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Stability and motion of low angle dislocation boundaries in precipitation hardened crvstals

机译:低角度位错边界在降水中的稳定性和运动沉降的CRVSTALS

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The present study investigates stability and motion of low angle dislocation boundaries in an array of precipitates. The model considers discrete dislocations and precipitates that are treated as impenetrable particles. Peach-Koehler forces, which originate due to the combined effect of dislocation-dislocation interactions and the applied stress, act the individual dislocations on. Both, the dislocation glide and the dislocation climb at elevated temperatures are taken into account. Results of the numerical study suggest that a critical applied shear stress (CASS) always exists which separates stable and unstable low angle boundary configurations. Varying particle size, inlet-particle spacing and density of dislocations in the boundary cause changes of the CASS that are systematically investigated. It is shown that the CASSs can considerably differ from the standard Orowan stress controlling the equilibrium of an isolated dislocation in a given microstructure. This result underlines the importance of long-range dislocation interactions that influence the high temperature strength of the precipitation-hardened alloys.
机译:本研究研究了沉淀阵列阵列中低角度位错边界的稳定性和运动。该模型考虑离散的脱位和沉淀物,其被视为难以采样的颗粒。桃子 - koehler力,它源于脱位脱位相互作用和施加应力的综合影响,作用了个体脱位。考虑到升高的温度下的脱位滑行和脱位升高。数值研究结果表明,临界应用剪切应力(CASS)始终存在,其分离稳定和不稳定的低角度边界配置。在边界中的不同粒度,入口颗粒间隔和脱位密度导致系统研究的CASS的变化。结果表明,卡斯可以显着不同于控制给定微结构中的隔离位错平衡的标准orowan应力。该结果强调了影响沉淀硬化合金高温强度的远程位错相互作用的重要性。

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