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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part J: Journal of Engineering Tribology >A study of contact temperature and tribological behaviour of magnetized sliding brass–steel couple in different gas environments
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A study of contact temperature and tribological behaviour of magnetized sliding brass–steel couple in different gas environments

机译:磁化滑动黄铜-钢偶在不同气体环境下的接触温度和摩擦学行为研究

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摘要

The wear tests of the sliding magnetized brass–steel couple are investigated on a pin–disc configuration under three various gas environments: in ambient air, under oxygen at 105 Pa, and in vacuum at 1.5 × 10−6 torr. The tribological behaviour of the couple strongly depends on the environment gas and a little effect of the magnetic field intensity. The results obtained show that the magnetic field decreases the wear rate and the friction coefficient in both air and oxygen atmosphere, respectively. However, in vacuum, the magnetic field has a negligible effect. The wear mode follows a transition from abrasive wear to adhesive wear after some cycles at the beginning of sliding contact. The temperature increment is very large in vacuum and it is almost stationary in both ambient air and oxygen. On the other hand, the application of magnetic field induces a little increase in contact temperature of average value about 5–8 °C in each gas environment. The temperature rise is correlated directly to interface properties, namely the hardness, the real contact area, and the roughness of the steel counterface.
机译:在三种气体环境下,在针盘结构上研究了滑动磁化黄铜-钢对的磨损测试:在环境空气中,在10 5 Pa的氧气下以及在1.5×10的真空下 -6 托。这对夫妇的摩擦学行为在很大程度上取决于环境气体和磁场强度的影响。所得结果表明,磁场分别降低了空气和氧气气氛中的磨损率和摩擦系数。但是,在真空中,磁场的影响可忽略不计。在开始滑动接触一些周期之后,磨损模式遵循从磨料磨损到粘合剂磨损的过渡。真空中的温度增量非常大,在环境空气和氧气中几乎都保持稳定。另一方面,在每种气体环境中,磁场的施加会使接触温度的平均值略有升高,约为5–8°C。温升与界面特性直接相关,即硬度,实际接触面积和钢配合面的粗糙度。

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