Cross Effect in Aluminium Tubes Subjected to Torsion and Tension

H. Takahashi, Hiroyuki Nagaoka, M. Matsunaga, Isao Shiono
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引用次数: 1

Abstract

The flow stress in tension after torsional prestrain, for example, is higher than that in pure tensional loading. This phenomenon is called cross effect, cross hardening or latent hardening. In the present study, the cross effect is investigated with torsion-tension combined loading tests. It is observed that the cross effect as well as Bauschinger effect is a kind of delayed phenomenon due to a change of the loading direction. We propose a model that unconstrained Orowan loops around pile-ups that were produced during preloading work as forest dislocations against moving dislocations on intersecting slip planes during subsequent loadings. Since the density of forest dislocations determines the flow stress, the free Orowan loops cause the cross effect during cross loading as well as the Bauschinger effect during reverse loading. The above explanation for the cross effect is confirmed by tension tests after forward and reverse torsional prestrains.
扭拉作用下铝管的交叉效应
例如,扭转预应变后的拉伸状态下的流动应力要高于纯拉伸加载。这种现象称为交叉效应、交叉硬化或潜在硬化。在本研究中,通过扭拉联合加载试验研究了交叉效应。观察到交叉效应和包辛格效应是一种由于加载方向改变而产生的延迟现象。我们提出了一个模型,在预加载工作期间产生的堆积周围的无约束Orowan环作为森林错位与随后加载期间相交滑动面上的移动错位。由于森林位错的密度决定了流动应力,自由的Orowan环在交叉加载时产生交叉效应,在反向加载时产生包辛格效应。通过正扭预应变和反扭预应变后的拉伸试验,证实了上述交叉效应的解释。
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