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Titlebook: Metallurgical Effects at High Strain Rates; R. W. Rohde,B. M. Butcher,C. H. Karnes Book 1973 Springer Science+Business Media New York 1973

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書目名稱Metallurgical Effects at High Strain Rates
編輯R. W. Rohde,B. M. Butcher,C. H. Karnes
視頻videohttp://file.papertrans.cn/632/631615/631615.mp4
圖書封面Titlebook: Metallurgical Effects at High Strain Rates;  R. W. Rohde,B. M. Butcher,C. H. Karnes Book 1973 Springer Science+Business Media New York 1973
描述A conference on Metallurgical Effects at High Strain Rates was held at Albuquerque, New Mexico, February 5 through 8, 1973, under joint sponsorship of Sandia Laboratories and the Physical Metallurgy Committee of The Metallurgical Society of AIME. This book presents the written proceedings of the meeting. The purpose of the conference was to gather scientists from diverse disciplines and stimulate interdisciplinary discussions on key areas of materials response at high strain rates. In this spirit, it was similar to one of the first highly successful con- ferences on this subject held in 1960, in Estes Park, Colorado, on The Response of Metals to High Velocity Deformation. The 1973 conference was able to demonstrate rather directly the increased understanding of high strain rate effects in metals that has evolved over a period of roughly 12 years. In keeping with the interdisciplinary nature of the meeting, the first day was devoted to a tutorial session of invited papers to provide attendees of diverse backgrounds with a common basis of understanding. Sessions were then held with themes centered around key areas of the high strain rate behavior of metals.
出版日期Book 1973
關(guān)鍵詞material; metallurgy; metals
版次1
doihttps://doi.org/10.1007/978-1-4615-8696-8
isbn_softcover978-1-4615-8698-2
isbn_ebook978-1-4615-8696-8
copyrightSpringer Science+Business Media New York 1973
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Dislocation Mechanics at High Strain Rates Only in shock loaded specimens should very fast dislocation velocities exist. An approximate analysis is made to show how supersonic dislocations in a shock wave interface (the Smith interface) can produce a hydrostatic stress behind the interface.
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A Theory of the α?ε Transition in Fe and of Possible Higher Pressure Transitions in Fe and in the LiFe and become the phase of lowest free energy. This occurs in the region of the α-ε transition and suggest that ε-Fe is paramagnetic. An analysis of the behavior of the d-energies suggests that the lighter transition or pre-transition elements may form stable transition phases under pressure which are also stable at zero pressure.
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