Computational Mechanics of Composite Materials lays stress on the advantages of combining theoretical advancements in applied mathematics and mechanics with the probabilistic approach to experimental data in meeting the practical needs of engineers.
Features:
Programs for the probabilistic homogenisation of composite structures with finite numbers of components allow composites to be treated as homogeneous materials with simpler behaviours.
Treatment of defects in the interfaces within heterogeneous materials and those arising in composite objects as a whole by stochastic modelling.
New models for the reliability of composite structures.
Novel numerical algorithms for effective Monte-Carlo simulation.
Computational Mechanics of Composite Materials will be of interest to academic and practising civil, mechanical, electronic and aerospatial engineers, to materials scientists and to applied mathematicians requiring accurate and usable models of the behaviour of composite materials.
Mathematical Preliminaries.- Elasticity Problems.- Elastoplastic Problems.- Sensitivity Analysis for Some Composites.- Fracture and Fatigue Models for Composites.- Reliability Analysis.- Multiresolutional Wavelet Analysis.
Marcin Kaminski teaches theoretical mechanics, strength of materials and computational and numerical methods in civil engineering as the Chair of Mechanics and Materials at the Technical University of Lodz. He has published over seventy articles in peer-reviewed academic journals and several books and has given many conference presentations. He spent a sabbatical leave at Rice University in Texas ală"