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A bilinear structural constitutive model for strain rate-dependent behaviour of human diaphragm tissue

机译:一种双线性结构组成型模型,用于人膈膜组织的应变率依赖性行为

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摘要

Diaphragmatic rupture is the tear of the diaphragm muscle result from blunt or penetrating trauma and occurs in about 5% of cases of severe blunt trauma. Both finite element (FE) modelling and experimental testing have enhanced our understanding of the injury mechanisms associated with diaphragmatic rupture. A constitutive model for human diaphragm tissue is developed and implemented via user subroutine (UMAT) in LS Dyna that accounts for the strain rate-dependent effects and bilinear behaviour observed experimentally. To better understand the material properties of the human diaphragm, 16 dynamic tensile tests were conducted at three different strain rates of 65/s, 130/s and 190/s from six whole human diaphragms. The engineering stress-strain relationship obtained from these tests showed a bilinear behaviour and strain rate dependency. A strain rate-dependent bilinear stress-strain model was developed, and its parameters were optimised using a genetic algorithm-based inverse characterization method. The results demonstrate a good correlation between experiments and the model, with an average difference of 2 +/- 2.8% (mean +/- SD) between the optimised FE and experimental load-time curves. The material parameters found in this study can be used in dynamic simulations using FE models of diaphragm tissues.
机译:隔膜破裂是膈肌肌肉的撕裂,来自钝或穿透性创伤,并发生在约5%的严重钝性创伤病例中。有限元(FE)建模和实验测试都提高了我们对与膜膜破裂相关的损伤机制的理解。通过在LS Dyna中的用户亚序列(UMAT)开发和实施了人膜片组织的组成型模型,其考虑了实验观察到的应变率依赖性效应和双线性行为。为了更好地理解人膜片的材料性质,16个动态拉伸试验以六个整个人膜片的三种不同的应变率进行65 / s,130 / s和190 / s的。从这些测试获得的工程应力 - 应变关系显示出双线性行为和应变率依赖性。开发了应变率依赖性双线性应力 - 应变模型,并使用基于遗传算法的逆表征方法进行了优化的参数。结果表明了实验与模型之间的良好相关性,平均差异为优化的Fe和实验负载时间曲线之间的2 +/- 2.8%(平均值+/- SD)。本研究中的材料参数可以使用膜片组织的FE模型用于动态模拟。

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