利用二维有限元建模与仿真确定人体皮肤的超弹性参数

N. Manan, M. Ramli, M. Patar, C. Holt, S. Evans, M. Chizari, J. Mahmud
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引用次数: 16

摘要

皮肤的行为仍然没有得到很好的理解,由于其复杂的生物结构,表征皮肤特性总是具有挑战性。然而,本文强调了使用Ogden模型和有限元(FE)模拟确定蒙皮材料参数的成功。该方法包括实验、有限元建模和反有限元分析相结合。利用体内实验数据建立基于Ogden本构方程的二维超弹性有限元模型,并构建系统的案例研究。通过迭代改变多个材料参数和数值,根据实际实验设置进行有限元模拟,模拟蒙皮变形。将所得结果与实验结果进行比较,得出最佳匹配曲线构成材料参数。目前的结果表明,该对象的奥格登系数和指数分别为μ = 10 Pa和α = 40。进一步的分析可以使用其他模型,如Mooney-Rivlin和Neo-Hookean进行比较。尽管如此,这项研究还是为了解皮肤行为做出了贡献。
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Determining hyperelastic parameters of human skin using 2D finite element modelling and simulation
The behaviour of skin is still not well understood and characterising skin properties is always challenging due to its complex biological structure. Nevertheless, this paper highlights the success of determining skin material parameters using Ogden's model and finite element (FE) simulation. The approach involved integrating experiment, FE modelling and inverse-FE analysis. Data from in vivo experiments were used to develop 2D hyperelastic finite element models based on Ogden's constitutive equation and systematic case studies were constructed. By iteratively varying several material parameters and values, FE simulations were performed to simulate the skin deformation according to the actual experimental set up. The results were compared to the experiments' and the best match curve constitutes the material parameters. The current results show that the Ogden's coefficient and exponent for the subject was estimated to be μ = 10 Pa and α = 40 respectively. Further analyses using other models such as Mooney-Rivlin and Neo-Hookean could be carried out for comparison. Nevertheless, this study has contributed to the knowledge about skin behaviour.
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