首页> 外文期刊>Communications in Numerical Methods in Engineering >Nonlinear micro-CT based FE modeling of trabecular bone-Sensitivity of apparent response to tissue constitutive law and bone volume fraction
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Nonlinear micro-CT based FE modeling of trabecular bone-Sensitivity of apparent response to tissue constitutive law and bone volume fraction

机译:基于非线性微型CT的小梁骨有限元建模-对组织本构法和骨体积分数的表观反应的敏感性

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摘要

In this study, the sensitivity of the apparent response of trabecular bone to different constitutive models at the tissue level was investigated using finite element (FE) modeling based on micro-computed tomography (micro-CT). Trabecular bone specimens from porcine femurs were loaded under a uniaxial compression experimentally and computationally. The apparent behaviors computed using von Mises, Drucker-Prager, and Cast Iron plasticity models were compared. Secondly, the effect of bone volume fraction was studied by changing the bone volume fraction of a trabecular bone sample while keeping the same basic architecture. Also, constitutive models' parameters of the tissue were calibrated for porcine bone, and the effects of different parameters on resulting apparent response were investigated through a parametric study. The calibrated effective tissue elastic modulus of porcine trabecular bone was 1.2GPa, which is in the lower range of modulus values reported in the literature for human and bovine trabecular bones (4-23.8GPa). It was also observed that, unlike elastic modulus, yield properties of tissue could not be uniquely calibrated by fitting an apparent response from simulations to experiments under a uniaxial compression. Our results demonstrated that using these 3 tissue constitutive models had only a slight effect on the apparent response. As expected, there was a significant change in the apparent response with varying bone volume fraction. Also, both apparent modulus and maximum stress had a linear relation with bone volume fraction.
机译:在这项研究中,使用基于微计算机断层扫描(micro-CT)的有限元(FE)建模研究了小梁骨在组织水平上对不同本构模型的表观响应的敏感性。来自猪股骨的小梁骨标本通过实验和计算在单轴压缩下加载。比较了使用von Mises,Drucker-Prager和Cast Iron可塑性模型计算的表观行为。其次,在保持相同基本结构的情况下,通过更改小梁骨样品的骨体积分数来研究骨体积分数的影响。此外,针对猪骨校准组织的本构模型参数,并通过参数研究研究了不同参数对所得表观反应的影响。猪小梁骨的校准有效组织弹性模量为1.2GPa,处于文献中报道的人和牛小梁骨的模量值的较低范围(4-23.8GPa)。还观察到,与弹性模量不同,无法通过拟合单轴压缩下的模拟到实验的表观响应来唯一地校准组织的屈服特性。我们的结果表明,使用这3种组织本构模型对表观反应仅产生轻微影响。如预期的那样,随着骨体积分数的变化,表观反应发生了显着变化。而且,表观模量和最大应力都与骨体积分数成线性关系。

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