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首页> 外文期刊>Journal of Sound and Vibration >Sommerfeld effect at forward and backward critical speeds in a rigid rotor shaft system with anisotropic supports
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Sommerfeld effect at forward and backward critical speeds in a rigid rotor shaft system with anisotropic supports

机译:Sommerfeld在具有各向异性支撑件的刚性转子轴系统中的前向和向后临界速度效果

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摘要

A rotor dynamic system requires high power/torque to accelerate through its resonance conditions or critical speeds to operate at a super-critical speed. Most practical drive sources are non-ideal in nature, i.e. they can only provide a limited amount of power to the rotor system. Thus, if there is insufficient power to overcome a resonance then the rotor speed may get arrested at that resonance or take a long time to escape from the resonance; and thereby damage the system. For the present analysis, a Direct Current (DC) motor is considered as the non-ideal prime mover for a rigid rotor shaft with unbalanced disk which is supported by flexible anisotropic supports/bearings. Due to the anisotropy in the supports, both forward and backward whirl motions of the rotor get excited. This causes a multi-Sommerfeld effect where two non-linear jump phenomena are manifested at the first forward and backward critical speeds during rotor coast up and coast down. When the two critical speeds are close to each other, a complex speed capture and jump phenomena occurs. Accordingly, the transitions through both resonance conditions are examined. At first, the analytical solutions are obtained under steady state assumption and then transient simulations are performed with the help of a bond graph (BG) model. (C) 2018 Elsevier Ltd. All rights reserved.
机译:转子动力系统需要高功率/扭矩以通过其共振条件或临界速度加速以以超临界速度操作。大多数实用的驱动源都是非理想的,即它们只能为转子系统提供有限的功率。因此,如果没有足够的力量来克服共振,则转子速度可能在该共振或需要长时间逃离共振;从而损坏了系统。对于本分析,直流电流(DC)电动机被认为是具有不平衡盘的刚性转子轴的非理想原动机,其由柔性各向异性支撑/轴承支撑。由于支撑件中的各向异性,转子的前向和向后旋转动作令人兴奋。这导致了多索默菲尔德效应,其中两个非线性跳跃现象在转子海岸上升和沿着沿后的第一个向后临界速度表现出。当两个临界速度彼此接近时,发生复速捕获和跳跃现象。因此,检查通过两个共振条件的过渡。首先,在稳态假设下获得分析解决方案,然后在键合图(BG)模型的帮助下执行瞬态仿真。 (c)2018年elestvier有限公司保留所有权利。

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