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ویرایش: 1. ed نویسندگان: M.J. Hinton, A.S. Kaddour and P.D. Soden (Eds.) سری: ISBN (شابک) : 9780080444758 ناشر: Elsevier سال نشر: 2004 تعداد صفحات: 1250 زبان: English فرمت فایل : PDF (درصورت درخواست کاربر به PDF، EPUB یا AZW3 تبدیل می شود) حجم فایل: 10 مگابایت
در صورت تبدیل فایل کتاب Failure Criteria in Fibre-Reinforced-Polymer Composites. The World-Wide Failure Exercise به فرمت های PDF، EPUB، AZW3، MOBI و یا DJVU می توانید به پشتیبان اطلاع دهید تا فایل مورد نظر را تبدیل نمایند.
توجه داشته باشید کتاب معیارهای عدم موفقیت در کامپوزیتهای پلیمری تقویت شده با فیبر. تمرین جهانی شکست نسخه زبان اصلی می باشد و کتاب ترجمه شده به فارسی نمی باشد. وبسایت اینترنشنال لایبرری ارائه دهنده کتاب های زبان اصلی می باشد و هیچ گونه کتاب ترجمه شده یا نوشته شده به فارسی را ارائه نمی دهد.
Content:
Preface, Pages v-vi, M.J. Hinton, P.D. Soden, A.S.
Kaddour
About the editors, Page vii
Chapter 1.1 - The world-wide failure exercise: Its origin,
concept and content, Pages 2-28, M.J. Hinton, A.S.
Kaddour, P.D. Soden
Chapter 2.1 - Lamina properties, lay-up configurations and
loading conditions for a range of fibre reinforced composite
laminates, Pages 30-51, P.D. Soden, M.J. Hinton, A.S.
Kaddour
Chapter 2.2 - Biaxial test results for strength and deformation
of a range of E-glass and carbon fibre reinforced composite
laminates: Failure exercise benchmark data, Pages 52-96,
P.D. Soden, M.J. Hinton, A.S. Kaddour
Chapter 3.1 - Prediction of composite laminate fracture:
Micromechanics and progressive fracture, Pages 98-120,
P.K. Gotsis, C.C. Chamis, L. Minnetyan
Chapter 3.2 - Failure criteria for use in the design
environment, Pages 121-139, G.C. Eckold
Chapter 3.3 - Stress-based Grant-Sanders method for predicting
failure of composite laminates, Pages 140-156, E.C.
Edge
Chapter 3.4 - Predicting transverse crack formation in
cross-ply laminates, Pages 157-178, L.N. McCartney
Chapter 3.5 - Predictions of the original and truncated
maximum-strain failure models for certain fibrous composite
laminates, Pages 179-218, L.J. Hart-Smith
Chapter 3.6 - Predictions of a generalized maximum-shear-stress
failure criterion for certain fibrous composite laminates,
Pages 219-263, L.J. Hart-Smith
Chapter 3.7 - Failure analysis of FRP laminates by means of
physically based phenomenological models, Pages 264-297,
A. Puck, H. Schürmann
Chapter 3.8 - Prediction of laminate failure with the Rotem
failure criterion, Pages 298-315, A. Rotem
Chapter 3.9 - Prediction of failure envelopes and stress/strain
behavior of composite laminates, Pages 316-333, C.T.
Sun, Jianxin Tao
Chapter 3.10 - A progressive quadratic failure criterion for a
laminate, Pages 334-352, Kuo-Shih Liu, Stephen W.
Tsai
Chapter 3.11 - A strain-energy based failure criterion for
non-linear analysis of composite laminates subjected to biaxial
loading, Pages 353-378, William E. Wolfe, Tarunjit S.
Butalia
Chapter 3.12 - The strength of multilayered composites under a
plane-stress state, Pages 379-401, Peter A. Zinoviev,
Sergei V. Grigoriev, Olga V. Lebedeva, Ludmilla P.
Tairova
Chapter 3.13 - Predicting the nonlinear response and
progressive failure of composite laminates, Pages
402-428, Travis A. Bogetti, Christopher P.R. Hoppel, Vasyl
M. Harik, James F. Newill, Bruce P. Burns
Chapter 3.14 - The predictive capability of failure mode
concept-based strength criteria for multidirectional laminates,
Pages 429-489, R.G. Cuntze, A. Freund
Chapter 3.15 - Composite laminate failure analysis using
multicontinuum theory, Pages 490-517, J. Steven Mayes,
Andrew C. Hansen
Chapter 3.16 - A bridging model prediction of the ultimate
strength of composite laminates subjected to biaxial loads,
Pages 518-596, Zheng-Ming Huang
Chapter 3.17 - Expanding the capabilities of the Ten-Percent
Rule for predicting the strength of fibre-polymer composites,
Pages 597-642, L.J. Hart-Smith
Chapter 4.1 - A comparative study of failure theories and
predictions for fibre polymer composite laminates: Part (A),
Pages 644-701, A.S. Kaddour, M.J. Hinton, P.D.
Soden
Chapter 5.1 - Application of progressive fracture analysis for
predicting failure envelopes and stress-strain behaviors of
composite laminates: A comparison with experimental results,
Pages 703-725, P.K. Gotsis, C.C. Chamis, L.
Minnetyan
Chapter 5.2 - Failure criteria for use in the design
environment, Pages 726-738, G.C. Eckold
Chapter 5.3 - A comparison of theory and experiment for the
stress-based Grant-Sanders method, Pages 739-769, E.C.
Edge
Chapter 5.4 - Comparison between theories and test data
concerning the strength of various fibre-polymer composites,
Pages 770-809, L.J. Hart-Smith
Chapter 5.5 - Prediction of ply crack formation and failure in
laminates, Pages 810-831, L.N. McCartney
Chapter 5.6 - Failure analysis of FRP laminates by means of
physically based phenomenological models, Pages 832-876,
A. Puck, H. Schürmann
Chapter 5.7 - The Rotem failure criterion: Theory and practice,
Pages 877-889, A. Roten
Chapter 5.8 - The prediction of failure envelopes and
stress/strain behavior of composite laminates: Comparison with
experimental results, Pages 890-902, C.T. Sun, J. Tao,
A.S. Kaddour
Chapter 5.9 - A progressive quadratic failure criterion, part
B, Pages 903-921, Akira Kuraishi, Stephen W. Tsai, Kevin
K.S. Liu
Chapter 5.10 - A strain-energy-based non-linear failure
criterion: Comparison of numerical predictions and experimental
observations for symmetric composite laminates, Pages
922-942, Tarunjit S. Butalia, William E. Wolfe
Chapter 5.11 - A coupled analysis of experimental and
theoretical results on the deformation and failure of composite
laminates under a state of plane stress, Pages 943-960,
Peter A. Zinoviev, Olga V. Lebedeva, Ludmilla P. Tairova
Chapter 5.12 - Predicting the nonlinear response and failure of
composite laminates: Correlation with experimental results,
Pages 961-975, Travis A. Bogetti, Christopher P.R.
Hoppel, Vasyl M. Harik, James F. Newill, Bruce P. Burns
Chapter 5.13 - The predictive capability of failure mode
concept-based strength criteria for multi-directional
laminates—Part B, Pages 976-1025, R.G. Cuntze
Chapter 5.14 - A comparison of multicontinuum theory based
failure simulation with experimental results, Pages
1026-1044, J. Steven Mayes, Andrew C. Hansen
Chapter 5.15 - Correlation of the bridging model predictions of
the biaxial failure strengths of fibrous laminates with
experiments, Pages 1045-1071, Zheng-Ming Huang
Chapter 6.1 - Predictive capabilities of nineteen failure
theories and design methodologies for polymer composite
laminates. Part B: Comparison with experiments, Pages
1073-1221, A.S. Kaddour, M.J. Hinton, P.D. Soden
Chapter 7.1 - Recommendations for designers and researchers
resulting from the world-wide failure exercise, Pages
1223-1251, P.D. Soden, A.S. Kaddour, M.J. Hinton
Index, Pages 1253-1255