Temperature and orientation dependent plastic flow in Pt3Al

F.E. Heredia, G. Tichy , D.P. Pope, V. Vitek
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引用次数: 36

Abstract

The compressive flow stress of Pt3 Al single crystals was measured as a function of temperature and orientation of the compression axis to check the predictions of the theory of Tichy et al. [Phil. Mag.A53, 485 (1986)] regarding the operative slip systems. It was found that samples oriented near [001] slip predominately on (111) planes while those oriented on the opposite side of the triangle slip on (001) planes. The temperature dependences of the CRSS for (111) and (001) slip are similar, viz. the CRSS increases dramatically with decreasing temperature from an almost constant value at elevated temperatures. The CRSS for cube slip is always less than that for octahedral slip. The transition from octahedral to cube slip occurs over a small range of orientations, as predicted by the Tichy et al. model, but slip on only one system was observed in samples of a given orientation.

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温度和取向对Pt3Al塑性流动的影响
测量了Pt3 Al单晶的压缩流应力作为温度和压缩轴方向的函数,以验证Tichy等人的理论预测。mag . 53, 485(1986)]关于操作滑动系统。结果表明,在[001]附近取向的样品主要在(111)平面上滑动,而在三角形另一侧取向的样品在(001)平面上滑动。(111)和(001)滑移的CRSS的温度依赖性是相似的,即在高温下,CRSS从几乎恒定的值随着温度的降低而急剧增加。立方体滑移的CRSS总是小于八面体滑移的CRSS。正如Tichy等人的模型所预测的那样,从八面体滑移到立方体滑移的转变发生在很小的取向范围内,但在给定取向的样品中只观察到一种体系的滑移。
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