Fully Suspended, Five-Axis, Three-Magnetic-Bearing Dynamic Spin Rig With Forced Excitation
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机译:具有强制励磁的全悬浮,五轴,三磁轴承动态自旋钻机
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摘要
The Five-Axis, Three-Magnetic-Bearing Dynamic Spin Rig, a significant advancement in the Dynamic Spin Rig (DSR), is used to perform vibration tests of turbomachinery blades and components under rotating and nonrotating conditions in a vacuum. The rig has as its critical components three magnetic bearings: two heteropolar radial active magnetic bearings and a magnetic thrust bearing. The bearing configuration allows full vertical rotor magnetic suspension along with a feed-forward control feature, which will enable the excitation of various natural blade modes in bladed disk test articles. The theoretical, mechanical, electrical, and electronic aspects of the rig are discussed. Also presented are the forced-excitation results of a fully levitated, rotating and nonrotating, unbladed rotor and a fully levitated, rotating and nonrotating, bladed rotor in which a pair of blades was arranged 180 degrees apart from each other. These tests include the bounce mode excitation of the rotor in which the rotor was excited at the blade natural frequency of 144 Hz. The rotor natural mode frequency of 355 Hz was discerned from the plot of acceleration versus frequency. For nonrotating blades, a blade-tip excitation amplitude of approximately 100 g/A was achieved at the first-bending critical (approximately 144 Hz) and at the first-torsional and second-bending blade modes. A blade-tip displacement of 70 mils was achieved at the first-bending critical by exciting the blades at a forced-excitation phase angle of 908 relative to the vertical plane containing the blades while simultaneously rotating the shaft at 3000 rpm.
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机译:五轴三轴承动态自旋钻机是动态自旋钻机(DSR)的一项重大进步,用于在真空中旋转和非旋转条件下对涡轮机械叶片和组件进行振动测试。该钻机具有三个磁性轴承作为其关键组件:两个异极径向有源磁性轴承和一个磁性推力轴承。轴承配置允许完全垂直的转子磁悬浮以及前馈控制功能,这将能够激发叶片式圆盘测试制品中各种自然叶片模式。讨论了钻机的理论,机械,电气和电子方面。还介绍了完全悬浮,旋转和不旋转的无叶片转子和完全悬浮,旋转和不旋转的带叶片转子的强制励磁结果,其中一对叶片彼此间隔180度。这些测试包括转子的弹跳模式激励,其中以144 Hz的叶片固有频率激励转子。从加速度与频率的关系图可以看出355 Hz的转子自然模式频率。对于非旋转叶片,在第一弯曲临界(大约144 Hz)以及第一扭转和第二弯曲叶片模式下可获得约100 g / A的叶片尖端激励幅度。通过在相对于包含刀片的垂直平面的强制激励相位角908激励刀片的同时,同时使轴以3000 rpm旋转,在第一弯曲临界点达到70密耳的刀片尖端位移。
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