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Effect of welding heat input on HAZ character in ultra-fine grain steel welding
作者姓名:张富巨  许卫刚  王玉涛  王燕  张学刚  廖永平
作者单位:[1]CollegeofPower&MechanicalEngineering,WuhanUniversity,Wuhan,430072 [2]WuhanSteelGroupCompanyTechniqueCenter,Wuhan,430080 [3]HarbinWeldingInstitute,Harbin,150080
摘    要:In this essay, we studied how heat input affected the microstructure, hardness, grain size and heat-affected zone (HAZ) dimension of WCX355 ultra-fine grain steel which was welded respectively by the ultra narrow-gap welding (UNGW) process and the overlaying process with CO2 as protective atmosphere and laser welding process. The experimental results show when the heat input changed from 1.65 kJ/cm to 5.93 kJ/cm, the width of its HAZ ranged from O. 6 mm to 2. 1 ram. The average grain size grew up from 2 ~ 5 pln of base metal to 20~70 um and found no obvious soften phenomenon in overheatedzone. The width of normalized zone was generally wide as 2/3 as that of the whole HAZ, and the grain size in this zone is smaller than that in base metal. Under the circumstance of equal heat input, the HAZ width of UNGW is narrower than that of the laser welding.

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Effect of welding heat input on HAZ character in ultra-fine grain steel welding
Zhang Fuju,Xu Weigang,Wang Yutao,Wang Yan,Zhang Xuegang,LIAO Yongping.Effect of welding heat input on HAZ character in ultra-fine grain steel welding[J].China Welding,2003,12(2):122-127.
Authors:Zhang Fuju  Xu Weigang  Wang Yutao  Wang Yan  Zhang Xuegang  LIAO Yongping
Abstract:In this essay, we studied how heat input affected the microstructure, hardness, grain size and heat-affected zone(HAZ) dimension of WCX355 ultra-fine grain steel which was welded respectively by the ultra narrow-gap welding (UNGW) process and the overlaying process with CO2 as protective atmosphere and laser welding process. The experimental results show when the heat input changed from 1.65kJ/cm to 5.93kJ/cm, the width of its HAZ ranged from 0.6mm to 2.1mm.The average grain size grew up from 2~5μm of base metal to 20~70μm and found no obvious soften phenomenon in overheated zone. The width of normalized zone was generally wide as 2/3 as that of the whole HAZ, and the grain size in this zone is smaller than that in base metal. Under the circumstance of equal heat input, the HAZ width of UNGW is narrower than that of the laser welding.
Keywords:heat input  heat-affected zone  ultra-fine grain steel  ultra narrow-gap welding
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