首页> 外文期刊>Metrology and Measurement Systems: Metrologia i Systemy Pomiarowe >CRITICAL APPRAISING OF HOPKINSON BAR TECHNIQUES FOR CALIBRATING HIGH g ACCELEROMETERS
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CRITICAL APPRAISING OF HOPKINSON BAR TECHNIQUES FOR CALIBRATING HIGH g ACCELEROMETERS

机译:Hopkinson Bar技术的批判性评价校准高G加速度计

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摘要

The Hopkinson pressure bar has been developed to calibrate and assess high g accelerometers' capacity. The extreme caution is indispensable for performing calibration of severe characteristics, like the bearable super-high overload peak and wide duration of stress. In the paper, the Hopkinson bar calibrating system is being critically appraised. A limiting formula is deduced based on the stress wave theory. It indicates that the overload peak and duration of stress are limited by the elastic limit and wave speed of Hopkinson bar material. Both stress wave configurations in the form of linear ramp and cosine functions were designed theoretically to meet typical calibrating requirements. They were confirmed experimentally with the aid of the pulse shaping technique. Their corresponding calibration characteristics were analysed critically, and it was found that the cosine stress wave can achieve the values of acceleration peak or duration by π/2 times greater than those obtained with the linear stress wave. Finally, some suggestions are proposed for more extreme calibration requirements.
机译:Hopkinson压力棒已开发为校准并评估高的G加速度计的容量。极端小心对于进行严重特性的校准是必不可少的,如可忍耐超高过载峰值和宽度的应力持续时间。在本文中,Hopkinson Bar校准系统是批判性评估的。基于应力波理论推导出限制公式。它表明压力的过载峰值和持续时间受到霍普金森棒材料的弹性极限和波速的限制。在理论上设计了线性斜坡和余弦功能形式的应力波配置以满足典型的校准要求。借助脉冲成型技术实验证实了它们。它们批判性地分析了它们相应的校准特性,发现余弦应力波可以使加速峰值或持续时间的值达到大于用线性应力波获得的π/ 2倍。最后,提出了一些建议,以实现更极端的校准要求。

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