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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Optimization strategies for robotic additive and subtractive manufacturing of large and high thin-walled aluminum structures
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Optimization strategies for robotic additive and subtractive manufacturing of large and high thin-walled aluminum structures

机译:大型薄壁铝结构机器人添加剂和减法制造的优化策略

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摘要

Wire and arc additive manufacturing (WAAM) based on gas metal arc welding (GMAW) is a potential technology for fabricating large-scale metallic structures due to its high deposition rate, high energy efficiency, and low cost. It can produce near net-shape components by depositing metallic material layer by layer using a welding process. This paper presents a robotic additive and subtractive manufacturing system. In manufacturing large and high thin-walled structures, a critical issue is the unevenness of the layers. The accumulation of layers with poor flatness leads to significant differences in the heights of different positions in a layer, making it unable to continue the multi-layer material depositing process. The objective of this research is to investigate optimization strategies for manufacturing large and high thin-walled metallic structures with the robotic additive and subtractive manufacturing system. Three optimization strategies are proposed to obtain flat layers, including deposition with weaving, arc igniting and arc extinguishing control, and local measuring and milling strategy. Experiments were designed to explore the effect of these strategies. The experimental results show that the combination of these strategies can improve the surface flatness of layers, reducing the differences in the heights of a layer. Using these strategies, a large and high thin-walled component is manufactured, demonstrating the potential for fabricating large metallic parts in a very short time by the robotic additive and subtractive manufacturing system. Besides, regression models were generated for establishing the relationship between process parameters and bead geometry in deposition with weaving.
机译:基于气金属弧焊(GMAW)的电线和弧添加制造(WAAM)是由于其高沉积速率,高能量效率和低成本而制造大型金属结构的潜在技术。它可以通过使用焊接工艺通过层沉积金属材料层来生产近净形部件。本文介绍了机器人添加剂和减法制造系统。在制造大型和高薄壁结构中,关键问题是层的不均匀性。平坦度差的层积聚导致层中不同位置的高度的显着差异,使其无法继续多层材料沉积过程。本研究的目的是调查用机器人添加剂和减法制造系统制造大型和高薄壁金属结构的优化策略。提出了三种优化策略来获得平面层,包括沉积,具有编织,弧点火和灭火控制,以及局部测量和铣削策略。实验旨在探讨这些策略的效果。实验结果表明,这些策略的组合可以改善层的表面平坦度,降低层的高度的差异。使用这些策略,制造了大型和高薄壁部件,展示了通过机器人添加剂和减法制造系统在很短的时间内制造大金属部件的可能性。此外,生成回归模型,用于在沉积中建立过程参数和珠子几何形状的关系。

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