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Relative strength of mafic and felsic rocks during amphibolite facies metamorphism and deformation

机译:镁铁质和长英质岩石在闪石相变质和变形过程中的相对强度

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摘要

Field observations of mafic dykes intruded into felsic rocks from the Lewisian Complex, NW Scotland, suggest that the mafic rocks are weaker than the felsic ones, contrary to experimental results. In order to resolve this conflict, samples were studied to constrain the deformation mechanisms active under amphibolite facies conditions. Crystallographic preferred orientation (CPO) in plagioclase is used to infer deformation by dislocation creep on the (112)[l10], (112)[110], (001)[110], and (001)[110] slip systems. With increasing strain, this CPO became weaker due to grain-boundary sliding that accompanied diffusion creep. In rocks where grain size reduction of plagioclase occurred by chemically-dominated recrystallisation there is no CPO suggesting deformation was wholly accommodated by diffusion creep and grain-boundary sliding. In metamorphosed dykes, plagioclase grains have orientations that are not consistent with dislocation creep deformation. Amphibole has a CPO consistent with either dislocation creep on {100}<001> or deformation by diffusion creep with anisotropic dissolution and precipitation rates. It is inferred that metamorphism of the dykes lead to the production of fine-grained amphibole and plagioclase, both of which deform by diffusion creep, but that anisotropic dissolution and precipitation in the amphibole produced a CPO. The mafic dykes are weaker than the felsic gneisses because grain size reduction is more extreme in the dykes even though both may be deforming primarily by grain size sensitive mechanisms. This work highlights the variation in processes active in polyphase rocks and how these can lead to variations in CPO of the same mineral among different rock types.
机译:与实验结果相反,对来自西北苏格兰的刘易斯综合体侵入铁质岩质的铁镁质岩岩的野外观察表明,铁质岩质岩质比铁质岩质弱。为了解决该冲突,研究了样品以限制在角闪石相条件下有效的变形机制。斜长石中的晶体学优选取向(CPO)用于通过(112)[110],(112)[110],(001)[110]和(001)[110]滑移系统上的位错蠕变来推断变形。随着应变的增加,由于伴随扩散蠕变的晶界滑动,该CPO变得更弱。在通过化学控制的再结晶使斜长石的晶粒尺寸减小的岩石中,没有CPO表示变形完全被扩散蠕变和晶界滑动所吸收。在变质堤中,斜长石晶粒的取向与位错蠕变变形不一致。角闪石的CPO与{100} <001>上的位错蠕变或具有各向异性溶解和沉淀速率的扩散蠕变引起的形变一致。可以推断,堤坝的变质导致了细粒的闪石和斜长石的产生,它们都因扩散蠕变而变形,但是在闪石中各向异性的溶解和沉淀产生了CPO。铁镁质岩脉要比长英质片麻岩弱,这是因为尽管两个岩脉都可能主要是通过对粒径敏感的机制而变形,但在这些岩脉中粒径减小的程度更为极端。这项工作强调了多相岩石中活跃过程的变化以及这些变化如何导致不同岩石类型中同一矿物的CPO变化。

著录项

  • 来源
    《Journal of structural geology》 |2011年第4期|p.662-675|共14页
  • 作者单位

    Geospatial Research Ltd., Department of Earth Science, University of Durham, Durham DM 3LE, UK;

    Department of Earth and Ocean Sciences, University of Liverpool, Liverpool 169 3GP, UK;

    Department of Earth and Ocean Sciences, University of Liverpool, Liverpool 169 3GP, UK;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Plagioclase; Amphibole; Deformation; EBSD;

    机译:斜长石;闪石;变形;EBSD;

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