首页> 外文期刊>Journal of Geophysical Research. Biogeosciences >Grain- to multiple-grain-scale deformation processes during diffusion creep of forsterite plus diopside aggregate: 1. Direct observations
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Grain- to multiple-grain-scale deformation processes during diffusion creep of forsterite plus diopside aggregate: 1. Direct observations

机译:谷物到多粒尺度变形过程在扩散蠕变的流星型加致杜普旁合骨料中:1。直接观察

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We uniaxially deformed fine-grained (similar to 1 mu) forsterite + diopside (5 and 20vol %) aggregates in the diffusion creep regime. Prior to deformation, line markers were milled on a lateral surface of a cylindrical sample to detect single- to multiple-grain-scale deformation. We performed deformation experiments and observations of the marker-etched surface after sample cooling multiple times on the same specimens. The strain measured at the scale of several tens of grains from macroscopic shortening of the markers parallel to the compression axis is consistent with the total strain of the sample. However, microscopically, the markers are intensely segmented and rotated at the grain scale increasing with the sample strain. Meanwhile, essentially, no deformation is observed within the grains in most of the samples. The surface microstructures, including the deformation of the markers, reveal the serial operations of grain boundary migration, grain boundary sliding, rigid body grain rotation, and grain neighbor switching, which correspond well to processes expected in diffusion-controlled superplasticity. This sequence is commonly observed in both samples consisting of forsterite grains of tabular and equiaxed grain shapes, which have been shown to develop notable crystallographic preferred orientation (CPO) and random (or weak) CPO, respectively, during diffusion creep. Intragranular regions of relatively larger forsterite grains in the specimens deformed at stresses near the transition between deformation mechanisms from diffusion creep to dislocation creep reveal marker deformation and formation of surface creases and subgrain boundaries, which indicate intragranular dislocation processes. Overall, the surface microstructures reflect the deformation state of the materials well.
机译:在扩散蠕变状态下,我们在单轴变形细粒(类似于1μm)的细粒(类似于1μm)的颗粒+偶极旁(5和20Vol%)。在变形之前,将线标记在圆柱形样品的侧表面上研磨以检测单粒度尺度变形。我们在同一样品上多次冷却后进行了变形实验和对标记蚀刻表面的观察结果。从平行于压缩轴线的标记的宏观调节以几十颗粒的刻度测量的应变与样品的总菌株一致。然而,显微镜地,标记在随着样品菌株的增加时,标记被强烈分割并旋转。同时,基本上,大部分样品中的颗粒内没有观察到变形。包括标记物的变形,包括标记的变形,揭示了晶界迁移,晶界滑动,刚性体粒旋转和谷物邻接切换的串行操作,这对应于漫射控制的超塑性中的过程。在由片状和等式晶粒形状组成的两种样品中通常观察到该序列,这些样品和等式晶粒形状组成的两种样品,这些样品分别在扩散蠕变期间分别显示出显着的结晶优选取向(CPO)和随机(或弱)CPO。在从扩散蠕变的变形机制之间的转变的胁迫下变形的标本中相对较大的叉座晶粒在从扩散蠕变到位错蠕变,揭示标记变形和表面折血的形成,以及构级边界,这表明了腔内位错程。总的来说,表面微结构阱反映了材料的变形状态。

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