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首页> 外文期刊>International Geology Review >Progressive deformation across a ductile shear zone: an example from the Singhbhum Shear Zone, eastern India
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Progressive deformation across a ductile shear zone: an example from the Singhbhum Shear Zone, eastern India

机译:韧性剪切带上的渐进变形:以印度东部的Singhbhum剪切带为例

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Structural investigations in the Precambrian Singhbhum Shear Zone of eastern India document an intimate relationship between micro- to meso-scale structures and the deformation history. Shear zone rocks are characterized by composite foliation, a well-developed stretching lineation, folds, shear planes, and quartz veins. These structures reflect thrusting of the Proterozoic north Singhbhum hanging wall block over the Archaean south Singhbhum footwall block. Microstructural analysis of multiple foliation and mylonitic rocks within the shear zone helps to define its progressive evolution. During progressive deformation, overprinting of microstructures resulted in incomplete transposition or complete erasing of previously formed structures and mineral assemblages, allowing room for new dynamic equilibrium structures to form. The dominant deformation mechanism was dissolution-recrystallization, with locally important fluid circulation responsible for transformation of the quartzo-feldspathic mass into phyllonite, and quartzites and schists into mylonite. Textural features suggest that the bulk deformation was non-coaxial, evolving from dominant pure shear in the early stage followed by simple shear in a single progressive strain history of the Singhbhum Shear Zone.
机译:印度东部前寒武纪的辛格布姆剪切带的结构研究表明,微观到中等尺度的结构与变形历史之间有着密切的关系。剪切带岩石的特征是复合页岩,发育良好的伸展线,褶皱,剪切面和石英脉。这些结构反映了元古生代北部Singhbhum悬墙墙块在古生界南部Singhbhum下盘墙块上方的推力。对剪切带内的多片叶状和似棉质岩石的微观结构分析有助于确定其渐进演化。在渐进变形过程中,微结构的叠印导致先前形成的结构和矿物集合体的不完全置换或完全擦除,从而为形成新的动态平衡结构提供了空间。主要的变形机制是溶解-再结晶,局部重要的流体循环负责将石英长石质转变为菲纶石,而石英岩和片岩转变为my石。纹理特征表明,整体变形是非同轴的,从早期的主要纯剪切开始,然后在Singhbhum剪切带的单个渐进应变历史中,由简单剪切演变而来。

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