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Use of a Beryllium Hopkinson Bar To Characterize a Piezoresistive Accelerometer In Shock Environments

机译:在冲击环境中使用铍霍普金森棒表征压阻加速度计

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The characteristics of a piezoresistive accelerom-eter in shock environments are being studied at Sandia National Laboratories in the Mechanical Shock Testing Laboratory. A Hopkinson bar capability has been developed to extend our understanding of the piezoresistive accelerometer, in two mechanical configurations, in the high-frequency, high-shock environments where measurements are being made/In this paper, the beryllium Hopkinson bar configuration with a laser doppler vibrometer as the reference measurement is described. The in-axis performance of the piezoresistive accelerometer for frequencies of dc-50 kHz and shock magnitudes of up to 70,000 g as determined from measurements with a beryllium Hopkinson bar are presented. Preliminary results of characterizations of the accelerometers subjected to cross-axis shocks in a split beryllium Hopkinson bar configuration are presented.
机译:机械冲击测试实验室的桑迪亚国家实验室正在研究冲击环境中的压阻加速度计的特性。在测量的高频,高冲击环境中,已经开发出一种霍普金森棒功能以扩展我们对压阻式加速度计的理解,在两种机械配置中/本文中,铍霍普金森棒配置与激光多普勒仪一起使用描述了振动计作为参考测量。展示了压阻式加速度计在dc-50 kHz频率和高达70,000 g冲击强度时的同轴性能,这是通过铍霍普金森棒的测量确定的。给出了在铍铍霍普金森杆结构中横轴冲击情况下加速度计特性的初步结果。

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