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首页> 外文期刊>Computer Methods in Applied Mechanics and Engineering >Optimal polyhedral description of 3D poly crystals: Method and application to statistical and synchrotron X-ray diffraction data
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Optimal polyhedral description of 3D poly crystals: Method and application to statistical and synchrotron X-ray diffraction data

机译:3D多晶硅的最佳多面体描述:统计和同步加速器X射线衍射数据的方法和应用

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摘要

AbstractA methodology is presented for optimal polyhedral description of 3D polycrystals from experimental properties. This is achieved by determining, by optimization, appropriate attributes of the seeds of Laguerre tessellations. The resulting tessellations are optimal in the sense that no further improvements are possible using convex geometries. The optimization of Laguerre tessellation combines a new, computationally-efficient algorithm for updating tessellations between iterations to a generic optimization algorithm. The method is applied to different types of experimental data, either statistical, such as grain size distributions, or grain-based, as provided by synchrotron X-ray diffraction experiments. It is then shown how the tessellations can be meshed for finite-element simulations. The new method opens the way to more systematic and quantitative analyses of microstructural effects on properties. The presented algorithms are implemented and distributed in the free (open-source) software package Neper.
机译: 摘要 提供了一种通过实验特性对3D多晶体进行最佳多面体描述的方法。这是通过优化确定Laguerre镶嵌的种子的适当属性来实现的。在使用凸形几何形状不可能进一步改善的意义上,所得的镶嵌是最佳的。 Laguerre细分的优化结合了一种新的,计算效率高的算法,可将迭代之间的细分更新为通用优化算法。如同步加速器X射线衍射实验所提供的,该方法适用于不同类型的实验数据,无论是统计数据(例如晶粒尺寸分布)还是基于晶粒的数据。然后显示如何为有限元模拟对网格进行网格划分。这种新方法为更系统和定量分析微观结构对性能的影响开辟了道路。提出的算法在Neper的免费(开源)软件包中实现和分发。

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