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A comparison of material characterizations in frequently used constitutive models of ligaments

机译:常用韧带本构模型中材料表征的比较

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Longitudinal tensile and simple shear stress-strain curves of human medial collateral ligaments (MCL) were fitted by six frequently used constitutive relations of ligaments using two different fitting methods for determining which was the best fitting method and the most preferable constitutive model for describing the ligament properties. According to the results of fitting goodness, two typical constitutive models were further analyzed by FEM to investigate the effect of the variation in MCL constitutive models under some physiological loads (i.e., 4.5 Nm external tibial and 10 Nm valgus tibial torques). It was found that different fitting methods induced great variations in describing the simple shear behavior whereas no obvious difference in the longitudinal tensile behavior. The most accurate description of both the longitudinal tensile and simple shear behaviors was obtained from the constitutive model with ground substance defined by an exponential function when the parameters were fitted by the two test data, respectively. Although the distributions of maximal principal stress were almost the same, the variation in MCL constitutive models affected the highest value of the stress greatly when MCL was under the complex physiological loads.
机译:通过六个常用的韧带本构关系,使用两种不同的拟合方法来确定人内侧副韧带(MCL)的纵向拉伸和简单剪切应力-应变曲线,以确定哪种是描述韧带的最佳拟合方法和最优选本构模型属性。根据拟合优度的结果,通过FEM进一步分析了两个典型的本构模型,以研究在某些生理负荷(即4.5 Nm胫骨外胫骨和10 Nm外翻胫骨扭矩)下MCL本构模型变化的影响。结果发现,不同的拟合方法在描述简单剪切行为方面引起了很大的差异,而在纵向拉伸行为方面没有明显差异。当参数分别由两个试验数据拟合时,从本构模型得到的地面物质由指数函数定义,可以对纵向拉伸和简单剪切行为进行最准确的描述。尽管最大主应力的分布几乎相同,但是当MCL在复杂的生理负荷下时,MCL本构模型的变化极大地影响了应力的最大值。

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