首页> 外文会议>ASME turbo expo: turbine technical conference and exposition >EFFECTS OF MECHANICAL PRELOADS ON THE ROTORDYNAMIC PERFORMANCE OF A ROTOR SUPPORTED ON 3 PAD GAS FOIL JOURNAL BEARINGS
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EFFECTS OF MECHANICAL PRELOADS ON THE ROTORDYNAMIC PERFORMANCE OF A ROTOR SUPPORTED ON 3 PAD GAS FOIL JOURNAL BEARINGS

机译:机械预紧力对支撑在3种垫气箔轴承上的转子的转子动力性能的影响

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The paper presents the rotordynamic performance measurements and model predictions of a rotor supported on three-pad gas foil journal bearings (GFJBs) with various mechanical preloads. The rotor with its length of 240 mm, diameter of 40 mm, and weight of 19.6 N is supported on two GFJBs and one pair of gas foil thrust bearings (GFTBs), being a permanent magnet rotor of a high speed electric motor. Each bearing pad consisting of a top foil and a bump strip layer is installed on a lobed bearing housing surface over the arc length of 120 deg along the circumference. Test three-pad GFJBs have four different mechanical preloads, i.e., 0 μm, 50 μm, 70 μm, 100 μm with a common radial nominal clearance of 150 μm. A series of speed-up tests are conducted up to 93 krpm to evaluate the effects of increasing mechanical preloads on the rotordynamic performance. Two sets of orthogonally positioned displacement sensors record the rotor horizontal and vertical motions at the thrust collar and the other end. Test results show that the filtered synchronous amplitudes change little, but the onset speed of sub-synchronous motions (OSS) increases dramatically for the increasing mechanical preloads. In addition, test bearings with the 100 urn preload show a higher OSS in load-on-pad (LOP) condition than that in load-between-pads (LBP) condition. A comparison to test results for a one-pad GFJB with a single top foil and bump strip layer reveals that three-pad GFJB has superior rotordynamic performance to the one-pad one. Finally, the test data benchmark against linear rotordynamic predictions to validate a rotor-GFJB model. In general, predicted natural frequencies of the rotor-bearing system and synchronous rotor motions agree well with test data. However, stability analyses underestimate OSSs recorded during the experimental tests.
机译:本文介绍了在具有各种机械预紧力的三垫式气箔轴颈轴承(GFJB)上支撑的转子的转子动力学性能测量结果和模型预测。长度为240毫米,直径为40毫米,重量为19.6 N的转子支撑在两个GFJB和一对气箔推力轴承(GFTB)上,它们是高速电动机的永磁转子。每个由顶部箔片和凸条带层组成的轴承垫均沿圆周在120度弧长上安装在带凸耳的轴承座表面上。测试的三垫GFJB具有四个不同的机械预紧力,即0μm,50μm,70μm,100μm,共同的径向标称间隙为150μm。进行了一系列高达93 krpm的加速测试,以评估增加机械预紧力对转子动力学性能的影响。两组正交定位的位移传感器记录了推力轴颈和另一端的转子水平和垂直运动。测试结果表明,滤波后的同步幅度变化不大,但是随着机械预紧力的增加,次同步运动(OSS)的开始速度急剧增加。此外,预加载100 urn的测试轴承在衬板负载(LOP)情况下比在衬板间负载(LBP)情况下显示出更高的OSS。与具有单个顶部箔片和凸起条层的单垫GFJB的测试结果进行比较,结果表明,三垫GFJB的转子动力学性能优于单垫GFJB。最后,测试数据以线性转子动力学预测为基准,以验证转子-GFJB模型。通常,转子轴承系统的预测固有频率和同步转子运动与测试数据非常吻合。但是,稳定性分析低估了在实验测试中记录的OSS。

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