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首页> 外文期刊>Chaos, Solitons and Fractals: Applications in Science and Engineering: An Interdisciplinary Journal of Nonlinear Science >Bifurcations in the response of a flexible rotor in squeeze-film dampers with retainer springs
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Bifurcations in the response of a flexible rotor in squeeze-film dampers with retainer springs

机译:带有保持弹簧的挤压膜减震器中的柔性转子响应的分叉

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Squeeze-film dampers are commonly used in conjunction with rolling-element or hydrodynamic bearings in rotating machinery. Although these dampers serve to provide additional damping to the rotor-bearing system, there have however been some cases of rotors mounted in these dampers exhibiting non-linear behaviour. In this paper a numerical study is undertaken to determine the effects of design parameters, i.e., gravity parameter, W, mass ratio, a, and stiffness ratio, K, on the bifurcations in the response of a flexible rotor mounted in squeeze-film dampers with retainer springs. The numerical simulations were undertaken for a range of speed parameter, X, between 0.1 and 5.0. Numerical results showed that increasing K causes the onset speed of bifurcation to increase, whilst an increase of a reduces the onset speed of bifurcation. For a specific combination of K and a values, the onset speed of bifurcation appeared to be independent of W. The instability of the rotor response at this onset speed was due to a saddle-node bifurcation for all the parameter values investigated in this work with the exception of the combination of a = 0.1 and K = 0.5, where a secondary Hopf bifurcation was observed. The speed range of non-synchronous response was seen to decrease with the increase of a; in fact non-synchronous rotor response was totally absent for a = 0:4. With the exception of the case a = 0.1, the speed range of non-synchronous response was also seen to decrease with the increase of K. Multiple responses of the rotor were observed at certain values of X for various combinations of parameters W, a and K, where, depending on the values of the initial conditions the rotor response could be either synchronous or quasi-periodic. The numerical results presented in this work were obtained for an unbalance parameter, U, value of 0.1, which is considered as the upper end of the normal unbalance range of most practical rotor systems. These results provide some insights into the range of design parameters for squeeze-film dampers with retainer springs to ensure synchronous rotor response within a specified operating speed range.
机译:挤压膜阻尼器通常与旋转机械中的滚动轴承或流体动力轴承结合使用。尽管这些阻尼器用于向转子轴承系统提供额外的阻尼,但是,仍然存在一些安装在这些阻尼器中的转子表现出非线性行为的情况。本文通过数值研究来确定设计参数(即重力参数W,质量比a和刚度比K)对安装在挤压膜阻尼器中的柔性转子的响应对分叉的影响。带有固定弹簧。对速度参数X的范围在0.1到5.0之间进行了数值模拟。数值结果表明,增加K会导致分叉的开始速度增加,而增加a则会降低分叉的开始速度。对于K和一个值的特定组合,分叉的开始速度似乎与W无关。在此开始速度下,转子响应的不稳定性是由于本研究中研究的所有参数值的鞍形节点分叉所致。 a = 0.1和K = 0.5的组合例外,其中观察到次级Hopf分叉。观察到非同步响应的速度范围随着a的增加而减小;实际上,对于a = 0:4,完全没有异步转子响应。除了a = 0.1的情况外,还发现非同步响应的速度范围随K的增加而减小。对于参数W,a和参数的各种组合,在某些X值下观察到转子的多重响应。 K,其中,取决于初始条件的值,转子响应可以是同步的也可以是准周期的。这项工作中给出的数值结果是针对不平衡参数U(值为0.1)获得的,该参数被认为是大多数实际转子系统的正常不平衡范围的上限。这些结果为带有保持弹簧的挤压膜阻尼器的设计参数范围提供了一些见识,以确保在指定的运行速度范围内同步转子响应。

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