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A general model for passive balancing of supercritical shafts with experimental validation of friction and collision effects

机译:超临界轴被动平衡的通用模型,具有摩擦和碰撞效应的实验验证

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摘要

Passive balancing devices for rotary systems consist of masses that are free to move in concentric guides about a shaft axis. At supercritical speeds, the balancing masses automatically assume positions that counter any imbalance due to uneven mass distribution in the system. A comprehensive physics-based non-linear model of a rotary system with passive balancing was formulated including balancing mass collision and friction. An experiment was conducted to quantify the performance and dynamic behavior of a single plane passive balancing device and to compare experimental results to model predictions. A parametric study validated the proposed modeling of the balancing mass interaction with other balancing masses and with the balancer track. In this research, the passive balancing device on average reduced shaft transverse vibrations experimentally by 62 percent at steady state. Models available in the literature predicted vibration amplitudes to within 68 percent of the experimental values. The presented model, accounting for balancer track friction and balancing mass collision, improved the accuracy of predicting shaft vibration amplitudes by a factor of 3.9 when compared to published models (18 percent vs. 68 percent). (C) 2016 Elsevier Ltd. All rights reserved.
机译:用于旋转系统的被动平衡装置由质量块组成,这些质量块可以在同心导轨中绕轴心自由移动。在超临界速度下,平衡质量会自动处于可以抵消由于系统中质量分布不均而导致的任何不平衡的位置。建立了具有被动平衡的旋转系统的基于物理的综合非线性模型,包括平衡质量碰撞和摩擦。进行了一项实验,以量化单个平面无源平衡设备的性能和动态行为,并将实验结果与模型预测进行比较。参数研究验证了所提出的平衡质量与其他平衡质量以及平衡器轨道之间相互作用的模型。在这项研究中,被动平衡装置在稳态下平均可减少62%的轴横向振动。文献中可用的模型将振动幅度预测为实验值的68%以内。与已发布的模型相比,该模型考虑了平衡器轨道摩擦和平衡质量碰撞,将预测轴振动幅度的准确性提高了3.9倍(18%对68%)。 (C)2016 Elsevier Ltd.保留所有权利。

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