首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part C. Journal of mechanical engineering science >Stress variation of a gas turbine tie-bolt rotor with Hirth serrations considering assembling and thermal effects
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Stress variation of a gas turbine tie-bolt rotor with Hirth serrations considering assembling and thermal effects

机译:考虑组装和热效应的Hirth Serration燃气轮机拉杆转子的应力变化

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摘要

Tie-bolt rotors are commonly applied in heavy-duty gas turbines due to a better stiffness-mass ratio behavior compared to traditional integral rotors. In order to achieve a steady transformation from mechanical energy to electricity, the clamping force of the bolt is critical to keep multiple disks as a whole unit. However, the tensile stress of the bolt is changing during rotor assembly as well as operational conditions that should be considered carefully for the rotor safety. Moreover, subjected to mechanical as well as thermal loads, the stress of the rotor disks is a complicated mixture by different applied forces. In this manuscript, the preload variation during the process of rotor assembling is studied analytically with the help of the stiffness analysis. Then, a steady thermal analysis is performed with appropriate boundary conditions. Making use of the thermal-mechanical approach, a steady-stress distribution under different load combinations is achieved. Furthermore, a thorough insight into the stress level as well as the contact pressure of Hirth serrations is presented.
机译:与传统的整体转子相比,由于更好的刚度质量比率,导致螺栓转子通常应用于重型燃气轮机。为了实现从机械能到电力的稳定变换,螺栓的夹紧力对于保持多个盘作为整体单元至关重要。然而,螺栓的拉伸应力在转子组件期间改变以及应仔细考虑的转子安全性的操作条件。此外,经过机械以及热负荷,转子盘的应力是通过不同施加的复杂混合。在该稿件中,在刚度分析的帮助下分析了转子组装过程中的预载变化。然后,使用适当的边界条件进行稳定的热分析。利用热电机械方法,实现了不同载荷组合下的稳压分布。此外,介绍了对压力水平的全面见解以及Hard Surration的接触压力。

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