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Effects of flux composition on the element transfer and mechanical properties of weld metal in submerged arc welding

机译:埋弧焊中焊剂成分对焊缝金属元素转移和力学性能的影响

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Submerged arc welding was performed using metal-cored wires and fluxes with different compositions. The effects of wire/flux combination on the chemical composition, tensile strength, and impact toughness of the weld metal were investigated and interpreted in terms of element transfer between the slag and the weld metal, i.e., Δ quantity. Both carbon and manganese show negative Δ quantity in most combinations, indicating the transfer of the elements from the weld metal to the slag during welding. The amount of transfer, however, is different depending on the flux composition. More basic fluxes yield less negative Δ C and Δ Mn through the reduction of oxygen content in the weld metal and presumably higher Mn activity in the slag, respectively. The transfer of silicon, however, is influenced by Al2O3, TiO2 and ZrO2 contents in the flux. Δ Si becomes less negative and reaches a positive value of 0.044 as the oxides contents increase. This is because Al, Ti, and Zr could replace Si in the SiO2 network, leaving more Si free to transfer from the slag to the weld metal. Accordingly, the Pcm index of weld metals calculated from chemical compositions varies from 0.153 to 0.196 depending on the wire/flux combination, and it almost has a linear relationship with the tensile strength of the weld metal.
机译:埋弧焊使用具有不同成分的药芯焊丝和药芯进行。研究了焊丝/焊剂组合对焊缝金属化学成分,拉伸强度和冲击韧性的影响,并根据炉渣与焊缝金属之间的元素转移,即Δ量进行了解释。碳和锰在大多数组合中均显示负Δ值,表明在焊接过程中元素从焊缝金属转移到炉渣。但是,转移量根据焊剂组成而不同。通过减少焊缝金属中的氧含量和增加熔渣中的Mn活性,更多的基本焊剂会产生较少的负ΔC和ΔMn。然而,硅的转移受助熔剂中Al2 O3 ,TiO2 和ZrO2 含量的影响。随着氧化物含量的增加,ΔSi的负值变小,并达到0.044的正值。这是因为Al,Ti和Zr可以代替SiO2 网络中的Si,从而使更多的Si自由地从炉渣转移到焊接金属。因此,根据焊丝/焊剂的组合,由化学组成算出的焊接金属的Pcm指数在0.153〜0.196之间变化,与焊接金属的拉伸强度几乎呈线性关系。

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