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Influence of Sliding Speed and Normal Loads on the Wear Resistance of Hardox 500 Steel Ground Surfaces

机译:滑动速度和正常载荷对硬乐乐湖500钢地面耐磨性的影响

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This work focuses on the characterization of the tribological behavior of Hardox 500 steel in the ground state with different types of lubrication (dry and soluble oil), by using the technique of single cycle scratch testing. A CSM scratch testing machine equipped with a 50 μm radius Rockwell indenter was used for the experiments. The scratch length was set to 5 mm and different scratching loads (5 N, 10 N and 15 N) and speeds (10 mm/min, 50 mm/min and 100 mm/min) were considered. Results show that the friction coefficient and worn volume increase with the increase of the scratching load and speed and that samples ground using soluble oil have a martensitic microstructure characterized by very fine martensite laths that offers better wear resistance than sample ground under dry conditions. Thus, it could be conducted that the wear resistance of the Hardox 500 ground surfaces depends not only on the sliding speed and scratching normal load, but on the material microstructure also.
机译:这项工作侧重于通过使用单循环划痕测试的技术的不同类型的润滑(干燥和可溶性油)在地上旋转的Hardox 500钢的摩擦学行为的表征。 将配备50μm半径Rockwell Indenter的CSM划痕试验机用于实验。 划痕长度设定为5mm,考虑了不同的刮擦载荷(5 n,10 n和15 n)和速度(10mm / min,50mm / min和100mm / min)。 结果表明,摩擦系数和损坏的体积随着刮擦负荷和速度的增加而增加,并且使用可溶性油的样品接地具有马氏体微观结构,其特征在于非常精细的马氏体板条,其在干燥条件下提供比样品接地更好的耐磨性。 因此,可以进行它不仅取决于滑动速度和刮擦正常负载,而且还可以进行耐磨性,而是在材料微观结构上取决于刮擦的正常负载。

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