Influence of Strain Rate on the Activation of {110}, {112}, {123} Slip in Ferrite of DP800

Chunhua Tian, G. Dehm, C. Kirchlechner
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引用次数: 7

Abstract

Abstract We have performed micro pillar compression to investigate the influence of strain rate on the activation of three slip plane families, namely {110}, {112} and {123}, in ferrite of a dual phase steel. The critical resolved shear stress of all three slip plane families rises with increased strain rate. The strain rate sensitivity drops with increasing strain. Increasing strain rate does not reduce the number of activated slip systems, instead resulting in slip plane activation outside of that predicted by Schmid´s law. The activation volume of 13b³ to 16b³ suggests that the Peierl's process is the rate controlling mechanism in ferrite of DP800.
应变速率对DP800铁素体{110}、{112}、{123}滑移激活的影响
摘要采用微柱压缩法研究了应变速率对双相钢铁素体中{110}、{112}和{123}三个滑移面族活化的影响。三种滑移面族的临界分解剪应力均随应变速率的增大而增大。应变速率敏感性随应变的增加而降低。增加应变速率并不会减少激活滑移系统的数量,反而会导致滑移面激活超出施密德定律所预测的范围。13b³~ 16b³的活化体积表明,peerl过程是DP800铁氧体的速率控制机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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