• Title of article

    Microstructures and rheology of a calcite-shale thrust fault

  • Author/Authors

    Wells، نويسنده , , Rachel K. and Newman، نويسنده , , Julie and Wojtal، نويسنده , , Steven، نويسنده ,

  • Issue Information
    ماهنامه با شماره پیاپی سال 2014
  • Pages
    13
  • From page
    69
  • To page
    81
  • Abstract
    A thin (∼2 cm) layer of extensively sheared fault rock decorates the ∼15 km displacement Copper Creek thrust at an exposure near Knoxville, TN (USA). In these ultrafine-grained (<0.3 μm) fault rocks, interpenetrating calcite grains form an interconnected network around shale clasts. One cm below the fault rock layer, sedimentary laminations in non-penetratively deformed footwall shale are cut by calcite veins, small faults, and stylolites. A 350 μm thick calcite vein separates the fault rocks and footwall shale. The vein is composed of layers of (1) coarse calcite grains (>5 μm) that exhibit a lattice preferred orientation (LPO) with pores at twin–twin and twin-grain boundary intersections, and (2) ultrafine-grained (0.3 μm) calcite that exhibits interpenetrating grain boundaries, four-grain junctions and lacks a LPO. Coarse calcite layers crosscut ultrafine-grained layers indicating intermittent vein formation during shearing. e in the fault rock layer is derived from vein calcite and grain-size reduction of calcite took place by plasticity-induced fracture. The ultrafine-grained calcite deformed primarily by diffusion-accommodated grain boundary sliding and formed an interconnected network around shale clasts within the shear zone. The interconnected network of ultrafine-grained calcite indicates that calcite, not shale, was the weak phase in this fault zone.
  • Keywords
    calcite , Shale , Low-temperature deformation , diffusion creep , grain boundary sliding , Plasticity-induced fracturing
  • Journal title
    Journal of Structural Geology
  • Serial Year
    2014
  • Journal title
    Journal of Structural Geology
  • Record number

    2228230