首页> 外文期刊>Journal of structural geology >Strain localization in homogeneous granite near the brittle- ductile transition: A case study of the Kellyland fault zone, Maine, USA
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Strain localization in homogeneous granite near the brittle- ductile transition: A case study of the Kellyland fault zone, Maine, USA

机译:脆性-韧性转变附近均质花岗岩中的应变局部化:以美国缅因州凯利兰断裂带为例

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摘要

We present a detailed case study of a strike-slip shear zone that cut homogeneous granite near the brittle -ductile transition. This zone contains three distinct strain facies: (1) a 2-3-km-wide belt of foliated granite, (2) a 100-300-m-wide belt of small localized shear zones, and (3) a 200-400-m-wide belt of ultramylonite that includes both homogeneous and local pinstripe ultramylonites. The foliated granite formed via dislocation creep of quartz and minor dissolution-precipitation creep and dislocation creep of feldspar under amphibolite-facies conditions shortly after granite crystallization. The localized shear zones and homogeneous ultramylonites formed directly from pseudotachylyte and cataclasite, and they deformed by granular flow-grain-boundary sliding coupled with dissolution-precipitation creep. These deformation features reveal a three-phase rheologic evolution in granite near the brittle-ductile transition. Phase 1 is recorded by the foliated granite, and the rheology was governed by dislocation creep of quartz. Phase 2 was a transient period of brittle deformation and represents a temporal strength maxima in the fault zone. Phase 3 was a long-lived period of ductile deformation, and the rheology was governed by the granular flow mechanism. Strain weakening in this zone was a direct result of grain size reduction and phase mixing during transient brittle deformation.
机译:我们提出了一个走滑剪切带的详细案例研究,该带剪切了脆性-韧性过渡附近的均质花岗岩。该区域包含三个不同的应变相:(1)一段2-3公里宽的叶状花岗岩带;(2)一条100-300-m宽的小型局部剪切带带;(3)一条200-400 -m宽的超丝滑石带,包括均质和局部细条纹超丝滑石。花岗岩结晶后不久,在闪石岩相条件下,石英的位错蠕变和长石的少量溶解-沉淀蠕变和长石的位错蠕变形成了叶状花岗岩。局部剪切带和均一的超淀粉岩直接由假速溶质和凯莱石形成,它们通过颗粒状的流-粒边界滑动和溶解-沉淀蠕变而变形。这些变形特征揭示了在脆性-延性转变附近的花岗岩中的三相流变演化。阶段1由叶状花岗岩记录,流变受石英的位错蠕变控制。第二阶段是脆性变形的过渡时期,代表断层带的瞬时强度最大值。 3相是韧性变形的长寿命周期,流变学受颗粒流动机理支配。该区域的应变弱化是瞬态脆性变形过程中晶粒尺寸减小和相混合的直接结果。

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