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EXPLORING THE POTENTIAL FOR THE APPLICATION OF CERAMIC BEARING TECHNOLOGY TO THE WHEEL/RAIL INTERFACE

机译:探索陶瓷轴承技术在车轮/轨道接口中应用的潜力

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Ball or roller bearings have much in common with a railway wheel running on a rail. Both have high Hertzian stresses and are subject to rolling contact fatigue. Silicone Nitride (Si3N4), a Technical Ceramic, has now firmly established itself in the engineering marketplace as part of a hybrid bearing, where the rolling elements are silicone nitride and the races are steel. The paper explores the possibility of a Silicon Nitride/steel wheel/rail combination and finds that, because Silicon Nitride has a higher Modulus of Elasticity, it is not suitable as a direct replacement on existing systems, because it would produce a smaller contact patch and greater contact stress. The low toughness of Silicon Nitride in comparison to steel could be an obstacle to its general railway use, however, it could made into a composite material in the same manner as Carbon Reinforced Silicon Carbide (C/SiC) is used in brake discs. There is a possibility that, under the right conditions, Silicon Nitride could return very low wear rates, because of its extreme hardness, and because it's excellent resistance to rolling contact fatigue (noted in hybrid bearings). This could give a wheel high mileage, without the need to remove fatigued material by controlled wear or by turning. A promising future application for the material is a cable-hauled system, where the predicted lower adhesion between Silicon Nitride and a steel rail is not a problem and the wheels are not required to be conductive.
机译:球或滚柱轴承与铁路上的铁路轮具有很多共同之处。两者都具有高偏振的应力,受到滚动接触疲劳的影响。硅氧烷氮化物(Si3N4),一种技术陶瓷,现在在工程市场中牢固地建立在工程市场中,作为混合轴承的一部分,其中滚动元件是硅氧烷氮化物,并且梯子是钢。本文探讨了氮化硅/钢轮/轨道组合的可能性,并发现,由于氮化硅具有更高的弹性模量,因此它不适合作为现有系统的直接替代,因为它会产生较小的接触贴片更大的接触压力。与钢相比,氮化硅的低韧性可以是其通用铁路使用的障碍物,然而,它可以以与碳增强碳化硅(C / SiC)相同的方式制成复合材料作为制动盘。有可能在正确的条件下,由于其极端硬度,氮化硅可以返回非常低的磨损率,因为它具有优异的滚动接触疲劳性(在混合轴承中注明)。这可能会给车轮高里程数,无需通过受控的磨损或通过转动去除疲劳材料。对材料的未来应用是一种有望的施用系统,其中氮化硅和钢轨之间的预测较低的粘附不是问题,并且车轮不需要导电。

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