铜和α-黄铜单晶的应力松弛

P. Feltham, C. J. Spears
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引用次数: 11

摘要

摘要本文研究了含10、20、30 at的铜和α-黄铜晶体在恒应变下的应力松弛。-%锌在77,200和291°K连续小塑性变形后。在接近屈服点时,松弛通常在施加应力的1%以内,但在大变形时,特别是在加工硬化的第三阶段,松弛达到了~ 10%。任何给定的松弛被观察到~ 1000秒,在大部分时间内,应力的衰减是对数的。激活过程的能垒为铜的~ 0.08 eV和黄铜的0.2 ~ 0.3 eV。它们的意义是根据一个模型来讨论的,在这个模型中,从一排排的溶质原子中解除位错是决定弛豫速率的主要过程。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Stress Relaxation in Single Crystals of Copper and α-Brasses
AbstractStress relaxation at constant strains has been studied in crystals of copper and α-brasses containing 10, 20, or 30 at.-% zinc at 77,200, and 291° K after consecutive small plastic deformations. Close to the yield point the relaxation was generally within 1% of the applied stress, but at large deformations, notably within the third stage of work-hardening, it attained ∼ 10%. Any given relaxation was observed for ∼ 1000 sec, over most of which period the decay of the stress was logarithmic in time. Energy barriers of the activated process were from ∼ 0.08 eV for copper and 0.2–0.3 eV for brasses. Their significance is discussed in terms of a model in which unpinning of dislocations from rows of solute atoms is the principal process determining the relaxation rate.
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