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Imbalance response of a rotor supported on open-ends integral squeeze film dampers

机译:支撑在开口端整体挤压膜阻尼器上的转子的不平衡响应

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摘要

Rotor vibration attenuation and structural components isolation in jet engines are achieved with squeeze film dampers, many of th em supported on long elastic squirrel cages. Integral squeeze film dampers (ISFDs) are comprised of arcuate pads andwire-EDM webs rendering a compact viscoelastic support. An experimental study is conducted to evaluate the effectiveness of ISFDs in attenuating the imbalance response of a massive test rotor. Measurements of the damper structural stiffness and rotornatural frequencies are detailed. Impact tests on the test rotor supported on its dampers reveal the supporting structure to be very flexible, thus requiring the experimental evaluation of an equivalent stiffness for the damper and supports system. System damping coefficients extracted from impact load excitations vary with the lubricant viscosity and include a significant structural damping from the bearing supports. Rotor coast-down tests demonstrate the ISFDs to damp well the rotor response with peakvibration amplitude proportional (linear) to the imbalance. Viscous damping coefficients estimated from the amplitude response at the critical speeds agree reasonably well with predictions from a full-film, finite element model.
机译:喷气发动机中的转子振动衰减和结构部件隔离是通过挤压膜阻尼器实现的,其中许多阻尼器支撑在长弹性鼠笼上。整体式挤压膜阻尼器 (ISFD) 由弧形垫和线切割 EDM 腹板组成,可提供紧凑的粘弹性支撑。进行了一项实验研究,以评估 ISFD 在减弱大型测试转子不平衡响应方面的有效性。详细介绍了阻尼器结构刚度和转子固有频率的测量。对阻尼器上支撑的测试转子的冲击试验表明,支撑结构非常灵活,因此需要对阻尼器和支撑系统的等效刚度进行实验评估。从冲击载荷激励中提取的系统阻尼系数随润滑剂粘度而变化,并且包括来自轴承支架的显着结构阻尼。转子滑行测试表明,ISFD可以很好地抑制转子响应,峰值振动幅度与不平衡成正比(线性)。根据临界速度下的振幅响应估计的粘性阻尼系数与全膜有限元模型的预测结果相当吻合。

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