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Experimental Model Validation of a Passive Balancing Device for Supercritical Helicopter Driveshafts

机译:超临界直升机驱动轴无源平衡装置的实验模型验证

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A system of passive balancing devices could potentially be used to suppress vibrations in helicopter tailrotor drive-shafts. Passive balancing devices for rotary shafts consist of masses restricted by concentric guides about the shaft axis. At supercritical shaft speeds, the balancing masses automatically adjust to counter imbalance due to uneven load distribution. The problem is highly nonlinear and requires comprehensive modeling to achieve satisfactory prediction of the balancing behavior. A frequency-scaled tailrotor driveshaft test rig was fabricated to test the performance of a passive balancing device and to validate a comprehensive model. The model includes balancing mass collisions and balancing mass interaction with the balancer track through friction. Experimentally, the passive balancing device on average reduced driveshaft transverse vibrations by 62% at steady-state. Models available in the literature predicted vibration amplitudes to within 68% of the experimental values. The new balancing model improved the prediction of shaft vibration amplitudes by a factor of 3.9 when compared to published models (18% vs. 68%). This suggests that friction and mass collisions cannot be ignored in passive balancer modeling and that passive balancing is a viable solution for suppressing driveshaft vibrations.
机译:可以用于抑制直升机尾机驱动轴中的振动的无源平衡装置。用于旋转轴的被动平衡装置由围绕轴轴线的同心引导件限制的质量块组成。在超临界轴速度下,由于负载分布不均匀,平衡质量会自动调整以进行计数器不平衡。问题是高度非线性,需要全面的建模,以实现对平衡行为的令人满意的预测。制造频率缩放的TailOrot传动轴试验台,以测试被动平衡装置的性能并验证综合模型。该模型包括通过摩擦平衡与平衡器轨道平衡的质量碰撞和平衡质量相互作用。通过实验,在平均水平降低的驱动轴横向振动下的被动平衡装置在稳态下逐渐减小62%。文献中可用的型号预测振动幅度在实验值的68%以内。与已发表的型号相比,新的平衡模型改善了轴振动幅度的预测3.9(18%对68%)。这表明在被动平衡器建模中不能忽视摩擦和质量碰撞,并且被动平衡是用于抑制驱动轴振动的可行解决方案。

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