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Dislocations in Solids: Dislocations in Solids, cartea 15

John P. Hirth, Ladislas Kubin
en Limba Engleză Hardback – 9 sep 2009
Bacon and Osetsky present an atomistic model of dislocation-particle interactions in metal systems, including irradiated materials. This work is important in simulating actual behavior, removing earlier reliance on assumed mechanisms for dislocation motion. New mechanisms for dislocation generation under shock loading are presented by Meyers et al. These models provide a basis for understanding the constitutive behavior of shocked material. Saada and Dirras provide a new perspective on the Hall-Petch relation, with particular emphasis on nanocrystals. Of particular significance, deviations from the traditional stress proportional to the square-root of grain size relation are explained. Robertson et al consider a number of effects of hydrogen on plastic flow and provide a model that provides an explanation of the broad range of properties.

  • Flow stress of metal systems with particle hardening, including radiation effects
  • New model for dislocation kinetics under shock loading
  • Explanation of effects of nanoscale grain size on strength
  • Mechanism of hydrogen embrittlement in metal alloys
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Specificații

ISBN-13: 9780444532855
ISBN-10: 0444532854
Pagini: 328
Dimensiuni: 165 x 240 x 20 mm
Greutate: 0.73 kg
Editura: ELSEVIER SCIENCE
Seria Dislocations in Solids


Public țintă

Materials science, Solid state physics, Metallurgy, Mechanics, Chemistry, Geophysics

Cuprins

88. Dislocation-Obstacle Interactions
D.J. Bacon, and Y.N. Osetsky
89. Dislocations in Shock Compression and Release
M.A. Meyers, H. Jarmakani, E. Bringa, and B.A. Remington
90. Mechanical Properties of Nanograined Metallic Polycrystals
G. Saada, and G. Dirras
91. Hydrogen Effects on Plasticity
I.M. Roberston, P. Sofronis, and H.K. Birnbaum