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THE NUMERICAL AND EXPERIMENTAL CHARACTERISTICS OF MULTI-MODE DRY-FRICTION WHIP AND WHIRL

机译:多模式干式磨擦和涡流的数值和实验特性

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The nature of dry-friction whip and whirl is investigated through experimental and numerical methods. A test rig was designed and constructed to demonstrate and record the character of multi-mode dry-friction whip and whirl. These tests examined steady state whip and whirl characteristics for a variety of rub materials and clearances.A simulation model was constructed using tapered Timoshenko beam finite elements to form multiple-degree-of-freedom rotor and stator models. These models were reduced by component mode synthesis to discard high-frequency modes while retaining physical coordinates at the rub location to model rotor-stator interaction using a nonlinear contact model with Coulomb friction. Simulations were performed for specific test cases and compared against experimental data; these comparisons are favorable.Experimental data analysis showed multiple whirl and whip regions, despite claims of previous investigators that these regions are predicted analytically but not produced in simulations or experiments. Spectral analysis illustrates the presence of harmonic sidebands that accompany the fundamental whirl solution. These sidebands are more evident in whip and can excite higher-frequency whirl solutions.
机译:通过实验和数值方法研究了干摩擦鞭和涡流的性质。设计并建造了一个测试台,以演示和记录多模式干摩擦鞭和涡流的特性。这些测试检查了各种磨擦材料和间隙的稳态鞭打和旋转特性。 使用锥形Timoshenko梁有限元构建了一个仿真模型,以形成多自由度的转子和定子模型。这些模型通过分量模态合成进行了简化,放弃了高频模态,同时在摩擦位置保留了物理坐标,从而使用带有库仑摩擦的非线性接触模型来模拟转子-定子相互作用。针对特定的测试用例进行了仿真,并与实验数据进行了比较;这些比较是有利的。 尽管先前的研究人员声称,这些区域是经过分析预测的,但不是在模拟或实验中产生的,但实验数据分析显示出多个旋转区域和鞭状区域。频谱分析说明了谐波边带的存在,该边带伴随着基本涡旋解决方案。这些边带在鞭子中更为明显,并且可以激发更高频率的漩涡解决方案。

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