Plasticity of Metals: Experiments, Models, Computation - download pdf or read online

By Steck E., Ritter R., et al. (eds.)

ISBN-10: 3527600116

ISBN-13: 9783527600113

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Kallend, Y. C. Huang: Orientation dependence of stored energy of cold work in 50% cold rolled copper. Metal Science 18 (1984) 381. [27] F. Haeßner, G. Hoschek, G. To¨lg: Stored energy and recrystallization temperature of rolled copper and silver single crystals with defined solute contents. Acta metall. 27 (1979) 1539. [28] L. Kaps: Einfluss der mechanischen Vorgeschichte auf die prima¨re Rekristallisation. Shaker Verlag, Aachen, 1997. 16 Plasticity of Metals: Experiments, Models, Computation. Collaborative Research Centres.

2% Deeq Æ 1%) and high (Deeq ! Æ 1%) amplitudes. 375%) at the onset of fatigue, bundles of multipoles initially appear separated by dislocation poor regions. The majority of dislocations in the bundles are primary edge dislocations in parallel slip planes, which mutually interact in some sections to form dipoles and multipoles. Further, as for AlMg3, prismatic loops are formed through jog-dragging processes. Screw dislocations on the other hand are hardly found in this fatigue stage; it is assumed that they are largely annihilated through cross-slip.

The first in the assumption that all processes are statistically distributed in space; this applies to nucleation in the first instance and thus subsequent grain growth. Any kind of nucleation concentration on chosen structural inhomogeneities alters the collision course of growing nuclei and hence the correction factors of the extendedvolume model. The second restrictive assumption concerns the process rates. Nucleation and nuclear growth are assumed to be site-independent and constant in time.

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Plasticity of Metals: Experiments, Models, Computation by Steck E., Ritter R., et al. (eds.)


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