Friction stress and back stress in cyclically deformed Ni3Ge single crystals

Han-Ryong Pak, Jinn Chu, Masaharu Kato, D.P. Pope
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引用次数: 6

Abstract

Stress-strain hysteresis loops obtained from cyclic deformation of Ni3Ge single crystals under strain control were analyzed. The major component of the cyclic flow stress was found to be the friction stress. The back stress was responsible for, at most, several per cent of the cyclic flow stress. The back stress was almost constant regardless of the amount of cumulative plastic strain. The origin of the back stress is attributed to a small long-range stress field of nearly uniformly distributed screw dislocations produced in the cyclically deformed Ni3Ge single crystals. The friction stress is considered to be developed by the interaction between straight screw dislocations on parallel (111) slip planes and by the pinning of dislocations due to the thermally activated cross-slip from (111) to (010).

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循环变形Ni3Ge单晶中的摩擦应力和背应力
分析了应变控制下Ni3Ge单晶循环变形得到的应力-应变迟滞回线。循环流动应力的主要组成部分是摩擦应力。背应力最多占循环流动应力的百分之几。无论累积塑性应变的多少,背应力几乎是恒定的。在循环变形的Ni3Ge单晶中产生了一个几乎均匀分布的螺旋位错的小范围应力场,这是产生背应力的原因。摩擦应力被认为是由平行(111)滑移面上的直螺位错之间的相互作用和由(111)到(010)的热激活交叉滑移引起的位错钉住而产生的。
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