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Comparative Study on Dry Sliding Wear Behavior of Various Railroad Steels

机译:各种铁路钢干滑磨损行为的比较研究

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摘要

Understanding the wear behavior of various railroad steels used in different components such as rails, wheels, crossings, and curves has a direct impact on the performance of the rail-wheel system in railroad technology. In the present investigation, the wear behavior of steels having varying microstructures (pearlite, ferrite-pearlite, austenite, and bainite) and different chemical compositions has been studied, utilizing a ball-on-disk sliding tribometer under prototypic load and dry conditions. Results indicate that the wear performance of the steel and the mechanism responsible for its wear are significantly governed by the microstructure as well as changes that occur in the contact region during sliding. The formation of tribo-particles comprising oxides of Fe and their possible smearing resulted in high wear resistance in pearlitic steels with considerable plastic deformation of ferrite lamellae compared with austenitic and bainitic steels. In the case of bainitic steel, the absence of any significant smearing of oxide debris, combined with the presence of some distributed tungsten from the ball, contributed to severe wear. On the other hand, in the case of austenitic steel, third-body abrasion by debris particles, comprising a mix of hard metallic and oxide particles, contributed to severe wear despite its high work-hardening ability. On the whole, the pearlitic steel exhibited superior wear resistance with a lower friction coefficient compared with the bainitic and austenitic steels.
机译:了解用于不同组件(如轨道,车轮,交叉口和曲线)的各种铁路钢的磨损行为,会对铁路技术中的车轮系统的性能产生直接影响。在目前的研究中,已利用原型负载和干燥条件下的圆盘滑动摩擦计,研究了具有不同组织(珠光体,铁素体-珠光体,奥氏体和贝氏体)和不同化学成分的钢的磨损行为。结果表明,钢的磨损性能和造成磨损的机理在很大程度上取决于微观结构以及滑动过程中接触区域中发生的变化。与奥氏体和贝氏体钢相比,含铁氧化物的摩擦颗粒的形成及其可能的拖尾导致珠光体钢具有很高的耐磨性,铁素体薄片的塑性变形相当大。对于贝氏体钢,没有明显的氧化物碎片污迹,再加上球中分布的一些钨,则造成了严重的磨损。另一方面,在奥氏体钢的情况下,尽管杂物颗粒具有很高的加工硬化能力,但它们由硬质金属和氧化物颗粒的混合物构成的第三体磨损却导致严重的磨损。总体而言,与贝氏体和奥氏体钢相比,珠光体钢具有优异的耐磨性和较低的摩擦系数。

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