b2型Fe-39.5 mol.% A1单晶在压缩中的屈服和塑性流动行为

K. Yoshimi , S. Hanada , M.H. Yoo
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引用次数: 56

摘要

在室温至1073 K的温度范围内,通过变形单晶研究了b2型Fe-39.5 mol.% Al的屈服和塑性流动行为。屈服应力表现出明显的正温度依赖关系,然后在所有方向上都有一个峰值。除近[111]取向外,其他取向的异常峰温度均在823 ~ 873 K之间。仅对于近[111]取向,峰值温度位于773和823 K之间。中温< 111 >向高温< 100 >方向的滑移转变发生在峰值温度。773 K时的屈服应力表现出很强的取向依赖性,并且与非滑动应力分量有很好的相关性。压缩轴为χ⪖0°的试样在峰值温度以下的应力-应变曲线上呈现锯齿状,而压缩轴为χ <0°。此外,在所有取向的峰值温度附近都观察到产率下降。在峰值温度以下,甚至低至室温,屈服应力几乎不依赖于施加的应变速率。这表明< 111 >型超位错的运动在温度范围内具有非常小的应变率敏感性。另一方面,在峰值温度及以上存在很强的应变速率依赖性,表明< 100 >型位错的运动具有很强的速率敏感性。在此基础上讨论了B2 FeAl中屈服应力与温度的正相关关系。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Yielding and plastic flow behavior of B2-type Fe-39.5 mol.% A1 single crystals in compression

Yielding and plastic flow behavior of B2-type Fe-39.5 mol.% Al were investigated by deforming single crystals in the temperature range from room temperature to 1073 K. Yield stress exhibits a distinct positive temperature dependence followed by a peak for all the orientations examined. The temperatures of the anomalous peak are located between 823 and 873 K for all the orientations except the near-[111] orientation. Only for the near-[111] orientation the peak temperature is located between 773 and 823 K. The slip transition from 〈111〉 direction at intermediate temperatures to 〈100〉 at high temperatures occurs at the peak temperatures. The yield stress at 773 K exhibits a strong orientation dependence and has a good correlation with respect to non-glide stress component. Specimens having compression axes of χ ⪖ 0° exhibit serrations in stress-strain curves below the peak temperatures, whereas the serrations are not observed in those of χ < 0°. In addition, a yield drop is observed around the peak temperatures for all the orientations. Below the peak temperatures, even as low as at room temperature, the yield stress hardly depends on the applied strain rate. This indicates that the motion of 〈111〉-type superdislocations has very small strain-rate sensitivity in the temperature range. On the other hand, there is a strong strain-rate dependence at the peak temperature and above, indicating that the motion of 〈100〉-type dislocations is strongly rate sensitive. The positive temperature dependence of yield stress in B2 FeAl is discussed on the basis of the present results.

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