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These Proceedings contain the papers presented at the 1stAsian Pacific Congress on Computational Mechanics held in Sydney, on 20-23 November 2001. The theme of the first Congress of the Asian-Pacific Association for Computational Mechanics in the new millennium is New Frontiers for the New Millennium. The papers cover such new frontiers as micromechanics, contact mechanics, environmental geomechanics, chemo-thermo-mechanics, inverse techniques, homogenization, meshless methods, smart materials/smart structures and graphic visualization, besides the general topics related to the application of finite element and boundary element methods in structural mechanics, fluid mechanics, geomechanics and biomechanics.
These volumes present the latest findings and ideas of engineers and scientists involved in studying the fracture and strength of solids all around the world. The two-volume set features 271 peer-reviewed papers from scientists and engineers coming from 30 different countries.. These include the papers arising from plenary lectures and keynote lectures which gave a broad overview of the state-of-the-art of fracture research and failure prevention. It is strongly hoped that the new ideas and results presented in these proceedings will stimulate and enhance progress in fracture mechanics research and in the fundamental understanding of fracture and failure prevention in structures. The book is divided into the following sections: Invited Lecture; Fracture and Fracture Mechanics; Dynamic Behavior of Solids; Interfacial Problems; Electrical Devices and Systems; Computational Analyses and Fracture Simulations; Optimization; Invited and Keynote Lecture; Physics & Chemistry of Fracture and Failure Prevention; Fatigue and Creep; Corrosion and Damage Evaluation; Composite Materials; Measurement Methods.
This work contains contributions taken from the Fourth International Conference on Materials Processing Defects in September 2002, including prediction of the occurrence of bulk or surface defects, evaluation of damage induced in a product during processing, formability characterization with a theoretical analysis that couples material flow equations, and the influence of processing-induced defects on the integrity of structures.

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