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首页> 外文期刊>Journal of structural geology >Orientation-related deformation mechanisms of naturally deformed amphibole in amphibolite mylonites from the Diancang Shan, SW Yunnan, China
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Orientation-related deformation mechanisms of naturally deformed amphibole in amphibolite mylonites from the Diancang Shan, SW Yunnan, China

机译:云南西南苍山闪石岩my石中天然变形闪石的取向相关变形机制

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摘要

Sheared amphibolite rocks from Diancang Shan high-grade metamorphic complex along the Ailao Shan-Red River shear zone, southwestern Yunnan, China, show typical mylonitic microstructures. The mylonites are characterized by porphyroclastic microstructures and the ultramylonites are highly lineated with alternating amphibole- and quartzofeldspathic domains. Microstructural analysis and P/T estimation suggest that the amphibole grains in the mylonitic rocks are deformed and dynamically recrystallized at amphibolite facies.rnIn the mylonitic amphibolites, there are two types of amphibole porphyroclasts, i.e. type I "hard" and type II "soft" porphyroclasts. They have their [001] crystallographic orientations subnormal and sub-parallel to the stretching lineation of the rocks, respectively. The two types of porphyroclasts show distinct deformation microstructures and sub-microstructures formed by various deformation mechanisms, which contribute in different ways to the generation of the fine-grained matrix. Shape preferred orientation analysis, misorientation analysis of the two types of porphyroclasts and new fine grains around them further prove the generation of the fine grains in matrix from the type II porphyroclasts. The type I "hard" porphyroclasts are deformed mainly by mechanical rotation, work hardening and intragranular microfracturing. In contrast, the deformation of the type II "soft" porphyroclasts is mainly attributed to crystalline plasticity, i.e. twinning, dislocation creep and dynamic recrystallization. During the deformation of the type II porphyroclasts, the (100) [001] slip system plays a dominant role during deformation and grain size reduction of amphibole. Twinning along the active (100) slip system, in combination with dislocation creep (gliding and climbing) governs the nucleation of subgrains and formation of dynamically recrystallized fine grains, a process here named Twinning Nucleation Recrystallization.
机译:滇西南的哀牢山-红河剪切带的电仓山高级变质复合体中的剪断的角闪石岩,表现出典型的绵绵微结构。 mylonite的特征是具有卟啉碎屑微结构,ultramylonite高度衬有交替的角闪石和石英辉石域。显微组织分析和P / T估计表明,闪长岩中闪石的闪石变形并动态重结晶。在闪石闪石中,闪闪石有两种类型,即I型“硬”和II型“软”。卟啉。它们的[001]晶体学取向分别低于岩石的伸展线和垂直。两种卟啉具有不同的变形机制,形成了不同的变形微观结构和亚微观结构,它们以不同的方式促进了细粒基质的产生。两种类型的卟啉聚合物的形状偏好取向分析,取向错误分析以及它们周围的新细晶粒进一步证明了II型卟啉聚合物在基质中产生了细晶粒。 I型“硬”卟啉主要通过机械旋转,加工硬化和颗粒内微破裂而变形。相反,II型“软”卟啉的变形主要归因于结晶可塑性,即孪晶,位错蠕变和动态重结晶。在II型卟啉弹性体的变形过程中,(100)[001]滑移系统在角闪石的变形和晶粒尺寸减小中起主要作用。沿活动(100)滑移系统进行孪晶,并结合位错蠕变(滑动和爬升)控制亚晶粒的形核和动态重结晶的细晶粒的形成,此过程在此处称为“孪生形核重结晶”。

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