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5000系铝合金薄板与980MPa级冷轧超高强度钢薄板的三层机械压铆和自冲铆接

Mechanical Clinching and Self-Pierce Riveting of Thin Three Sheets of 5000 Series Aluminium Alloy and 980 MPa Grade Cold Rolled Ultra-High Strength Steel.

作者信息

Abe Yohei, Maeda Takato, Yoshioka Daiki, Mori Ken-Ichiro

机构信息

Faculty of Engineering, Toyohashi University of Technology, 1-1 Tempaku-cho, Toyohashi, Aichi 441-8580, Japan.

出版信息

Materials (Basel). 2020 Oct 23;13(21):4741. doi: 10.3390/ma13214741.

Abstract

One thin 5000 series aluminium alloy sheet and two thin 980 MPa grade cold rolled ultra-high strength steel sheets were joined by self-pierce riveting and mechanical clinching processes. The joinabilities for a combination of the aluminium and steel sheets in both processes were investigated for different die shapes in the experiment and finite element simulation. In self-pierce riveting, the three sheets were successfully joined for both combinations of the upper and lower aluminium alloy sheets by optimizing the shapes of a die and rivet. In mechanical clinching, the three sheets were successfully joined by an optimum die for the configuration of the upper aluminium alloy sheet. On the other hand, the three sheets for the configuration of the lower aluminium alloy sheet were not joined even by optimizing the die shape in the both finite element simulation and experiment, because the material flow of the steel sheets was insufficient to form the two interlocks. The tension-shear loads for the clinched and riveted sheets with the adhesive were almost the same, because the load for the adhesive was the highest. In the cross-tension test, however, the load by the adhesive was comparatively small.

摘要

一块薄的5000系列铝合金板材和两块薄的980MPa级冷轧超高强度钢板材通过自冲铆接和机械压铆工艺连接在一起。在实验和有限元模拟中,针对不同的模具形状,研究了这两种工艺中铝板和钢板组合的连接性能。在自冲铆接中,通过优化模具和铆钉的形状,成功地将上层和下层铝合金板材的两种组合的三张板材连接在一起。在机械压铆中,通过为上层铝合金板材的配置选择最佳模具,成功地将三张板材连接在一起。另一方面,即使在有限元模拟和实验中都优化了模具形状,下层铝合金板材配置的三张板材也未能连接,因为钢板的材料流动不足以形成两个互锁结构。使用粘合剂的压铆和铆接板材的拉剪载荷几乎相同,因为粘合剂的载荷最高。然而,在横向拉伸试验中,粘合剂的载荷相对较小。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/28f1/7660288/766bcb615485/materials-13-04741-g001.jpg

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