of composite laminates under a state of plane stress / Peter A. Zinoviev, Olga V. Lebedeva and Ludmilla P. Tairova -- Predicting the nonlinear response and failure of composite laminates : correlation with experimental results / Travis A. Bogetti, Christopher P.R. Hoppel, Vasyl M. Harik, James F. Newill and Bruce P. Burns -- The predictive capability of failure mode concept-based strength criteria for multi-directional laminates, part B / R.G. Cuntze -- A comparison of multicontinuum theory based failure simulation with experimental results / J. Steven Mayes and Andrew C. Hansen -- Correlation of the bridging model predictions of the biaxial failure strengths of fibrous laminates with experiments / Zheng-Ming Huang -- Predictive capabilities of nineteen failure theories and design methodologies for polymer composite laminates, part B, comparison with experiments / A.S. Kaddour, M.J. Hinton and P.D. Soden -- Recommendations for designers and researchers resulting from the world-wide failure exercise / P.D. Soden, A.S. Kaddour and M.J. Hinton.
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520 |
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|a Fiber reinforced polymer composites are an extremely broad and versatile class of material. Their high strength coupled with lightweight leads to their use wherever structural efficiency is at a premium. Applications can be found in aircraft, process plants, sporting goods and military equipment. However they are heterogeneous in construction and antisotropic, which makes making strength prediction extremely difficult especially compared to that of a metal. This book brings together the results of a 12year worldwide failure exercise encompassing 19 theories in a single volume. Each contributor describes their own theory and employs it to solve 14 challenging problems. The accuracy of predictions and the performance of the theories are assessed and recommendations made on the uses of the theories in engineering design. All the necessary information is provided for the methodology to be readily employed for validating and benchmarking new theories as they emerge. Brings together 19 failure theories, with many application examples. Compares the leading failure theories with one another and with experimental data Failure to apply these theories could result in potentially unsafe designs or over design.
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|a Print version record.
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590 |
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|a eBooks on EBSCOhost
|b EBSCO eBook Subscription Academic Collection - Worldwide
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650 |
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0 |
|a Polymeric composites
|x Fatigue.
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650 |
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0 |
|a Fibrous composites
|x Fatigue.
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650 |
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|a Laminated materials
|x Fatigue.
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|a Composites polymères
|x Fatigue.
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650 |
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6 |
|a Composites à fibres
|x Fatigue.
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650 |
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|a Stratifiés
|x Fatigue.
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650 |
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7 |
|a TECHNOLOGY & ENGINEERING
|x Material Science.
|2 bisacsh
|
650 |
|
7 |
|a Fibrous composites
|x Fatigue
|2 fast
|
650 |
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7 |
|a Laminated materials
|x Fatigue
|2 fast
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700 |
1 |
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|a Hinton, M. J.
|q (Mike J.)
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700 |
1 |
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|a Kaddour, A. S.
|
700 |
1 |
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|a Soden, P. D.
|q (Peter D.)
|
776 |
0 |
8 |
|i Print version:
|t Failure criteria in fibre reinforced polymer composites.
|d Amersterdam ; London : Elsevier, 2004
|z 008044475X
|z 9780080444758
|w (OCoLC)56467614
|
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