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Experimental Investigation on Micro-Welding of Thin Stainless Steel Sheet by Fiber Laser | Science Publications

机译:光纤激光对不锈钢薄板进行微焊接的实验研究科学出版物

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> Problem statement: The miniaturization of components plays an important role for manufacturing in electrical and electronic industries. Therefore, the joining technology of thin metal sheets has been strongly required. Laser welding with micro-beam and high-speed scanning is a promising solution in micro-welding, because it has high-potential advantages in welding heat sensitive components with precise control of heat input and minimal thermal distortion. Approach: In this study, the characteristics of laser micro-welding of thin stainless steel sheets by using a single-mode CW fiber laser with high-speed scanning system were experimentally investigated. Results: It was clarified that the welding bead width and depth increased with increasing the scanning velocity under a constant energy density condition and high efficient welding was expected by using high-speed laser scanning with Galvano scanner. The utilization of shielding gas is very effective to obtain smooth fusion bead and the combination of micro beam spot and high-speed laser scanning made it possible to obtain good overlap welding of ultra-thin stainless steel sheets. Conclusion: A faster and high quality welding could be achieved by using a single-mode fiber laser with micro-beam and high-speed scanning.
机译: > 问题陈述:组件的小型化对于电气电子行业的制造起着重要作用。因此,强烈需要薄金属板的接合技术。具有微束和高速扫描功能的激光焊接是微焊接中一个有前途的解决方案,因为它在焊接热敏元件方面具有很高的优势,同时可以精确控制热量输入并最小化热变形。 方法:在本研究中,实验研究了使用单模式连续波光纤激光器和高速扫描系统对不锈钢薄板进行激光微焊接的特性。 结果:可以看出,在恒定能量密度条件下,随着扫描速度的增加,焊缝的宽度和深度会增加,并且有望通过使用Galvano扫描仪进行高速激光扫描来实现高效焊接。利用保护气体非常有效地获得光滑的熔珠,并且微束斑和高速激光扫描的结合使超薄不锈钢板的良好搭接焊接成为可能。 结论:通过使用具有微束和高速扫描的单模光纤激光器,可以实现更快,更高质量的焊接。

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