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Identification of Hyperelastic Constitutive Model for Rubber-Like Materials Based on Digital Image Correlation (Die) and Model Updating

机译:基于数字图像相关(Die)和模型更新的橡胶类材料超弹性本构模型识别

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The mechanical behavior of rubber-like materials is usually characterized by a strain energy density function, w. The parameters defining the density function, w, are considered as material parameters that need to be identified. Traditional experimental techniques, such as strain gauges, require numerous tests in homogeneous deformation modes and cut-out standard samples, to determine the appropriate strain energy form and parameters. In the present paper, the Finite Element (FE)-model updating based techniques is used to reduce the number of experimental tests for the identification of rubbery materials. In order to identity the analytical form of the strain energy, w, it is possible that we use only one single test of the component containing the rubberlike material. The example of an engine mount is used to illustrate the methodology. Two-dimensional field of inplane inhomogeneous strains on the surface of the rubber block is measured using a Digital Image Correlation (DIC) technique, which provides extensive amounts of experimental data in one single test, replacing traditional multiple tests with multidimensional loading paths. An optimization loop using the response surface method is applied to minimize the equilibrium gap to search for the parameters of the stain energy function.
机译:橡胶状材料的机械性能通常以应变能密度函数w为特征。定义密度函数w的参数被认为是需要确定的材料参数。传统的实验技术(例如应变仪)需要在均匀变形模式和切出的标准样品中进行大量测试,以确定合适的应变能形式和参数。在本文中,基于有限元(FE)模型更新的技术用于减少用于鉴定橡胶材料的实验测试的次数。为了确定应变能w的解析形式,有可能我们仅对包含橡胶状材料的组件进行一次测试。发动机支架的示例用于说明该方法。使用数字图像关联(DIC)技术测量橡胶块表面上的平面非均匀应变的二维场,该技术可在一次测试中提供大量实验数据,用多维加载路径替代了传统的多次测试。应用使用响应面方法的优化循环来最小化平衡间隙,以搜索染色能量函数的参数。

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