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Physico-mechanical and Tribological Properties of Fe-Cu-Ni-Sn and Fe-Cu-Ni-Sn-VN Nanocomposites Obtained by Powder Metallurgy Methods

机译:粉末冶金方法获得的Fe-Cu-Ni-Sn和Fe-Cu-Ni-Sn-VN纳米复合材料的物理 - 机械和摩擦学性能

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摘要

The results of studies aimed at improving the mechanical and operational properties of the FeCuNiSn and FeCuNiSnVN composite materials obtained by powder metallurgy methods are presented. A comparative analysis of mechanical and tribological characteristics, including the determination of nanohardness, elastic modulus, friction force, friction coefficient, and volume of wear groove was performed. It was shown that the use of 3 wt% nano-dispersed VN powder in the 51Fe–32Cu–9Ni–8Sn charge, in which the grain size was ~2000–5000 nm, makes it possible to increase the nanohardness from 2.68 to 5.37 GPa and reduce the elastic modulus from 199 to 125 GPa. As a result, the parameters H/E and H3/E2, which describe the resistance of the material to the elastic deformation of failure and the resistance of the material to plastic deformation, increase by 3.3 and 20 times, respectively, and the friction force and the volume of the wear groove decrease by 1.8 and 16 times, respectively. The reasons for the change in the mechanical characteristics of sintered composites during nanoindentation and the different nature of their wear are discussed. The interrelation of the microstructure with mechanical and tribological properties is established. It is shown that the parameters H/E and H3/E2 can be used to predict the wear resistance of the composites under study.
机译:介绍了旨在改善Fecunisnsnsnsnnvn复合材料的机械和操作性能的研究结果。进行了对机械和摩擦学特性的比较分析,包括确定纳米术,弹性模量,摩擦力,摩擦系数和磨损槽体积的测定。结果表明,在51Fe-32cu-9ni-8sn电荷中使用3wt%纳米分散的VN粉末,其中晶粒尺寸为〜2000-5000nm,使得可以将纳米率从2.68增加到5.37GPa增加并将199至125GPa的弹性模量降低。结果,参数H / E和H3 / E2描述了材料的电阻,以塑性变形的失效和材料的弹性变形,分别增加3.3和20次,以及摩擦力并且磨损槽的体积分别降低1.8和16次。讨论了纳米狭窄期间烧结复合材料力学特性的原因及其磨损的不同性质。建立了机械和摩擦学性质的微观结构的相互关系。结果表明,参数H / E和H3 / E2可用于预测研究的复合材料的耐磨性。

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