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Comparative performance of a compression-molded I-section bumper beam with integrated mounting stays versus other GMT bumper designs

机译:压缩模制的I-段保险杠梁的比较性能与集成安装保持保持保持率与其他GMT保险杠设计

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The C-section bumper design has become a de facto engineering standard for the majority of thermoplastic bumpers on production vehicles. C-section beams can provide satisfactory performance in a wide range of crash scenarios and can be produced using a variety of plastics processing methods. However, owing to changes in bumper design requirements and advances in composites technology, recently many OEMs have begun considering use of I-section geometry, which has the potential to provide sign weight and packaging size savings while providing equivalent performance at a lower cost. This report will compare the performance of C- and I-section designs using a variety of different compression-moldable, glass-mat thermoplastic (GMT) composite materials. A software package will be introduced that makes it possible to evaluate an I-beam design for a given set of packaging requirements in a very short period of time. Processing details and costs for each approach will be considered, and a new method for integrating the mounting stays on the I-type beam will be described.
机译:C型保险杠设计已成为生产车辆大部分热塑性保险杠的事实上的工程标准。 C型梁可以在各种碰撞场景中提供令人满意的性能,并且可以使用各种塑料处理方法生产。然而,由于保险杠设计要求和复合材料技术进步的变化,最近许多OEM已经开始考虑使用I-段几何形状,这有可能提供符号重量和包装尺寸的节省,同时以较低的成本提供等效性能。本报告将使用各种不同的压缩 - 可模塑玻璃垫热塑性(GMT)复合材料进行比较C-和I段设计的性能。将引入软件包,使得可以在很短的时间段内评估给定的包装要求集的I光束设计。将考虑处理每种方法的处理细节和成本,并描述用于集成安装的新方法停留在I型光束上。

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