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Reducing arc heat input and obtaining equiaxed grains by hot-wire method during arc additive manufacturing titanium alloy

机译:电弧增材制造钛合金过程中减少电弧热输入并通过热线法获得等轴晶粒

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摘要

Arc additive manufacturing technology has high deposition efficiencies and material utilization rates. However, the large heat input and high temperature gradient during arc additive manufacturing process lead to the formation of the coarse columnar grains. Due to the presence of the coarse columnar grains, the mechanical properties of the part have great anisotropy which limits the application of it. In this experiment, a method named hot-wire arc additive manufacturing was adopted to reduce the arc heat input and refine the columnar grains, and four thin-walled samples with the material of Ti-6.5Al-3.5Mo-1.52r-0.3Si were manufactured. It is interesting to find that the coarse columnar grains have been greatly refined, and finally a part consisting of equiaxed grains and short columnar grains was obtained. At the same time, the width of the alpha-lath has also been refined. The mechanical properties are in accordance with the grain changes and the anisotropy almost disappeared. And it seems that a part with comprehensive mechanical properties can be obtained by the hot-wire arc additive manufacturing.
机译:电弧增材制造技术具有很高的沉积效率和材料利用率。然而,电弧添加制造过程中的大的热输入和高温梯度导致形成粗大的柱状晶粒。由于存在粗大的柱状晶粒,零件的机械性能具有很大的各向异性,从而限制了其应用。在该实验中,采用了一种称为热丝电弧增材制造的方法来减少电弧热输入并细化圆柱状晶粒和四个采用Ti-6.5Al-3.5Mo-1.52r-0.3Si材料的薄壁样品被制造。有趣的是,粗圆柱状晶粒得到了极大的细化,最终获得了由等轴晶粒和短圆柱状晶粒组成的零件。同时,alpha条带的宽度也得到了改进。力学性能随晶粒的变化而变化,各向异性几乎消失了。而且似乎可以通过热丝电弧增材制造获得具有综合机械性能的零件。

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