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A FUNDAMENTAL STUDY ON THE REVERSAL BEHAVIOR OF AN AUTOMOBILE WIPER BLADE

机译:汽车刮水片反向性能的基础研究

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Automobile wiper systems provide a clear sight for drivers by creating a very thin layer of water about few dozen nano meters on a windshield. Several studies have been carried out to investigate the dynamic behavior of the wiper systems. However, there are few studies focused on reversal behavior of the wiper blade. Observation was conducted and analytical model is developed from the observation of the real wiper system. A water layer is considered in the analytical model between the wiper blade and the glass surface. The bottom of the model is assumed to always contact the water layer so that the fluid force is always applied. The dimensionless equations, which govern the wiping motion including the reversal behavior, were derived. The equations are discussed neglecting the nonlinear terms to understand the approximate movement and effect of the parameters. Moreover, the equation is solved numerically to obtain the time histories of the wiper blade. As a result, the effect of the fluid force, which acts on the wiper blade on the reversal behavior of the wiper blade, became clear.
机译:汽车刮水器系统通过在挡风玻璃上创造大约几十米米米米的薄片,为司机提供清晰的司机。已经进行了几项研究以研究刮水系统的动态行为。然而,很少有关于刮水片的逆转行为的研究。进行了观察,并从实际刮水系统的观察开始分析模型。在刮水片和玻璃表面之间的分析模型中考虑水层。假设模型的底部总是接触水层,从而总是施加流体力。导出了控制包括逆转行为的擦拭运动的无量纲方程。讨论了忽略非线性术语以理解参数的近似运动和效果的方程。此外,该等式在数字上进行解决以获得刮水片的时间历史。结果,发挥在刮水器叶片上的流体力的效果在刮水片的反转行为上,变得清晰。

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