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Effect of Pulse Current on Microstructure and Hardness of 316LN Weld Metal

机译:脉冲电流对316LN焊缝金属微观结构和硬度的影响

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316LN austenitic stainless steel (ASS) has been used as a magnetic support structure for ITER. Pulse current as a new materials processing method, has many remarkable advantages. In this paper, the pulse current was used to treat the 316LN ASS welded metal welded by narrow gap MAG welding. The influence of different pulse current parameters on microstructures and microhardness of 316LN austenitic stainless steel weld metal was investigated. It was found that the microstructure of 316LN weld metal had a transitional trend from columnar sub-grains to equiaxed grains when the pulse current is increased to 700A. As the pulse current gradually increasing, the microhardness of weld metal first showed a constant trend, then decrease, and finally increase; with the increase of processing time, the microhardness of weld metal increased; with the increase of pressure, the microhardness of weld metal increased too.
机译:316LN奥氏体不锈钢(ASS)已被用作磨料的磁性支撑结构。脉冲电流作为一种新的材料加工方法,具有许多显着的优点。本文采用脉冲电流处理窄间隙MAG焊接焊接的316LN屁股焊接金属。研究了不同脉冲电流参数对316LN奥氏体不锈钢焊接金属微结构和显微硬度的影响。发现当脉冲电流增加到700A时,316LN焊接金属的微观结构从柱状子晶粒到等轴晶粒的过渡趋势。随着脉冲电流逐渐增加,焊接金属的微硬度首先显示出恒定的趋势,然后降低,最后增加;随着加工时间的增加,焊缝金属的显微压增加;随着压力的增加,焊缝金属的显微压也增加。

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