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Qualification of Direct Diode Lasers for Laser Beam Welding in Order to Enhance Process Efficiency

机译:激光束焊接直接二极管激光器的资格,以提高工艺效率

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Laser beam welding has become an established joining technique in automotive manufacturing. Common solid-state lasers generate high-quality joints, but they provide low energy efficiency. By contrast, direct diode lasers (DDL) have superior energy efficiency, are cheaper to purchase and additionally require less utility space. To examine the overall performance of direct diode lasers in comparison to disk lasers, welding quality and energy consumption of the two lasers have to be evaluated. Additionally, for this contribution the stability of the DDL's beam, like temporal variation of focus position and beam shape, is examined. It is found that a focus shift takes place for longer periods of emission, but the variation of the focus diameter in the initial focal plane is negligible. As expected, the direct diode laser consumes less energy than the disk laser for the same output power. Welding experiments are conducted using four different steel alloys that are exemplary for engineering materials used in automotive manufacturing. Metallographic analysis shows that weld seam depths and widths are on average larger using the disk laser. However even with the need for higher output powers to achieve equal seam geometries the DDL consumes less energy and thereby causes less costs.
机译:激光束焊接已成为汽车制造中的建立的连接技术。常见的固态激光器产生高质量的关节,但它们提供低能量效率。相比之下,直接二极管激光器(DDL)具有卓越的能效,购买更便宜,并且另外需要更少的公用事业空间。为了验证与磁盘激光器相比直接二极管激光器的整体性能,必须评估两个激光器的焊接质量和能耗。另外,对于该贡献,检查了DDL光束的稳定性,如焦点位置和梁形状的时间变化。结果发现,焦点变速发生以更长的发射时段,但初始焦平面中的焦点直径的变化可以忽略不计。如预期的那样,直接二极管激光器比磁盘激光器消耗更少的能量,以实现相同的输出功率。焊接实验采用四种不同的钢合金进行,该合金是汽车制造中使用的工程材料的示例。金相分析表明,使用盘激光,焊缝深度和宽度平均较大。然而,即使需要更高输出功率来实现相等的接缝几何形状,DDL消耗的能量较少,从而导致降低成本。

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