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Rheological contrast between glaucophane and lawsonite in naturally deformed blueschist from Diablo Range, California

机译:加利福尼亚暗黑破坏神山脉自然变形blueschist中葡甲醚和钙钠榴石的流变对比

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Deformation microstructures for a lawsonite blueschist from the New Idria serpentinite body, Diablo Range, are investigated to clarify rheological behaviors of glaucophane and lawsonite, which are main mineral assemblages of subducting oceanic crust at relatively cold geotherm. Developments of crystal-preferred orientations (CPOs) with small grain size, irregular grain boundary and high aspect ratio of glaucophane indicate deformation mechanism as recovery and dynamic recrystallization possibly accommodated by dislocation creep, while lawsonite deforms by rigid body rotation based on euhedral grains with angular or straight grain boundaries. Higher aspect ratios, lower angle to foliation, and stronger CPOs of both minerals in the glaucophane-rich layer rather than those in the lawsonite-rich layer suggest the strain localization into the glaucophane-rich layer. Additionally fabric strength (the degree of crystal alignment) and seismic anisotropy are higher in the glaucophane-rich layer than that of the lawsonite-rich layer, which is consistent with the microstructural analyses. All our results imply, therefore, the dominant role of glaucophane rather than lawsonite for rheological behavior and seismic anisotropy of blueschist.
机译:研究了来自新爱德里亚蛇纹石岩体暗黑破坏神山脉中的钙钠榴石蓝晶岩的形变微观结构,以阐明在相对较冷的地热下俯冲洋壳的主要矿物组合-葡甲醚和钙钠榴石的流变行为。具有小晶粒尺寸,不规则晶界和高葡聚糖长径比的晶体优先取向(CPO)的发展表明变形机制是位错蠕变可能适应了恢复和动态再结晶,而钙钠锰矿则基于具有角形的本征晶粒通过刚体旋转而变形。或直的晶界。富高葡聚糖层中的两种矿物的纵横比较高,叶面夹角较小,并且两种矿物的CPO均强于富钙钠铝石层中的矿物,这表明应变局限在富高葡聚糖层中。另外,富葡聚糖层中的织物强度(晶体取向度)和地震各向异性高于富钙钠铝石层中的织物强度,这与微观结构分析一致。因此,我们的所有结果都表明,在蓝胶岩的流变行为和地震各向异性中,葡甲双胍而不是钙钠铝石起着主导作用。

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