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首页> 外文期刊>Earth and Planetary Science Letters: A Letter Journal Devoted to the Development in Time of the Earth and Planetary System >Rheology, microstructure and crystallographic preferred orientation of matrix containing a dispersed second phase: Insight from experimentally deformed ice
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Rheology, microstructure and crystallographic preferred orientation of matrix containing a dispersed second phase: Insight from experimentally deformed ice

机译:包含分散的第二相的基质的流变学,微观结构和晶体学的优选取向:从实验变形的冰中获得的见解

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We utilize in situ neutron diffraction to continuously track the average grain size and crystal preferred orientation (CPO) development in ice, during uniaxial compression of two-phase and pure ice samples. Two-phase samples are composed of ice matrix and 20 vol.% of second phases of two types: (1) rheologically soft, platy graphite, and (2) rigid, rhomb-shaped calcite. The samples were tested at 10 degrees C below the ice melting point, ambient pressures, and two strain rates (1 x 10(-5) and 2.5 x 10(-6) s(-1)), to 10 and 20% strain. The final CPO in the ice matrix, where second phases are present, is significantly weaker, and ice grain size is smaller than in an ice-only sample. The microstructural and rheological data point to dislocation creep as the dominant deformation regime. The evolution and final strength of the CPO in ice depend on the efficiency of the recrystallization processes, namely grain boundary migration and nucleation. These processes are markedly influenced by the strength, shape, and grain size of the second phase. In addition, CPO development in ice is further accentuated by strain partitioning into the soft second phase, and the transfer of stress onto the rigid second phase. (C) 2016 Elsevier B.V. All rights reserved.
机译:在两相和纯冰样品的单轴压缩过程中,我们利用原位中子衍射法连续跟踪冰中的平均晶粒尺寸和晶体优选取向(CPO)的发展。两相样品由冰基质和两种类型的第二相的20%(体积)组成:(1)流变软的板状石墨,和(2)刚性的菱形方解石。在低于冰熔点,环境压力和两个应变率(1 x 10(-5)和2.5 x 10(-6)s(-1))的10摄氏度下对样品进行测试,应变分别为10%和20% 。与仅含冰的样品相比,存在第二相的冰基质中的最终CPO明显较弱,并且冰粒尺寸更小。微观结构和流变学数据表明位错蠕变是主要的变形形式。冰中CPO的演化和最终强度取决于重结晶过程的效率,即晶界迁移和成核。这些过程受到第二相的强度,形状和晶粒尺寸的显着影响。另外,通过将应变分配到软第二相中以及将应力转移到刚性第二相上,冰中的CPO进一步发展。 (C)2016 Elsevier B.V.保留所有权利。

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