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Numerical simulation and parametric study on self-piercing riveting process of aluminium-steel hybrid sheets

机译:铝 - 钢混合板自刺铆接工艺的数值模拟与参数研究

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Self-piercing riveting (SPR) process has been widely applied in different industrial fields to join similar or dissimilar materials. This paper aims to investigate the SPR joinability of aluminium-steel hybrid sheets and obtain the design range of material strength and thickness distribution. A 2D axisymmetric numerical model is constructed based on r-adaptivity method to simulate the SPR process. The accuracy of the numerical model is validated by comparing the cross-sectional shape of SPR joint between test and simulation Parametric study is performed to explore the effects of material strength and sheet thickness on the SPR joinability and process quality indexes. The results show that (i) SPR joinability of aluminium-steel hybrid sheets can be improved by setting the softer and thicker sheet as the lower sheet when the flow stress of upper sheet is equal from 183MPa to 517MPa; (ii) Undercut decreases with an increase of sheet flow stress ratio, while the opposite trend is observed for minimum thickness. Undercut and minimum thickness decrease with an increase of sheet thickness ratio. (iii) a qualified SPR joint with good connection strength can be obtained when sheet flow stress ratio is equal from 0.27 to 1.84 and sheet thickness ratio is equal from 0.77 to 1.78. This study provides an available reference for determining the material strength and thickness distribution in the application of SPR of aluminium-steel hybrid sheets.
机译:自刺穿铆接(SPR)过程已广泛应用于不同的工业领域,以加入相似或不同的材料。本文旨在研究铝 - 钢混合动力板的SPR可加工性,并获得材料强度和厚度分布的设计范围。基于R适度方法模拟SPR过程的2D轴对称数值模型。通过比较测试和模拟参数研究之间的SPR关节的横截面形状来验证数值模型的准确性,以探讨材料强度和板材厚度对SPROD的效果和工艺质量指标的影响。结果表明,当上片的流量应力等于183MPa至517MPa时,可以通过将更柔软和较厚的片材设置为下片来改善铝 - 钢混合纸的SPR可加速性。 (ii)底切随片流量应力比的增加而降低,而相反的趋势是相反的厚度。底切和最小厚度随着片材厚度比的增加而降低。 (iii)当薄片流应力比等于0.27至1.84时,可以获得具有良好连接强度的合格的SPR接头,并且片材厚度比从0.77到1.78等于0.77。本研究提供了用于确定铝钢混合用纸SPR中的材料强度和厚度分布的可用参考。

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