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Three-Dimensional Coherent X-Ray Diffraction Imaging of a Ceramic Nanofoam: Determination of Structural Deformation Mechanisms

机译:陶瓷纳米泡沫的三维相干X射线衍射成像:结构变形机制的确定。

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摘要

Ultralow density polymers, metals, and ceramic nanofoams are valued for their high strength-to-weight ratio, high surface area, and insulating properties ascribed to their structural geometry. We obtain the labrynthine internal structure of a tantalum oxide nanofoam by x-ray diffractive imaging. Finite-element analysis from the structure reveals mechanical properties consistent with bulk samples and with a diffusion-limited cluster aggregation model, while excess mass on the nodes discounts the dangling fragments hypothesis of percolation theory.
机译:超低密度聚合物,金属和陶瓷纳米泡沫因其高强度重量比,高表面积和归因于其结构几何形状的绝缘性能而受到重视。我们通过X射线衍射成像获得了氧化钽纳米泡沫的labrynthine内部结构。从结构进行的有限元分析显示出与大量样品和扩散受限的团簇聚集模型一致的机械性能,而节点上的多余质量则使渗滤理论的悬空碎片假说打折扣。

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