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Dynamic aging of dislocations in materials with a high crystalline relief: Competition between diffusion and impurity entrainment

机译:具有高结晶浮雕的材料中位错的动态时效:扩散与杂质夹带之间的竞争

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摘要

A model of the dynamic interaction of dislocations with the impurity subsystem of crystals that have a high lattice potential relief (Peierls barriers) has been developed. It is shown that the microscopic structure of migration barriers for impurities near a dislocation core may cause qualitatively different behavior of the impurity atmosphere on a moving dislocation. It is justified that the impurity kinetics during atmosphere formation includes two stages. The first (initial) stage is fast and significantly nonequilibrium; it is followed by the second stage, characterized by a slower approach to equilibrium. The initial stage manifests itself at a sufficiently fast dislocation motion and may lead to an anomalous increase in the driving force (or the yield strength of the material) with an increase in the temperature in some range. Blocking of the dislocation motion by impurities may cause inverse brittle-ductile transition, which is observed in some materials with an increase (rather than the usual decrease) in temperature.
机译:已经建立了位错与具有高晶格势能释放(Peierls势垒)的晶体的杂质子系统之间的动态相互作用模型。结果表明,位错核附近杂质的迁移势垒的微观结构可能会导致杂质气氛在移动的位错上发生质的不同变化。有理由认为,大气形成过程中的杂质动力学包括两个阶段。第一(初始)阶段是快速的并且明显不平衡。其次是第二阶段,其特点是平衡方法较慢。初始阶段以足够快的位错运动表现出来,并可能随着温度在一定范围内的升高而导致驱动力(或材料的屈服强度)异常增加。杂质阻止位错运动可能会导致脆性-韧性逆转变,这在某些材料中观察到温度升高(而不是通常的降低)。

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