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首页> 外文期刊>Coatings >Effect of Nb Content on the Microstructure and Wear Resistance of Fe-12Cr-xNb-4C Coatings Prepared by Plasma-Transferred Arc Welding
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Effect of Nb Content on the Microstructure and Wear Resistance of Fe-12Cr-xNb-4C Coatings Prepared by Plasma-Transferred Arc Welding

机译:Nb含量对等离子体转移电弧焊接制备Fe-12Cr-XNB-4C涂层微结构和耐磨性的影响

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The Fe-Cr-C coatings with different levels of Nb addition were prepared on carbon steel by a plasma transferred arc (PTA) weld-surfacing process and their microstructure and properties were investigated. As the Nb content increases from 8.96% to 12.55%, the coating gradually changes from a hypereutectic structure (martensite, austenite matrix, primary NbC and eutectic γ M7C3) to a near eutectic structure (γ M7C3 and NbC) and finally a hypoeutectic structure (primary γ, γ M7C3 and NbC). As the Nb content increases, the hardness and wear resistance of the coating first increase and then decrease, which is closely related to the NbC volume fraction first increasing and then the NbC size coarsening. The Fe-Cr-C coating with 11.65% Nb balances the NbC content and size, and has the highest hardness and best wear resistance. As the Nb content increases further, the formation and aggregation of coarse NbC carbides in the coating results in high brittleness of the coating, which may cause the carbide particles to peel off the coating during the wear process, thereby reducing wear resistance.
机译:通过等离子体转移的弧(PTA)焊接焊接工艺在碳钢上制备具有不同水平Nb的Fe-Cr-C涂层,并研究了它们的微观结构和性能。随着Nb含量从8.96%增加至12.55%,涂层从过度晶体结构(马氏体,奥氏体基质基质,初级NBC和共晶γM7C3)逐渐变化至近共晶结构(γM7C3和NBC),最后是一种低抗枝形结构(伯γ,γM7C3和NBC)。随着Nb含量的增加,涂层的硬度和耐磨性首先增加,然后减少,其与NBC体积分数密切相关,然后是Nbc尺寸粗化。 Fe-Cr-C涂层11.65%Nb平衡Nbc含量和尺寸,具有最高的硬度和最佳耐磨性。随着Nb含量进一步增加,涂层中粗NBC碳化物的形成和聚集导致涂层的高脆性,这可能导致碳化物颗粒在磨损过程中剥离涂层,从而减少耐磨性。

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