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首页> 外文期刊>Tribology Transactions >Effect of Carbides on Wear Characterization of High-Alloy Steels under High-Stress Rolling-Sliding Condition
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Effect of Carbides on Wear Characterization of High-Alloy Steels under High-Stress Rolling-Sliding Condition

机译:硬质合金在高应力滚动滑动条件下对高合金钢磨损特性的影响

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摘要

This article describes the wear characterizations of high-speed steel composed of vanadium carbide and high-chromium cast iron composed of chromium carbide. These metals were studied under rolling-sliding conditions with a sliding ratio of 10% using a self-made ring-ring wear testing machine. The fine microstructure of carbides and failure behaviors were analyzed by scanning electron microscopy and high-resolution electron microscopy. The results showed that carbide significantly affected the wear properties and failure behaviors of metals. The relative wear resistance of high-speed steel reinforced by vanadium carbides was twice that of high chromium cast iron composed of chromium carbides. Chromium carbide was characterized by a stacking fault substructure, and slips occurred in chromium carbide under high-stress contact, resulting in crack formation. Vanadium carbide was reinforced and pinned by large amounts of nanoparticles, which prevented its dislocation under high-stress rolling-sliding conditions, thereby effectively resisting crack initiation. Furthermore, the (200) lattice plane of vanadium carbide is coherent with the (111) lattice plane of austenite, preventing cracks from forming at the interface of the vanadium-carbide matrix. The morphology and hardness of vanadium carbide also contributed to the excellent wear property of high-speed steel.
机译:本文描述了由碳化钒组成的高速钢和由碳化铬组成的高铬铸铁的磨损特性。使用自制的环环磨损试验机在滚动滑动条件下以10%的滑动比研究了这些金属。通过扫描电子显微镜和高分辨率电子显微镜分析了碳化物的细微组织和破坏行为。结果表明,碳化物显着影响金属的磨损性能和失效行为。碳化钒增强的高速钢的相对耐磨性是碳化铬组成的高铬铸铁的相对耐磨性的两倍。碳化铬的特征是堆垛层错下部结构,在高应力接触下碳化铬发生打滑,导致裂纹形成。碳化钒被大量的纳米颗粒增强并固定,从而防止了其在高应力滚动滑动条件下的错位,从而有效地抵抗了裂纹的产生。此外,碳化钒的(200)晶面与奥氏体的(111)晶面是连贯的,从而防止了在碳化钒基体的界面处形成裂纹。碳化钒的形态和硬度也有助于高速钢的优异耐磨性。

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