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首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >Frictional strength and healing behavior of phyllosilicate-rich faults
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Frictional strength and healing behavior of phyllosilicate-rich faults

机译:富含页硅酸盐的断层的摩擦强度和愈合行为

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We study the mechanisms of frictional strength recovery for tectonic faults with particular focus on fault gouge that contains phyllosilicate minerals. We report laboratory and microstructural work from fault rocks associated with a regional, low-angle normal fault in Central Italy. Experiments were conducted in a biaxial deformation apparatus at room temperature and humidity, nominally dry, under constant normal stresses of 20 and 50 MPa, and at a sliding velocity of 10 μm/s. Our results for nominally dry conditions show good agreement with previous work conducted under controlled pore fluid pressure. The phyllosilicate contents of our samples, which include clay, talc and chlorite range from 0 to 52 weight %. We study both intact rock samples, sheared in their in situ geometry, and powders made from the same rocks to address the role of fabric in fault healing. We measured frictional healing, Δμ, using slide-hold-slide tests with hold periods ranging from 3 to 3000 s. Phyllosilicate-free materials show friction values of μ ≈ 0.6 and healing rates that are larger in powdered samples, β ≈ 0.006 (Δμ per decade in time, s) compared to intact wafers of fault rock, β ≈ 0.004. For phyllosilicate-bearing materials, healing rates are low, β < 0.002, and independent of fabric, phyllosilicate content and normal stress. We observe that frictional strength decreases systematically with increasing phyllosilicate content. Intact, phyllosilicate-bearing fault rock is consistently weaker than its powdered equivalent (0.2 < μ < 0.3 versus 0.4 < μ < 0.5, respectively). We compare our data to results from experiments conducted on a wide range of materials and conditions. Deformation microstructures show localized slipping along sub-parallel shear planes. We suggest that low values of frictional strength and near zero healing rates will combine to exacerbate the weakness of phyllosilicate-bearing faults and promote stable, aseismic creep.
机译:我们研究了构造断层的摩擦强度恢复机制,特别关注包含页硅酸盐矿物的断层泥。我们报告了与意大利中部地区性低角度正断层有关的断层岩石的实验室和微结构工作。在室温和湿度,名义上干燥,在20和50 MPa的恒定法向应力下以及以10μm/ s的滑动速度进行的双轴变形设备中进行实验。我们的名义干燥条件下的结果与以前在受控孔隙流体压力下进行的工作很好地吻合。我们样品中的页硅酸盐含量包括粘土,滑石和亚氯酸盐,范围为0至52重量%。我们研究了完整的岩石样品(在其原位几何形状中被剪切)以及由相同岩石制成的粉末,以研究织物在断层愈合中的作用。我们使用保持时间范围为3到3000 s的滑动-保持-滑动测试测量了摩擦愈合Δμ。不含完整硅酸盐的材料显示出的摩擦系数为μ≈0.6,而粉末状样品的修复率则更大,β≈0.006(Δμ每十倍时间,s),而断层岩的完整薄片则为β≈0.004。对于含页硅酸盐的材料,治愈率低,β<0.002,且与织物,页硅酸盐含量和法向应力无关。我们观察到,随着页硅酸盐含量的增加,摩擦强度会系统地降低。完整的含层状硅酸盐的断层岩始终比其粉状等效岩弱(分别为0.2 <μ<0.3和0.4 <μ<0.5)。我们将数据与在各种材料和条件下进行的实验结果进行比较。变形微观结构显示沿亚平行剪切平面的局部滑动。我们建议低的摩擦强度值和接近零的修复率将加重含页硅酸盐的断层的脆弱性,并促进稳定的抗震蠕变。

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