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Transducer for direct measurement of skin friction in hypervelocity impulse facilities

机译:直接测量超高速冲动设备中皮肤摩擦的传感器

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摘要

An acceleration compensated transducer was developed to enable the direct measurement of skin friction in hypervelocity impulse facilities. The gauge incorporated a measurement and acceleration element that employed direct shear of a piezoelectric ceramic. The design integrated techniques to maximize rise time and shear response while minimizing the affects of acceleration, pressure, heat transfer, and electrical interference. The arrangement resulted in a transducer natural frequency near 40 kHz. The transducer was calibrated for shear and acceleration in separate bench tests and was calibrated for pressure within an impulse facility. Uncertainty analyses identified only small experimental errors in the shear and acceleration calibration techniques. Although significant errors were revealed in the method of pressure calibration, total skin-friction measurement errors as low as +/-7-12% were established. The transducer was successfully utilized in a shock tunnel, and sample measurements are presented for flow conditions that simulate a flight Mach number near 8.
机译:开发了一种加速度补偿传感器,可以直接测量超高速脉冲设备中的皮肤摩擦。该压力计装有一个测量和加速元件,该元件采用压电陶瓷的直接剪切。该设计集成了各种技术,以使上升时间和剪切响应最大化,同时将加速度,压力,传热和电干扰的影响降至最低。该布置导致换能器固有频率接近40 kHz。在单独的工作台测试中对换能器的剪切和加速度进行了校准,并对脉冲设备内的压力进行了校准。不确定性分析仅在剪切和加速度校准技术中发现了很小的实验误差。尽管在压力校准方法中发现了明显的误差,但总的皮肤摩擦测量误差却低至+/- 7-12%。该换能器已成功地用于冲击隧道中,并提供了用于模拟流动马赫数接近8的流动条件的样本测量值。

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