Weldability of Aluminium Alloys for Automotive Applications

D. Löveborn, J.K. Larsson, K.-A. Persson
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引用次数: 26

Abstract

Restrictions in CO2-emissions have caused increased demands on decreased weight and increased use of lightweight materials in the automotive industry. Aluminium has shown to be of great interest due to its beneficial weight to strength ratio, and are suitable for hang-on parts such as roof, doors etc. However, the use of aluminium requires reliable joining techniques. This project has been focusing on laser welding of aluminium. It have been reported earlier that hot cracks and porosity are common defects while joining aluminium with laser welding. The aim with this project has been to produce crack free laser welds while joining thin aluminium sheets. Two different optics have been used in this project, oscillating- and triple-spot optics. The results from the experiments show that both the oscillating optics and the triple-spot optics can produce crack free welds. The amount of pores is shown to be low for both cases. The results do also show that the amount of pores in the welds increases with the weld length while the flange length is of minor impact. The mechanical properties are similar for the both optics. The oscillation specimens receive a higher tensile strength while the triple-spot specimens receive a larger elongation at break value.

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汽车用铝合金的可焊性
对二氧化碳排放的限制导致汽车行业对减轻重量和增加使用轻质材料的需求增加。由于其有益的重量强度比,铝已显示出极大的兴趣,并且适用于悬挂部件,如屋顶,门等。然而,使用铝需要可靠的连接技术。本项目一直致力于铝的激光焊接。早前有报道称,热裂纹和气孔是铝激光焊接时常见的缺陷。该项目的目标是在连接薄铝板时生产无裂纹激光焊接。在这个项目中使用了两种不同的光学器件,振荡光学和三光斑光学。实验结果表明,振荡光学和三光斑光学都能产生无裂纹焊缝。在这两种情况下,气孔的数量都很低。结果还表明,焊缝气孔数量随焊缝长度的增加而增加,而法兰长度的影响较小。两种光学器件的机械性能相似。振荡试样具有较高的抗拉强度,而三点状试样具有较大的断裂伸长率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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