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Titlebook: Shape Memory Effects in Alloys; Jeff Perkins Book 1975 Springer Science+Business Media New York 1975 communication.copper.crystal.crystall

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发表于 2025-3-21 17:15:47 | 显示全部楼层 |阅读模式
书目名称Shape Memory Effects in Alloys
编辑Jeff Perkins
视频video
图书封面Titlebook: Shape Memory Effects in Alloys;  Jeff Perkins Book 1975 Springer Science+Business Media New York 1975 communication.copper.crystal.crystall
描述The International Symposium on Shape Memory Effects and Appli­ cations was held at the University of Toronto on May 19-20, 1975, in four sessions over two days, as part of the regular 1975 Spring Meeting of The Metallurgical Society of AlME, sponsored by the Physical Metallurgy Committee of The Metallurgical Society. This was the first symposium on the subject, the only previous meeting at all related being the 1968 NOL Symposium on TiNi and Associated Compounds. One of the major intentions of this Symposium was to provide a forum for cross-communication between workers in the diverse metallurgical areas pertinent to shape memory effects, areas such as martensitic transformation, crystallography and thermodynamics, mechanical behavior, stress-induced transformation, lattice sta­ bility, and alloy development. Authors were encouraged to place an emphasis on delineation of general controlling factors and mech­ anisms, and on comparison of shape memory effect alloy systems with systems not exhibiting SME.
出版日期Book 1975
关键词communication; copper; crystal; crystallography; development; dynamics; gold; material; mechanisms; metallurg
版次1
doihttps://doi.org/10.1007/978-1-4684-2211-5
isbn_softcover978-1-4684-2213-9
isbn_ebook978-1-4684-2211-5
copyrightSpringer Science+Business Media New York 1975
The information of publication is updating

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R. Rapacioli,M. Chandrasekaran,M. Ahlers,L. Delaey
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Book 1975ss-induced transformation, lattice sta­ bility, and alloy development. Authors were encouraged to place an emphasis on delineation of general controlling factors and mech­ anisms, and on comparison of shape memory effect alloy systems with systems not exhibiting SME.
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Optical and Electron Microscope Observations of Transformation and Deformation Characteristics in Che shape memory effect is originated in the behaviour of materials upon martensitic transformation, deformation of the martensite and reverse transformation to the matrix phase. Therefore, in order to know the mechanism of the shape memory effect, the trans-formations and deformation characteristics
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Lattice Softening and the Origin of SME,te phases. In order to make clear the origin of SME, therefore, it is most important to account for the role of lattice softening upon the mechanism of this superelastic behaviour, which basic nature may be due to the existence of coherent boundaries, such as mobile twin or domain boundaries in the
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,Ferroelastic “Memory” and Mechanical Properties in Gold-Cadmium,point defects on quenching (12), self-diffusion (13), elastic constants behavior and mode softening (14), martensitic phase transformations (15, 16), twin boundary motion (17), and the unusual “memories” described here (9). Indeed,many important theories and definitive experiments associated with th
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The Shape Memory Effect in TiNi: One Aspect of Stress-Assisted Martensitic Transformation,to rationalise it in terms of the martensitic transformation was reported by Zijderveld et al., in 1966 (3). Considering the scanty experimental data then available that hypothesis showed considerable insight.
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