考虑轴承径向游隙的水下航行器涡轮转子系统振动仿真

J. Liu, Lei Xue, Hengtai Ni
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引用次数: 1

摘要

水轮机转子系统(TRS)是水下航行器的重要组成部分。其振动和噪声特性会极大地影响UV的性能和使用寿命。为了研究支承轴承径向间隙对UV整个TRS振动的影响,采用有限元和多体方法建立了TRS的柔性动力学模型。从刚性和柔性动力学模型出发,分析了不同轴承间隙条件下TRS的振动特性。请注意,具有柔性体模型的TRS可以获得比刚性模型更精确的振动。最大振动幅值随轴承间隙的增大而增大。5微米~ 20微米的轴承间隙对于控制系统振动更为合理。TRS支承轴承的间隙越小,振动响应越稳定。本文的研究可为紫外辐射的trs精确仿真分析方法提供额外的指导。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Vibration Simulation of the Turbine Rotor System of an Underwater Vehicle Considering the Bearing Radial Clearance
The turbine rotor system (TRS) is one important part of an underwater vehicle (UV). Its vibration and noise characteristics can greatly affect the performance and service life of the UV. To study the influence of radial clearance of supporting bearings on the vibrations of the whole TRS of the UV, a flexible dynamic model of the TRS is established by using the finite element and multi-body methods. Vibrations of the TRS from the rigid and flexible dynamic models under different bearing clearance conditions are analyzed. Note that the TRS with the flexible body model can obtain more accurate vibrations than the rigid one. The maximum vibration amplitude increases with the increment of bearing clearance. The bearing clearance of 5 micrometers to 20 micrometers is more reasonable for controlling the system vibration. The smaller clearance of supporting bearings of the TRS can cause more stable vibration responses. This paper can provide additional guidance for the accurate simulation analysis method of the TRSs of the UVs.
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