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Development of an Intra-Layer Adaptive Toolpath Generation Control Procedure in the Laser Metal Wire Deposition Process

机译:激光金属线沉积工艺中层内自适应刀具路径生成控制程序的开发

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摘要

Recently developed concentric laser metal wire deposition (LMWD) heads allow metal addition processes which are independent of the deposition direction, thus enabling complex paths to be generated. The sensitivity of the process to height deviations has experimentally been observed to be greater with this type of head than with powder ones, therefore requiring more precise and local process control algorithms to be implemented. This work developed a methodology for measuring the part, layer by layer, using a 3D scanner based on structured laser light. Height corrections were applied to the mean and intra-layer height deviations by recalculating the deposition trajectories of the next layer to be deposited. Local height deviations were adjusted by varying the scanning speed, thus increasing the feed rate in the lower areas and decreasing it in the higher ones. Defects generated in the purpose, with height differences within the layer, were successfully corrected. A flat layer was re-established through the application of the control strategy. The internal integrity of the parts due to the scanning speed variation was analyzed, resulting in fully dense parts. The structured light measurement and height correction systems are found to be an affordable and time-efficient solution that can be integrated into an LMWD environment, thereby improving the process robustness.
机译:最近开发的同心激光金属线沉积(LMWD)头允许进行与沉积方向无关的金属添加过程,因此能够生成复杂的路径。实验上已经观察到,这种类型的喷头相对于粉末喷头对高度偏差的敏感性更高,因此需要实施更精确和局部的工艺控制算法。这项工作开发了一种使用基于结构化激光的3D扫描仪逐层测量零件的方法。通过重新计算下一层要沉积的沉积轨迹,对平均和层内高度偏差进行高度校正。通过改变扫描速度来调整局部高度偏差,从而提高下部区域的进给速度,而降低下部区域的进给速度。目的层中产生的缺陷(层内高度不同)已得到成功纠正。通过应用控制策略重新建立了平坦层。分析了由于扫描速度变化而导致的零件内部完整性,从而导致零件完全致密。发现结构化的光测量和高度校正系统是一种经济实惠且省时的解决方案,可以集成到LMWD环境中,从而提高了过程的鲁棒性。

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