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Advanced Magnetic Suspension and Balance System Having Characteristics of Light Weight, Electric Power Saving, and Fast Response

机译:先进的磁悬浮和平衡系统,具有重量轻,节电和快速响应的特点

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We have developed an advanced magnetic suspension and balance system (MSBS), in which iron yokes are not used and a pair of strong magnets are installed to generate magnetic force compensating gravitational force applied to the aerodynamic models. By the introduction of these strong magnets, the electric power saving was realized. By not using iron yokes, not only the weight saving was realized but also the electrical response speed was increased due to the reduction of the inductance of the magnetic coils. The test section of the MSBS is 36 cm × 40 cm. We have developed the control method to support the model and give an arbitral movement of small amplitude at the center of the test section around five axes. In order to evaluate the characteristics of this MSBS, we performed the calibration tests of magnetic forces for our MSBS. We measured drag coefficients of a sphere aerodynamic model in order to confirm the performance of these MSBSs and had good agreements between the measured values and the values appeared in the common aerodynamic hand book. The MSBS has been studied and used in large scale laboratories. We think that these experimental results make the application of the MSBS into the wind tunnel experiment easier and can be the trigger to popularize it in small laboratories.
机译:我们已经开发了一种先进的磁悬浮和平衡系统(MSBS),其中不使用铁轭,并且安装了一对强磁体来产生可补偿施加到空气动力学模型上的重力的重力。通过引入这些强磁体,实现了节电。通过不使用铁轭,不仅实现了重量的减轻,而且由于电磁线圈的电感的减小而提高了电响应速度。 MSBS的测试部分为36厘米×40厘米。我们已经开发了控制方法以支持模型,并在测试部分的中心绕五个轴给出较小幅度的仲裁运动。为了评估此MSBS的特性,我们对MSBS进行了磁力校准测试。为了确定这些MSBS的性能,我们测量了球形空气动力学模型的阻力系数,并使测量值与常见空气动力学手册中出现的值具有良好的一致性。 MSBS已被研究并在大型实验室中使用。我们认为,这些实验结果使MSBS在风洞实验中的应用变得更加容易,并且可能是在小型实验室中推广MSBS的诱因。

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