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Defect-free joining of zinc-coated steels by bifocal hybrid laser welding

机译:通过双焦点混合激光焊接实现镀锌钢的无缺陷连接

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摘要

Laser welding of zinc-coated steels in an overlap setup is prone to weld defects and seam expulsion reducing in particular the properties in mechanical loading and in general the deployability of such weldments in industry. Several laser welding process technologies failed to created defect-free welds in zinc-coated steels. This paper renders the welding of zinc-coated steels by the novel technology of bifocal hybrid laser welding. The zinc-coated steels under consideration are DX56D + Z, DC04 + ZE, and HXT700D. The bifocal hybrid laser system is realised by combining an Nd:YAG laser with a high power diode laser, both of 3 kW maximum output power. The beam parameter product (BPP) of the employed Nd:YAG laser of 25 mm mrad translates with an optical system of focal length f =150 mm into a circular focus of diameter 0.45 mm, whereas the BPP of the HPDL of 85 mm × 200 mm mrad can achieve a rectangular focus of 0.9 mm × 3.7 mm. The optical system allows the respective focal plane and relative position of the foci to be independently vertically and horizontally positioned. This paper presents research into the causes of instabilities in laser welding of zinc-coated steels. Experimental evidence is considered and presented to establish the need for an empirical process model for stable laser welding of zinc-coated steels. The increase of process robustness is discussed.
机译:以重叠方式进行的镀锌钢的激光焊接容易出现焊缝缺陷和焊缝脱落,特别是降低了机械负载的性能,并通常降低了此类焊件在工业中的可部署性。几种激光焊接工艺技术无法在镀锌钢中创建无缺陷的焊缝。本文提出了一种通过双焦点混合激光焊接的新技术进行镀锌钢的焊接。所考虑的镀锌钢为DX56D + Z,DC04 + ZE和HXT700D。通过将Nd:YAG激光器和高功率二极管激光器(最大输出功率均为3 kW)组合在一起,可以实现双焦点混合激光器系统。使用的25 mm mrad Nd:YAG激光器的光束参数乘积(BPP)通过焦距f = 150 mm的光学系统转换为直径0.45 mm的圆形焦点,而HPDL的BPP为85 mm×200毫米mrad可以实现0.9毫米×3.7毫米的矩形焦点。光学系统允许相应的焦平面和焦点的相对位置独立地垂直和水平定位。本文介绍了镀锌钢激光焊接不稳定性的原因。考虑并提出了实验证据,以建立稳定镀锌钢的激光焊接经验过程模型的需求。讨论了过程鲁棒性的提高。

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