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Investigation of surfacing electrode with high hardness based on lath martensite

机译:基于板条马氏体的高硬度堆焊焊条的研究

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Based on lath martensite and carbides, the surfacing electrode with high hardness was developed owing to adding graphite, ferrotitanium (Fe-Ti), ferrovanadium (Fe-V), etc., in electrode coating. Although the content of carbon element in deposited metal is very high, the lath martensite is generated in welded metal because TiC-VC particles formed by means of high temperature arc metallurgic reaction. The mechanism of crack resistance and wearability were systemically studied by cracking test and wear test. The results show that the hardness of surfacing metal is above 60 HRC. Surfacing layers have fine crack resistence and high wearability. The mass loss of surfacing metal in unit area is only one-eighth comparing to EDZCr-C-15 electrode. It also greatly excels EDZCr-C-15 in crack resistence. Carbide particles formed by arc metallurgic reaction are dispersedly distributed in matrix structure. In the course of wear, carbides embedded in lath martensite provide a composite effect of hardness and toughness.
机译:基于板条马氏体和碳化物,由于在电极涂层中添加了石墨,钛铁(Fe-Ti),钒铁(Fe-V)等,开发了具有高硬度的堆焊电极。尽管沉积金属中碳元素的含量非常高,但由于通过高温电弧冶金反应形成的TiC-VC颗粒,在焊接金属中生成板条马氏体。通过开裂试验和磨损试验,系统地研究了抗裂机理和耐磨性。结果表明,堆焊金属的硬度高于60 HRC。堆焊层具有良好的抗裂性和高耐磨性。与EDZCr-C-15电极相比,单位面积堆焊金属的质量损失仅为八分之一。它的抗裂纹性也大大优于EDZCr-C-15。通过电弧冶金反应形成的碳化物颗粒分散地分布在基体结构中。在磨损过程中,嵌在板条马氏体中的碳化物提供了硬度和韧性的复合作用。

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