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Implementation of non-linear viscoelasticity for epoxy based thermoset polymers

机译:环氧基热固性聚合物的非线性粘弹性的实现

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摘要

Epoxy based polymers are widely used as thermal or / and electrical interfaces and as encapsulation material in the semiconductor industry. In order to shorten the product development process, simulation plays a more and more important role, especially in a very early design stage. Accurate description of the thermo-mechanical behavior of the individual materials is crucial for quantitative finite element analysis of the designed product. This paper focus on non-linear characterization of epoxy based thermoset polymers and presents the comparison of the material behavior based on the linear viscoelastic (LVE) method and non-linear viscoelastic (NLVE) method. Both methods can consider the effect of time and temperature. However, the LVE method is not capable to reproduce the behavior at large strain, where highly non-linear mechanical behavior of the tested thermosets is present. Here an advanced hyperviscoelastic Bergstrom-Boyce (BB) model is used to describe the highly non-linear effects quantitatively. Utilizing the NLVE method, significant improvement in the time and temperature domain as well as for the strain dependent relaxation is achieved.
机译:环氧基聚合物广泛用作半导体工业中的热或/和/和电界面以及封装材料。为了缩短产品开发过程,仿真扮演着越来越重要的角色,尤其是在非常早期的设计阶段。准确描述每种材料的热机械性能对于设计产品的定量有限元分析至关重要。本文着重于环氧基热固性聚合物的非线性表征,并提出了基于线性粘弹性(LVE)方法和非线性粘弹性(NLVE)方法的材料性能的比较。两种方法都可以考虑时间和温度的影响。但是,LVE方法不能重现大应变下的行为,在大应变下,存在被测热固性材料的高度非线性机械行为。在这里,先进的超粘弹性Bergstrom-Boyce(BB)模型用于定量描述高度非线性的影响。利用NLVE方法,可以在时域和温度域以及应变相关松弛方面获得显着改善。

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