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Structural Integrity Evaluation of Plastic Welding (Heat Stake) Tower in Door Trim Panels of Vehicles Using Finite Element Method

机译:用有限元法测定车辆门饰板中塑料焊接(热桩)塔的结构完整性评价

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Structural integrity is a characteristic that must be evaluated during development of plastic parts as door trim panels. One of the critical areas in door trims is the interface between different parts that often use heat stakes due to process capacity and low costs. To predict issue on those interfaces, a methodology combining finite element analysis (FEA) and physical test results was applied to drive design in two door trim designs, with different material combinations. Aiming to support FEA conclusions, physical tests were performed to determine the maximum retention force that a heat stake withstands, indicating values about 168N for heat stakes of medium impact polypropylene blend >PP+EP(D)M-T<. and 216N for stakes of unfilled polypropylene copolymer >PP<. These values were used as upper limits for reaction forces provided by FEA in each heat stake under a load of 600 N at Pull Handle. The results for first door trim design indicated no structural issue in any heat stake, what generated a weld process investigation. Its conclusion indicated as root cause the weld quality. The results for second door trim design indicated an issue in one heat stake that required a relocation to redistribute the load. After including a new heat stake and redistributing their position, simulation indicated lower efforts, meeting the requirements. This methodology proved to be efficient to evaluate heat stakes performance during door trim development process.
机译:结构完整性是在作为门饰板的塑料部件的开发期间必须评估的特征。门装饰中的一个关键区域是不同部件之间的界面,这些部件之间经常使用由于工艺容量和低成本而导致的热赌注。为了预测这些界面上的问题,将有限元分析(FEA)和物理测试结果组合的方法应用于两个门装饰设计中的驱动设计,具有不同的材料组合。旨在支持FEA的结论,进行物理测试以确定热桩承受的最大保留力,指示介质冲击聚丙烯混合物的热赌注约168N的值> PP + EP(D)M-T <。为未填充聚丙烯共聚物> PP的赌注216N <。这些值被用作在拉手柄的600n的负载下通过FEA在每个热桩中提供的反应力的上限。第一门装饰设计的结果在任何热量股权中没有表明,产生焊接过程调查的任何结构问题。它的结论显示为根本原因焊接质量。第二门装饰设计的结果表明了一种在一个热桩中的问题,需要重新分配载荷。在包括新的热量股和重新分配其位置之后,仿真表明较低的努力,满足要求。该方法证明,在门修剪开发过程中评估热赌注性能有效。

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