首页> 外文会议>ASME turbo expo: turbomachinery technical conference and exposition >STEADY-STATE CHARACTERISTICS OF A DUAL-ROTOR SYSTEM WITH INTERSHAFT BEARING SUBJECTED TO MASS UNBALANCE AND BASE MOTIONS
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STEADY-STATE CHARACTERISTICS OF A DUAL-ROTOR SYSTEM WITH INTERSHAFT BEARING SUBJECTED TO MASS UNBALANCE AND BASE MOTIONS

机译:轴间轴承承受质量不平衡和基础运动的双转子系统的稳态特性

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A dual-rotor system with an intershaft bearing subjected to mass unbalance and base motions is established. Using Lagrange's principle, equations of motion for dual-rotor system relative to moving base are derived. Rotary inertia, gyroscopic inertia, transverse shear deformation, mass unbalance, and six components of deterministic base motions are taken into account. Using state-space vector, steady-state characteristics of dual-rotor system are analyzed through dual-rotor critical speed map, mode shapes, unbalance responses considering base rotations, frequency responses due to base motions, and shaft orbits. The results show that base translations just add external force vectors, while base rotations bring on parametric system matrices and additional force vectors. Base rotations not only change natural frequencies of dual-rotor system, but also break the symmetry of dynamic characteristics in the case of base lateral rotation. Excited by base harmonic translation, resonant frequencies correspond to whirl frequencies. The orbit remains circular under base axial rotation, while it becomes elliptical with a static offset under lateral rotation and then a complicated curve due to harmonic translation. When harmonic frequency of base translation gets close to dual-rotor excitation frequencies, obvious beat vibration appears. Overrall, this flexible approach can ensure calculation accuracy with high efficiency and good expandability.
机译:建立了具有经受质量不平衡和基础运动的间隙轴承的双转子系统。使用拉格朗日的原理,推导了双转子系统相对于移动基座的运动方程。考虑旋转惯性,陀螺惯量,横向剪切变形,质量不平衡和六种确定性碱基运动的组分。使用状态空间向量,通过双转子临界速度图,模式形状,考虑基础旋转的不平衡响应,考虑基础旋转,频率响应以及轴轨道,分析了双转子系统的稳态特性。结果表明,基本转换只需添加外力向量,而基本旋转引入参数系统矩阵和额外的力向量。基准旋转不仅改变了双转子系统的自然频率,还在基部横向旋转的情况下破坏了动态特性的对称性。通过基础谐波翻译激发,谐振频率对应于旋转频率。轨道在基座轴向旋转下保持圆形,而在横向旋转下静态偏移是椭圆形的,然后由于谐波翻译而具有复杂的曲线。当碱基翻译的谐波频率接近双转子励磁频率时,出现明显的节拍振动。超标,这种灵活的方法可以以高效率和良好的可扩展性来确保计算精度。

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