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首页> 外文期刊>Journal of Micromechanics and Microengineering >Turbo test rig with hydroinertia air bearings for a palmtop gas turbine
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Turbo test rig with hydroinertia air bearings for a palmtop gas turbine

机译:具有掌上型燃气轮机的水力惯性空气轴承的涡轮试验台

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This paper describes a turbo test rig to test the compressor of a palmtop gas turbine generator at low temperature (< 100 degreesC). Impellers are 10 mm in diameter and have three-dimensional blades machined using a five-axis NC milling machine. Hydroinertia bearings are employed in both radial and axial directions. The performance of the compressor was measured at 50% (435 000 rpm) and 60% (530 000 rpm) of the rated rotational speed (870 000 rpm) by driving a turbine using compressed air at room temperature. The measured pressure ratio is lower than the predicted value. This could be mainly because impeller tip clearance was larger than the designed value. The measured adiabatic efficiency is unrealistically high due to heat dissipation from compressed air. During acceleration toward the rated rotational speed, a shaft crashed to the bearing at 566 000 rpm due to whirl. At that time, the whirl ratio was 8.
机译:本文介绍了一种涡轮测试设备,用于在低温(<100摄氏度)下测试掌上燃气涡轮发电机的压缩机。叶轮直径为10毫米,具有使用五轴NC铣床加工的三维叶片。径向和轴向都采用了惯性轴承。通过在室温下使用压缩空气驱动涡轮,在额定转速(870 000 rpm)的50%(435 000 rpm)和60%(530 000 rpm)下测量压缩机的性能。测得的压力比低于预测值。这可能主要是因为叶轮尖端间隙大于设计值。由于压缩空气的散热,测得的绝热效率非常高。在加速至额定转速期间,轴由于旋转而以566 000 rpm的速度撞向轴承。那时的回旋比是8。

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