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Parking simulation of three-dimensional multi-sized star-shaped particles

机译:三维立体星状粒子的停车模拟

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The shape and size of particles may have a great impact on the microstructure as well as the physico-properties of particulate composites. However, it is challenging to configure a parking system of particles to a geometrical shape that is close to realistic grains in particulate composites. In this work, with the assistance of x-ray tomography and a spherical harmonic series, we present a star-shaped particle that is close to realistic arbitrary-shaped grains. To realize such a hard particle parking structure, an inter-particle overlapping detection algorithm is introduced. A serial sectioning approach is employed to visualize the particle parking structure for the purpose of justifying the reliability of the overlapping detection algorithm. Furthermore, the validity of the area and perimeter of solids in any arbitrary section of a plane calculated using a numerical method is verified by comparison with those obtained using an image analysis approach. This contribution is helpful to further understand the dependence of the micro-structure and physico-properties of star-shaped particles on the realistic geometrical shape.
机译:颗粒的形状和大小可能会对颗粒复合材料的微观结构以及物理性能产生重大影响。然而,将颗粒的停放系统配置成接近颗粒复合物中的实际颗粒的几何形状是具有挑战性的。在这项工作中,借助X射线断层扫描和球谐序列,我们提出了一个接近于现实的任意形状颗粒的星形颗粒。为了实现这种硬粒子停放结构,引入了粒子间重叠检测算法。为了证明重叠检测算法的可靠性,采用了串行切片方法来可视化粒子停放结构。此外,通过与使用图像分析方法获得的数值进行比较,验证了使用数值方法计算的平面的任意部分中的固体面积和周长的有效性。这一贡献有助于进一步了解星形粒子的微观结构和物理性质对实际几何形状的依赖性。

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