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IMPROVED CO-SCHEDULING OF PRINTING PATH SCANNING FOR COLLABORATIVE ADDITIVE MANUFACTURING

机译:改进的协作添加剂制造的印刷路径扫描共调度

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Additive manufacturing processes, especially those based on fused filament fabrication (FFF) mechanism, have relatively low productivity and suffer from production scalability issue. One solution is to adopt a collaborative additive manufacturing system that is equipped with multiple extruders working simultaneously to improve productivity. The collaborative additive manufacturing encounters a grand challenge in the scheduling of printing path scanning by different extruders. If not properly scheduled, the extruders may collide into each other or the structures built by earlier scheduled scanning tasks. However, there existed limited research addressing this problem, in particular, lacking the determination of the scanning direction and the scheduling for sub-path scanning. This paper deals with the challenges by developing an improved method to optimally break the existing printing paths into sub-paths and assign these generated sub-paths to different extruders to obtain the lowest possible makespan. A mathematical model is formulated to characterize the problem, and a hybrid algorithm based on an evolutionary algorithm and a heuristic approach is proposed to determine the optimal solutions. The case study has demonstrated the application of the algorithms and compared the results with the existing research. It has been found that the printing time can be reduced by as much as 41.3% based on the available hardware settings.
机译:添加剂制造工艺,特别是基于熔融灯丝制造(FFF)机制的制造工艺,具有相对低的生产率并患有生产可扩展性问题。一种解决方案是采用协作添加剂制造系统,该制造系统配备有多个挤出机,同时工作以提高生产率。协同添加剂制造在不同挤出机的印刷路径扫描调度中遇到大挑战。如果未正确调度,挤出机可以彼此碰撞或由前面的调度扫描任务构建的结构。然而,存在有限的研究解决了该问题,特别是缺乏确定扫描方向的确定和子路径扫描的调度。本文通过开发一种改进的方法来涉及挑战,以使现有的打印路径最佳地将现有的打印路径分解为子路径,并将这些生成的子路径分配给不同的挤出机以获得最低可能的Mapspan。建立了数学模型以表征问题,提出了一种基于进化算法的混合算法和启发式方法来确定最佳解决方案。案例研究证明了算法的应用,并将结果与​​现有研究相比。已经发现,根据可用的硬件设置,打印时间可以减少多达41.3%。

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