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The measurement of blade-tip clearances in aircraft turbines by a capacitance method

机译:电容法测量飞机涡轮叶片的叶尖间隙

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An instrument has been developed for use by airfield maintenance personnel in the checking of turbine-blade clearances, both in turbo-jet and turbo-prop engines. The measurements are made by plugging a cable into various capacitance pick-up points around the shroud ring and spinning the rotor, cither by hand cranking or by the starter motor. The instrument works on a capacitance principle, but the measurement does not depend for its accuracy on the similarity between the pick-ups; balancing, calibration and????????ultimately????????measurement at a pick-up point are possible without moving the attachment cable, except when changing to the next pick-up. Clearances are indicated on a peak voltmeter, scaled to show the clearance being measured as a fraction of the value to which the instrument has been calibrated. The instrument selects the longest blade and measures its clearance. The instrument has several novel features. The use of a transformer, placed part-way along the pick-up lead and designed to make the whole lead parallel-resonant, not only makes possible the measurement of minute capacitance changes at the end of a long cable but enables a simple resistance bridge to be used for this measurement. This bridge is fed by a stable crystal-controlled 50-kc/s oscillator. With the present equipment it is possible to detect capacitance changes of approximately 0.003 ???????μ???????μF at the end of a cable 23 ft long, requiring an overall capacitance sensitivity, ????????C/C, of 10????????5. The method of calibrating the instrument results in the greatest accuracy of measurement for clearances near the calibration value, the estimated error being less than +5%. The underlying technique may have many other applications in measuring minute capacitance changes, especially where the pick-up is unavoidably remote from the main measuring apparatus.
机译:已经开发出一种仪器,供飞机场维修人员检查涡轮喷气发动机和涡轮螺旋桨发动机的涡轮叶片间隙。通过将电缆插入护罩环周围的各个电容拾取点,并使转子旋转(通过手动摇动或启动马达进行旋转)进行测量。仪器采用电容原理工作,但测量的准确性并不取决于传感器之间的相似度。平衡,校准和最终的测量可以在不移动附属电缆的情况下在拾取点进行,除非更改为下一个拾取。间隙在峰值电压表上指示,按比例缩放以显示所测量的间隙为仪器已校准到的值的一部分。仪器选择最长的刀片并测量其间隙。该仪器具有一些新颖的功能。使用沿着拾取导线部分放置并设计成使整个导线平行谐振的变压器,不仅可以测量长电缆末端的微小电容变化,而且可以实现简单的电阻桥用于此测量。该桥由稳定的晶体控制的50 kc / s振荡器供电。使用本设备,可以在23英尺长的电缆末端检测到大约0.003 µF的电容变化,这需要总的电容灵敏度。 C / C为10,C / C为5。校准仪器的方法可在接近校准值的情况下获得最大的测量精度,估计误差小于+ 5%。基础技术在测量微小电容变化时可能具有许多其他应用,尤其是在拾波器不可避免地远离主测量设备的情况下。

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