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YAG Laser Spot Welding of PET and Metallic Materials

机译:YAG PET和金属材料的激光点焊

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摘要

Dissimilar materials joint has a great interest in industrial applications including automotives, aircrafts, medical, electronic industry, etc. Moreover, the combination of plastics and metals in the product would cater advantages in specific engineering application. In this study, direct joining using YAG laser spot welding for dissimilar materials joint between plastic and metallic materials has been investigated. Experimental result showed polyethylene terephthalate (PET) could be successfully joined to aluminum alloy (A5052), stainless steel (SUS 304) and copper (Cu). Shear tensile test was carried out to evaluate the joining strength. In the case of PET/Cu joint, the joining strength was almost constant regardless of heat input. However, the strength increased with increasing heat input for PET/A5052 and PET/SUS304 joints. Cross-sectional observation of the joined specimen showed no significant molten pool in the case of PET/Cu joint. On the other hand, an obvious weld pool was observed at the interface in metallic material side for PET/A5052 and PET/SUS304 joints. Differences of morphology at the interface would result from different material properties, such as reflectivity and absorptivity of laser, thermal conductivity, etc., of metallic materials used and might affect the joining strength.
机译:异种材料接头在汽车,飞机,医疗,电子工业等工业应用中具有极大的兴趣。此外,产品中塑料和金属的结合将在特定的工程应用中获得优势。在这项研究中,已经研究了使用YAG激光点焊直接焊接塑料和金属材料之间异种材料的方法。实验结果表明,聚对苯二甲酸乙二醇酯(PET)可以成功地与铝合金(A5052),不锈钢(SUS 304)和铜(Cu)连接。进行剪切拉伸试验以评价接合强度。在PET / Cu接头的情况下,无论输入多少热量,接头强度几乎都是恒定的。但是,强度随着PET / A5052和PET / SUS304接头的热量输入的增加而增加。在PET / Cu接头的情况下,对接合试样的横截面观察显示没有明显的熔池。另一方面,对于PET / A5052和PET / SUS304接头,在金属材料一侧的界面处观察到明显的熔池。界面处形态的差异将由所使用的金属材料的不同材料特性(例如激光的反射率和吸收率,导热率等)引起,并可能影响接合强度。

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