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A THREE-DIMENSIONAL FINITE ELEMENT ANALYSIS OF PROCESS-INDUCED RESIDUAL STRESS IN RESIN TRANSFER MOLDING PROCESS

机译:树脂转移成型过程中工艺诱导的残余应力的三维有限元分析

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A three-dimensional finite element analysis of curing and process induced residual stress in Resin Transfer Molding (RTM) process is presented。The finite element method (FEM) was employed to solve the coupled equations involved in the transient heat transfer and the cure kinetics of the resin and the distributions of internal temperature and cure degree of the composite at any instant time are obtained. The self-consistent field micro-mechanics model was used to predict the cure dependent composite mechanical properties. Thermal expansion and cure shrinkage were included in the analysis. The thermo-elastic mechanical governing equations were solved with the use of the incremental stress-strain relationship based FEM and the residual stress development was predicted. The present results were validated by the comparisons with the pertinent literature. The numerical example of a half cylinder was presented. The results show that it is necessary to carry out the three dimensional analysis due to the complex distributions of temperatures, cure degrees and process-induced stress for thick parts, which can be predicted at any point within composite structures in the present analysis.
机译:介绍了树脂转移模制(RTM)工艺中的固化和工艺诱导的残余应力的三维有限元分析。采用有限元方法(FEM)来解决瞬态传热和固化动力学涉及的耦合方程获得树脂和内部温度和在任何即时时间的内部温度和固化程度。自一致的现场微型力学模型用于预测固化依赖性复合机械性能。分析中包括热膨胀和固化收缩。通过使用基于增量应力 - 应变关系的FEM和预测残余应力发展,解决了热弹性机械控制方程。目前的结果通过与相关文献的比较验证。提出了半圆筒的数值例子。结果表明,由于在本分析中的复合结构中的任何点,可以在复合部件内的任何点预测由于温度,固化度和工艺诱导的应力的复杂分布,所以必须进行三维分析。

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