Simulation of Stretching Deformation of Films for Electronic Devices in Automotive Applications

J. Liu, A. Higaki, N. Komatsu, S. Takanezawa
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Abstract

. In this study, we proposed a simulation method for film transverse stretching based on the finite element method using the orthogonal anisotropy plastic model. The simulation method can analyse the large deformation of film stretching and predict whether the kink band phenomenon occurs during the film transverse stretching. The validity of the simulation method was confirmed by the transverse stretching tests performed on the fluorine films with different longitudinal stretching ratios. Using the simulation method, we clarified that the plastic anisotropy index of the longitudinally stretched fluorine film has a great influence on the presence or absence of the kink band phenomenon during the film transverse stretching. The plastic anisotropy index of the longitudinally stretched fluorine film can be related to its birefringence, and the two are approximately in a linear relationship. Moreover, we revealed the change in film stretching deformation due to difference in the ratio of the stretching zone length to the width of the tenter.
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汽车电子器件薄膜拉伸变形的仿真研究
。本文提出了一种基于正交各向异性塑性模型的薄膜横向拉伸有限元模拟方法。该方法可以分析薄膜拉伸过程中的大变形,预测薄膜横向拉伸过程中是否出现扭结带现象。通过对不同纵向拉伸比的氟薄膜进行横向拉伸试验,验证了模拟方法的有效性。通过模拟方法,我们明确了纵向拉伸氟薄膜的塑性各向异性指数对薄膜横向拉伸时扭结带现象的存在与否有很大的影响。纵向拉伸氟薄膜的塑性各向异性指数可以与其双折射率有关,两者近似成线性关系。此外,我们还揭示了薄膜拉伸变形的变化是由于拉伸区长度与宽度之比的不同。
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