基于Arduino的油品健康监测自动粘度计

A. Srinivasan, Sharavanee D P, S. P, Surendran S, Suryaprakash S, Jino Hans W
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引用次数: 0

摘要

发动机油对任何汽车的有效运转都是至关重要的因素。它起到润滑剂的作用,减少机械部件之间的摩擦,并通过散热保持发动机凉爽。在此过程中,油的粘度等参数发生了变化。定期更换机油而不检查其质量。这可能会导致浪费,因为在换油期间发动机机油的真正健康状况是未知的。本文讨论了一种监测发动机健康状况的有效方法,以减少发动机的损耗。采用传统的落球法测量液体粘度,制作了原位小型化原型机。原型由一个狭窄的空心圆柱形管组成,该管带有允许油通过的狭缝。在管子的底部,放置了两个感应电极,在顶部,连接了一个电磁铁。在管子里放一个钢球,让它自由移动。整个装置连接到一个伺服电机,并由Arduino Nano控制。利用这个原型,计算了球通过油的平均下落时间,并利用斯托克斯定律找到了粘度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Arduino based Automated Viscometer for Oil Health Monitoring
Engine oil is a vital factor in the efficient functioning of any automobile. It acts as a lubricant to reduce friction between the mechanical parts and also keeps the engine cool by dissipating the heat. During this process, parameters such as viscosity of oil changes. Engine oil is changed at regular intervals of time without checking its quality. This can lead to wastage as the real health of engine oil during an oil change is unknown. This paper discusses an efficient way to monitor the health of the engine to minimize the wastage. By adapting the traditional falling ball method of measuring the viscosity of a liquid, an in situ miniaturized prototype is fabricated. The prototype consists of a narrow and hollow cylindrical tube with slits to allow the movement of oil through it. At the floor of the tube, two sensory electrodes are placed and at the top, an electromagnet attached. A steel ball is placed inside the tube and is made to move freely. The whole setup is attached to a servo motor and is controlled by an Arduino Nano. With this prototype, the average fall time of the ball through the oil is calculated and viscosity is found using the Stokes Law.
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