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A MULTI-SCALE ACCOUNT OF FRICTION-VIBRATION INTERACTION

机译:摩擦振动相互作用的多尺度叙述

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Using a nonlinear model of a two disk brake system, coupled equations of motion are found for their frictional interaction. The mathematical formulation relates the tribological events at micron scale and the macroscopic scale vibration response of a two-disk brake system. This is accomplished by a viscoelastic account of interaction at the micron scale, its statistical quantification through the approximate analytical representation of the statistical expectation of contact force and the introduction of the contact force into the macro-scale dynamics of the two-disk system. Steady-state analysis of the system establishes the relation between friction torque and speed and supports observed behavior of many mechanical systems with friction. It is shown that, as a result of coupling of the macro-system's dynamics and contact, there are combinations of parameters at the micro- and macro-scale that yield negative slope in friction torque/sliding speed relation, a well known source oj dynamic instability. This results in an effective negative damping that tends to decrease with decrease in the normal load and/or increase in structural damping of the system.
机译:使用两个磁盘制动系统的非线性模型,发现其摩擦交互的耦合方程。数学制定涉及微米尺度的摩擦事件和双盘式制动系统的宏观尺度振动响应。这是通过微米级的相互作用的粘弹性叙述来实现的,其统计量化通过接触力统计期望的近似分析表示以及将接触力引入两盘系统的宏观级动态。系统的稳态分析建立了摩擦扭矩与速度之间的关系,并支持许多机械系统与摩擦的观察行为。结果表明,由于宏观系统的动态和触点的耦合,在微型和宏观上的参数的组合,即在摩擦扭矩/滑动速度关系中屈服负斜率,众所周知的源OJ动态不稳定。这导致有效的负阻尼,随着系统的正常载荷和/或增加的结构阻尼的增加而倾向于降低。

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