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The development of subgrain misorientations with strain in dry synthetic NaCl measured using EBSD

机译:使用EBSD测量的干燥合成NaCl中亚晶取向错误的发展

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The development of subgrain boundary misorientations with strain in dry, synthetic NaCl polycrystals, deformed at elevated temperature, has been investigated using electron backscattered diffraction (EBSD). At low natural strains, up to 0.5, average misorientations of subgrain boundaries increase with strain and a power law relationship exists between strain and average misorientations. The average misorientations are strongly influenced by grain orientation, suggesting that the misorientation-strain relationship may also be texture dependent in materials with high plastic anisotropy, like NaCl. A slight grain size dependency of the average misorientations was observed. The results indicate that with suitable calibration, average subgrain boundary misorientations may offer a method for estimating the strain accommodated by dislocation creep in NaCl and thus perhaps in other geological materials, although current theories for polycrystalline plasticity imply that misorientations may also depend on stress in some situations.
机译:使用电子背散射衍射(EBSD),研究了干燥,合成的NaCl多晶体在高温下变形时,亚应变边界取向错误的发展。在低至0.5的自然应变下,亚晶粒边界的平均取向错误会随着应变而增加,并且应变和平均取向错误之间存在幂律关系。平均取向差受晶粒取向的强烈影响,表明取向差-应变关系也可能在具有高塑性各向异性的材料(如NaCl)中取决于纹理。观察到平均取向差对晶粒尺寸的依赖性很小。结果表明,通过适当的校准,平均亚晶界取向会提供一种估算NaCl中位错蠕变所适应的应变的方法,从而可能提供其他地质材料中的应变的方法,尽管当前的多晶可塑性理论暗示,取向错误也可能取决于某些应力。情况。

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