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Microstructure and Wear characteristics of Fe-based Hard-facing Alloy Claddings formed by gas tungsten arc welding

机译:气体钨极电弧焊形成的铁基硬面合金熔覆层的组织和磨损特性

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摘要

The current investigation discusses the effect of Mn and Si contents on the microstructure and abrasive wear characteristic in Fe-based hard-facing alloy. A series of Fe-based hard-facing alloys are successfully fabricated onto the S45C steel by gas tungsten arc welding (GTAW). Results reveal that microstructure contains great amounts of martensite phases and moderate amounts of austenite phases. Si element added into Fe-based hard-facing alloy can not obviously affect the properties of the claddings, such as martensite phase, hardness, and abrasive wear resistance. Nevertheless, Mn element added into Fe-based hard-facing alloy can efficiently affect the martensite phase, hardness, and abrasive wear resistance of the claddings. The martensite contents decreases with the increasing of Mn contents in the cladding layers. The hardness increases as the Mn contents decreases, because the martensite contents increases. The abrasive wear resistance is not only related to the hardness of the cladding layer but the martensite contents of the cladding layer. The abrasive wear resistance is an inverse proportion to Mn contents of the cladding layers. Especially, the cladding layers containing 1.4Si-0.3Mn has the highest hardness of HRC 60.1 and the lowest wear loss of 0.37g.
机译:目前的研究讨论了锰和硅含量对铁基硬面合金的组织和磨料磨损特性的影响。通过气体钨极电弧焊(GTAW)在S45C钢上成功地制造了一系列铁基硬面合金。结果表明,显微组织包含大量的马氏体相和中等量的奥氏体相。添加到铁基硬面合金中的硅元素不会明显影响覆层的性能,例如马氏体相,硬度和耐磨性。然而,添加到铁基硬面合金中的锰元素可以有效地影响包层的马氏体相,硬度和耐磨性。马氏体含量随着包层中Mn含量的增加而降低。硬度随着Mn含量的减少而增加,因为马氏体含量增加。耐磨性不仅与覆盖层的硬度有关,而且与覆盖层的马氏体含量有关。耐磨性与包层的Mn含量成反比。特别地,包含1.4Si-0.3Mn的覆层具有最高的HRC 60.1硬度和最低的0.37g的磨损损失。

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