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Microstructures of Nickel Deformed by High Pressure Torsion to High Strains

机译:高压扭转变形为高应变镍的微观组织

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Microstructures of nickel deformed by the HPT up to strains of 12.0 have been examined by mean of transmission electron microscopy. Observations have been carried out in the longitudinal section for a proper demonstration of the structure morphology. A cell block structure delineated by extended planar boundaries has been clearly revealed over the strain range investigated. At low to medium strains (von Mises strain ε_(vM)M<1.0), the extended boundaries are often formed in two directions with respect to the shear direction; one is almost parallel to the shear direction, and the other is inclined at large angles to the shear direction. At strains ε_(vM)>2.5, the extended boundaries are almost parallel to the torsion plane, forming a typical lamellar structure. The evolution of the microstructural parameters, boundary spacing and misorientation, is similar to that observed during the conventional torsion or rolling deformation. That is, the spacing decreases and the misorientation increases with increasing strain. An average spacing of 76nm has been measured at the highest strain ε_(vM)=12.0, and no saturation in the spacing is seen. Two new structural features, deformation twins and equiaxed grains have also been observed to contribute to the structural refinement at high strains.
机译:通过透射电子显微镜已经检查了由HPT变形至12.0应变的镍的微观结构。在纵断面进行了观察,以正确证明结构形态。在研究的应变范围内,已经清楚地揭示了由延伸的平面边界描绘的细胞块结构。在低应变至中等应变(冯·米塞斯应变ε_(vM)M <1.0)时,延伸边界通常相对于剪切方向在两个方向上形成。一个与剪切方向几乎平行,另一个与剪切方向成大角度倾斜。在应变ε_(vM)> 2.5时,延伸的边界几乎平行于扭转平面,从而形成典型的层状结构。微观结构参数,边界间距和取向错误的演变与常规扭转或滚动变形过程中观察到的相似。即,随着应变的增加,间距减小并且取向错误增加。在最高应变ε_(vM)= 12.0时测得的平均间距为76nm,没有看到间距饱和。还观察到两个新的结构特征,形变孪晶和等轴晶,有助于高应变下的结构细化。

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