Afridi Muhammad Y, Geist Jon, Gaitan Michael
Potomac Networks, 1301 Delaware Ave. SW # N716, Washington DC 20024, USA.
J Res Natl Inst Stand Technol. 2020 Apr 10;125:125011. doi: 10.6028/jres.125.011. eCollection 2020.
A new method is described to provide a primary calibration of shock measurements produced by a shock measurement system consisting of pendulum excitation and laser Doppler velocimetry. The method uses the laser Doppler velocimeter to determine the total distance traveled by a rigid block that slides along a Teflon (fluorocarbon) channel after being struck by a pendulum head, and the resulting distance is compared to the distance measured by an SI-traceable length measurement. The instantaneous velocity of the block is measured by the velocimeter and is used to calculate the displacement of the block by integrating the velocity data. The result is compared to the displacement measured using calibrated rulers and calipers. The method was applied to an independently calibrated commercial velocimeter for impact accelerations ranging from 2000 to 30,000 m/s2. The results of the independent mechanical displacement measurements agreed with those from the commercial velocimeter to within ±0.3 %, with better agreement above accelerations of order 10,000 m/s2 to within ±0.1 %. A conservative, upper-bound, uncertainty analysis included the effects of noise and other random errors, as well as type B estimates for systematic errors from occasional momentary demodulation failures (dropouts), use of a different number of rulers before and after shock distance measurement, and the relative frequency response of the velocimeter.
描述了一种新方法,用于对由摆锤激励和激光多普勒测速仪组成的冲击测量系统所产生的冲击测量进行一次校准。该方法使用激光多普勒测速仪来确定一个刚性块在被摆锤头部撞击后沿聚四氟乙烯(氟碳化合物)通道滑动所行进的总距离,并将所得距离与通过国际单位制可溯源长度测量所测得的距离进行比较。该块体的瞬时速度由测速仪测量,并通过对速度数据进行积分来计算块体的位移。将结果与使用校准过的尺子和卡尺测得的位移进行比较。该方法应用于一台独立校准的商用测速仪,用于测量范围为2000至30000m/s²的冲击加速度。独立机械位移测量的结果与商用测速仪的结果在±0.3%以内相符,在加速度高于10000m/s²时,一致性更好,在±0.1%以内。一项保守的上限不确定度分析包括噪声和其他随机误差的影响,以及对偶尔的瞬时解调故障(信号丢失)、冲击距离测量前后使用不同数量的尺子以及测速仪的相对频率响应等系统误差的B类估计。