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Laser beam welding of aluminum alloy 5754-O using a 3kW Nd: YAG laser and fiber optic beam delivery

机译:使用3kW Nd:YAG激光和光纤束传输对铝合金5754-O进行激光束焊接

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摘要

A program was conducted to evaluate laser beam welding of aluminum alloy 5754-O using a 3.0 kW Nd: YAG laser and fiber optic beam delivery. The alloy and laser system were chosen based on consideration for potential applications in the automotive industry. Process parameters were developed for producing autogenous, square-butt welds in 1.6 mm thickness. Metallographic analyses, mechanical property testing, and post weld formability testing were conducted to characterize joints produced under these conditions. Results of these evaluations indicate that the 3.0 kW Nd: YAG laser provides adequate power density and beam quality for welding of this thickness. Enhanced absorption associated with the Nd: TAG laser is believed to be responsible for improved stability of the weld pool and increased weld consistency. Results of tensile tests of the Nd: YAG laser beam welds provided over 90 percent of base metal strength and measurements of post process formability of the welds yielded approximately 70 percent of base metal formability.
机译:进行了一个程序,以评估使用3.0 kW Nd:YAG激光和光纤束传输对铝合金5754-O进行的激光束焊接。选择合金和激光系统是基于对汽车行业潜在应用的考虑。开发了工艺参数以生产厚度为1.6 mm的自生方形对接焊缝。进行了金相分析,力学性能测试和焊后成形性测试,以表征在这些条件下生产的接头。这些评估结果表明,3.0 kW Nd:YAG激光器可为该厚度的焊接提供足够的功率密度和光束质量。据信,与Nd:TAG激光有关的吸收增强是焊缝池稳定性提高和焊缝一致性提高的原因。 Nd:YAG激光束焊缝的拉伸试验结果提供了90%以上的母材强度,对焊缝的后加工成形性进行测量得出的结果约为母材成形性的70%。

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