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Investigation of sensitive parameters in the structural simulation tool chain for fiber reinforced plastics in automotive electronic control units

机译:汽车电子控制单元中纤维增强塑料的结构仿真工具链中敏感参数的研究

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In automotive electronic control units (ECU) the use of fiber reinforced plastics is widely spread. In contrast to the common utilization of these materials their influence on the reliability of electronic or interconnecting components on Printed Circuit Board (PCB) is not yet sufficiently accounted for in design decisions in early stages of the product development. Fiber reinforced plastic parts exhibit a strong anisotropic macroscopic material behavior. Their deformation under thermal and mechanical load cannot be correctly predicted by simulation if oversimplified material properties are applied. However, this deformation behavior can dominate the strain and stress induced in electronic or interconnecting components on PCB and hence their reliability over lifetime. By means of an integrative simulation approach the influence of the microscopic fiber orientation on the macroscopic behavior of plastic parts can be evaluated. In this paper a study of sensitive parameters of the integrative simulation and their influence on the simulation quality and accuracy is presented. For this purpose test specimen have been cut from an ECU cover which is made of reinforced polybutylene terephthalate with 30 wt% short glass fiber (PBT-GF30). Subsequently, uni-axial, quasi-static tensile tests as well as structural finite element (FE) simulations, comparable to the experiments and including the mapping of fiber orientation information from injection molding simulation were performed.
机译:在汽车电子控制单元(ECU)中,纤维增强塑料的使用已广泛普及。与通常使用这些材料相反,在产品开发早期的设计决策中,它们对印刷电路板(PCB)上的电子或互连组件的可靠性的影响尚未得到充分考虑。纤维增强塑料零件表现出很强的各向异性宏观材料性能。如果应用过于简化的材料特性,则无法通过仿真正确预测它们在热和机械负载下的变形。但是,这种变形行为可能会控制PCB上电子或互连组件中产生的应变和应力,并因此影响其整个使用寿命的可靠性。通过集成模拟方法,可以评估微观纤维取向对塑料零件宏观行为的影响。本文对集成仿真的敏感参数及其对仿真质量和精度的影响进行了研究。为此目的,已从ECU盖上切下了试样,该ECU盖是由增强聚对苯二甲酸丁二酯和30%短玻璃纤维(PBT-GF30)制成的。随后,进行了单轴,准静态拉伸试验以及结构有限元(FE)模拟,与该实验相当,并包括了来自注射成型模拟的纤维取向信息的映射。

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