首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >Observations of grain size sensitive power law creep of olivine aggregates over a large range of lattice-preferred orientation strength
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Observations of grain size sensitive power law creep of olivine aggregates over a large range of lattice-preferred orientation strength

机译:大范围晶格优先取向强度下橄榄石聚集体的晶粒尺寸敏感幂律蠕变观察

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摘要

Grain size sensitive (GSS) power law creep of San Carlos olivine aggregates was investigated by comparing strain rates measured in laboratory deformation experiments to strain rates determined from a micromechanical model of intragranular dislocation processes. The plastic flow behavior of olivine aggregates due solely to intragranular slip was determined using flow laws for olivine single crystals in combination with grain orientations measured by electron backscatter diffraction. Measured strain rates were compared to results from the micromechanical model for samples deformed in compression to an axial strain of <0.2 and in torsion to a shear strain of up to 7.4. Olivine aggregates deform up to a factor of 4.6 times faster than the maximum possible rates determined from the micromechanical model of intragranular slip. Comparison of our data to published flow laws indicates that diffusion creep cannot account for this difference. The ratio of experimentally determined strain rates to those from the micromechanical model is strongly dependent upon grain size but is independent of stress and strength of lattice-preferred orientation. These observations indicate that GSS power law creep, consistent with dislocation-accommodated grain boundary sliding, occurs in both weakly and strongly textured olivine aggregates at the studied conditions.
机译:通过比较实验室变形实验中测得的应变率与由晶粒内位错过程的微力学模型确定的应变率,研究了圣卡洛斯橄榄石聚集体的粒度敏感(GSS)幂律蠕变。使用橄榄石单晶的流动定律结合通过电子背散射衍射测量的晶粒取向,确定了仅由颗粒内滑移引起的橄榄石聚集体的塑性流动行为。将测得的应变率与微机械模型的结果进行比较,该模型的样品在压缩时变形为轴向应力<0.2,在扭转时变形为剪切力高达7.4。橄榄石聚集体的变形速度比根据颗粒内滑移的微机械模型确定的最大可能速率快4.6倍。将我们的数据与已发布的流量定律进行比较表明,扩散蠕变无法解决这一差异。实验确定的应变率与微机械模型的应变率之比在很大程度上取决于晶粒大小,但与应力和晶格优先取向的强度无关。这些观察结果表明,在研究条件下,在弱和强织构的橄榄石聚集体中均发生了GSS幂律蠕变,这与位错适应的晶界滑动一致。

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