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用于悬垂薄壁结构多轴激光金属沉积的混合路径生成方法

Hybrid Path Generation Method for Multi-Axis Laser Metal Deposition of Overhanging Thin-Walled Structures.

作者信息

Liu Han, Xing Fei

机构信息

School of Mechanical Engineering, Shenyang University of Technology, Shenyang 110870, China.

Nanjing Zhongke Raycham Laser Technology Co., Ltd., Nanjing 210038, China.

出版信息

Micromachines (Basel). 2024 May 26;15(6):704. doi: 10.3390/mi15060704.

Abstract

Additive manufacturing has advantages over other traditional manufacturing technologies for the fabrication of complex thin-walled parts. Previous correlation path strategies, when applied to laser metal deposition processes, suffer from contour deposition transboundary and surface "scar" type overstacking. Therefore, this paper proposes a hybrid path generation method for the laser metal deposition process. First, the topological logic of the STL model of the part is restored to reduce redundant calculations at the stage of obtaining the layered contour. Then, the path points are planned on the basis of the offset contours in a helical upward trend to form a globally continuous composite path in space considering the melt channel width. Finally, vectors that adaptively fit to the model surface are generated for the path points as tool orientations and they are optimized by smoothing the rotation angles. The results of experiments conducted on a multi-axis machine equipped with a laser metal deposition module show that the path generated by the proposed method is not only capable of thin-walled structures with overhanging and curved surface features but also improves the surface imperfections of the part due to sudden changes in the angle of rotation while ensuring the boundary dimensions.

摘要

与其他传统制造技术相比,增材制造在制造复杂薄壁零件方面具有优势。以往的关联路径策略应用于激光金属沉积工艺时,存在轮廓沉积跨界和表面“疤痕”式叠层堆积问题。因此,本文提出一种用于激光金属沉积工艺的混合路径生成方法。首先,恢复零件STL模型的拓扑逻辑,以减少获取分层轮廓阶段的冗余计算。然后,基于偏移轮廓以螺旋上升趋势规划路径点,考虑熔池通道宽度在空间中形成全局连续的复合路径。最后,为路径点生成自适应拟合模型表面的向量作为刀具方向,并通过平滑旋转角度对其进行优化。在配备激光金属沉积模块的多轴机上进行的实验结果表明,所提方法生成的路径不仅能够用于具有悬垂和曲面特征的薄壁结构,而且在确保边界尺寸的同时,还改善了因旋转角度突然变化导致的零件表面缺陷。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6a87/11205837/8d1970f27304/micromachines-15-00704-g001.jpg

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