A Simple Mechanical Model for a Wiper Blade Sliding and Sticking Over a Windscreen

R. Barsotti, S. Bennati, F. Quattrone
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引用次数: 3

Abstract

From the mechanical standpoint, wiper blades may be thought of as belonging to a category of systems in which some components are forced to slide with friction over each other or over some rough surface. Such systems, which are in widespread use in all areas of modern engineering, exhibit complex dynamic behavior, even when only a small number of degrees of freedom are involved. In this paper we reconsider a well-known, simple mechanical model in which a rigid block connected to a linear spring is free to slide over a rough surface. The surface moves according to a prescribed sinusoidal law. The model, despite its apparent simplicity, proves to be quite useful for studying the main dynamic features of such systems. In particular, herein the equations of motion are solved analytically and the exact sequence of sticking and sliding phases found. The influence on the solution of three dimensionless parameters chosen to describe the system is investigated, and some early indications provided on the set of possible long-term system responses. Lastly, a first evaluation of the different limit cycles for the block’s motion is illustrated.

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雨刷片在挡风玻璃上滑动和粘附的简单力学模型
从机械的角度来看,雨刷片可以被认为是属于一类系统,其中一些部件在相互摩擦或在一些粗糙的表面上被迫滑动。这种系统在现代工程的所有领域都得到了广泛的应用,即使只涉及少量的自由度,也会表现出复杂的动态行为。在本文中,我们重新考虑一个众所周知的简单力学模型,其中刚性块与线性弹簧连接,在粗糙表面上自由滑动。表面按照规定的正弦规律运动。尽管这个模型看起来很简单,但事实证明它对于研究这类系统的主要动态特征是非常有用的。特别地,本文对运动方程进行了解析求解,并找到了粘滞和滑动阶段的准确顺序。研究了用于描述系统的三个无量纲参数对解的影响,并对可能的长期系统响应集提供了一些早期指示。最后,对块体运动的不同极限环进行了初步评价。
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