首页> 外文期刊>Journal of Friction and Wear >Effect of Bulk Heat Treatment and Plasma Surface Hardening on the Microstructure and Erosion Wear Resistance of Complex-Alloyed Cast Irons with Spheroidal Vanadium Carbides
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Effect of Bulk Heat Treatment and Plasma Surface Hardening on the Microstructure and Erosion Wear Resistance of Complex-Alloyed Cast Irons with Spheroidal Vanadium Carbides

机译:散装热处理和等离子体表面硬化对纤维钒络合铸铁的微观结构和腐蚀耐磨性的影响

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The results of an investigation of the effect of bulk quenching from temperature in the range of 760-1050 degrees C, cryogenic treatment (-196 degrees C) and surface plasma hardening on the abrasive-erosion wear of frugally alloyed V-Cr-Mn-Ni cast irons with spheroidal vanadium carbides have been presented in this article. It has been found that cast irons containing 5.0-7.5% V, 4.5-9.0% Cr, and 5.5-5.7% (total) of Mn and Ni after heat treatment have a 2-3-fold advantage in wear resistance compared to the prototype high-vanadium cast iron (11.9% V, 12.9% Mn). The maximum wear resistance of cast irons studied is achieved by quenching at 760 degrees C followed by plasma surface hardening, as well as quenching at 840 degrees C, followed by cryogenic treatment. These treatments result in the formation of an optimum microstructure that consists of spheroidal vanadium carbides, eutectic carbides M7C3, and a martensite-austenite matrix reinforced by secondary carbides. The increase in quenching temperature leads to an increase in the amount of residual austenite and decrease in the erosive wear resistance of cast irons.
机译:在760-1050℃的温度范围内散装淬火效果的研究结果,低温处理(-196摄氏度)和节俭的侵蚀磨损的表面等离子体硬化 - 本文提出了具有球形钒碳化碳化碳化物的Ni铸造熨斗。已经发现,与原型相比,含有5.0-7.5%v,4.5-9.0%Cr,4.5-9.0%Cr,4.5-9.0%Cr和5.5-5.7%(总量)的Mn和Ni的优势在耐磨性相比下具有2-3倍高钒铸铁(11.9%V,12.9%Mn)。通过在760摄氏度下淬火之后进行等离子体表面硬化,以及在840℃下淬火,然后淬灭,然后在840℃下淬灭来实现铸铁的最大耐磨性。这些处理导致形成最佳的微观结构,该微观结构由二手碳化物增强的球形钒碳化物,共晶碳化物M7C3和马氏体 - 奥氏体基质组成。淬火温度的增加导致残留奥氏体的量增加,并降低铸造铁磁的耐腐蚀性耐磨性。

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