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Effect of friction heat on tribological behavior of M2 steel against GCrl5 steel in dry sliding systems

机译:干滑动系统中摩擦热对M2钢相对于GCrl5钢的摩擦学性能的影响

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摘要

The tribological behavior depends significantly on friction heat under high sliding velocity. Many factors influence the conduction rate of friction heat, such as thermophysical properties of the pairs, the formation components of interface-film, environment mediums, etc. Through theoretical and experimental studies on surface temperature, the heat partition approaches have been applied to the pairs of M2 steel against GCr15 steel to compare and discuss their tribological behavior in dry sliding contact. The results indicate that the values of the contact pressure have little effect on the heat partition at a high sliding velocity of 40 m/s. Furthermore, the degree of correlation between the dynamic temperature and friction coefficient is obvious, and the correlation degree of parameters increases as the pressure grows. A close correlation exists among the temperatures measured from different points of the pin specimen. At last, X-ray diffraction analysis denotes that the carbides of secondary M_6C are separated out during the process of friction.
机译:摩擦学行为在很大程度上取决于高滑动速度下的摩擦热。影响摩擦热传导率的因素很多,例如,对的热物理性质,界面膜的形成成分,环境介质等。通过对表面温度的理论和实验研究,将热分配方法应用于对。 M2钢与GCr15钢的比较,以比较和讨论它们在干式滑动接触中的摩擦学行为。结果表明,在40 m / s的高滑动速度下,接触压力的值对热分配的影响很小。此外,动态温度与摩擦系数之间的相关程度很明显,并且参数的相关程度随着压力的增加而增加。从针状试样的不同点测得的温度之间存在密切的相关性。最后,X射线衍射分析表明,次生M_6C的碳化物在摩擦过程中被分离出来。

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