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Influence of Al2O3 Particle Size on Microstructure, Mechanical Properties and Abrasive Wear Behavior of Flame-Sprayed and Remelted NiCrBSi Coatings

机译:al2O3粒径对火焰喷涂和重熔NiCrBsi涂层组织,力学性能和磨料磨损行为的影响

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摘要

The influence of micrometric alumina (low surface area-to-volume ratio) and nanometric alumina (high surface area-to-volume ratio) on microstructure, hardness and abrasive wear of a NiCrBSi hardfacing alloy coating applied to an AISI 304 substrate using flame spraying (FS) combined with surface flame melting (SFM) is studied. Remelting after spraying improved the mechanical and tribological properties of the coatings. Microstructural characterization using XRD, SEM and EDS indicated that alumina additions produced similar phases (NiSi, Ni3B, CrC and Ni31Si12) regardless of the alumina size, but the phases differed in morphology, size distribution and relative proportions from one coating to another. The addition of 12 wt.% nanometric Al2O3 increased the phases concentration more than five- to sixfold and reduced the hard phases size about four-to threefold compared with NiCrBSi + 12 wt.% micrometric Al2O3. Nanoalumina led to reduced mass loss during abrasive wear compared to micrometric alumina and greater improvement in hardness.
机译:微米氧化铝(低表面积/体积比)和纳米氧化铝(高表面积/体积比)对通过火焰喷涂法应用于AISI 304基底的NiCrBSi堆焊合金涂层的微观结构,硬度和磨粒磨损的影响(FS)与表面火焰熔化(SFM)结合进行了研究。喷涂后的重熔改善了涂层的机械和摩擦学性能。使用XRD,SEM和EDS进行的微结构表征表明,无论氧化铝尺寸如何,添加氧化铝都会产生相似的相(NiSi,Ni3B,CrC和Ni31Si12),但是这些相在形态,尺寸分布以及从一种涂层到另一种涂层的相对比例方面都不同。与NiCrBSi + 12 wt。%的微米级Al2O3相比,添加12 wt。%的纳米级Al2O3可使相浓度增加5到6倍以上,并使硬相尺寸减小约4到3倍。与微米氧化铝相比,纳米氧化铝可减少磨料磨损期间的质量损失,并提高硬度。

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