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IUTAM Symposium on Mechanics of Martensitic Phase Transformation in Solids (Hardcover, 2002 ed.): Qing-Ping Sun IUTAM Symposium on Mechanics of Martensitic Phase Transformation in Solids (Hardcover, 2002 ed.)
Qing-Ping Sun
R4,041 Discovery Miles 40 410 Ships in 18 - 22 working days

Phase transition phenomena in solids are of vital interest to physicists, materials scientists, and engineers who need to understand and model the mechanical behavior of solids during various kinds of phase transformations. This volume is a collection of 29 written contributions by distinguished invited speakers from 14 countries to the IUTAM Symposium on Mechanics of Martensitic Phase Transformation in Solids, the first IUTAM Symposium focusing on this topic. It contains basic theoretical and experimental aspects of the recent advances in the mechanics research of martensitic phase transformations. The main topics include microstructure and interfaces, material instability and its propagation, micromechanics approaches, interaction between plasticity and phase transformation, phase transformation in thin films, single and polycrystalline shape memory alloys, shape memory polymers, TRIP steels, etc. Due to the multidisciplinary nature of the research covered, this volume will be of interest to researchers, graduate students and engineers in the field of theoretical and applied mechanics as well as materials science and technology.

Advances in Shape Memory Materials - In Commemoration of the Retirement of Professor Hisaaki Tobushi (Hardcover, 1st ed. 2017):... Advances in Shape Memory Materials - In Commemoration of the Retirement of Professor Hisaaki Tobushi (Hardcover, 1st ed. 2017)
Qing-Ping Sun, Ryosuke Matsui, Kohei Takeda, Elzbieta A Pieczyska
R3,914 R3,383 Discovery Miles 33 830 Save R531 (14%) Ships in 10 - 15 working days

This book is devoted to the development of the shape memory materials and their applications. It covers many aspects of smart materials. It also describes the method on how we can obtain not only large recovery strains but also high recovery stress, energy storage and energy dissipation in applications. This volume treats the mechanical properties of shape memory alloys, shape memory polymers and the constitutive equations of the materials which are necessary to design the shape memory elements in applications. It also deals with the fatigue properties of materials, the method to design the shape memory elements, and the shape memory composites. The authors are international experts on shape memory alloys and shape memory polymers in the metallurgical, chemical, mechanical and engineering fields. The book will be of interest to graduate students, engineers, scientists and designers who are working in the field of electric and mechanical engineering, industries, medical engineering, aerospace engineering, robots, automatic machines, clothes and recycling for research, design and manufacturing.

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