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Robotic additive manufacturing system for dynamic build orientations

机译:动态建立方向的机器人添加剂制造系统

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Purpose - This paper aims to present a multi-axis additive robot manufacturing system (ARMS) and demonstrate its beneficial capabilities. Design/methodology/approach - ARMS was constructed around two robot arms and a fused filament fabrication (FFF) extruder. Quantitative experiments are conducted to investigate the effect of printing at different orientations with respect to gravity, the effect of dynamically changing build orientation with respect to the build tray when printing overhanging features, the effect of printing curved parts using curved, conformal layers. These capabilities are combined to print an integrated demonstrator showing potential practical benefits of the system. Findings - Orientation with respect to gravity has no effect on print quality; dynamically changing build orientation allows overhangs up to 90° to be cleanly printed without support structures; printing an arch with conformal layers significantly increases its strength compared to conventional printing. Research limitations/implications - The challenge of automatic slicing algorithms has not been addressed for multi-axis printing. It is shown that ARMS could eventually enable printing of fully-functional prototypes with embedded components. Originality/value - This work is the first to prove that the surface roughness of an FFF part is independent of print orientation with respect to gravity. The use of two arms creates a novel system with more degrees of freedom than existing multi-axis printers, enabling studies on printing orientation relationships and printing around inserts. It also adds to the emerging body of multi-axis literature by verifying that curved layers improve the strength of an arch which is steeply curved and printed with the nozzle remaining normal to the curvature.
机译:目的 - 本文旨在呈现多轴添加机器人制造系统(武器)并展示其有益能力。设计/方法/接近 - 臂围绕两个机器人臂和熔丝丝绒制造(FFF)挤出机构成。进行定量实验以研究相对于重力的不同取向的印刷的效果,在打印悬垂特征时动态地改变构建托盘的构建托盘的效果,使用弯曲的保形层的印刷弯曲部件的效果。这些功能组合以打印一个集成的演示器,显示系统的潜在实用益处。调查结果 - 相对于重力的定向对印刷质量没有影响;动态变化的构建方向允许在没有支撑结构的情况下清洁地印刷90°的悬垂;与常规印刷相比,用保形层印刷拱形显着提高其强度。研究限制/含义 - 多轴打印尚未解决自动切片算法的挑战。结果表明,武器最终可能能够用嵌入式组件打印全功能原型。原创性/值 - 该工作是第一个证明FFF部分的表面粗糙度与重力相对于重力的印刷方向无关。使用两个臂的使用创造了一种新的系统,具有比现有的多轴打印机更多的自由度,从而能够研究印刷方向关系和在刀片周围印刷。它还通过验证弯曲层提高拱形强度和印刷的曲线均匀地印刷的拱形的强度来增加多轴文献的新出现体。

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