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首页> 外文期刊>Sodagem & inspecao >Microstructure and Abrasion Resistance of Fe-Cr-C and Fe-Cr-C-Nb Hardfacing Alloys Deposited by S-FCAW and Cold Solid Wires
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Microstructure and Abrasion Resistance of Fe-Cr-C and Fe-Cr-C-Nb Hardfacing Alloys Deposited by S-FCAW and Cold Solid Wires

机译:S-FCAW和冷实心丝沉积的Fe-Cr-C和Fe-Cr-C-Nb堆焊合金的组织和耐磨性

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This work assesses the wear resistance behavior of different high Cr and Nb alloyed hardfacing deposits carried out by Self-shielded Flux Cored Arc Welding, considering the resulting microstructures as base for the analysis. To obtain non-commercial alloys, an “in-situ” technique was employed with addition of cold wire into the weld pool. Six combinations of two commercial FeCrC and FeCrNbC tubular wires and three different solid wires (AWS ER 70S-6, ER308LSi and ER 430) were used to obtain white cast iron hardfacing deposits on plain carbon steel subtracts. The welding parameters were identical for all combinations. Each deposit was characterized taking into account the resulting microstructure, hardness and abrasion wear resistance. The addition of a ferritic stainless solid wire in the weld pool resulted in the best wear resistance, which was boosted if Nb is present in the S-FCAW wire. The reason for these results was microstructure refinement and the presence of NbC and M7C3, the latter being present in all combinations.
机译:这项工作评估了通过自保护药芯药芯电弧焊进行的不同高Cr和Nb合金堆焊堆焊层的耐磨性能,并考虑了所得的微结构作为分析的基础。为了获得非商业合金,采用了“原位”技术,将冷焊丝添加到焊缝中。使用两根商业化的FeCrC和FeCrNbC管状焊丝以及三种不同的实心焊丝(AWS ER 70S-6,ER308LSi和ER 430)的六种组合来获得在普通碳钢减法剂上的白色铸铁表面堆焊层。所有组合的焊接参数均相同。考虑到所得的微观结构,硬度和耐磨性,对每种沉积物进行表征。在焊接熔池中添加铁素体不锈钢实心焊丝可获得最佳的耐磨性,如果S-FCAW焊丝中存在Nb,则会提高耐磨性。这些结果的原因是微结构细化以及NbC和M7C3的存在,后者存在于所有组合中。

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