论文标题

用于激光辅助添加剂制造的自动2D层分割的进化算法

An Evolutional Algorithm for Automatic 2D Layer Segmentation in Laser-aided Additive Manufacturing

论文作者

Liu, N., Ren, K., Zhang, W., Zhang, Y. F., Chew, Y. X., Fuh, J. Y. H., Bi, G. J.

论文摘要

工具路径计划是激光辅助添加剂制造(LAAM)和其他直接能量沉积(DED)过程中的重要任务。通过将切成薄片的2D层划分为子区域,可以进一步优化具有细长结构的复杂几何形状的沉积工具路径,并为不同的子区域设计适当的填充工具路径。但是,报告的2D层分割方法通常需要乏味且耗时的手动操作。为了提高分割效率,本文提出了一种基于2D层分割的进化计算的自主方法。该算法以识别和细分方式起作用。具体而言,最大的准四边形是从目标层迭代的。案例研究的结果验证了发达算法的有效性和功效。为了进一步提高其绩效,提出了一种粗糙的策略。通过多处理,该策略可以显着提高解决方案的多样性,而不会影响解决方案质量和搜索时间,从而在LAAM工具路径计划中提供了巨大的应用潜力。据《最佳作者》所知,这项工作是第一个解决LAAM过程中自动2D层细分问题的工作。因此,这可能是对该领域最新技术的有价值的补充。

Toolpath planning is an important task in laser aided additive manufacturing (LAAM) and other direct energy deposition (DED) processes. The deposition toolpaths for complex geometries with slender structures can be further optimized by partitioning the sliced 2D layers into sub-regions, and enable the design of appropriate infill toolpaths for different sub-regions. However, reported approaches for 2D layer segmentation generally require manual operations that are tedious and time-consuming. To increase segmentation efficiency, this paper proposes an autonomous approach based on evolutional computation for 2D layer segmentation. The algorithm works in an identify-and-segment manner. Specifically, the largest quasi-quadrilateral is identified and segmented from the target layer iteratively. Results from case studies have validated the effectiveness and efficacy of the developed algorithm. To further improve its performance, a roughing-finishing strategy is proposed. Via multi-processing, the strategy can remarkably increase the solution variety without affecting solution quality and search time, thus providing great application potential in LAAM toolpath planning. To the best of the authors knowledge, this work is the first to address automatic 2D layer segmentation problem in LAAM process. Therefore, it may be a valuable supplement to the state of the art in this area.

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