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首页> 外文期刊>Journal of Materials Processing Technology >On the development of compressible pseudo-strain energy density for elastomers: Part 2 application to finite element
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On the development of compressible pseudo-strain energy density for elastomers: Part 2 application to finite element

机译:关于弹性体可压缩拟应变能密度的发展:第2部分在有限元中的应用

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摘要

This paper presents the results of a finite element procedure and analysis for pure gum rubber, based on a compressible strain energy function proposed by the authors. The development of the proposed separable, one-term compressible constitutive equations is explained. An explanation of the isochoric part of the strain energy function based on constitutive relation proposed by the authors is also discussed. A brief review of material properties and the basic equations of the finite element procedure are given. Fortran 77 was used to code the user-subroutine that calculates the element's isochoric tangent stiffness and isochoric first Piola-Kirchhoff stress from the proposed one-term strain energy density function. The subroutine was then implemented into a commercial finite element package. The Updated Lagrangian (UL) procedure was used, based on the principal stretch ratios in which the material moduli are initially determined in the principal direction and then transformed to the local coordinate. The results of the finite element analysis based on the Ogden and the proposed models were compared against the experimental data. It is shown that although the Ogden model produced an accurate result, the proposed model improves the results on two fronts. Firstly, the accuracy of the results is slightly increased in the uniaxial case and more noticeably so in the equibiaxial analysis. Secondly, the proposed model improved the analysis run-time by approximately 50 percent. In short, it was shown that the proposed one-term model exhibited a better representation of the material behavior.
机译:本文基于作者提出的可压缩应变能函数,给出了纯胶橡胶的有限元程序和分析结果。解释了拟议的可分离的一阶可压缩本构方程的发展。还讨论了作者提出的基于本构关系的应变能函数等速部分的解释。简要回顾了材料特性和有限元程序的基本方程。 Fortran 77用于对用户子程序进行编码,该子程序根据拟议的单项应变能密度函数计算单元的等速切线刚度和等速第一Piola-Kirchhoff应力。然后将该子例程实现为商用有限元程序包。基于主要拉伸比,使用了更新的拉格朗日(UL)程序,在该拉伸率中,材料模量首先沿主方向确定,然后转换为局部坐标。将基于Ogden和所提出模型的有限元分析结果与实验数据进行了比较。结果表明,尽管Ogden模型产生了准确的结果,但所提出的模型在两个方面都改进了结果。首先,在单轴情况下,结果的准确性略有提高,而在等双轴分析中,则更为明显。其次,提出的模型将分析运行时间缩短了约50%。简而言之,表明所提出的一期模型表现出更好的材料行为表征。

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