转子系统变刚度动力吸振器试验研究

姚红良,王童照,曹焱博,闻邦椿

振动与冲击 ›› 2018, Vol. 37 ›› Issue (9) : 80-85.

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PDF(2032 KB)
振动与冲击 ›› 2018, Vol. 37 ›› Issue (9) : 80-85.
论文

转子系统变刚度动力吸振器试验研究

  • 姚红良,王童照,曹焱博,闻邦椿
作者信息 +

Tests for a dynamic absorber with tunable stiffness of rotor systems

  • YAO Hongliang1, WANG Tongzhao1, CAO Yanbo1, WEN Bangchun1
Author information +
文章历史 +

摘要

为实现转速变化转子系统的振动抑制,提出了一种新型的变刚度动力吸振器,采用永久磁铁组成的变刚度机构实现吸振器的刚度和固有频率可调。首先设计了吸振器结构,建立了转子-永磁变刚度吸振器的动力学方程并分析了吸振器的工作原理。其次搭建了转子-永磁变刚度吸振器试验台和控制系统,编制了PID控制程序。最后在试验台上进行了永磁变刚度机构有效性试验、扫频吸振效果验证试验、转子定转速控制试验等试验。研究结果表明,所设计的变刚度动力吸振器能够达到振动抑制效果。

Abstract

To realize vibration suppression of a rotor system with variable rotating speed, a new type of dynamic absorber with tunable stiffness was proposed. The stiffness and natural frequency of the absorber could be adjusted with a variable stiffness mechanism composed of permanent magnets. Firstly, the structure of the absorber was designed, the dynamic equation of the rotor-absorber with a permanent magnet variable stiffness was established, and the working principle of the absorber was analyzed. Secondly, the rotor-permanent magnet tunable stiffness absorber test platform and its control system were built, a PID control program was compiled. Finally, the effectiveness test of the permanent magnet tunable stiffness mechanism, the validity test for frequency-sweeping and vibration reduction effect and the rotor constant speed control test were conducted on the test platform. The results showed that the tunable stiffness dynamic absorber designed can acquire vibration suppression effect.



关键词

变刚度 / 动力吸振 / 永久磁铁 / PID控制

Key words

tunable stiffness / dynamic absorber / permanent magnet / PID control

引用本文

导出引用
姚红良,王童照,曹焱博,闻邦椿. 转子系统变刚度动力吸振器试验研究[J]. 振动与冲击, 2018, 37(9): 80-85
YAO Hongliang1, WANG Tongzhao1, CAO Yanbo1, WEN Bangchun1. Tests for a dynamic absorber with tunable stiffness of rotor systems[J]. Journal of Vibration and Shock, 2018, 37(9): 80-85

参考文献

[1] 王四季,廖明夫. 弹支干摩擦阻尼器在线控制转子失稳_王四季[J]. 振动测试与诊断, 2012, 32(2): 323-326.
WANG Si-ji, LIAO Ming-fu. Online Control of Rotor System Instability by Elastic Support/Dry Friction Damper [J]. Journal of Vibration, Measurement & Diagnosis, 2012, 32(2): 323-326.
[2] 王晨阳,何立东. 转子动力吸振器在线抑制多跨转子过临界振动的实验研究[J]. 中国电机工程学报, 2015(18): 4715-4724.
WANG Chen-yang, HE Li-dong. Experimental Study on Over-critical Speed Vibration Online Control of Multi-span Rotors by Rotor Dynamic Vibration Absorber [J].
Proceedings of the CSEE, 2015(18): 4715-4724.
[3] Liu Xue-guang, Feng Xiao-xiao, Shi Ye,et al. Development of a Semi-Active electromagnetic vibration absorber and its experimental study[J]. Journal of Vibration Acoustics, 2013, 135(5): 510151-510159.
[4] 刘超,刘刚,盖玉欢. 基于磁力等效原理的刚性磁悬浮转子系统高精度在线动平衡[J]. 振动与冲击, 2016(04): 67-71.
LIU Chao, LIU Gang, GAI Yu-huan. Field balancing for a magnetically suspended rigid rotor based on magnetic forces equivalence principle [J]. Journal of vibration and shock, 2016(04):67-71.
[5] Ma Yan-hong, Zhang Qi-cheng, Zhang Da-yi,et al. A novel smart rotor support with shape memory alloy metal rubber for high temperatures and variable amplitude vibrations[J]. Smart Mater Struct, 2014, 23(12501612).
[6] 任勇生,杜成刚,刘养航. 具有形状记忆合金弹簧支承的转子系统的动力稳定性研究[J]. 振动与冲击, 2016(05):  70-74.
REN Yong-sheng, DU Cheng-gang, LIU Yang-hang. Dynamic stability of a rotor-bearing system with shape memory alloy support [J]. Journal of vibration and shock, 2016(05):70-74.
[7] Komatsuzaki T, Iwata Y. Design of a Real-Time adaptively tuned dynamic vibration absorber with a variable stiffness property using magnetorheological elastomer[J]. Shock and Vibration, 2015, 2015: 1-11.
[8] Tůma J, šimek J, škuta J, Los J. Active vibrations control of journal bearings with the use of piezoactuators[J]. Mechanical Systems and Signal Processing, 2013, 36(2): 618-629.
[9] Wu Wen-jiang, Chen Xue-dong, Shan Yu-hu. Analysis and experiment of a vibration isolator using a novel magnetic spring with negative stiffness[J]. Journal of Sound and Vibration, 2014, 333(13): 2958-2970.
[10] Yao Hong-liang, Chen Zi-dong, Wen Bang-chun. Dynamic vibration absorber with negative stiffness for rotor system[J]. Shock and Vibration, 2016, 2016: 1-13.
 

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