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首页> 外文期刊>Journal of Microscopy >EBSD study of the orientation dependence of substructure characteristics in a model Fe-30wt%Ni alloy subjected to hot deformation.
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EBSD study of the orientation dependence of substructure characteristics in a model Fe-30wt%Ni alloy subjected to hot deformation.

机译:EBSD研究了热变形的Fe-30wt%Ni合金模型中子结构特征的取向依赖性。

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The aim of the present investigation was to determine the orientation dependence of substructure characteristics in an austenitic Fe-30wt%Ni model alloy subjected to hot plane strain compression. Deformation was carried out at a temperature of 950 degrees C using a strain rate of 10 s(-1) to equivalent strain levels of approximately 0.2, 0.4, 0.6 and 0.8. The specimens obtained were analysed using a fully automatic electron backscatter diffraction technique. The crystallographic texture was characterized for all the strain levels studied and the subgrain structure was quantified in detail at a strain of 0.4. The substructure characteristics displayed pronounced orientation dependence. The major texture components, namely the copper, S, brass, Goss and rotated Goss, generally contained one or two prominent families of parallel larger-angle extended subboundaries, the traces of which on the longitudinal viewing plane appeared systematically aligned along the {111} slip plane traces, bounding long microbands subdivided into slightly elongated subgrains by short lower-angle transverse subboundaries. Relatively rare cube-orientated grains displayed pronounced subdivision into coarse deformation bands containing large, low-misorientated subgrains. The misorientation vectors across subboundaries largely showed a tendency to cluster around the sample transverse direction. Apart from the rotated Goss texture component, the stored energy levels for the remaining components were principally consistent with the corresponding Taylor factor values.
机译:本研究的目的是确定经受热平面应变压缩的奥氏体Fe-30wt%Ni模型合金中亚结构特征的取向依赖性。变形是在950摄氏度的温度下使用10 s(-1)的应变速率进行的,等效应变水平约为0.2、0.4、0.6和0.8。使用全自动电子背散射衍射技术分析获得的样品。表征了所研究的所有应变水平的晶体织构,并详细量化了应变为0.4时的亚晶粒结构。子结构特征显示出明显的取向依赖性。主要的纹理成分,即铜,S,黄铜,戈斯和旋转的戈斯,通常包含一两个显着的平行的大角度扩展子边界族,其痕迹在纵向观察平面上似乎沿着{111}系统地对齐滑动平面迹线,将长微带界定为短的下角横向子边界,再细分为稍长的子颗粒。相对稀疏的立方体取向晶粒显示出明显的细分,形成了粗大的变形带,其中包含大的,低取向的亚晶粒。跨子边界的方向错误的矢量在很大程度上显示了在样品横向方向上聚集的趋势。除了旋转的高斯纹理分量外,其余分量的存储能量水平基本上与相应的泰勒因子值一致。

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