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首页> 外文期刊>Journal of Korean Institute of Metal and Materials >Tempering Characteristics of Martensitic Fe-l6Cr-5Ni-0.06C-(0.lNb) Stainless Steels II. Microstructural Evolution and Crystallography of Reverted Austenite
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Tempering Characteristics of Martensitic Fe-l6Cr-5Ni-0.06C-(0.lNb) Stainless Steels II. Microstructural Evolution and Crystallography of Reverted Austenite

机译:马氏体Fe-16Cr-5Ni-0.06C-(0.1Nb)不锈钢的回火特性II。还原奥氏体的组织演变和晶体学

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摘要

Microstructural evolution of martensitic Fe-l6Cr-5Ni-O0.06C-(0.1Nb) stainless steels during tempering were investigated utilizing scanning electron microscopy and transmission electron microscopy. The microstructure consists of tempered martensite laths together with reverted austenite, delta ferrite and some carbides. On tempering above 500 deg C, the lath-like reverted austenite formed preferentially at martensite lath boundaries and grew along lath boundaries, showing mainly K-S orientation relationship with matrix. Another type of reverted austenite, namely granular austenite, containing very low density of defects and twin was also hind in higher tempering temperatures and the orientation relationship with matrix was found to be N-W relation. In both specimens with and without Nb, M_(23)C_6 carbide precipitates along the martensite / reverted austenite boundaries or in the lath interior. On the other hand, in Nb containing specimen tempered above 550 deg C, very fine, spherical NbC carbides are also observed in the martensite lath interior, and this type of carbide presumably contribute to the small decrease of strength in tempering temperature between 500 and 620 deg C, as shown in previous paper.
机译:利用扫描电子显微镜和透射电子显微镜研究了马氏体Fe-16Cr-5Ni-O0.06C-(0.1Nb)不锈钢在回火过程中的组织演变。显微组织由回火的马氏体板条以及还原的奥氏体,δ铁素体和一些碳化物组成。在500℃以上回火时,板条状的奥氏体优先在马氏体板条边界形成并沿板条边界生长,主要表现出与基体的K-S取向关系。在较高的回火温度下,另一种类型的还原奥氏体,即粒状奥氏体,其缺陷密度非常低,并且孪晶也受到阻碍,并且发现与基体的取向关系为N-W关系。在具有和不具有Nb的两个试样中,M_(23)C_6碳化物均沿马氏体/返奥氏体边界或板条内部析出。另一方面,在550℃以上回火的含Nb试样中,在马氏体板条内部也观察到非常细的球形NbC碳化物,并且这种类型的碳化物大概有助于在500至620之间的回火温度下强度略有下降。 ℃,如前文所示。

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