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Titlebook: IUTAM Symposium on Mechanics of Martensitic Phase Transformation in Solids; Q. P. Sun Conference proceedings 2002 Springer Science+Busines

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Observations on Stress-Induced Transformations in NiTi Alloys,ill a number of concepts that have not been fully understood and require further clarification. In this short paper, we focus on four issues, namely tension-compression asymmetry, crystal orientation effects on stress-strain response, the role of precipitates on transformation and slip resistance an
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Dependence of the Energy Release Rate on the Propagation Speed of Martensitic Transformation in Matess free energy becomes so large that the martensite plate grows rapidly until it hits a barrier such as another plate, or a high angle grain boundary. In the present paper, the dynamic energy release rate was derived. To obtain the analytical expression of the energy release rate, two simple cases
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Martensitic Transformations in Constrained Films, fields (magnetic, electric or mechanical) leads to the formation of the arrangement of domains of different phases or differently oriented domains of the same phase [1–3]. Transformations of bulk materials usually result in formation of complex irregular polydomain structures, which are difficult t
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Influence of Microstructural Parameters on Shape Memory Alloys Behavior,ern concepts of scale transition and homogenization methods have been developed these last years in mechanics of materials. Several works had established that these concepts are very suitable to model the thermomechanical behavior of SMAs (Ono & Sato, 1988, Sun & Hwang, 1993, Patoor ., 1988, Gall &
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Elastic Deformations in Shape Memory Alloy Fiber Reinforced Composites, systems with these materials [1]. Most of the applications focus on embedding active elements in conventional structures to achieve certain control, sensing or actuating abilities. A typical configuration involves composites reinforced with shape memory alloy fibers. This setting utilizes the unidi
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