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Wear-Resistant Surfacing Layer Preparated by High Efficiency Twin-Wire Indirect Arc Welding

机译:耐磨表面层采用高效双线间接电弧焊接制备

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Twin-wire indirect arc welding (TWIAW) is a novel welding technology with high deposition efficiency and low dilution rate, which is especially suitable for wear-resistant surfacing. In this study, wear-resistant surfacing layer was prepareted on low-carbon steel using flux cored wire by TWIAW. The influence of welding parameters on droplet transition and the surfacing layers property were studied. In the TWIAW process, due to rapidly solidification of the weld pool, wear-resistant reinforced phase synthesized through metallurgical reaction mainly finished in the droplet transfer stage using the welding arc. The welding parameters not only affected the droplet transfer frequency and size, but also affected the microstructure of the surfacing layer. The main reinforcing phase in the surfacing layer was chromium carbide. "Lean carbon" phenomenon could be observed along the grain boundary in the matrix when the welding current was small. The increasing of the welding current could prompt the metallurgical reaction. The wear resistance of the surfacing layers depends on the distribution of the chromium carbide and the matrix microstructure.
机译:双线间接电弧焊接(TWIAW)是一种具有高沉积效率和低稀释速率的新型焊接技术,特别适用于耐磨表面。在该研究中,通过TWIAW使用磁通芯线在低碳钢上洗涤耐磨表面层。研究了焊接参数对液滴转变和浮出水层性能的影响。在TWIAW工艺中,由于焊接池的快速凝固,通过焊接弧线主要在液滴传输阶段完成耐磨增强阶段。焊接参数不仅影响了液滴传输频率和尺寸,而且影响了表面层的微观结构。表面层中的主要增强相是碳化铬。当焊接电流小时,可以沿矩阵中的晶界观察“稀碳”现象。焊接电流的增加可以提示冶金反应。表面层的耐磨性取决于碳化物的分布和基质微观结构。

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