Mechanical strength and optimal design of complex structure

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Details

In recent years, the fundamental research on the structural strength and optimal deisgn of composite pressure vessel and piping under complex load and environment has become crucial to ensure safe, economical and reliable run of these structures in area of advanced energy utilization. The content of this book includes the strength prediction of composite vessel using composite laminate theory and finite element analysis, the optimal design using adaptive genetic algorithm and immune algorithm as well as the failure analysis under deflection load and the fatigue lifetime evaluation under cyclic vibrating load using finite element analysis for buried piping. Specially, the authors attempt to explain some physical phenomena such as the stiffness degradation in process of damage evolution for composites. In addition, some advanced methods for predicting the collapse failure of these structures using finite element analysis are also discussed. This book may provide a good reference available for the mechanical strength prediction and optimization of other complex structures.

Autorentext

Dr.Pengfei Liu was awarded the Ph.d. in Zhejiang University, China on Jun.2006. On Sep.2008, he completed the postdoctoral research. Now, he is an associate professor in Zhejiang University. His research includes the damage constitutive modeling, crack propagation, finite element analysis and optimal design of composite structures

Weitere Informationen

  • Allgemeine Informationen
    • GTIN 09783838399553
    • Sprache Englisch
    • Genre Maschinenbau
    • Anzahl Seiten 168
    • Größe H220mm x B150mm x T11mm
    • Jahr 2017
    • EAN 9783838399553
    • Format Kartonierter Einband
    • ISBN 3838399552
    • Veröffentlichung 08.02.2017
    • Titel Mechanical strength and optimal design of complex structure
    • Autor Pengfei Liu , Jinyang Zheng
    • Untertitel Mechanical strength, optimal design, finite element analysis, composite pressure vessel and piping
    • Gewicht 268g
    • Herausgeber LAP Lambert Academic Publishing

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