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Microstructures and mechanical properties of bonding layers between low carbon steel and alloy 625 processed by gas tungsten arc welding

机译:气体钨弧焊加工低碳钢与合金625粘接层的微观结构和力学性能

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摘要

A filler metal wire, Alloy 625, was cladded on a plate of a low carbon streel, SS400, by gas tungsten arc welding, and the morphology of the weld bead and resulting dilution ratio were investigated under different welding parameter values (the input current, weld speed and wire feed speed). The wire feed speed was found to be most influential in controlling the dilution ratio of the weld bead, and seemed to limit the influence of other welding parameters. Two extreme welding conditions (with the minimum and maximum dilution ratios) were identified, and the corresponding microstructures, hardness and tensile properties near the bond line were compared between the two cases. The weld bead with the minimum dilution ratio showed superior hardness and tensile properties, while the formation lath martensite (due to relatively fast cooling) affected mechanical properties in the heat affected zone of the base metal with the maximum dilution ratio.
机译:填充金属线,合金625覆盖在低碳滴水,SS400的板上,通过气体钨电弧焊接,并在不同的焊接参数值下研究焊珠的形态并得到稀释比(输入电流, 焊接速度和送丝速度)。 在控制焊珠的稀释比方面,丝网进料速度被认为是最有影响力的,并且似乎限制了其他焊接参数的影响。 鉴定了两个极端焊接条件(具有最小和最大稀释比率),并在两种情况下比较了粘合线附近的相应组织,硬度和拉伸性能。 具有最小稀释比的焊缝显示出优异的硬度和拉伸性能,而形成Lath马氏体(由于相对快速的冷却)影响基础金属的热影响区域中的机械性能,最大稀释比。

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