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Thermal kinetics of protective oxide layer formation in the dry sliding of metallic tribo-specimens

机译:金属摩擦试样干滑过程中保护性氧化层形成的热动力学

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This article investigates the kinetics of friction-induced-heat flux within the contact layers of a rubbing solid. It is shown that nominally isotropic solids may exhibit anisotropic thermal behavior due to the mechanical dilatation exhibited during sliding. Depending on the degree of anisotropy the local flow of the thermal flux may be congested. This leads to the accumulation of thermal energy within the mechanically affected zone (MAZ) of the solid and may contribute toward a thermal environment that is conducive to protective layer formation. Depending on the evolution of mechanical dilatation, and the associated congestion of thermal flow, lateral accumulation of heat may take place. This, in turn, under favorable conditions causes the formation of a soft zone of low resistance to shear, thus leading to a transition in the mechanism of wear (e.g. from oxidative to delaminating). These effects are studied within the context of the sliding of a mild steel couple, and the results are subsequently applied to investigate the transition in the wear regime of a titanium (Ti-6Al-4V)-tool steel (AISI M2) sliding pair.
机译:本文研究了摩擦固体接触层内的摩擦感应热通量的动力学。结果表明,名义上各向同性的固体由于在滑动过程中表现出的机械膨胀而可能表现出各向异性的热行为。取决于各向异性的程度,热通量的局部流动可能被堵塞。这导致热能在固体的机械影响区(MAZ)内积累,并可能有助于形成有利于保护层形成的热环境。取决于机械膨胀的发展以及相关的热流拥堵,可能发生侧向热量积聚。继而,这在有利的条件下导致形成低抗剪切性的软区,从而导致磨损机理的转变(例如,从氧化到分层)。在低碳钢偶的滑动范围内研究了这些影响,随后将结果应用于研究钛(Ti-6Al-4V)-工具钢(AISI M2)滑动副在磨损状态下的过渡。

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