首页> 外文会议>ASME Turbo Expo: Turbomachinery Technical Conference and Exposition >SIMPLE CONTACT STIFFNESS MODEL VALIDATION FOR TIE BOLT ROTOR DESIGN WITH BUTT JOINTS AND PILOT FITS
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SIMPLE CONTACT STIFFNESS MODEL VALIDATION FOR TIE BOLT ROTOR DESIGN WITH BUTT JOINTS AND PILOT FITS

机译:带有对接点和引力配合的拉杆转子设计的简单接触刚度模型验证

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Tie bolt rotors for centrifugal compressors comprise multiple shaft components that are held together by a single tie bolt. The axial connections of these rotors - including butt joints, Hirth couplings, and Curvic couplings - exhibit a contact stiffness effect, which tends to lower the shaft bending frequencies compared to geometrically identical monolithic shafts. If not accounted for in the design stage, shaft bending critical speed margins can be compromised after a rotor is built. A previous paper had investigated the effect of tie bolt force on the bending stiffness of stacked rotor assemblies with butt joint interfaces, both with and without pilot fits. This previous work derived an empirical contact stiffness model and developed a practical finite element modeling approach for simulating the axial contact surfaces, which was validated by predicting natural frequencies for several test rotor configurations. The present work built on these previous results by implementing the same contact stiffness modeling approach on a real tie bolt rotor system designed for a high pressure centrifugal compressor application. Each joint location included two axial contact faces, with contact pressures up to five times higher than previously modeled, and a locating pilot fit. The free-free natural frequencies for different amounts of tie bolt preload force were measured, and the frequencies exhibited the expected stiffening behavior with increasing preload. However, a discontinuity in the data trend indicated a step-change increase in the contact stiffness. It was shown that this was likely due to one or more of the contact faces becoming fully engaged only after sufficient tie bolt force was applied. Finally, a design calculation was presented that can be used to estimate whether contact stiffness effects may be ignored, which could simplify rotor analyses if adequate contact pressure is used.
机译:用于离心式压缩机的拉紧螺栓转子包括多个轴部件,这些部件通过单个拉紧螺栓保持在一起。这些转子的轴向连接-包括对接接头,Hirth联轴器和Curvic联轴器-表现出接触刚度效应,与几何形状相同的整体式轴相比,它倾向于降低轴的弯曲频率。如果在设计阶段没有考虑到这一点,则在建造转子后,可能会折衷于轴弯曲的临界速度裕度。先前的一篇论文研究了系紧螺栓力对带有和不带有先导配合的具有对接接口的堆叠式转子组件的弯曲刚度的影响。先前的工作推导了经验的接触刚度模型,并开发了一种用于模拟轴向接触面的实用有限元建模方法,该方法通过预测几种测试转子配置的固有频率得到了验证。本工作基于这些先前的结果,通过在为高压离心压缩机应用设计的实际拉杆转子系统上实施相同的接触刚度建模方法。每个关节位置都包括两个轴向接触面,且接触压力比以前建模的压力高五倍,并且具有定位先导配合。测量了不同数量的拉杆预紧力的自由自由频率,这些频率随预紧力的增加而表现出预期的加劲行为。但是,数据趋势的不连续性表明接触刚度呈阶跃变化。结果表明,这可能是由于一个或多个接触面仅在施加足够的拉紧螺栓力后才完全接合。最后,提出了一种设计计算方法,可以用来估计是否可以忽略接触刚度的影响,如果使用了足够的接触压力,则可以简化转子的分析。

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