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首页> 外文期刊>Journal of Sound and Vibration >On dynamic analysis of variable thickness disks and complex rotors subjected to thermal and mechanical prestresses
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On dynamic analysis of variable thickness disks and complex rotors subjected to thermal and mechanical prestresses

机译:关于可变厚度磁盘的动态分析,复合转子经受热电机预应力

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This paper is focused on the analysis of complex rotating structures subjected to plausible operating conditions. Effects of the temperature gradient and the centrifugal stiffening contribution have been evaluated. In particular, the analyses have been performed considering disks with constant and variable thicknesses, which have been assumed either clamped at the bore or supported by a deformable shaft. The prestress contributions have been obtained through the integration of the three-dimensional stress state, which is generated by centrifugal and thermal loads, multiplied by the non-linear terms of the strain field. The weak form of the governing equations has been solved using the Finite Element method. High-fidelity one-dimensional elements have been developed according to the Carrera Unified Formulation. The comparisons between the current results and those obtained from solid finite element solutions have demonstrated that the proposed methodology can represent a valuable alternative to the three-dimensional modelling technique by ensuring a comparable accuracy with a lower computational effort. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本文重点研究了经受合理的操作条件的复杂旋转结构的分析。评估了温度梯度和离心加筋贡献的影响。特别地,考虑了具有恒定和可变厚度的磁盘进行分析,这已经假设夹紧在孔处或由可变形轴支撑。通过集成三维应力状态来获得预应力贡献,该延长状态由离心和热负荷产生,乘以应变场的非线性术语。使用有限元法解决了控制方程的弱形式。根据Carrera Unified Formulation开发了高保真一维元件。当前结果和从固体有限元解决方案获得的那些的比较已经证明,所提出的方法可以通过确保具有较低计算工作的可比精度来表示三维建模技术的有价值的替代方案。 (c)2017 Elsevier Ltd.保留所有权利。

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