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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Remote laser welding with in-line adaptive 3D seam tracking
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Remote laser welding with in-line adaptive 3D seam tracking

机译:具有在线自适应3D接缝跟踪的远程激光焊接

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摘要

Remote laser welding systems can usually focus a laser beam to diameters of 0.1 mm. Therefore, high quality clamping and precise teaching is needed in order to achieve appropriate process tolerance for a sound weld. This brings reservation in the field of small series and user-customized manufacturing, where product individualization requires flexible and adaptive systems as workpiece geometry is not exact due to manufacturing tolerances and thermal deformations during welding. The preparation for welding is therefore often time-consuming. To solve this, we have developed an innovative system, which enables in-line adaptive 3D seam tracking. The system consists of an industrial robot (Yaskawa MC2000), a scanning head (HighYag RLSK; working area 200 mm x 300 mm x 200 mm) with optical triangulation feedback and a fiber laser (IPG, YRL-400-AC; 400 W). A feed-forward loop was used to achieve positioning accuracy of under 0.05 mm during on-the-fly welding. Experimental results show that between welding speeds of 25 and 150 cm/min, average tracking deviations are 0.043 mm and 0.276 mm in y and z directions, respectively. Moreover, teaching times for a specified seam can be shortened for more than 10 times due to the fact that only rough seam teaching is required. The proposed system configuration could be adapted to other classical welding processes.
机译:远程激光焊接系统通常可以将激光束聚焦到直径为0.1mm。因此,需要高质量的夹紧和精确的教学,以便为声焊的适当的工艺公差。这为小系列和用户定制制造领域提供了预订,其中产品个性化需要柔性和自适应系统,因为工件几何形状由于在焊接过程中的制造公差和热变形而不是精确。因此,焊接的制备通常耗时。为了解决这个问题,我们开发了一款创新系统,可实现在线自适应3D接缝跟踪。该系统由工业机器人(Yaskawa MC2000),扫描头(高粘度RLSK;工作面积200mm x 300 mm×200mm),光三角测量反馈和光纤激光器(IPG,YRL-400-AC; 400 W) 。前馈回路用于在飞行期间实现0.05mm以下的定位精度。实验结果表明,在25和150cm / min的焊接速度之间,平均跟踪偏差分别在Y和Z方向上为0.043mm和0.276mm。此外,由于只需要粗糙的缝线教学,所指定接缝的教学时间可以缩短超过10倍。所提出的系统配置可以适用于其他经典焊接过程。

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