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Asymmetric molten pool morphology in wire-arc directed energy deposition: Evolution mechanism and suppression strategy

机译:线弧定向能量沉积中的不对称熔池形貌:演化机理及抑制策略

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摘要

Symmetric molten pool morphology is essential and fundamental in manufacturing three-dimensional (3D) components by wire-arc directed energy deposition (DED) method. However, when the molten metal droplets are deposited on non-level surfaces, various inclined substrates lead to undesirable molten pool behaviors, asymmetrical weld bead morphologies, or even formation of defects, which are mainly triggered by the gravity. Therefore, the evolution mechanism and suppression strategy of the asymmetric molten pool morphology on the inclined surface are necessary for the fabrication of 3D components. Herein, experimental and simulation analysis was carried out to reveal the evolutionary mechanism of molten pool and forming characteristics of wire-arc DED on various inclined surfaces, and a printing strategy was proposed to suppress the asymmetric molten pool morphology. First, a series of deposition experiments based on variable tilted substrates was conducted to evaluate the influence mechanism of weld bead morphology, and a characteristic parameter was introduced to quantitatively analyze the influence of inclination angle on the forming morphologies of weld beads. Second, in order to better comprehend the evolution of the asymmetric molten pool morphology, 3D numerical simulation and high-speed photography test were conducted to investigate the evolution of temperature field, velocity field, and fluid dynamics during the deposition on variable substrates. Finally, based on the theory of equilibrium of forces, a strategy was proposed to suppress the undesirable fluid flow pattern and eliminate the asymmetric morphology of single bead. Besides, for the multi-bead deposition process, this paper proposed an alternate printing strategy to alleviate asymmetric molten morphology and improve the forming quality. The feasibility of the proposed methods were verified via comparative quantitative evaluation.
机译:对称的熔池形态和至关重要基本生产三维(3 d)组件wire-arc定向能量沉积(d)方法。金属液滴沉积在非水平表面,各种斜底物导致不受欢迎的熔池行为,不对称焊缝形态,甚至形成缺陷,这主要是引发的重力。不对称的熔融抑制策略池斜表面形态3 d组件的制造所必需的。在此,实验和仿真分析进行了揭示进化机制熔池的形成特点wire-arc d在不同倾斜表面,和一个打印策略提出了抑制不对称的熔池形态。基于一系列沉积实验变量进行了倾斜的基板对焊缝的影响机制形态和特征参数介绍了定量分析倾角对成形的影响焊接珠子的形态。更好的理解的发展不对称熔池形态、三维数值模拟和高速摄影测试进行研究温度场的演变,速度场和流体动力学在变量基质沉积。力的平衡的理论策略提出了抑制不良流体流动模式和消除不对称形态的单一珠。multi-bead沉积过程,本文提出了一个替代印刷策略缓解熔融形态和不对称提高成形质量。拟议的方法验证通过相对定量评价。

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