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Development of a shear band cleavage as a result of strain partitioning

机译:应变分配导致剪切带断裂的发展

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Microstructural analyses of shear band cleavages in a centimeter-scale shear zone within a metasomatic biotite band in the Teshima granite, Ryoke metamorphic belt, southwest Japan, show that strain partitioning occurred between quartz and biotite-feldspar domains within the shear zone. Pre-tectonic hydrothermal alteration within the granite caused biotite replacement of both plagioclase and K-feldspar, resulting in the development of biotite-feldspar domains where K-feldspar mantles dominantly biotite-plagioclase aggregates. Subsequently, the altered granite was plastically deformed in simple shear, so that intra-layer shear band cleavages were passively developed within the biotite-feldspar domains, whereas intense dynamic recrystallization occurred in the quartz domains. The rotation and orientation of the intra-layer shear band cleavages can be explained by a finite strain ellipse model, which shows that strain in the biotite-feldspar domain requires only 10-20% of the bulk simple shear strain for the development of such cleavages, so that most of strain could be accommodated by deformation in the quartz domain. Consequently, the model suggests that the development of the shear zone resulted in strain partitioning between the quartz and the biotite-feldspar domains due to compositional variations via hydrothermal alteration within the granite.
机译:在日本西南部Ryoke变质带的Teshima花岗岩的交代黑云母带内厘米级剪切带内的剪切带分裂的显微结构分析表明,应变分配发生在剪切带内的石英和黑云母-长石域之间。花岗岩内部的构造前热液蚀变导致斜长石和钾长石都被黑云母替代,从而导致了黑长石长石域的发展,其中钾长石的地幔以黑云母斜长石聚集为主。随后,蚀变后的花岗岩在简单剪切作用下发生塑性变形,从而在黑云母-长石域内被动发展了层内剪切带分裂,而在石英域内发生了强烈的动态重结晶。层内剪切带分裂的旋转和方向可以通过有限应变椭圆模型来解释,该模型表明,在黑云母-长石域中的应变只需要10-20%的整体简单剪切应变即可进行此类分裂。 ,因此大部分应变可以通过石英域中的变形来承受。因此,该模型表明,剪切带的发展导致了石英和黑云母-长石域之间的应变分配,这是由于花岗岩内部水热蚀变引起的成分变化所致。

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