首页> 外文会议>International Conference on Mechanical Engineering >Constitutive Modeling of the Human Anterior Cruciate Ligament (ACL) Under Uniaxial Loading Using Viscoelastic Prony Series And Hyperelastic Five Parameter Mooney-Rivlin Model
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Constitutive Modeling of the Human Anterior Cruciate Ligament (ACL) Under Uniaxial Loading Using Viscoelastic Prony Series And Hyperelastic Five Parameter Mooney-Rivlin Model

机译:使用粘弹性柱系列和超弹性五参数Mooney-Rivlin模型在单轴载荷下的人前十字韧带(ACL)构成型建模

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In this present study, the stress-strain behavior of the Human Anterior Cruciate Ligament (ACL) is studied under uniaxial loads applied with various strain rates. Tensile testing of the human ACL samples requires state of the art test facilities. Furthermore, difficulty in finding human ligament for testing purpose results in very limited archival data. Nominal Stress vs. deformation gradient plots for different strain rates, as found in literature, is used to model the material behavior either as a hyperelastic or as a viscoelastic material. The well-known five parameter Mooney-Rivlin constitutivemodel for hyperelastic material and the Prony Series model for viscoelastic material are used and the objective of the analyses comprises of determining the model constants and their variation-trend with strain rates for the Human Anterior Cruciate Ligament (ACL) material using the non-linear curve fitting tool. The relationship between the model constants and strain rate, using the Hyperelastic Mooney-Rivlin model, has been obtained. The variation of the values of each coefficient with strain rates, obtained using Hyperelastic Mooney-Rivlin model are then plotted and variation of the values with strain rates are obtained for all the model constants. These plots are again fitted using the software package MATLAB and a power law relationship between the model constants and strain rates is obtained for each constant. The obtained material model for Human Anterior Cruciate Ligament (ACL) material can be implemented in any commercial finite element software package for stress analysis.
机译:在本研究中,在用各种应变率施加的单轴载荷下研究了人翼状曲征(AC1)的应力 - 应变行为。人ACL样品的拉伸测试需要最先进的测试设施。此外,难以找到用于测试目的的人韧带导致非常有限的档案数据。在文献中发现的不同应变速率的标称应力与变形梯度图用于将材料行为塑造为高档或粘弹性材料。利用众所周知的五个参数Mooney-Rivlin ConstitutiveModeL和用于粘弹性材料的Proy系列模型,并且分析的目的包括确定模型常数及其具有人体前十字韧带的应变率的模型常数及其变异趋势( ACL)材料使用非线性曲线配件工具。已经获得了使用超弹性Mooney-rivlin模型的模型常数和应变速率之间的关系。然后,使用超弹性Mooney-rivlin模型获得的每个系数的变化是应变速率的,并且可以获得所有模型常数的应变速率的值的变化。使用软件包Matlab再次安装这些图,并且为每个常数获得模型常数和应变速率之间的电力法关系。可以在任何商业有限元软件包中实现所获得的人翼状十字韧带(ACL)材料的材料模型,用于应力分析。

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