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Multiscale, Heterogeneous Computer Aided Design Representation for Metal Alloy Microstructures

机译:金属合金微结构的多尺度异构计算机辅助设计表示

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摘要

Most heterogeneous computer aided design (CAD) representations in the literature represent materials using a volume fraction vector, which may not by physically realizable or meaningful. In contrast, the multiscale, heterogeneous CAD representation presented here models materials using their microstructure. For the specific metal alloys of interest in this work, the material model is a probabilistic model of grain characteristics, represented as cumulative distribution functions (CDFs). Several microstructure reconstruction algorithms are presented that enable different alloy grain structures to be reconstructed in a part model. Reconstructions can be performed at any desired size scale, illustrating the multiscale capability of the representation. A part rendering algorithm is presented for displaying parts with their material microstructures. The multi-scale, heterogeneous CAD representation is demonstrated on two Inconel alloys and is shown to be capable of faithfully reconstructing part representations consistent with the probabilistic grain models.
机译:文献中大多数异构计算机辅助设计(CAD)表示都是使用体积分数向量表示的材料,这在物理上是无法实现或有意义的。相反,此处呈现的多尺度,异构CAD表示使用材料的微观结构对其进行建模。对于这项工作中感兴趣的特定金属合金,材料模型是晶粒特征的概率模型,表示为累积分布函数(CDF)。提出了几种微观结构重建算法,这些算法使得可以在零件模型中重建不同的合金晶粒结构。可以以任何所需的大小比例执行重构,从而说明表示的多尺度功能。提出了一种零件渲染算法,用于显示具有其材料微观结构的零件。在两种Inconel合金上演示了多尺度,异构的CAD表示,并显示出能够忠实地重建与概率晶粒模型一致的零件表示的能力。

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