工艺参数匹配对镁合金搅拌摩擦沉积增材制造(AFSD)成形的影响

Influence of process parameters matching on additive friction stir deposition (AFSD) forming of Mg-Gd-Y-Zr alloy

  • 摘要:
    目的 旨在探究搅拌摩擦沉积增材制造(AFSD)中进给速度、送料速度等关键工艺参数对Mg-Gd-Y-Zr稀土镁合金成形质量的影响规律,建立工艺参数匹配策略。
    方法 采用单道单层沉积试验,在固定转速200 r/min下,调控进给速度与送料速度之间的匹配关系,结合表面形貌分析、横截面观测、粗糙度测量及材料填充率计算进行多维度评价。
    结果 进给速度60~100 mm/min窗口内粗糙度相对稳定;送料速度与进给速度共同主导沉积层几何尺寸与填充率,送料速度低于0.7 mm/s时,出现缺料缺陷。
    结论 建立了送料速度−进给速度−沉积体积的定量匹配模型,确定最佳工艺窗口,进给速度与送料速度分别为80~100 mm/mim和1.0~1.1 mm/s。

     

    Abstract: Objective The aim is to explore influence of key process parameters such as traverse speed and feed speed on forming quality of Mg-Gd-Y-Zr rare-earth magnesium alloy during additive friction stir deposition (AFSD), and to establish a matching strategy for process parameters. Methods Single-pass single-layer deposition experiments were conducted. With a fixed rotational speed of 200 r/min, matching relationship between traverse speed and feed speed was regulated. Multi-dimensional evaluations were performed through surface morphology analysis, cross section observation, roughness measurement, and material filling rate calculation. Results Roughness remained relatively stable within the range of 60~100 mm/min traverse speed. The feed speed and traverse speed dominated geometric dimensions and filling rate of deposition layer, and material shortage defects occurred when feed speed was lower than 0.7 mm/s. Conclusion A quantitative matching model feed speed-traverse speed-deposition layer volume was established, and the optimal process window was determined with traverse speed of 80~100 mm/min and feed speed of 1.0~1.1 mm/s.

     

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