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Microstructural Modeling and Multiscale Mechanical Properties Analysis of Cancellous Bone

机译:松质骨的微观结构建模和多尺度力学性能分析

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This paper is devoted to the microstructure geometric modeling and mechanical properties computation of cancellous bone. The microstructure of the cancellous bone determines its mechanical properties and a precise geometric modeling of this structure is important to predict the material properties. Based on the microscopic observation, a new microstructural unit cell model is established by introducing the Schwarz surface in this paper. And this model is very close to the real microstructure and satisfies the main biological characteristics of cancellous bone. By using the unit cell model, the multiscale analysis method is newly applied to predict the mechanical properties of cancellous bone. The effective stiffness parameters are calculated by the up-scaling multi-scale analysis. And the distribution of microscopic stress in cancellous bone is determined through the down-scaling procedure. In addition, the effect of porosity on the stiffness parameters is also investigated. The predictive mechanical properties are in good agreement with the available experimental results, which verifies the applicability of the proposed unit cell model and the validness of the multiscale analysis method to predict the mechanical properties of cancellous bone.
机译:本文致力于松质骨的微观结构几何建模和力学性能计算。松质骨的微观结构决定了其机械性能,这种结构的精确几何建模对于预测材料性能很重要。在微观观察的基础上,通过引入Schwarz表面建立了一个新的微结构晶胞模型。该模型非常接近真实的微观结构,并满足了松质骨的主要生物学特性。通过使用晶胞模型,多尺度分析方法被新应用于预测松质骨的力学性能。有效刚度参数是通过按比例放大多尺度分析来计算的。并通过缩小程序确定松质骨中微观应力的分布。此外,还研究了孔隙度对刚度参数的影响。预测的力学性能与现有的实验结果吻合良好,验证了所提出的晶胞模型的适用性以及多尺度分析方法预测松质骨力学性能的有效性。

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