Microstructural characterization of API 5L X65 and X70 steels manufactured by TMCP process

Luan Mayk Tôrres Costa, Gudson Nicolau de Melo, N. A. Castro, A. Buschinelli
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Abstract

This work shows the microstructural characterization of API-5L X65 and X70 steels manufactured by the TMCP process. Images are obtained by optical microscopy (OM), scanning electron microscopy (FEG-SEM) and atomic force microscopy (AFM). Besides, the EBSD technique pointed out that both samples are presenting a refined quasi-polygonal ferrite matrix with eutectoid aggregates in the contours and vertices of ferritic grains. Moreover, a grain size of 8.4 μm is estimated for X70 and 10.6 μm for X65 steel. In the AFM images, eutectoid aggregates displayed higher relief concerning the ferrite matrix, and these microconstituents’ higher hardness causes them. This behavior is in agreement with the results of the Vickers Hardness test. EBSD showed that the quantity of microphases in the X65 is slightly higher than in the X70. However, the X70 steel presented higher high and low angle lengths due to the greater refinement and stronger cooling rates applied during processing. The Vickers test showed that the ferrite hardness is similar for both steels. This same behavior is verified for the Vickers test in eutectoid aggregates. It indicates that the higher strength of X70 sample is mainly a consequence of the finer microstructure.
TMCP法制备API 5L X65和X70钢的显微组织表征
本文研究了采用TMCP工艺制备的API-5L X65和X70钢的显微组织特征。图像由光学显微镜(OM),扫描电子显微镜(fg - sem)和原子力显微镜(AFM)获得。此外,EBSD技术指出,两种样品都呈现出一种细化的准多边形铁素体基体,铁素体晶粒的轮廓和顶点都有共析聚集体。此外,X70和X65钢的晶粒尺寸分别为8.4 μm和10.6 μm。在AFM图像中,共析聚集体在铁素体基体上表现出较高的起伏,这是由于这些微观成分的较高硬度造成的。这种行为与维氏硬度试验的结果是一致的。EBSD显示,X65的微相数量略高于X70。然而,由于在加工过程中使用了更大的细化和更强的冷却速率,X70钢呈现出更高的高低角长度。维氏试验表明,两种钢的铁素体硬度相似。在共析聚集体的维氏试验中也证实了同样的行为。结果表明,X70试样强度的提高主要是由于其微观组织的细化。
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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