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首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Tribological characteristics of chromium steels in three various atmospheres under high-speed conditions
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Tribological characteristics of chromium steels in three various atmospheres under high-speed conditions

机译:三种条件下高速条件下铬钢的摩擦学特性

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摘要

Friction heat induced by high sliding speed affects tribologial properties. Tribological behaviours of chromium steels were investigated using a pin-on-disc tribometer in various atmospheres (O_2, N_2 and CO_2). The tests had performed at sliding speeds from 30 to 60 m/s and a contact pressure of 1.33 MPa. The results show that the wear rate of the steel pin is the lowest in an oxygen atmosphere and highest in a nitrogen atmosphere. It was found that the thin and compact oxidation layer formed on the worn surface of the steel in an oxygen atmosphere plays a key role in the wear resistance. In contrast, there is free of oxides in a nitrogen atmosphere, adhesion is higher than in environments of oxygen and carbon dioxide, and there is a thick and loose surface layer formed on the worn surface of the steel. At the same time, the difference of the surface temperature due to high-speed changes the microstructure of the surface layer and causes the different tribological characteristics in the three atmospheres.
机译:高滑动速度引起的摩擦热会影响摩擦学性能。使用针盘式摩擦计在各种气氛(O_2,N_2和CO_2)中研究了铬钢的摩擦学行为。该测试以30至60 m / s的滑动速度和1.33 MPa的接触压力进行。结果表明,钢销的磨损率在氧气气氛中最低,而在氮气气氛中最高。发现在氧气气氛中在钢的磨损表面上形成的薄而致密的氧化层在耐磨性中起关键作用。相反,在氮气氛中没有氧化物,粘附性高于在氧气和二氧化碳的环境中,并且在钢的磨损表面上形成厚而疏松的表面层。同时,由于高速引起的表面温度的差异改变了表面层的微观结构,并在三种大气中引起了不同的摩擦学特性。

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