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Microstructure and tribological characteristics of nitrided layer on 2Cr13 steel in air and vacuum

机译:空气和真空中2Cr13钢上渗氮层的组织和摩擦学特性

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摘要

A2Cr13 steel was gas nitrided in pure NH3 gas atmosphere at 793 K for 20 h. The microstructure, composition and microhardness of the nitrided samples were examined. The tribological behaviour of the nitrided 2Cr13 steel in air and vacuum was investigated in order to analyse effects of the nitriding on wear resistance of the 2Cr13 steel. The results show that the nitrided layer consists of a compound layer and diffusion zone. The nitriding increases both the surface hardness and wear resistance of 2Cr13 steel in air and vacuum, and the anti-wear characteristic of the nitrided 2Cr13 steel in vacuum is much higher than that in air. The nitrided layer exhibits a mild wear in air, and avoids the severe wear that happens on the unnitrided steel. While the adhesion dominates the wear process in vacuum. The material transfer between the wear couples helps to improve the tribological characteristics of the nitrided layer in vacuum.
机译:在纯NH3气体气氛中以793 K对A2Cr13钢进行气体氮化20小时。检查了渗氮样品的微观结构,组成和显微硬度。为了分析氮化对2Cr13钢耐磨性的影响,研究了氮化2Cr13钢在空气和真空中的摩擦学行为。结果表明,渗氮层由化合物层和扩散区组成。氮化可提高2Cr13钢在空气和真空中的表面硬度和耐磨性,而氮化的2Cr13钢在真空中的抗磨性能比在空气中高得多。氮化层在空气中表现出轻微的磨损,并避免了在未氮化的钢上发生的严重磨损。附着力在真空中占主导地位。磨损偶之间的材料转移有助于改善真空中氮化层的摩擦学特性。

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