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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: 2. Grain boundary sliding-induced grain rotation and its role in crystallographic preferred orientation in rocks
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Grain- to multiple-grain-scale deformation processes during diffusion creep of forsterite plus diopside aggregate: 2. Grain boundary sliding-induced grain rotation and its role in crystallographic preferred orientation in rocks

机译:谷物 - 多粒尺度变形过程在叉段加衍生物聚集体的扩散蠕变期间:2。晶界滑动诱导的晶粒旋转及其在岩石中晶体优选取向的作用

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Polycrystalline samples composed of either tabular or equiaxed forsterite grains + diopside (5 and 20 vol %) were deformed with a grid etched onto the lateral surface. In Part 1 of this study, we identified grain boundary sliding (GBS) and rigid body-like grain rotation during deformation by diffusion creep where samples with tabular forsterite grains were shown to develop low-index plane grain boundaries that result in crystallographic preferred orientation (CPO). Here we examine how grain rotation depends on the sample strain, grain size, phases, grain shapes, and orientations relative to the compression axis and long axes of tabular forsterite grains. Based on these results, we model grain rotation due to GBS that occurs preferentially along low-index plane boundaries. The model reproduces all of the characteristics of grain rotation and together with the observed grain rotation rates in tabular and equiaxed grain samples, we estimate that low-index plane boundaries have a lower viscosity by a factor of similar to 3 relative to general grain boundaries, which results in the development of CPO during diffusion creep. The observed constant rotation rate of similar to 0.4 (radian/strain) in equiaxed-grain samples and in tabular-grain samples deformed to a strain of >0.5 is considered to be a minimum and further, a material-independent rotation rate during diffusion creep, indicating grain rotation as a primary microprocess during diffusion creep. We discuss the possible consequences of GBS-induced grain rotation and CPO development in rock microstructure and the seismic properties of the Earth's mantle.
机译:由表格或等轴的Forsterite晶粒+透过液(5和20Vol%)组成的多晶样品用蚀刻到侧表面上的栅格变形。在这项研究中的第1部分,我们确定了晶界滑移(GBS)和刚体状其中具有片状镁橄榄石颗粒样品所示,开发低指数平面晶界扩散蠕变变形时的晶粒旋转该结果在晶体优选取向( CPO)。在这里,我们检查谷粒旋转如何取决于样品应变,粒度,阶段,晶粒形状和相对于压缩轴线和表格叉脂颗粒的长轴的方向。基于这些结果,我们由于GBS沿低指数平面边界而优先发生的GBS模型。该模型再现晶粒旋转的所有特征,以及表格和等式晶粒样品中观察到的晶粒旋转速率,我们估计低指数平面边界具有相对于一般晶界相似的粘度较低的粘度。这导致扩散蠕变期间CPO的发展。观察到的恒定旋转速率与等轴样品中的0.4(弧度/菌株)和变形为> 0.5应变的表格晶粒样品被认为是最小的,并且在扩散蠕变期间的材料无关的旋转速率,表示在扩散蠕变期间作为初级微处理的晶粒旋转。我们讨论了GBS诱导的晶粒旋转和CPO开发在地球罩的地震性质中的可能后果。

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