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Influencia del modelo del material y espacio de modelado en la precisión de una Simulación con Elementos Finitos para predecir la deformación en Silicona

机译:材料模型和建模空间对有限元模拟预测硅树脂变形的精度的影响

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The realistic simulation of tool-tissue interactions is required for the development of surgical simulators. In this paper, we estimate the material properties of a silicone rubber with mechanical properties similar to brain tissue, by performing a standard compression test. Using the estimated parameters, we performed different finite element simulations of needle indentation into a block of the same tissue. We investigated the effect of material model (Neo-Hookean and Second Order Reduced Polynomial) and modeling space (3D and axisymmetric geometries) on the accuracy of the simulation. We demonstrated that material model, space and their interaction have a significant effect on the accuracy of the simulations. The most accurate combination corresponds to a 3D simulation using a Reduced Polynomial model. However, even for not-axisymmetric geometries, one can sacrifice some accuracy and use a simpler and faster modeling space (i.e. axisymmetric), at least for the simulations considered here, given a change in the modeling space has a smaller effect on accuracy than a change in the material model.
机译:开发工具模拟器需要对工具-组织相互作用进行现实的模拟。在本文中,我们通过执行标准的压缩测试来估算具有类似于大脑组织的机械性能的硅橡胶的材料性能。使用估计的参数,我们对针刺入同一组织块进行了不同的有限元模拟。我们研究了材料模型(Neo-Hookean和二阶约简多项式)和建模空间(3D和轴对称几何)对仿真精度的影响。我们证明了材料模型,空间及其相互作用对模拟的准确性有重大影响。最精确的组合对应于使用精简多项式模型的3D模拟。但是,即使对于非轴对称几何形状,也可以牺牲一些精度并使用更简单,更快速的建模空间(即轴对称),至少对于此处考虑的模拟而言,因为建模空间的变化对精度的影响小于更改材料模型。

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