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首页> 外文期刊>Journal of Metamorphic Geology >The interaction between reaction and deformation: an experimental study using a biotite plus plagioclase plus quartz gneiss
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The interaction between reaction and deformation: an experimental study using a biotite plus plagioclase plus quartz gneiss

机译:反应与变形之间的相互作用:使用黑云母加上斜长石加上石英片麻岩进行的实验研究

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Metamorphic reactions commonly accompany ductile deformation of crustal rocks. We performed an experimental study to determine: (i) the effect of syn-deformation reaction on strain weakening and localization, and (ii) the effect of crystal plastic deformation on reaction extent and distribution. Experiments were conducted on a fine-grained gneiss (58 vol.% quartz, forming the interconnected matrix, 13 vol.% biotite, 28 vol.% plagioclase and 1 vol.% garnet/Fe-Ti oxides). General shear experiments were performed at 745 and 800 degrees C, 1.5 GPa, two strain rates, and shear strain (gamma) from 0.6 to 5, yielding three suites with initial phase strength contrast between the matrix quartz and weak biotite of 45x, 25x and 10x; hydrostatic experiments were performed on cores and powders at 750 and 800 degrees C and 1.5-2 GPa for the same times. At these conditions, biotite reacts with plagioclase and quartz to form garnet, K-feldspar and water (no melt was observed). Greater reaction extent was observed in deformed samples than in equivalent hydrostatic samples, because of the increased surface area and internal strain energy. In all of the deformed samples, reaction contributes to strain weakening, due principally to a switch to grain boundary sliding in the fine-grained reaction products. The degree to which syn-deformational reaction causes strain weakening and localization in this polyphase aggregate depends on the phase strength contrast and how it evolves. In samples with low-phase strength contrast, strain and reaction are homogeneously distributed; however, in samples with high-phase strength contrast, ductile strain and reaction interact positively to produce a narrow ductile shear zone. Similar concentration of reaction is observed in some natural ductile shear zones.
机译:变质反应通常伴随着地壳的韧性变形。我们进行了一项实验研究,以确定:(i)同质变形反应对应变弱化和局部化的影响,以及(ii)晶体塑性变形对反应程度和分布的影响。实验是在细颗粒的片麻岩上进行的(58体积%的石英,形成相互连接的基质,13体积%的黑云母,28体积%的斜长石和1体积%的石榴石/ Fe-Ti氧化物)。在745和800摄氏度,1.5 GPa,两种应变速率以及0.6至5的剪切应变(gamma)下进行了常规剪切实验,得到了三个套件,基质石英和弱黑云母之间的初始相强度对比为45x,25x和10倍;在750和800摄氏度以及1.5-2 GPa的压力下,对核和粉末进行了相同的静水压实验。在这些条件下,黑云母与斜长石和石英反应形成石榴石,钾长石和水(未观察到熔融)。由于增加的表面积和内部应变能,变形样品中的反应程度要大于等效流体静力样品中的反应程度。在所有变形的样品中,反应主要是由于细晶粒反应产物中晶界滑动的转变而导致应变减弱。同相变形反应在该多相聚集体中引起应变弱化和局部化的程度取决于相强度的反差及其演化方式。在具有低相强度对比的样品中,应变和反应是均匀分布的。但是,在具有高强度强度对比的样品中,延性应变和反应正向相互作用以产生狭窄的延性剪切带。在某些天然延性剪切带中观察到相似的反应浓度。

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