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A primary standard for low-g shock calibration by laser interferometry

机译:通过激光干涉仪进行低g冲击校准的主要标准

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This paper presents a novel implementation of a primary standard for low-g shock acceleration calibration by laser interferometry based on rigid body collision at National Institute of Metrology, China. The mechanical structure of the standard device and working principles involved in the shock acceleration exciter, laser interferometers and virtual instruments are described. The novel combination of an electromagnetic exciter and a pneumatic exciter as the mechanical power supply of the standard device can deliver a wide range of shock acceleration levels. In addition to polyurethane rubber, two other types of material are investigated to ensure a wide selection of cushioning pads for shock pulse generation, with pulse shapes and data displayed. A heterodyne He-Ne laser interferometer is preferred for its precise and reliable measurement of shock acceleration while a homodyne one serves as a check standard. Some calibration results of a standard acceleration measuring chain are shown in company with the uncertainty evaluation budget. The expanded calibration uncertainty of shock sensitivity of the acceleration measuring chain is 0.8%, k = 2, with the peak acceleration range from 20 to 10 000 m s~(-2) and pulse duration from 0.5 to 10 ms. This primary shock standard can meet the traceability requirements of shock acceleration from various applications of industries from automobile to civil engineering and therefore is used for piloting the ongoing shock comparison of Technical Committee of Acoustics, Ultrasound and Vibration (TCAUV) of Asia Pacific Metrology Program (APMP), coded as APMP.AUV.V-P1.
机译:本文提出了一种基于刚体碰撞的基于激光干涉法的低g冲击加速度校准的主要标准的新颖实现方法,该方法基于中国国家计量学会。描述了冲击加速度激励器,激光干涉仪和虚拟仪器所涉及的标准设备的机械结构和工作原理。电磁励磁机和气动励磁机的新颖组合作为标准设备的机械电源可以提供广泛的冲击加速度水平。除聚氨酯橡胶外,还研究了两种其他类型的材料,以确保产生冲击脉冲的缓冲垫的选择范围广泛,并显示脉冲形状和数据。外差式He-Ne激光干涉仪是首选,因为它可以精确而可靠地测量冲击加速度,而零差型则可以作为检查标准。标准加速度测量链的一些校准结果与不确定性评估预算一起显示。加速度测量链的冲击灵敏度的扩展标定不确定度为0.8%,k = 2,峰值加速度范围为20至10000 m s〜(-2),脉冲持续时间为0.5至10 ms。该主要冲击标准可以满足从汽车到土木工程等各种行业的冲击加速度的可追溯性要求,因此可用于试行亚太计量学声学,超声与振动技术委员会(TCAUV)正在进行的冲击比较( APMP),编码为APMP.AUV.V-P1。

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