Saborowski Erik, Dittes Axel, Lindner Thomas, Lampke Thomas
Materials and Surface Engineering Group, Faculty of Mechanical Engineering, Chemnitz University of Technology, Erfenschlager Straße 73, D-09125 Chemnitz, Germany.
Polymers (Basel). 2021 Apr 17;13(8):1320. doi: 10.3390/polym13081320.
Hybrid joints of metal- and fiber-reinforced-polymer offer great potential for lightweight applications. Thereby, a fast and reliable joining process is mandatory for mass-production applications. To this end, this study assesses inductive spot-joining in combination with prior thermal spray coating of the metal adherent. A nickel-aluminum 95/5 coating was applied to achieve high adhesion through mechanical interlocking and to act as susceptor for the inductive joining process. The joint strength was assessed with lap shear specimens consisting of EN AW-6082 aluminum alloy and glass fiber reinforced polyamide 6 or polypropylene, respectively. The joints were further investigated in terms of heating time and hygrothermal cyclic loading. The results showed that significant time savings for the joining process as well as strong adhesion were achieved due to the coating. Moreover, the high strengths were even preserved under hygrothermal cyclic loading.
金属与纤维增强聚合物的混合接头在轻量化应用方面具有巨大潜力。因此,对于大规模生产应用而言,快速可靠的连接工艺是必不可少的。为此,本研究评估了感应点焊与金属粘附体预先热喷涂涂层相结合的方法。通过机械互锁应用了镍铝95/5涂层,以实现高附着力,并作为感应连接过程的感受器。分别使用由EN AW-6082铝合金和玻璃纤维增强聚酰胺6或聚丙烯组成的搭接剪切试样评估接头强度。对接头在加热时间和湿热循环载荷方面进行了进一步研究。结果表明,由于涂层的作用,连接过程节省了大量时间,并且具有很强的附着力。此外,即使在湿热循环载荷下,高强度也得以保持。