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首页> 外文期刊>Materials Characterization >Three dimensional (3D) microstructure-based finite element modeling of Al-SiC nanolaminates using focused ion beam (FIB) tomography
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Three dimensional (3D) microstructure-based finite element modeling of Al-SiC nanolaminates using focused ion beam (FIB) tomography

机译:聚焦离子束(FIB)断层扫描基于三维(3D)基于微结构的Al-SiC纳米胺的有限元模拟

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摘要

Al-SiC nanolaminate composites show promise as high performance coating materials due to their combination of strength and toughness. Although a significant amount of modeling effort has been focused on materials with an idealized flat nanostructure, experimentally these materials exhibit complex undulating layer geometries. This work utilizes FIB tomography to characterize this nanostructure in 3D and finite element modeling to determine the effect that this complex structure has on the mechanical behavior of these materials. A sufficiently large volume was characterized such that a 1 x 2 mu m micropillar could be generated from the dataset and compared directly to experimental results. The mechanical response from this nanostructure was then compared to pillar models using simplified structures with perfectly flat layers, layers with sinusoidal waviness, and layers with arc segment waviness. The arc segment based layer geometry showed the best agreement with the experimentally determined structure, indicating it would be the most appropriate geometry for future modeling efforts. (C) 2016 Elsevier Inc. All rights reserved.
机译:Al-SiC纳米胺复合材料由于它们的强度和韧性的组合而显示为高性能涂层材料。虽然已经将大量的建模努力集中在具有理想化的扁平纳米结构的材料上,但实验这些材料表现出复杂的起伏层几何形状。该工作利用FIB层析成像在3D和有限元模型中表征该纳米结构,以确定这种复杂结构对这些材料的机械行为的影响。表征足够大的体积,使得可以从数据集产生1×2μmmicropillar,并直接与实验结果进行比较。然后将来自该纳米结构的机械响应与柱状模型相比,使用具有完美平坦的层的简化结构,具有正弦波波的层,以及具有电弧段波纹的层。基于电弧段的层几何形状显示了与实验确定的结构的最佳协议,表明它将是未来建模努力的最合适的几何形状。 (c)2016年Elsevier Inc.保留所有权利。

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