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Measurement of the friction forces between piston and cylinder in reciprocating machines using the connecting rod strain behavior

机译:利用连杆应变特性测量往复机中活塞与气缸之间的摩擦力

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The design of slider-crank mechanisms is usually done using numerical simulation supported by experiments to validate the results of both the individual parts and whole assembly. The largest challenge in this process is to establish parameters to evaluate the simulation using experimental results. The dynamic measurement of the connecting rod strain can provide important information about the forces which act on the piston, such as the ones caused by friction and pressure. However, this measurement is challenging, since it is done in an adverse environment where oil, high temperature variation and vibration are present. This work aims to solve this problem by proposing a concept of connecting rod instrumented with a strain gauge tee-rosette bridge and the proper signal conditioning method to measure the friction forces between the piston and the cylinder. To work with the worst-case scenario, a small-sized sintered connecting rod was used to verify if the proposed method is applicable to a wide range of equipment. The obtained results are at least equivalent to the ones presented in the literature, but the proposed method uses a simpler setup and allows the test to be done using the motor in its application condition. In addition, the proposed method allows the observation of high-frequency phenomena, such as impacts during a cycle, which cannot be characterized using the methods proposed in the literature. (C) 2019 Elsevier Ltd. All rights reserved.
机译:曲柄滑块机构的设计通常使用实验支持的数值模拟来验证单个零件和整个组件的结果。这个过程中最大的挑战是建立参数以使用实验结果评估仿真。连杆应变的动态测量可以提供有关作用在活塞上的力的重要信息,例如由摩擦和压力引起的力。但是,这种测量具有挑战性,因为它是在存在油,高温变化和振动的不利环境中进行的。这项工作的目的是通过提出一种概念,即通过配备应变计三通-玫瑰形桥的连杆和适当的信号调节方法来测量活塞和气缸之间的摩擦力,来解决这一问题。为了在最坏的情况下工作,使用了小型烧结连杆来验证所提出的方法是否适用于各种设备。所获得的结果至少与文献中给出的结果相同,但是所提出的方法使用了更简单的设置,并允许在使用条件下使用电动机进行测试。另外,所提出的方法允许观察高频现象,例如在循环期间的冲击,这不能使用文献中提出的方法来表征。 (C)2019 Elsevier Ltd.保留所有权利。

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