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首页> 外文期刊>Journal of Physics. Condensed Matter >Deformation textures produced in diamond anvil experiments, analysed in radial diffraction geometry
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Deformation textures produced in diamond anvil experiments, analysed in radial diffraction geometry

机译:金刚石砧实验中产生的变形纹理,并通过径向衍射几何学进行了分析

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摘要

Diamond anvil cells may not only impose pressure upon a sample but also a compressive stress that produces elastic and plastic deformation of polycrystalline samples. The plastic deformation may result in texture development if the material deforms by slip or mechanical twinning, or if grains have a non-equiaxed shape. In radial diffraction geometry, texture is revealed by variation of intensity along Debye rings relative to the compression direction. Diffraction images ( obtained by CCD or image plate) can be used to extract quantitative texture information. Currently the most elegant and powerful method is a modified Rietveld technique as implemented in the software package MAUD. From texture data one can evaluate the homogeneity of strain in a diamond anvil cell, the strain magnitude and deformation mechanisms, the latter by comparing observed texture patterns with results from polycrystal plasticity simulations. Some examples such as olivine, magnesiowuestite, MgSiO3 perovskite and epsilon-iron are discussed.
机译:金刚石砧室不仅可以向样品施加压力,而且还可以产生使多晶样品产生弹性和塑性变形的压应力。如果材料由于打滑或机械孪生而变形,或者晶粒具有非等距形状,则塑性变形可能会导致纹理发展。在径向衍射几何中,通过沿德拜环相对于压缩方向的强度变化来揭示纹理。衍射图像(通过CCD或图像板获得)可用于提取定量纹理信息。当前,最优雅,最强大的方法是在软件包MAUD中实现的改良的Rietveld技术。从织构数据中,可以评估金刚石砧座中应变的均匀性,应变大小和变形机制,后者可以通过将观察到的织构图案与多晶可塑性模拟的结果进行比较来进行评估。讨论了橄榄石,镁铝辉石,MgSiO3钙钛矿和ε-铁等例子。

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