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Thermal conductivity computations of sintered hollow sphere structures

机译:烧结空心球结构的导热系数计算

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摘要

The thermal conductivity of sintered hollow sphere structures (HSS) is investigated within the scope of this paper. For this purpose, finite element analyses based on micro-computed tomography images are performed on HSS structures. The complex geometry of the real sintered HSS sample is accurately captured with this new hybrid method. The numerical computations are investigated in three perpendicular directions (i.e., x, y and z) in order to examine the anisotropic material behaviour. The results indicate that sintered HSS reveals quasi-isotropic behaviour in terms of effective thermal conductivity. For the first time, the influence of the sphere wall thickness of real HSS is investigated. To this end, the computed tomography data is carefully manipulated by changing the thickness of the hollow sphere wall. The variation of the wall thickness alters the relative density and has a significant influence on the thermal conductivity. The influence of the relative density on the thermal conductivity reveals a linear dependency.
机译:在本文范围内研究了烧结空心球结构(HSS)的热导率。为此,在HSS结构上执行基于微计算机断层扫描图像的有限元分析。用这种新的混合方法可以准确地捕获实际烧结的高速钢样品的复杂几何形状。为了检验各向异性材料的特性,在三个垂直方向(即x,y和z)上研究了数值计算。结果表明,烧结的HSS在有效导热率方面显示出准各向同性行为。首次研究了真实高速钢球壁厚度的影响。为此,通过改变空心球壁的厚度来仔细地操纵所计算的层析成像数据。壁厚的变化会改变相对密度,并对导热系数产生重大影响。相对密度对热导率的影响显示出线性相关性。

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