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Synergetic Representation of Stick - Slip Mode of Boundary Friction

机译:粘滞滑动模态的协同表示。

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The melting of an ultrathin lubricating film clamped between two atomically smooth solid surfaces that are in relative motion is studied based on the Lorentz model for the approximation of a viscoelastic medium. An equation of motion for the stresses has been derived in the form of a three-order differential equation and analyzed at various friction surface temperatures. In all cases, the phase portraits and the time dependences of the stresses have been plotted. It has been found that, depending on the temperature and the lubricant parameters, either the damped oscillation mode or the stochastic oscillation mode may occur. The stochastic oscillation mode is presented in the phase plane as a strange attractor. It has been shown that initial conditions have a critical effect on the system behavior. Based on the model, the behavior of two types of tri-bosystems, i.e., with the unidirectional shear of the surfaces and under an alternating external effect, has been described.
机译:基于Lorentz模型,研究了粘滞在两个相对运动的原子光滑固体表面之间的超薄润滑膜的熔化,以近似粘弹性介质。应力的运动方程以三阶微分方程的形式导出,并在各种摩擦表面温度下进行了分析。在所有情况下,都绘制了相图和应力的时间依赖性。已经发现,取决于温度和润滑剂参数,可能发生阻尼振荡模式或随机振荡模式。随机振荡模式在相平面中表示为一个奇异的吸引子。已经表明,初始条件对系统行为具有关键影响。基于该模型,已经描述了两种类型的摩擦系统的行为,即在表面的单向剪切作用下以及交替的外部作用下的行为。

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