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首页> 外文期刊>Journal of Applied Physics >Determination of stacking fault probability in fcc Fe-Mn-Si-Al alloy by electron diffraction
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Determination of stacking fault probability in fcc Fe-Mn-Si-Al alloy by electron diffraction

机译:电子衍射测定fcc Fe-Mn-Si-Al合金堆垛层错概率

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The stacking disorder in the fcc structure of Fe-23Mn-2Si-2Al alloy after tensile testing at -75℃ was investigated by electron diffraction, using a relationship between the stacking fault probability and the shift of diffraction spots deduced in the present work (and based on Kakinoki's theory [Acta Crystallogr. 23, 875 (1967)] and Kajiwara's previous work [Jpn. J. Appl. Phys. 9, 385 (1970); J. Phys. Soc. Jpn. 22, 795 (1967)]). Shifts of diffraction spots along the [111] direction in the fcc structure were observed, and the stacking fault probabilities in two selected areas with different densities of stacking faults were determined as α=0.15 and α=0.35. The stacking fault probabilities measured by electron diffraction are much larger than average values determined by x-ray diffraction, indicating that the distribution of stacking faults is localized. A mechanism for the γ_(fcc)→ε_(hcp) transformation is suggested, whereby during deformation the following sequences take place: dissociation of perfect dislocation→localization of stacking faults → evolution from stacking disorder to stacking order→ the formation of the perfect hcp martensite (α= 1) or the hcp martensite with stacking faults (α→ 1). This proposed mechanism for strain-induced hcp martensite formation should be also applicable to the thermally induced hcp martensite.
机译:利用电子衍射技术研究了Fe-23Mn-2Si-2Al合金在-75℃拉伸试验后的fcc组织中的堆垛无序,利用堆垛层错概率与本研究推导的衍射点偏移之间的关系(和基于Kakinoki的理论[Acta Crystallogr。23,875(1967)]和Kajiwara的先前工作[Jpn。J. Appl。Phys。9,385(1970); J. Phys。Soc。Jpn。22,795(1967)] )。观察到fcc结构中衍射点沿[111]方向的移动,并且在两个具有不同堆积缺陷密度的选定区域中的堆积缺陷概率确定为α= 0.15和α= 0.35。通过电子衍射测得的堆垛层错概率远大于通过X射线衍射测得的平均值,表明堆垛层错的分布是局部的。提出了一种γ_(fcc)→ε_(hcp)变换的机制,从而在变形过程中发生以下顺序:完全错位的解离→堆垛层错的局部化→从堆垛无序到堆垛次序的演化→完美hcp的形成马氏体(α= 1)或具有堆垛层错(α→1)的hcp马氏体。所提出的应变诱导的hcp马氏体形成的机理也应适用于热诱导的hcp马氏体。

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