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Technique of Measuring Piston Secondary Motion Using Laser Displacement Sensors

机译:使用激光位移传感器测量活塞二次运动的技术

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An experimental technique for measuring the distinct modes of piston secondary motion is described in this study. The measurement system consists of three laser displacement sensors with the laser spots aimed at the piston crown, where the target area is machined with flat slot and a 45° slope profile to provide the necessary reflective angle in order to obtain the rotational and lateral motion of the piston head. The Pearson's correlation coefficient revealed a strong relationship between the rotational motion and the lateral motion of the piston at a low engine speed of 100 rpm, and this correlation is weakened as the speed increases up to 500 rpm. The lateral motion results captured by the laser displacement sensor are verified by comparing the frequency components of the lateral motion with the frequency components of the lateral acceleration measured using a triaxial accelerometer. The measurements of the distinct modes of the piston secondary motion are shown to be valid and reasonable.
机译:在这项研究中描述了一种用于测量活塞二次运动的不同模式的实验技术。该测量系统由三个激光位移传感器组成,激光点对准活塞顶部,目标区域加工有扁平槽和45°倾斜轮廓,以提供必要的反射角,从而获得旋转和横向运动。活塞头。皮尔逊相关系数显示出在100 rpm的低发动机转速下,活塞的旋转运动和横向运动之间存在很强的关系,并且当转速增加到500 rpm时,这种相关性会减弱。通过将横向运动的频率分量与使用三轴加速度计测得的横向加速度的频率分量进行比较,可以验证由激光位移传感器捕获的横向运动结果。活塞次级运动的不同模式的测量结果被证明是有效和合理的。

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