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Hysteresis Behavior in the Stick-Slip Mode at the Boundary Friction

机译:粘滞滑模在边界摩擦时的磁滞行为

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摘要

A tribological system is considered that consists of two atomically smooth solid surfaces separated by an ultrathin lubricant film. A thermodynamic model based on the Landau theory of phase transitions is built that describes the behavior of this system in the boundary friction mode. The free energy density for an ultrathin lubricant film is given in the form of expansion in series in terms of the powers of order parameter that is reduced to the shear modulus of the lubricant. The kinetics of the system is studied on the basis of a model describing first-order phase transitions between kinetic modes of friction. It is shown that in the presence of spring between the external drive and block the width of temperature hysteresis increases versus fixed coupling.
机译:摩擦系统被认为是由两个原子上光滑的固体表面组成,这些表面被超薄的润滑膜隔开。建立了基于Landau相变理论的热力学模型,该模型描述了该系统在边界摩擦模式下的行为。对于超薄润滑剂膜,其自由能密度以级数幂的形式串联扩展,该阶次幂减小为润滑剂的剪切模量。在描述摩擦动力学模式之间的一阶相变的模型的基础上研究了系统的动力学。结果表明,在外部驱动器和滑块之间存在弹簧的情况下,与固定联轴器相比,温度滞后的宽度增加。

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