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Wear Behavior of Newly Developed Bainitic Wheel Steels

机译:新型贝氏体车轮钢的磨损行为

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The present work concentrates on the analysis of wear behavior of bainitic steels made by austempering from a microalloyed steel MAS2, meant for making railway wheel, and comparison with that of a conventional railway wheel steel, wheel-R19. Austempering of the MAS2 steel samples has been performed at different times and temperatures to obtain different morphologies of bainite. Linearly reciprocating dry sliding wear tests of these samples have been carried out at laboratory scale using five different loads. The wear behavior of the bainitic steels has been compared with that of the ferritic-pearlitic steel, wheel-R19. Mechanical properties of the bainitic MAS2 steels are found to be more than that of the wheel-R19 steel. Considerable enhancement in wear resistance of the bainitic steels is attributed to high hardness and strength of the steels. The wear mechanism has been critically analyzed by examining wear track morphology. The wear data gathered have been graphically presented in the form of wear mechanism map to understand the material behavior under different sliding conditions and subsequent morphological variations.
机译:本工作着重于分析由用于制造铁路车轮的微合金钢MAS2奥氏体回火制成的贝氏体钢的磨损性能,并与常规铁路车轮钢wheel-R19进行比较。 MAS2钢样品的奥氏体化已在不同的时间和温度下进行,以获得不同的贝氏体形态。这些样品的线性往复干式滑动磨损试验已经在实验室规模下使用五种不同的载荷进行了测试。贝氏体钢的磨损性能已与铁素体-珠光体钢R19进行了比较。发现贝氏体MAS2钢的机械性能比R19车轮更高。贝氏体钢耐磨性的显着提高归因于钢的高硬度和强度。磨损机理已通过检查磨损轨迹的形态进行了严格分析。收集到的磨损数据以磨损机制图的形式以图形方式呈现,以了解在不同滑动条件和后续形态变化下的材料行为。

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