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Thermal cycles and its effect on HAZ microstructure and mechanical properties of 10CrNi3MoV steel in double-sided double arc welding

机译:热循环及其对双面双电弧焊接10crni3mov钢的HAT微观结构和机械性能的影响

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摘要

Thermal cycles of heat-affected zones (HAZs) in double-sided double arc welding (DSDAW) were measured in this study. The microstructure and impact toughness of specimens imposing typical thermal cycles of coarse-grained heat-affected zone (CGHAZ) were analysed by using thermal simulation. The results show that the two arcs influenced each other even during the deposition of the fourth layer in each side. Both of the two arcs could reduce the cooling rate of HAZs. Besides, the heating of the rear arc may make HAZ sustain in bainite transformation interval for a long time and lead to the formation of granular bainite which could deteriorate welding joint. To obtain good toughness of joint by DSDAW, the arc distance during filling pass depositing should be properly enlarged to eliminate granular baintie under the premise that the trough temperature (T (t)) is higher than 200 A degrees C.
机译:在本研究中测量了双面双电弧焊接(DSDAW)中的热影响区域(HAZS)的热循环。 通过使用热模拟分析了粗粒热影响区(CGHAZ)典型热循环的模拟和冲击韧性。 结果表明,即使在每侧的第四层沉积期间,两个电弧也会影响彼此。 两个弧中的两个都可以降低HAZS的冷却速率。 此外,后弧的加热可能使HAX保持长时间的贝氏体转化间隔,并导致粒状贝氏体的形成,这可能会劣化焊接接头。 为了通过DSDAW获得良好的关节韧性,填充通过沉积过程中的电弧距离应得到适当的放大,以消除粒度的内部的前提(t(t))高于200℃。

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