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Role of Predictive Engineering in the Design Evolution of a Thermoplastic Fender for a Compact SUV

机译:预测工程在紧凑型SUV热塑性护舷的设计演变中的作用

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Automotive fenders is one such example where specialized thermoplastic material Noryl (GTX)~* (blend of Polyphenyleneoxide (PPO) + Polyamide (PA)) has successfully replaced metal by meeting functional requirements. The evolution of a fender design to fulfill these requirements is often obtained through a combination of unique material properties and predictive engineering backed design process that accounts for fender behavior during the various phases of its lifecycle. This paper gives an overview of the collaborative design process between Mitsubishi Motors Corporation and SABIC Innovative Plastics and the role of predictive engineering in the evolution of a thermoplastic fender design of Mitsubishi Motors Corporation's compact SUV RVR fender launched recently. While significant predictive work was done on manufacturing and use stage design aspects, the focus of this paper is the design work related to identifying support configuration during the paint bake cycle. In this paper, simulation results of several real life design changes that were evaluated for their efficacy in reducing deformation during paint bake are presented followed by qualitative comparison between experimental and simulation data.
机译:汽车护舷就是这样的例子,其中专用热塑性材料Noryl(GTX)〜*(聚苯醚(PPO)+聚酰胺(PA)的混合物)已通过满足功能要求成功地替代了金属。挡泥板设计满足这些要求的发展通常是通过结合独特的材料属性和可预测的工程支持设计过程来实现的,这种设计过程考虑了挡泥板在其生命周期各个阶段的行为。本文概述了三菱汽车公司和SABIC Innovative Plastics之间的协作设计过程,以及预测工程在最近推出的三菱汽车公司紧凑型SUV RVR挡泥板的热塑性护舷设计演变中的作用。尽管在制造和使用阶段的设计方面进行了重要的预测工作,但本文的重点是与确定油漆烘烤周期中的支撑结构有关的设计工作。在本文中,提出了几种现实生活中的设计更改的仿真结果,这些更改针对降低油漆烘烤过程中变形的功效进行了评估,然后在实验数据和仿真数据之间进行了定性比较。

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