Department of Mechanical Engineering, National Taiwan University, Taipei 106, Taiwan.
Sensors (Basel). 2012;12(2):2088-117. doi: 10.3390/s120202088. Epub 2012 Feb 14.
In this paper, a PVDF film sensor was used to measure the transient responses of a cantilever beam subjected to an impact loading. The measurement capability of a PVDF sensor is affected by the area of the PVDF film sensor and the signal conditioner (charge amplifier). The influences of these effects on the experimental measurements were investigated. The transient responses for the dynamic strain of the beam were measured simultaneously by the PVDF sensor and a conventional strain gauge. The resonant frequencies of the beam were determined by applying the Fast Fourier Transform on transient results in the time domain of the PVDF sensor and the strain gauge. The experimentally measured resonant frequencies from the PVDF sensor and the strain gauge were compared with those predicted from theoretical and FEM numerical calculations. Based on the comparison of the results measured for these two sensors, the PVDF film sensor proved capable of measuring transient responses for dynamic strain, and its sensitivity is better than that of the strain gauge. Furthermore, almost all the resonant frequencies can be obtained from the results of transient responses for PVDF film.
本文使用 PVDF 薄膜传感器测量了悬臂梁在冲击载荷作用下的瞬态响应。PVDF 传感器的测量能力受到 PVDF 薄膜传感器面积和信号调理器(电荷放大器)的影响。研究了这些影响对实验测量的影响。通过 PVDF 传感器和传统应变计同时测量梁的动态应变的瞬态响应。通过对 PVDF 传感器和应变计在时域中的瞬态结果进行快速傅里叶变换,确定梁的谐振频率。将从 PVDF 传感器和应变计测量到的实验谐振频率与理论和有限元数值计算预测的频率进行比较。基于这两个传感器测量结果的比较,PVDF 薄膜传感器能够测量动态应变的瞬态响应,其灵敏度优于应变计。此外,几乎所有的谐振频率都可以从 PVDF 薄膜的瞬态响应结果中获得。