日本ゴム協会誌
Print ISSN : 0029-022X
ゴム材料の力学特性同定とFEM解析への利用
飯塚 博山下 義裕
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2004 年 77 巻 9 号 p. 306-311

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The stress-strain behavior of rubber is non-linear and is usually described using the strain energy density function. From the viewpoint of the input data for finite element analysis (FEA), a number of models have been proposed to describe the behavior. Therefore, it is necessary to understand the feature of the models. Namely, the selection of the models is still a difficult subject when the FEA is performed. In this paper, the authors review the optimum identification of the stress-strain data of rubber for FEA input. This technical note is the summary of the discussion in the sectional meeting"mechanical properties of rubber"in the society of rubber industry, Japan. Ogden and Mooney-Rivlin models guarantee a marvelous expression under sufficient testing data, although they do not give a good description under insufficient testing data. Neo-Hookean model has possibilities to give an acceptable identification result under insufficient testing data, such as only a simple tensile testing data.

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