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A multiscale homogenization procedure combining the fabric tensor with a natural neighbour meshless method

机译:将织物张量与天然邻近丝绒法相结合的多尺度均匀化程序

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Bone is a material that can be classified as a hierarchical structure, where the different structural levels can be identified from the microscale to macroscale. Multiscale models enable to model the material using homogenization techniques. In this work a innovative homogenization technique for trabecular bone tissue is proposed, which uses the fabric tensor concept and a bone phenomenological material law, linking the apparent density with the trabecular bone mechanical proprieties. The proposed methodology efficiently homogenize the trabecular bone highly heterogeneous medium, allowing to define its homogenized microscale mechanical properties and to reduce the analysis computational cost (when compared with classical homogenization techniques). The homogenization technique is combined with the natural neighbour radial point interpolation method (NNRPIM). The NNRPIM uses the natural neighbour mathematical concept to enforce the nodal connectivity and build the background integration mesh, required to numerically integrate the integro-differential elasticity equations. Furthermore, the NNRPIM uses the radial point interpolators technique to construct its interpolating shape functions. In order to verify the efficiency of the technique several examples are solved using a confined square patch of trabecular bone under compression. In the end, the results obtained with a classic homogenization technique and the proposed methodology are compared.
机译:骨是可以被归类为分层结构的材料,其中可以从微米到宏尺度识别不同的结构级别。多尺度模型使使用均质技术来模拟材料。在这项工作中,提出了一种创新的小梁骨组织均质化技术,它使用织物张量概念和骨骼现象学律,将表观密度与小梁骨骼机械合理联系起来。所提出的方法有效地均质化了小梁骨高度异质介质,允许定义其均质化的微观机械性能并降低分析计算成本(与经典均质技术相比)。均质化技术与天然邻径向点插值法(NNRPIM)结合。 nnrpim使用自然邻数学概念来强制执行节点连接并构建背景集成网格,所需的是数值集成的积分差分弹性方程。此外,NNRPIM使用径向点内插器技术来构造其内插形状功能。为了验证该技术的效率,使用压缩下的小梁骨的狭窄的方形蛋白来解决几个例子。最后,比较了通过经典均质化技术获得的结果和所提出的方法。

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