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Friction element riveting: a novel aluminum to aluminum joining process

机译:摩擦元件铆接:一种新型铝加入工艺

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Multimaterial joining has become necessary to continue to reduce vehicle mass in order to further improve fuel economy. Novel processes continue to be developed which are capable of joining various materials. Friction element welding (FEW) is one such process used to join aluminum and steel sheets. This process is well known for its rapid process times, typically less than two seconds, and its extraordinary robustness. FEW is also capable of joining aluminum sheets to the strongest steels used in automotive bodies.A derivative of the FEW process was explored, termed friction element riveting (FER). This process is used to perform aluminum to aluminum joining and shares many of the same benefits as FEW. For example, there remains no need for pre-hole drilling, a distinct advantage of the FEW process. Several strength metrics and the influence of process parameters are defined herein. It was determined that FER is a viable process for use in industrial applications. Through parameter optimization of the welding step, the joint resulted in a cross tension strength and transverse shear strength of 7.37±0.31 kN and 21.4±1.21 kN, respectively, which makes it a competitive technology for similar joining methods.
机译:多维连接是必须继续降低车辆的必要条件,以进一步改善燃料经济性。继续开发新方法,其能够加入各种材料。摩擦元件焊接(少数)是用于加入铝和钢板的这样的工艺。该过程众所周知,其快速的过程时间,通常不到两秒钟,以及其非凡的鲁棒性。很少有能力将铝板连接到汽车体中使用的最强钢。探索了少数过程的衍生物,称为摩擦元件铆接(FER)。该过程用于对铝合金进行铝,并分享许多相同的益处。例如,仍然不需要预孔钻孔,少数过程的明显优点。这里定义了几种强度度量和过程参数的影响。确定FER是用于工业应用的可行方法。通过焊接步骤的参数优化,接头产生交叉张力强度和横向剪切强度分别为21.4±1.21kN,这使其成为类似加入方法的竞争技术。

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