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Obtaining a hyperelastic non-linear orthotropic material model via inverse bubble inflation analysis

机译:通过逆气泡膨胀分析获得超弹性非线性正交异性材料模型

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摘要

An inverse bubble inflation test is proposed utilizing full displacement field matching to obtain non-linear material models suitable for the Finite Element (FE) method. In this paper a known non-linear orthotropic material model is assumed as the solution for the inverse method to illustrate the process. A bubble inflation FE analysis is performed with the known material model to determine the load and displacement field from the assumed material. Polynomial surfaces are fit to the nodal displacement values of the FE model, such that the entire displacement field is stored as three unique polynomial surfaces. An error formulation was established to quantify the quality of fit between different bubble inflation displacement fields. Gradient based optimization is used to obtain the assumed material model by matching the full displacement field. The inverse bubble inflation test successful produces a non-linear orthotropic model that is analogous to the assumed non-linear orthotropic material, and thus demonstrates that the inverse bubble inflation analysis would be able to characterize other non-linear orthotropic materials.
机译:提出了一种反向气泡膨胀测试,利用全位移场匹配来获得适用于有限元(FE)方法的非线性材料模型。在本文中,假设采用已知的非线性正交异性材料模型作为逆方法的解,以说明该过程。使用已知的材料模型执行气泡膨胀FE分析,以确定假定材料的载荷场和位移场。多项式曲面适合于FE模型的节点位移值,因此整个位移场都存储为三个唯一的多项式曲面。建立误差公式以量化不同气泡膨胀位移场之间的拟合质量。基于梯度的优化用于通过匹配整个位移场来获得假定的材料模型。反向气泡膨胀试验成功地产生了一个非线性正交各向异性模型,该模型类似于假定的非线性正交各向异性材料,因此证明了反向气泡膨胀分析将能够表征其他非线性正交各向异性材料。

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