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首页> 外文期刊>ISIJ international >Abstracts of the papers published in Tetsu-to-Hagane Vol. 102 (2016), No. 5
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Abstracts of the papers published in Tetsu-to-Hagane Vol. 102 (2016), No. 5

机译:Tetsu-to-Hagane卷上发表的论文摘要。 102(2016),第5号

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摘要

We studied damage evolution behavior associated with £-martensite in a Fe-28Mn alloy. Visible factors of damage evolution associated with £-martensite are considered to be strain distribution, microstructure, micro-void and crack. Combinatorial use of replica digital image correlation, electron backscattering diffraction, and electron channeling contrast imaging enables to clarify the distributions of strain, microstructure and damage. Through quantitative damage analysis, damage evolution behavior was classified into three regimes: (ⅰ) incubation regime, (ⅱ) nucleation regime, and (ⅲ) growth regime. In the incubation regime, an interaction of ε/ε-martensite plates and impingement of e-martensite plates on grain boundaries caused plastic strain localization owing to plastic accommodation. In the nucleation regime, accumulation of the plastic strain on the boundaries caused microvoid formation. The damage propagated along with the boundaries through coalescence with other micro-voids, but the propagation was arrested by crack blunting at non-transformed austenite. In the growth regime, the arrested damage grew again when a further plastic strain was provided sufficiently to initiate e-martensite near the damage.
机译:我们研究了与Fe-28Mn合金中马氏体有关的损伤演化行为。与马氏体有关的破坏演变的可见因素被认为是应变分布,微观结构,微孔和裂纹。副本数字图像相关性,电子反向散射衍射和电子通道对比度成像的组合使用可以阐明应变,微观结构和损伤的分布。通过定量损伤分析,将损伤演化行为分为三种状态:(ⅰ)孵化状态,(ⅱ)成核状态和(ⅲ)生长状态。在温育过程中,ε/ε-马氏体板的相互作用和电子-马氏体板在晶界上的碰撞由于塑性调节而引起了塑性应变局部化。在成核状态下,塑性应变在边界上的积累引起微孔的形成。损伤通过与其他微孔的结合而沿着边界传播,但是这种传播被未转变的奥氏体处的裂纹钝化所阻止。在生长过程中,当进一步提供足够的塑性应变以在损害附近引发电子马氏体时,被捕的损害再次增加。

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  • 来源
    《ISIJ international》 |2016年第5期|A.10-A.11|共2页
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  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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