Solid Solution Softening and Solid Solution Hardening in Concentrated KCL-KBr Model Crystals
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概要
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The dislocation motion at O K overcoming the concentrated solute atoms is calculated by a relaxation method using the string model. The concentration dependence of yield stress τ_y with Peierls barrier agrees with experimental data, and softening is revealed in c=0.04, where c is the concentration of KBr in KCl. The softening is due to the enhancement of double kink nucleations by solute atoms. Both Cl^- and Br^- ions are assumed to reveal the size effect against hypothetical anions with the average ionic radius to obtain the interaction force between dislocation and solute atom. For NaCl type lattice without Peierls barrier the equation, τ_y/μ≃K_s[c(1-c)]^j[(1+v)υ_ε/2π(1-v)b^3]^<1+i>(μb^2/Γ)^i, where μ is the shear modulus, υ Poisson's ratio,ν_ε the volume difference between solute and solvent atoms, b the Burgers vector, Γ the line tension, K_s≃0.87, i≃0.25 and j≃0.64, is derived.
- 社団法人応用物理学会の論文
- 1984-04-20
著者
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Sakamoto Masanori
Department Of Applied Physics Faculty Of Engineering University Of Tokyo
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Sakamoto M
Osaka Univ.
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Sakamoto Masao
Department For The Study Of Contemporary Society Otemae University
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