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Dynamics analysis of a hollow-shaft rotor system with an open crack under model uncertainties

机译:模型不确定性下带有裂纹的空心轴转子系统的动力学分析

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This paper focuses on the vibration behaviors of a hollow-shaft rotor system in presence of an open crack under inherent model uncertainties. Non-probabilistic interval variables are used to represent the uncertain parameters, which releases the high demands of probabilistic knowledge in the traditional methods. In modeling the shaft, local stiffness matrix of the cracked element is derived by using the neutral axis method. The periodic response of the rotor system is solved by combination of the finite element method (FEM) and the harmonic balance method (HBM). A simple mathematical function, termed as the uncertain response surrogate function (URSF), is constructed to estimate the vibrational response in various cases where different parametric uncertainties are taken into consideration. In order to verify the robustness and accuracy of the URSF, the bounds of estimated response are compared with those obtained from the classical methods. Results show that the surrogate function has good accuracy and robustness, providing an effective method and guidance for diagnosing crack in uncertain context. (C) 2019 Elsevier B.V. All rights reserved.
机译:本文重点研究了固有模型不确定性下存在开裂的空心轴转子系统的振动行为。非概率区间变量用于表示不确定性参数,这释放了传统方法中对概率知识的高要求。在对轴进行建模时,使用中性轴方法导出了裂纹单元的局部刚度矩阵。转子系统的周期性响应是通过有限元方法(FEM)和谐波平衡方法(HBM)组合解决的。构建了一个简单的数学函数,称为不确定响应替代函数(URSF),以估计在考虑了不同参数不确定性的各种情况下的振动响应。为了验证URSF的鲁棒性和准确性,将估计响应的界限与从经典方法获得的界限进行了比较。结果表明,该替代函数具有良好的准确性和鲁棒性,为不确定环境下的裂纹诊断提供了有效的方法和指导。 (C)2019 Elsevier B.V.保留所有权利。

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