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Coseismic microstructures of experimental fault zones in Carrara marble

机译:卡拉拉大理石实验断层带的同震微结构

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Experimental fault zones developed in Carrara marble that were deformed at seismic slip rates (1.18 -1.30 m s~(-1)) using a high-velocity-rotary-shear apparatus exhibit very low friction (friction coefficient as low as 0.06) at steady state due to nanoparticle lubrication of the decomposition product (lime). The fault zones show a layered structure; a central slip-localization layer (5-60 μm thick) of lime nanograins mantled by gouge layers (5-150 μm thick) and a plastically deformed layer (45-500 μm thick) between the wall rock and gouge layer in the marginal portion of cylindrical specimens. Calcite grains of the wall rock adjacent to the slip zone deform by dislocation glide when subjected to frictional heating and a lower strain rate than that of the principal slip zone. The very fine (2-5 μm) calcite grains in the gouge layer show a foam structure with relatively straight grain boundaries and 120° triple junctions. This foam structure is presumed to develop by welding at high temperature and low strain once slip is localized along the central layer. We suggest that a seismic event can be inferred from deformed marbles, given: (ⅰ) the presence of welded gouge with foam structure in a fault zone where wall rocks show no evidence of thermal metamorphism and (ⅱ) a thin plastically deformed layer immediately adjacent to the principal slip zone of a cataclastic fault zone.
机译:在卡拉拉大理石上开发的实验断层带在高速滑动剪切设备下以地震滑动速率(1.18 -1.30 ms〜(-1))变形,在稳态下显示出非常低的摩擦力(摩擦系数低至0.06)由于分解产物(石灰)的纳米颗粒润滑。断层带呈分层结构。石灰纳米颗粒的中央滑动定位层(5-60μm厚),由凿层(5-150μm厚)覆盖,并且在围岩和边缘处的凿层之间有塑性变形层(45-500μm厚)圆柱形标本。与滑移区相邻的围岩的方解石颗粒在受到摩擦加热时,由于位错滑移而变形,并且应变率低于主滑移区。切屑层中非常细的方解石晶粒(2-5μm)显示出具有相对直的晶界和120°三重结的泡沫结构。一旦沿中心层定位了滑移,就可以推测这种泡沫结构是通过高温和低应变焊接而形成的。鉴于以下情况,我们建议可以从变形的大理石中推断出地震事件:(ⅰ)断层带中存在泡沫结构的电焊凿,壁岩无热变质迹象;(and)紧邻的薄塑性变形层到碎裂断裂带的主要滑移带。

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