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Simulation Analysis of Casing Vibration Response and Its Verification Under Blade-Casing Rubbing Fault

机译:叶片-壳体摩擦故障下壳体振动响应仿真分析及验证

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摘要

A new rotor-stator rubbing model considering the blade-casing rubbing fault is put forward in this paper. The model couples the rotor together with its suspension (ball or roller bearings), the disk, the (multiple) blades, and the casing. In addition, the influence of the rotor-stator clearance on rubbing forces was considered. It can simulate rubbing faults for single-point rubbing on the casing and complete-cycle rubbing on the rotor. The new rubbing model was applied to the rotor-support-casing coupling model, and the casing acceleration response under rubbing faults was obtained by the time-integration approach. The casing acceleration response, blade tip response, and rubbing force were analyzed. An aero-engine rotor tester, including casing, was used to carry out the rubbing experiment for single-point rubbing on the casing and for whole-cycle rubbing on the rotor. The simulation results were found in highly consistent with the experimental results, which fully verified the effectiveness of the new blade-casing rubbing model.
机译:提出了一种考虑叶片-壳体摩擦故障的新型转子-定子摩擦模型。该模型将转子及其悬架(滚珠或滚子轴承),圆盘,(多个)叶片和壳体耦合在一起。另外,还考虑了转子-定子间隙对摩擦力的影响。它可以模拟在壳体上进行单点摩擦以及在转子上进行全周期摩擦的摩擦故障。将新的摩擦模型应用于转子-轴承-壳体耦合模型,并通过时间积分方法获得了摩擦故障下的壳体加速度响应。分析了机壳的加速度响应,叶尖响应和摩擦力。使用包括外壳在内的航空发动机转子测试仪进行了对外壳上的单点摩擦和对转子进行全周期摩擦的摩擦实验。仿真结果与实验结果高度吻合,充分验证了新型叶片-壳体摩擦模型的有效性。

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