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首页> 外文期刊>Production Engineering: Research and Development >Improvement of a rivet geometry for the self-piercing riveting of high-strength steel and multi-material joints
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Improvement of a rivet geometry for the self-piercing riveting of high-strength steel and multi-material joints

机译:改进高强度钢和多材料接头自刺铆接的铆钉几何形状

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摘要

As a result of lightweight design, increased use is being made of high-strength steel and aluminium in car bodies. Self-piercing riveting is an established technique for joining these materials. The dissimilar properties of the two materials have led to a number of different rivet geometries in the past. Each rivet geometry fulfils the requirements of the materials within a limited range. In the present investigation, an improved rivet geometry is developed, which permits the reliable joining of two material combinations that could only be joined by two different rivet geometries up until now. Material combination 1 consists of high-strength steel on both sides, while material combination 2 comprises aluminium on the punch side and high-strength steel on the die side. The material flow and the stress and strain conditions prevailing during the joining process are analysed by means of numerical simulation. The rivet geometry is then improved step-by-step on the basis of this analysis. Finally, the improved rivet geometry is manufactured and the findings of the investigation are verified in experimental joining tests.
机译:由于轻巧的设计,在汽车体中的高强度钢和铝制的使用增加。自刺穿铆接是一种用于加入这些材料的既定技术。过去的两种材料的不同性质导致了过去的许多不同的铆钉几何形状。每个铆钉几何形状满足有限范围内材料的要求。在本研究中,开发了一种改进的铆钉几何形状,这允许两种材料组合的可靠连接,这两个材料组合只能通过两个不同的铆钉几何形状连接到现在。材料组合1由两侧的高强度钢组成,而材料组合2在模侧的冲头侧和高强度钢上包括铝。通过数值模拟分析了在接合过程中普遍存在的材料流动和应力和应变条件。然后基于该分析逐步改善铆钉几何形状。最后,制造改进的铆钉几何形状,并在实验连接试验中验证了研究的结果。

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