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首页> 外文期刊>IIE Transactions >Toolpath allocation and scheduling for concurrent fused filament fabrication with multiple extruders
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Toolpath allocation and scheduling for concurrent fused filament fabrication with multiple extruders

机译:使用多台挤出机同时生产熔丝的刀具路径分配和调度

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摘要

Fused filament fabrication, like most layer-wise additive manufacturing processes, is hindered by low production rates and scalability issues. Concurrent fused filament fabrication mitigates these disadvantages by distributing the processing of each layer among multiple extruders working in parallel. The objective of this work is to develop a general toolpath allocation and scheduling methodology to achieve this objective. Breaks in a toolpath that are inherently created by slicing software for single-extruder machines are used to form sub-paths, and the assignment of these to available extruders is formulated as a scheduling problem with collision constraints. A formal optimization model is presented, and two novel heuristics are developed to obtain approximate solutions. Three case studies demonstrate the application of these algorithms and compare their relative performance with respect to fabrication time and computational cost. In simulations with three extruders, layer printing times were reduced by as much as 60% compared with single-extruder machines. The proposed heuristics also exceeded the performance of two baseline toolpath scheduling algorithms by as much as 45%. Two key layer characteristics were found to influence heuristic performance, and the advantages and disadvantages of each algorithm are discussed in the context of these characteristics.
机译:像大多数分层添加制造工艺一样,熔融长丝制造受到生产率低和可扩展性问题的困扰。并发熔融长丝制造通过在平行工作的多个挤出机之间分配每一层的加工来减轻这些缺点。这项工作的目的是开发一种通用的刀具路径分配和调度方法以实现这一目标。由单片挤出机的切片软件固有创建的刀具路径中断用于形成子路径,并将这些路径分配给可用的挤出机的过程被制定为具有冲突约束的调度问题。提出了一个正式的优化模型,并开发了两种新颖的启发式方法以获得近似解。三个案例研究证明了这些算法的应用,并比较了它们在制造时间和计算成本方面的相对性能。在三台挤出机的模拟中,与单挤出机相比,层印刷时间减少了多达60%。所提出的启发式方法还超过了两种基准刀具路径调度算法的性能多达45%。发现了两个关键层特征会影响启发式性能,并在这些特征的背景下讨论每种算法的优缺点。

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