B. P. Hughes1957-06-01Materiales de Construccion
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Equipo Editorial1957-06-01Materiales de Construccion
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T. Haase、J. Lange1957-06-01Materiales de Construccion
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Equipo Editorial1957-06-01Materiales de Construccion
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M. S. Crowley1957-06-01Materiales de Construccion
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A. A. Lill1957-06-01Materiales de Construccion
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Equipo Editorial1957-06-01Materiales de Construccion
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L. R. Whitaker1957-06-01Materiales de Construccion
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Equipo Editorial1957-06-01Materiales de Construccion
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J. Calleja Carrete1957-06-01Materiales de Construccion
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W. Richter、W. Höinghaus1957-06-01Materiales de Construccion
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- Toporow、- Volkonskij、- Sadkow1957-06-01Materiales de Construccion
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L. Grick1957-06-01Materiales de Construccion
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S. Klen1957-06-01Materiales de Construccion
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H. Eigen1957-06-01Materiales de Construccion
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J. Calleja Carrete1957-06-01Materiales de Construccion
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O. M. Astreewa1957-06-01Materiales de Construccion
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K. R. Lauer、F. O. Slate1957-06-01Materiales de Construccion
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A. Baudran1957-06-01Materiales de Construccion
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T. H. Blewitt、R. R. Coltman、J. K. Redman1957-06-01OpenAlex
Single crystals of copper were deformed at 4.2°K and 77.3°K. At 4.2°K, after a large strain produced by normal slip, jerky flow (discontinuous slip) occurs. From the study of reactor irradiated crystals, it was deduced that a packet of 30 slip lines, each containing 104 dislocations, was released to form each jerk of…
Microstructure and mechanical propertiesFusion materials and technologies