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Research on Mechanisms and Controlling Methods of Macro Defects in TC4 Alloy Fabricated by Wire Additive Manufacturing

机译:线材增材制造TC4合金宏观缺陷的机理与控制方法研究

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摘要

Wire feeding additive manufacturing (WFAM) has broad application prospects because of its advantages of low cost and high efficiency. However, with the mode of lateral wire feeding, including wire and laser additive manufacturing, gas tungsten arc additive manufacturing etc., it is easy to generate macro defects on the surface of the components because of the anisotropy of melted wire, which limits the promotion and application of WFAM. In this work, gas tungsten arc additive manufacturing with lateral wire feeding is proposed to investigate the mechanisms of macro defects. The results illustrate that the defect forms mainly include side spatters, collapse, poor flatness, and unmelted wire. It was found that the heat input, layer thickness, tool path, and wire curvature can have an impact on the macro defects. Side spatters are the most serious defects, mainly because the droplets cannot be transferred to the center of the molten pool in the lateral wire feeding mode. This research indicates that the macro defects can be controlled by optimizing the process parameters. Finally, block parts without macro defects were fabricated, which is meaningful for the further application of WFAM.
机译:送丝增材制造(WFAM)由于其低成本和高效率的优点而具有广阔的应用前景。但是,在横向送丝方式中,包括焊丝和激光增材制造,气体钨极电弧增材制造等,由于焊丝的各向异性,容易在部件表面产生宏观缺陷,这限制了其推广。和WFAM的应用。在这项工作中,提出了采用横向送丝的气体钨极电弧增材制造方法,以研究宏观缺陷的机理。结果表明,缺陷形式主要包括侧面飞溅,塌陷,较差的平面度和未熔化的焊丝。结果发现,热量输入,层厚,刀具路径和导线曲率可能会对宏观缺陷产生影响。侧面飞溅是最严重的缺陷,主要是因为在侧向送丝模式下,液滴无法转移到熔池的中心。研究表明,可以通过优化工艺参数来控制宏观缺陷。最终,制造出没有宏观缺陷的块状零件,这对于WFAM的进一步应用是有意义的。

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