The influence of solutes on flow stress plateaus, with emphasis on back stresses and the development of unified constitutive equations

G.A. Henshall , A.K. Miller
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引用次数: 22

Abstract

To study the plateaus and peaks in the temperature dependence of the flow stress commonly observed in solid solution alloys, the flow stress of pure aluminum and three binary Al-Mg alloys has been measured at temperatures between 77 and 750 K and nonelastic strains between 0.02 and 20%. Both athermal and thermally activated processes were found to contribute to the observed behavior. Plateaus in the stress vs temperature response are largely due to the effects of solutes on the evolution of back stresses, an athermal process. Peaks in the stress-temperature response of the substitutional Al-Mg alloys are caused by the interaction of mobile solutes with dislocations, a thermally activated process which increases the effectiveness of the substructure as a barrier to dislocation motion. Based on these results. a physically plausible and simple method of incorporating solute strengthening within unified physical-phenomenological constitutive equations is outlined.

溶质对流动应力高原的影响,重点是背应力和统一本构方程的发展
为了研究固溶体合金中常见的流动应力的温度依赖性高原和峰值,在77 ~ 750k和0.02 ~ 20%的非弹性应变范围内测量了纯铝和三种二元Al-Mg合金的流动应力。发现非热和热激活过程都有助于观察到的行为。应力与温度响应的高原在很大程度上是由于溶质对背应力演化的影响,这是一个非热过程。取代Al-Mg合金的应力-温度响应峰是由移动溶质与位错的相互作用引起的,这是一个热激活的过程,增加了亚结构作为位错运动屏障的有效性。基于这些结果。概述了在统一的物理-现象学本构方程中纳入溶质强化的物理上合理和简单的方法。
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