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CHIPPING REDUCTION USING THERMALLY-ASSISTED FRICTION ELEMENT WELDING

机译:使用热辅助摩擦元件焊接减少减少

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The use of multiple material in the structural components of a vehicle allows for significant weight reduction. Friction element welding (FEW) is a novel method that allows the joining of two or more dissimilar material sheets. A limitation of this process is the chip formation in high strength aluminum alloys, which is observed as the protrusion of thin aluminum segments from under the head of the fastener. Chipping can degrade the joint's strength over time due to accelerated crevice corrosion.A novel method is proposed to eliminate chip formation using thermal assistance. A grading scheme is developed to quantify the severity of chip formation. The effect of thermal assistance on chipping is analyzed. An investigation is also carried out to validate that the thermal assistance does not negatively affect the process time, energy, and joint strength. Thermal assistance is proposed to be a novel method of overcoming this limitation to allow more widespread use of the FEW process for higher-strength aluminum alloys. Future work will include the development of feasible, rapid methods of heating and measurement of energy utilization for implementation in the industrial environment.
机译:在车辆的结构部件中使用多种材料允许减轻重量。摩擦元件焊接(少数)是一种新的方法,允许连接两个或更多个异种材料片。该方法的限制是高强度铝合金中的芯片形成,其观察到作为薄铝段从紧固件下方的突起。由于加速缝隙腐蚀,切削会随着时间的推移而降低关节的强度。提出了使用热辅助消除芯片形成的新方法。开发了一种分级方案来量化芯片形成的严重程度。分析了热辅助对碎裂的影响。还进行了调查以验证热辅助不会对处理时间,能量和关节强度产生负面影响。提出热辅助是一种克服这种限制的新方法,以便更广泛地使用少数铝合金的少数工艺。未来的工作将包括开发可行,快速加热和测量能源利用的方法,以便在工业环境中实施。

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