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首页> 外文期刊>Journal of Laser Applications >Joining of multiple sheets in a butt-joint configuration using single pass laser welding with multiple spots
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Joining of multiple sheets in a butt-joint configuration using single pass laser welding with multiple spots

机译:使用具有多个斑点的单通激光焊接在对接 - 联合配置中加入多张纸

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The introduction of high-power single mode fiber lasers has given deeper and narrower welds than previously seen using lasers. In some cases, the weld becomes too narrow and must be expanded to fit the geometrical shape of a given welding task. Instead of using only one beam, it was suggested to split the beam into multiple spots placed in a prespecified pattern. In this way, the dimensions of the weld pool could be controlled. In this work, the spots are placed on a row perpendicular to the welding direction. This provided the ability to control the final weld face by controlling the width and depth of penetration independent of each other with minimum heat input. An examination was conducted on how the weld cross section is influenced by spot distance, number of spots, power, and focus. It is shown that a weld seam can be widened in steps by using multiple spots, and the depth can be controlled independently from the width by adjusting the laser power. It is possible to produce a rectangular like cross section of the weld by choosing correct design parameters. For a pattern with multiple spots on a row, equal depth of penetration in the weld bead is reached if the edge spots have 5%-10% more power than the center spots. Basic rules for design of spot patterns are given for a configuration with a single mode laser and spot diameter of empty set 85 mu m. The ability to bridge gaps is increased in multispot welding compared to multiple single passes. The technique shows promising results in welding parts which resembles the conditions of a real production regarding robustness and tolerances. (C) 2015 Laser Institute of America.
机译:高功率单模光纤激光器的引入给出了比先前使用激光器的更深层次和更窄的焊缝。在某些情况下,焊接变得太窄,必须扩展以适合给定焊接任务的几何形状。而不是仅使用一个光束,建议将光束分成以预先限定的图案放置的多个斑点。以这种方式,可以控制焊接池的尺寸。在这项工作中,斑点被放置在垂直于焊接方向的行上。这提供了通过控制最小热输入的宽度和彼此独立的宽度和深度来控制最终焊接面的能力。关于焊接横截面如何受到点距离,斑点,电源和焦点的影响的影响。结果表明,焊缝可以通过使用多个斑点在步骤中加宽,并且可以通过调节激光功率来独立地从宽度控制深度。通过选择正确的设计参数,可以通过选择焊接的矩形状横截面。对于连续多个斑点的图案,如果边缘点具有比中心斑点更高的功率,则达到焊接珠子中的相同深度。提供光斑模式的基本规则,用于具有单模激光和空设置85μm的单模激光和光斑直径的配置。与多个单一通道相比,多点焊接桥接间隙的能力增加。该技术表明,有希望的焊接部件的结果,其类似于实际生产的条件,这是关于鲁棒性和公差的实际生产的条件。 (c)2015年激光研究所。

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