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Effect of source and obstacle strengths on yield stress: A discrete dislocation study

机译:源和障碍强度对屈服应力的影响:离散位错研究

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The combined effect of dislocation source strength τ_s. dislocation obstacle strength τ_(obs), and obstacle spacing L_(obs) on the yield stress of single crystal metals is investigated analytically and numerically. A continuum theory of dislocation pileups emanating from a finite-strength source and impinging on asymmetric obstacles gives a closed-form expression for the yield stress. A 2d discrete dislocation model for a single-source/ obstacle problem agrees well with the analytic model over a wide range of material parameters. Discrete dislocation simulations for a full tensile bar with statistically distributed sources and obstacles show that the distribution of obstacles plays a significant role in controlling the yield stress. Over a wide range of parameters, the simulations agree well with the analytic model using an effective obstacle spacing L_(obs) chosen to capture the strength-controlling statistically weaker pileup configurations. The analytic model can thus be used to guide the choice of source and obstacle parameters to obtain a desired yield stress. The model also shows how different combinations of internal source and obstacle parameters can generate the same macroscopic yield stress, and points to several internal length scales that could relate to size-dependent plasticity phenomena.
机译:位错源强度τ_s的综合作用。分析和数值研究了位错势垒强度τ_(obs)和势垒间距L_(obs)对单晶金属屈服应力的影响。由有限强度源发出并撞击不对称障碍物的位错堆积的连续理论给出了屈服应力的封闭形式。针对单源/障碍问题的二维离散位错模型与广泛的材料参数分析模型非常吻合。具有统计分布的源和障碍物的全拉伸钢筋的离散位错模拟表明,障碍物的分布在控制屈服应力方面起着重要作用。在广泛的参数范围内,模拟使用有效的障碍物间距L_(obs)选择来捕获强度控制的统计上较弱的堆积构造,从而与分析模型非常吻合。因此,分析模型可用于指导源和障碍物参数的选择以获得所需的屈服应力。该模型还显示了内部源和障碍物参数的不同组合如何产生相同的宏观屈服应力,并指出了可能与尺寸相关的可塑性现象有关的多个内部长度尺度。

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