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首页> 外文期刊>Journal of manufacturing science and engineering: Transactions of the ASME >Behavior and Quality Evaluation of Electroplastic Self-Piercing Riveting of Aluminum Alloy and Advanced High Strength Steel
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Behavior and Quality Evaluation of Electroplastic Self-Piercing Riveting of Aluminum Alloy and Advanced High Strength Steel

机译:铝合金和高级高强度钢的电化学自穿孔铆接行为和质量评估

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摘要

The hybrid use of dissimilar lightweight materials, such as aluminum alloy and advanced high strength steel (AHSS), has become a critical approach to reduce the weight of ground transportation vehicles. Self-piercing riveting (SPR) as a preferred cold-forming fastening method is facing problems like weak interlocking and insufficient penetration, due to the reduced formability of AHSS. In this paper, a new process named electroplas-tic self-piercing riveting (EP-SPR) was proposed to reduce the deformation resistance of AHSS DP780, by applying a direct current (dc) to it during the riveting process. The influence of dc on force and displacement characteristics throughout the riveting process, joint physical attributes and quasi-static performances for two sheet combinations, e.g., AA6061-T6 to DP780 (combination 1) and DP780 to AA6061-T6 (combination 2), were studied and compared with the traditional SPR joints. The results showed that compared with the traditional SPR joints, the EP-SPR ones increased by 12.5% and 23.3% in tensile-shear strength and cross-tension strengths for combination 1, respectively. For combination 2, even though the EP-SPR joints decreased by 5.8% in tensile-shear strength, it could reduce the penetration risk of bottom AA6061-T6, and present a better energy absorption capability for the increased undercut amount. In addition, the corresponding cross-tension strength of EP-SPR joints still increases by 6.1%.
机译:铝合金和高级高强度钢(AHSS)等不同轻质材料的混合使用已成为减轻地面运输车辆重量的关键方法。由于AHSS的可成形性降低,自穿孔铆钉(SPR)作为一种优选的冷成形紧固方法面临着诸如互锁性弱和渗透性不足的问题。为了提高AHSS DP780的变形抗力,在铆接过程中施加直流电,提出了一种新的工艺,称为电塑自穿孔铆接(EP-SPR)。在整个铆接过程中,直流电对力和位移特性,两种板材组合(例如AA6061-T6至DP780(组合1)和DP780至AA6061-T6(组合2))的联合物理属性和准静态性能的影响是研究并与传统的SPR接头进行了比较。结果表明,与传统的SPR接头相比,组合1的EP-SPR接头的抗剪强度和横向拉伸强度分别提高了12.5%和23.3%。对于组合2,即使EP-SPR接头的抗剪强度降低了5.8%,也可以降低AA6061-T6底部的渗透风险,并且对于增加的底切量表现出更好的能量吸收能力。此外,EP-SPR接头相应的抗拉强度仍增加了6.1%。

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