首页> 外文期刊>Materials Science >Arc Characteristics and Weld Bead Microstructure of Ti-6Al-4V Titanium Alloy in Ultra-high Frequency Pulse Gas Tungsten Arc Welding (UHFP-GTAW) Process
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Arc Characteristics and Weld Bead Microstructure of Ti-6Al-4V Titanium Alloy in Ultra-high Frequency Pulse Gas Tungsten Arc Welding (UHFP-GTAW) Process

机译:超高频脉冲气体弧焊(UHFP-GTAW)工艺中Ti-6Al-4V钛合金的电弧特性和焊胎微观结构

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摘要

To resolve the problem of grain coarsening occurring in the fusion zone and the heat-affected zone during conventional gas tungsten arc welding(C-GTAW) welded titanium alloy, which severely restricts the improvement of weld mechanical properties, welding experiments on Ti-6Al-4V titanium alloy by adopting ultra-high frequency pulse gas tungsten arc welding (UHFP-GTAW) technique were carried out to study arc characteristics and weld bead microstructure. Combined with image processing technique, arc shapes during welding process were observed by high-speed camera. Meanwhile the average arc pressure under various welding parameters were obtained by adopting pressure measuring equipment with high-precision. In addition, the metallographic samples of the weld cross section were prepared for observing weld bead geometry and microstructure of the fusion zone. The experimental results show that, compared with C-GTAW, UHFP-GTAW process provides larger arc energy density and higher proportion of arc core region to the whole arc area. Moreover, UHFP-GTAW process has the obviously effect on grain refinement, which can decrease the grain size of the fusion zone. The results also revealed that a significant increase of arc pressure while increasing pulse frequency of UHFP-GTAW, which could improve the depth-to-width ratio of weld beads.
机译:为了解决常规气体钨弧焊(C-GTAW)焊接钛合金中发生融合区和热影响区的谷物粗化问题,这严重限制了焊接机械性能的改善,Ti-6的焊接实验 - 采用超高频脉冲气体钨弧焊(UHFP-GTAW)技术进行了4V钛合金,以研究电弧特性和焊珠微观结构。结合图像处理技术,通过高速相机观察焊接过程中的电弧形状。同时,通过采用高精度的压力测量设备获得各种焊接参数下的平均电弧压力。另外,准备焊接横截面的金相样品用于观察熔融区的焊缝几何形状和微观结构。实验结果表明,与C-GTAW相比,UHFP-GTAW工艺提供较大的电弧能量密度和弧形芯区域比例较高到整个弧区域。此外,UHFP-GTAW工艺对晶粒细化具有明显影响,可以降低融合区的晶粒尺寸。结果还显示出电弧压力显着增加,同时增加UHFP-GTAW的脉冲频率,这可以提高焊珠的深度到宽度比。

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