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A modeling approach to understanding the role of microstructure development on crystal-size distributions and on recovering crystal-size distributions from thin slices

机译:一种建模方法,用于理解微结构发展对晶体尺寸分布和从薄片中恢复晶体尺寸分布的作用

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摘要

Computer modeling of microstructure development was used to determine whether competition for space among growing crystals modifies the crystal-size distribution (CSD) predicted by the crystallization kinetics. Microstructures were modeled with prisms, plates, and cuboids, respectively. In all cases, the true CSDs calculated from crystal volumes in the microstructure corresponded closely with the linear ideal CSDs predicted by crystallization equations indicating that grain impingements did not significantly modify the predicted CSD information. Crystal intersection widths and lengths were measured in 2-dimensional slices through the microstructures to test if the CSD information could be recovered. For prisms and plates, the recovered CSDs compared favorably with the true CSDs, but cuboids yielded mixed results depending on their shapes and need further study. For prisms, the recovered CSDs were linear and for plates slightly curvilinear. These results indicate that rocks with recovered, curvilinear CSDs should be interpreted cautiously as indicators of complex crystallization histories, and that petrographic examination should have precedence in such interpretations.
机译:使用微结构发展的计算机模型来确定生长中的晶体之间的空间竞争是否会改变由结晶动力学预测的晶体尺寸分布(CSD)。分别用棱镜,平板和长方体对微结构建模。在所有情况下,从微观结构中的晶体体积计算出的真实CSD与由结晶方程预测的线性理想CSD紧密对应,这表明晶粒撞击不会显着改变预测的CSD信息。通过微结构在二维切片中测量了晶体的相交宽度和长度,以测试是否可以恢复CSD信息。对于棱镜和平板,回收的CSD与真实的CSD相比要好得多,但是长方体根据其形状会产生不同的结果,需要进一步研究。对于棱镜,恢复的CSD是线性的,对于平板来说,曲线略微。这些结果表明,应谨慎地将具有恢复的曲线CSD的岩石解释为复杂结晶历史的指标,并且在这种解释中应优先考虑岩相学检查。

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