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首页> 外文期刊>International journal of metrology and quality engineering >Dynamic calibration of piezoelectric transducers for ballistic high-pressure measurement
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Dynamic calibration of piezoelectric transducers for ballistic high-pressure measurement

机译:用于弹道高压测量的压电传感器的动态校准

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The development of a dynamic calibration standard for high-amplitude pressure piezoelectric transducers implies the implementation of a system which can provide reference pressure values with known characteristics and uncertainty. The reference pressure must be issued by a sensor, as a part of a measuring chain, with a guaranteed traceability to an international standard. However, this operation has not been completely addressed yet until today and is still calling further investigations. In this paper, we introduce an experimental study carried out in order to contribute to current efforts for the establishment of a reference dynamic calibration method. A suitable practical calibration method based on the calculation of the reference pressure by measurement of the displacement of the piston in contact with an oil-filled cylindrical chamber is presented. This measurement was achieved thanks to a high speed camera and an accelerometer. Both measurements are then compared. In the first way, pressure was generated by impacting the piston with a free falling weight and, in the second way, with strikers of known weights and accelerated to the impact velocities with an air gun. The aim of the experimental setup is to work out a system which may generate known hydraulic pressure pulses with high-accuracy and known uncertainty. Moreover, physical models were also introduced to consolidate the experimental study. The change of striker’s velocities and masses allows tuning the reference pressure pulses with different shapes and, therefore, permits to sweep a wide range of magnitudes and frequencies.
机译:用于高振幅压力压电换能器的动态校准标准的发展意味着可以提供具有已知特性和不确定性的参考压力值的系统。参考压力必须由传感器(作为测量链的一部分)发出,并保证可追溯到国际标准。但是,直到今天,该操作尚未完全解决,并且仍在进行进一步调查。在本文中,我们介绍了一项实验研究,目的是为建立参考动态校准方法的当前工作做出贡献。提出了一种合适的实用校准方法,该方法基于通过测量与充满油的圆柱形腔室接触的活塞的位移来计算参考压力。借助高速摄像头和加速度计可以实现此测量。然后将两个测量值进行比较。在第一种方式中,压力是通过自由下落的重物撞击活塞而产生的,第二种方式是,用已知重量的撞针撞击活塞,并通过气枪将其加速到撞击速度。实验装置的目的是设计出一个系统,该系统可以产生具有高精度和已知不确定性的已知液压脉冲。此外,还引入了物理模型以巩固实验研究。撞针速度和质量的变化可以调整具有不同形状的参考压力脉冲,因此可以扫描大范围的幅度和频率。

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