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首页> 外文期刊>Tribology Transactions >Effect of Electron Beam Surface Melting on the Structure and Wear Characteristics of Cobalt-Based Hardfacing and Its Mo-Alloyed Version
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Effect of Electron Beam Surface Melting on the Structure and Wear Characteristics of Cobalt-Based Hardfacing and Its Mo-Alloyed Version

机译:电子束表面熔化对基于钴的性硬化结构和磨损特性及其MO合金的影响

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摘要

Electron beam surface melting has been applied as a posttreatment to plasma-transferred, arc-deposited Stellite 6 hardfacing and its molybdenum-alloyed version. Molybdenum addition increased the surface-related properties—that is, hardness and wear resistance—via enriching the microstructure with carbides. Application of electron beam surface melting caused a further increment in hardness and wear resistance of the molybdenum-alloyed hardfacing by encouraging hypereutectic solidification to form a network of carbides surrounding the cobalt matrix. However, electron beam surface melting of the unalloyed hardfacing, which favored individual precipitation of fine carbides in the microstructure, decreased the wear resistance in contrast to the hardness.
机译:电子束表面熔化已被用作等离子体转移,电弧沉积的恒星6个硬裂和其钼合金版的后处理。 钼添加增加了表面相关的性质 - 即,通过富含碳化物的微观结构,通过富集的硬度和耐磨性。 电子束表面熔化的应用使得通过促进过度化凝固来形成钼合金硬化的硬度和耐磨性的进一步增加,形成围绕钴基质的碳化物网络。 然而,电子束表面熔化未合金化的硬折叠,其中有利于微观结构中的细碳化物的单独沉淀,与硬度相比,降低了耐磨性。

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