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A determination of the minimum sizes of representative volume elements for the prediction of cortical bone elastic properties

机译:确定代表性体积元素的最小尺寸以预测皮质骨的弹性

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At its highest level of microstructural organization—the mesoscale or millimeter scale—cortical bone exhibits a heterogeneous distribution of pores (Haversian canals, resorption cavities). Multi-scale mechanical models rely on the definition of a representative volume element (RVE). Analytical homogenization techniques are usually based on an idealized RVE microstructure, while finite element homogenization using high-resolution images is based on a realistic RVE of finite size. The objective of this paper was to quantify the size and content of possible cortical bone mesoscale RVEs. RVE size was defined as the minimum size: (1) for which the apparent (homogenized) stiffness tensor becomes independent of the applied boundary conditions or (2) for which the variance of elastic properties for a set of microstructure realizations is sufficiently small. The field of elastic coefficients and microstructure in RVEs was derived from one acoustic microscopy image of a human femur cortical bone sample with an overall porosity of 8.5%. The homogenized properties of RVEs were computed with a finite element technique. It was found that the size of the RVE representative of the overall tissue is about 1.5 mm. Smaller RVEs (~0.5 mm) can also be considered to estimate local mesoscopic properties that strongly depend on the local pores volume fraction. This result provides a sound basis for the application of homogenization techniques to model the heterogeneity of cortical microstructures. An application of the findings to estimate elastic properties in the case of a porosity gradient is briefly presented.
机译:在最高级别的微结构组织(中尺度或毫米尺度)下,皮质骨显示出异质的孔分布(哈弗斯运河,吸收腔)。多尺度机械模型依赖于代表性体积元素(RVE)的定义。分析均质化技术通常基于理想化的RVE微观结构,而使用高分辨率图像进行的有限元均质化则基于有限大小的实际RVE。本文的目的是量化可能的皮质骨中尺度RVE的大小和含量。 RVE尺寸定义为最小尺寸:(1)视在(均匀化的)刚度张量变得与所施加的边界条件无关,或者(2)一组微观结构实现的弹性特性方差足够小。 RVE中的弹性系数和微观结构的领域是从人类股骨皮质骨样品的一张声学显微镜图像得出的,其总孔隙率为8.5%。 RVE的均质特性是用有限元技术计算的。发现代表整个组织的RVE的大小为约1.5mm。还可以考虑使用较小的RVE(〜0.5 mm)来估计局部介观性能,这些性能强烈取决于局部孔体积分数。该结果为应用均质化技术建模皮质微结构的异质性提供了良好的基础。简要介绍了该发现在孔隙度梯度情况下估算弹性性能的应用。

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