Mathematical modeling of the evolution of a tribosystem in the process of formation of equilibrium roughness of a frictional contact

I. Kolesnikov, P. Koropets, D. Manturov, Ye. V. Shakhmatov
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引用次数: 1

Abstract

As the science of friction developed, tribologists showed that reliable operation of friction units is determined by the wear resistance of the surface layer, its ability to adapt to changing operating conditions. In this regard, there is a need not only to create structures on the surfaces of friction units that have the properties of self-regulation and self-organization, but also to monitor changes in the characteristics of the surface layer. This article presents an innovative methodology for monitoring the life cycle of surface layers coated by vacuum ion-plasma treatment. In this paper, we propose a dynamic model based on the hypothesis that roughness is both a factor that excites mechanical vibrations and a consequence of these vibrations, whereas roughness changes as a result of wear under the influence of local dynamic forces. It is shown that a friction pair is a nonlinear system with complex feedbacks. Its stationary motion can be considered as a strange attractor. The randomness of motion in the vicinity of the limit cycle is due to the presence of a link of constant delay with rigid positive feedback in the model. As a result, there is constant reconfiguration of the amplitude and phase of the oscillations.
摩擦接触平衡粗糙度形成过程中摩擦系统演化的数学建模
随着摩擦科学的发展,摩擦学家表明,摩擦单元的可靠运行取决于表面层的耐磨性,即适应不断变化的操作条件的能力。在这方面,不仅需要在摩擦单元表面创造具有自我调节和自组织特性的结构,而且还需要监测表层特性的变化。本文提出了一种监测真空离子等离子体镀膜表层生命周期的创新方法。在本文中,我们提出了一个基于假设的动态模型,即粗糙度既是激发机械振动的一个因素,也是这些振动的结果,而粗糙度在局部动力的影响下由于磨损而变化。证明了摩擦副是一个具有复杂反馈的非线性系统。它的静止运动可以看作是一个奇异的吸引子。在极限环附近运动的随机性是由于模型中存在一个具有刚性正反馈的常延迟环节。因此,振荡的振幅和相位会不断地重新配置。
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