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Application of tubular hydroformed radiator support assembly to General Motors Corporation's new midsize SUVs

机译:管状液压成型散热器支撑组件在通用汽车公司新型中型SUV中的应用

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This paper presents the product design & development efforts to apply the tubular hydroformed radiator support structure assembly to General Motors Corporation's new SUVs. This represents that for the first time the space- frame type of structure assembly is used in integrated vehicle body application. The assembly is welded onto the front-end structure. By doing so, the body is greatly stiffened during the assembly process. Some benefits from this tubular design over the traditional stamped design have been realized. The product design started with all stamped radiator support assembly similar to the old design. As more and more styling, packaging, mass & structural requirements come to play, the stamped design could not satisfy all these requirements. It was found that the most efficient structure design within tight space will be using tubular structure, which can provide the largest section available by eliminating weld flanges (typically 20 mm). Going through several design iterations using one-piece lower tie-bar, two brackets (one for each side) for headlamp mounting, and one-piece upper tie-bar. The final production design, which consists of six pieces of hydroformed components; all of them are welded together except the upper tie-bar, which is bolted on its extensions and can be removed for service need. The complete assembly is welded to the upper rails in the body assembly. The considerations of the component formability & assembly efficiency play very important roles during the product design process. As an example, only three hydroforming dies are required to make those six pieces of components. One for the U-shaped lower tie-bar, one for those two vertical pieces (cut from one hydroformed tube), & the third one is for the upper tie-bar with its two extension pieces. The upper tie-bar is hydroformed together with its extensions as one piece. Both ends of the upper tie-bar are partially smashed & completely smashed in the hydroforming process. A mechanical shear is used to trim the ends of the upper tie-bar and then it is flipped over and bolted on its two extension pieces. By doing so, the matching conjugate features from hydroforming at the joints provide improved joint stiffness. In addition, all the hole piercings are done in the hydroforming dies. In summary, this new tubular hydroformed radiator support structure has provided us some benefits over the traditional stamped design both in product performances and manufacturing efficiency.
机译:本文介绍的产品设计开发力度,装配时,将管内高压成形散热器支撑结构给通用汽车公司的新的SUV。这表示在第一次结构的空间 - 帧类型组件被集成在车身应用中。该组件被焊接到前端结构。通过这样做,所述主体大大在组装过程期间加强。从这个管状设计比传统的冲压设计一些好处已经实现。该产品设计开始与所有冲压散热器支撑组件类似于旧的设计。随着越来越多的造型,包装,质量和结构要求来打,冲压设计不能满足所有这些要求。据发现,紧密的空间内的最有效的结构设计将要使用的管状结构,其可提供可用通过消除焊接法兰盘(典型地为20毫米)最大部分。通过使用单件下拉杆,两个支架(每侧一个),用于前照灯安装,并且单件式上部拉杆几个设计迭代下去。最终生产设计,它由六块液压成形组件;所有这些不同之处的上拉杆,其通过螺栓固定在其延伸部,并且可以对服务需要被去除被焊接在一起。完整的组件被焊接到主体组件上导轨。该组件成形性和组装效率发挥非常重要的作用在产品设计过程中的注意事项。作为一个例子,要求只有三个液压成形模具,使这些六件组件。一个用于U形下拉杆,一个用于这两个垂直件(从一个液压成形管切割),第三个是与它的两个延伸件的上拉杆。上连接杆与它的扩展作为一个部件一起液压成形。上连接杆的两端部分砸&在液压成形工艺彻底粉碎。机械剪切被用来调整上连接杆的端部,然后将其翻转并用螺栓固定在其两个延伸件。通过这样做,所述匹配缀合物从液压成形设有在接头处提供改善的关节僵硬。此外,所有的孔穿孔在液压成型模具来完成。总之,这个新的管状液压成形的散热器支撑结构,为我们提供了一些好处比传统的冲压设计,无论是在产品性能和生产效率。

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