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Tailoring Al–Li Alloy Surface Wettability with a Femtosecond Laser and Its Effect on Bonding Performance

机译:用Femtosecond激光剪裁Al-Li合金表面润湿性及其对粘接性能的影响

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摘要

In this study, a femtosecond laser was used to pretreat the surface of the Al–Li alloy, the surface micromorphology, roughness, contact angle, and surface wettability of which were adjusted by changing the laser scanning speed, and the sample was bonded into a single joint with polyether ether ketone (PEEK) adhesive. The mechanism of the laser surface treatment affecting the bonding strength of the Al–Li alloy was explored through tensile and shear experiments. The results indicated that optimizing the laser surface treatment parameters could change the surface roughness and surface micromorphology of the Al–Li alloy, so as to change its surface free energy and bonding strength. Compared with the untreated sample, the bonding strength of the Al–Li alloy increased by 81%, 95%, 107%, 91%, and 78% under the treatment of laser scanning at 25, 20, 15, 10, and 5 mm/s, respectively. As a whole, femtosecond laser etching of the Al–Li alloy surface had an important influence on its wettability and bonding performance.
机译:在本研究中,通过改变激光扫描速度来调节,通过改变激光扫描速度来调节,使用飞秒激光来预处理Al-Li合金的表面,表面微晶,粗糙度,接触角和表面润湿性,并将样品粘合到a中单个关节配聚醚醚酮(PEEK)粘合剂。通过拉伸和剪切实验探讨了影响Al-Li合金键合强度的激光表面处理的机理。结果表明,优化激光表面处理参数可以改变Al-Li合金的表面粗糙度和表面微观,以改变其表面自由能量和粘合强度。与未处理的样品相比,Al-Li合金的粘合强度在25,20,15,10和5mm处的激光扫描处理下增加了81%,95%,107%,91%和78% / s分别。作为一个整体,Al-Li合金表面的飞秒激光蚀刻对其润湿性和粘合性能具有重要影响。

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