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In situ heating TEM observations on carbide formation and α-Fe recrystallization in twinned martensite

机译:原位加热TEM对孪晶马氏体中碳化物形成和α-Fe重结晶的观察

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The microstructural evolution of twinned martensite in water-quenched Fe–1.6?C (wt.%) alloys upon in situ heating was investigated using transmission electron microscopy (TEM). In the as-quenched samples, a high density of a body-centred cubic (bcc) {112} 〈111〉 -type twinning structure exists in the martensite structure. Upon in situ heating to approximately 200–250?°C, carbides (mainly θ-Fe3C cementite) accompanying a detwinning process were observed only in the originally twinned region. The carbides were absent in the originally untwinned (twin-free) region. The experimental results have suggested that the formation of the carbides depends on the twinning-boundary ω-Fe metastable phase, which can be stabilised by interstitial carbon atoms. When the specimens were heated, the twinning-boundary ω-Fe(C) transformed into carbide (mainly θ-Fe3C cementite) particles on the original {112} twinning planes. Further heating resulted in substantial recrystallisation of α-Fe fine particles, which formed immediately after martensite transformation. The results presented here should be helpful in understanding the microstructural evolution of various carbon steels.
机译:使用透射电子显微镜(TEM)研究了水淬的Fe–1.6?C(wt。%)合金中原位加热后孪晶马氏体的微观组织演变。在淬火后的样品中,马氏体结构中存在高密度的体心立方(bcc){112}& 111&型孪晶结构。在原位加热到大约200–250°C时,仅在最初的孪晶区域中观察到伴随脱晶过程的碳化物(主要是θ-Fe3C渗碳体)。在最初未缠绕(无孪晶)的区域不存在碳化物。实验结果表明,碳化物的形成取决于孪晶边界的ω-Fe亚稳相,该相可以通过间隙碳原子来稳定。当样品被加热时,孪晶边界ω-Fe(C)在原始{112}孪晶面上转变成碳化物(主要是θ-Fe3C渗碳体)颗粒。进一步加热导致α-Fe细颗粒大量重结晶,该结晶在马氏体转变后立即形成。此处给出的结果应有助于理解各种碳钢的组织演变。

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