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Evolution of Microstructural Properties in Sheared Iron-Rich Olivine

机译:剪切铁富橄榄石微观结构性能的演变

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Iron-rich olivine is mechanically weaker than olivine of mantle composition, ca. Fo(90), and thus is more amenable to study under a wide range of laboratory conditions. To investigate the effects of iron content on deformation-produced crystallographic preferred orientation (CPO) and grain size, we analyzed the microstructures of olivine samples with compositions of Fo(70), Fo(50), and Fo(0) that were deformed in torsion under either anhydrous or hydrous conditions at 300 MPa. Electron backscatter diffraction (EBSD) observations reveal a transition in CPO from D-type fabric, induced by dislocation glide on both the (010)[100] and the (001)[100] slip systems, at low strains, to A-type fabric, caused by dislocation glide on the (010)[100] slip system, at high strains for all of our samples, independent of iron content and hydrous/anhydrous conditions. A similar evolution of fabric with increasing strain is also reported to occur for Fo(90). Radial seismic anisotropy increases with increasing strain, reaching a maximum value of similar to 1.15 at a shear strain of similar to 3.5 for each sample, demonstrating that the seismic anisotropy of naturally deformed olivine-rich rocks can be well approximated by that of iron-rich olivine. Based on EBSD observations, we derived a piezometer for which recrystallized grain size decreases inversely with stress to the similar to 1.2 power. Also, recrystallized grain size increases with increasing iron content. Our experimental results contribute to understanding the microstructural evolution in the mantle of not only Earth but also Mars, where the iron content in olivine is higher.
机译:富铁橄榄石的机械强度弱于地幔成分的橄榄石,约为Fo(90),因此更适合在广泛的实验室条件下进行研究。为了研究铁含量对变形产生的晶体择优取向(CPO)和晶粒尺寸的影响,我们分析了组成为Fo(70)、Fo(50)和Fo(0)的橄榄石样品的微观结构,这些样品在300 MPa的无水或含水条件下扭转变形。电子背散射衍射(EBSD)观察揭示了CPO从(010)[100]和(001)[100]滑移系统在低应变下的位错滑移引起的D型组构向a型组构的转变,这是由(010)[100]滑移系统在高应变下的位错滑移引起的,与铁含量和含水/无水条件无关。据报道,Fo(90)也发生了类似的织物随应变增加的演变。径向地震各向异性随着应变的增加而增加,当每个样品的剪切应变为3.5时,达到了类似于1.15的最大值,这表明自然变形富橄榄石岩石的地震各向异性可以很好地近似于富铁橄榄石的地震各向异性。基于EBSD观测,我们推导出了一种压力计,其再结晶晶粒尺寸与应力成反比减小,类似于1.2次方。此外,再结晶晶粒尺寸随着铁含量的增加而增加。我们的实验结果不仅有助于理解地球地幔的微观结构演化,而且有助于理解橄榄石中铁含量较高的火星地幔的微观结构演化。

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