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Growth and deformation mechanisms of talc along a natural fault: a microanostructural investigation

机译:滑石沿自然断层的生长和变形机制:微观/纳米结构研究

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This paper documents the occurrence of large amounts of talc within a continental normal fault. The talc-in reaction is deformation-enhanced and occurs by the interaction between dolostones and silica-rich hydrother-mal fluids. In the high-strain, foliated fault core, talc forms an interconnected network of oriented (001) lamellae, 200-300 nm thick, locally associated with minor tremolite fibres, up to 300 nm in diameter. The talc structure is affected by several strain-induced defects, among which (001) interlayer delamination that produces talc "subla-mellae" down to 10-30 nm thick. Microanostructural observations definitely point to a predominant deformation mechanism of (001) frictional sliding, further enhanced by pervasive delamination that gives rise to an almost infinite number of possible sliding surfaces. These effects have fundamental implications in fault mechanics, resulting in significant fault weakening.
机译:本文记录了大陆正断层中大量滑石的发生。滑石引入反应增强了变形,并通过白云岩与富含二氧化硅的水热流体之间的相互作用而发生。在高应变的叶状断层岩心中,滑石形成了一个定向的(001)薄片的互连网络,该薄片的厚度为200-300 nm,局部与直径不超过300 nm的次透闪石纤维相关。滑石结构受到几种应变诱发的缺陷的影响,其中(001)层间分层会产生滑石“ sub-mellae”,厚度低至10-30 nm。微观/纳米结构的观察结果明确指出了(001)摩擦滑动的主要变形机理,并通过普遍分层进一步增强,这种分层产生了几乎无限数量的可能滑动表面。这些影响对故障力学具有根本的影响,从而导致严重的故障减弱。

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