一种改进的脉冲力和压力传感器,用于波形重建目的

Z. Kaczmarek, C. Kaczmarek, V. Nichoga
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引用次数: 8

摘要

在霍普金森棒式机械换能器中,校正了分散对加工精度的影响,使其在短时间内测量脉冲力和压力的应用扩展到分散操作范围。在试验修正方法中,通常采用对杆内应变进行两点处理的方法。通过这种方法确定了棒材的色散特性,并进行了波形重建过程。本文提出了一种对杆内应变进行一点处理的脉冲力压力传感器,该传感器利用了输入函数产生的入射波和第一反射波。给出了输入函数的时间限制和在杆上安装应变片以防止入射脉冲和第一反射脉冲在应变片上叠加的空间限制。这些脉冲的不叠加是传感器正常工作的条件。介绍了该传感器在冲击力波形变换重建中的应用方法。该传感器的优点是减小了放大电路和输出信号处理电路的复杂性,提高了处理精度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A modified impulsive force and pressure sensor intended for waveform reconstruction purposes
The correction of the effect of dispersion on the accuracy of processing in a Hopkinson bar type mechanical transducer enables extension of its application in measurements of impulsive force and pressure of short duration onto the dispersive operating range. In the experimental methods of correction two point processing of the strain inside the bar is usually applied. This way the dispersive characteristic of the bar is determined, and also the process of reconstructing waveforms is carried out. In the paper a sensor of impulsive force and pressure with one-point processing of the strain inside the bar is presented, in which the incident wave as well as the first reflected one, generated by the input function are utilised. Temporal restrictions of the input function and spatial restrictions of mounting strain gauges on the bar, preventing the superposition of the incident and the first reflected pulses in the strain gauges are given. The non-superposition of these pulses is the condition of the sensor functioning correctly. The way to use the sensor in a transformation reconstruction method of impact force waveform, is demonstrated. The advantage of the described sensor is the reduction in the complexity of the amplification circuit and the output signal processing circuit and also the improved processing accuracy.
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