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首页> 外文期刊>Journal of manufacturing science and engineering: Transactions of the ASME >Effect of Rivet Hardness and Geometrical Features on Friction Self-Piercing Riveted Joint Quality
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Effect of Rivet Hardness and Geometrical Features on Friction Self-Piercing Riveted Joint Quality

机译:铆钉硬度和几何特征对摩擦自冲铆接接头质量的影响

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摘要

Conventional magnesium alloys, due to their low ductility, have a poor self-piercing rivetability. Cracks always occur when the magnesium sheet is placed at the bottom layer, which brings great challenge to the use of the magnesium alloys. In this paper, friction self-piercing riveting (F-SPR) process was adopted to join 1 mm thick aluminum alloy AA6061-T6 to 2.2 mm thick magnesium alloy AZ31B, and the effect of rivet hardness and key geometrical features on joint formation were studied systematically. The experimental results showed that using rivets with a hardness of 190 HV, the top aluminum sheet could be well pierced and a larger rivet shank flaring value would be formed between rivet shank and the bottom magnesium. The effect of the rivet's geometrical features, including ribs under shoulder and inclination angle under shoulder, were examined using two evaluation criteria, i.e., rivet shank flaring value and remaining thickness, and found that the rivet with no ribs and 10 deg inclination angle under shoulder is suitable for joining 1 mm AA6061-T6 to 2.2 mm AZ31B in F-SPR process.
机译:常规的镁合金由于其低延展性而具有较差的自冲孔铆钉性。当将镁板放置在底层时总是发生裂纹,这给镁合金的使用带来了很大的挑战。本文采用摩擦自冲铆接(F-SPR)工艺将1 mm厚的AA6061-T6铝合金与2.2 mm厚的镁合金AZ31B连接起来,研究了铆钉硬度和关键几何特征对接头形成的影响系统地。实验结果表明,使用硬度为190 HV的铆钉,可以很好地刺穿顶部铝板,并且在铆钉柄和底部镁之间形成更大的铆钉柄扩口值。铆钉的几何特征的影响,包括肩部下方的肋骨和肩部下方的倾角,使用铆钉柄扩口值和剩余厚度两个评估标准进行了检验,发现铆钉在肩部下方无肋骨且倾斜角度为10度适用于在F-SPR工艺中将1 mm AA6061-T6连接到2.2 mm AZ31B。

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