Analysis on deviation caused by circular arc in axis orbit measurement was conducted, and the effects of the radius in the measurement plane and the displacements in the radial direction on the deviation were discussed.The results show that the smaller the radius in the measurement plane is, the more the deviation is; and the more the displacement in the radius direction is, the more the deviation is.Based on the analysis on the deviation, a modification method was presented, which was able to compute the real displacements of the axis orbit based on the measured displacements, with the radius in the measurement plane as an input.By using the proposed modification method, the deviation caused by circular arc can be eliminated, and improvement on measurement accuracy is made.The modification method has a significant engineering application value, which is suitable for both real-time testing systems and offline systems.
MA Huifang, WAN Zhao .
Deviation caused by circular arc in axis orbit measurement and its modification[J]. Journal of Vibration and Shock, 2019, 38(24): 243-248
{{custom_sec.title}}
{{custom_sec.title}}
{{custom_sec.content}}
参考文献
[1] 胡敬宁, 薛岩, 张德胜, 等.高压多级离心泵启动瞬态轴心轨迹研究[J].农业工程学报,2015,(z1):61-70.
HU Jingning, Xue Yan, Zhang Desheng, et al. Research on transient axis trajectory of high-pressure multistage centrifugal pump on starting[J].Transactions of the Chinese Society of Agricultural Engineering,2015,(z1):61-70.
[2]蒋小平, 朱嘉炜, 冯琦, 等.基于多重激励的悬臂式多级离心泵轴心轨迹研究[J].农业机械学报,2017,48(12):105-113.
JIANG Xiaoping, ZHU Jiawei, FENG Qi, et al. Axis Trajectory of Cantilever Multistage Centrifugal Pump Based on Multiple Excitation[J].Transactions of the Chinese Society for Agricultural Machinery ,2017,48(12):105-113.
[3]崔亚芹, 钟守平, 潘安伟, 等.基于COMTRADE录波的水电机组轴心轨迹动态分析[J]. 水利水电技术, 2018,49(7):122-128.
CUI Yaqin, ZHONG Shouping, PAN Anwei, et al.COMTRADE recording wave-based dynamic analysis on shaft centerline orbit of hydropower unit[J].Water Resources and Hydropower Engineering , 2018,49(7):122-128.
[4]南方电网调峰调频发电有限公司, 北京华科同安监控技术有限公司.一种通过轴心轨迹分析水轮发电机组轴瓦状态的方法[P].中国,CN201810156122.8[P]
[5]薛延刚, 王勇劲, 赵海英, 等.基于时序贴近度与改进SVM的水机轴心轨迹诊断[J].排灌机械工程学报,2017,35(12):1054-1057,1062.
XUE Yangang, WANG Yongjin, ZHAO Haiying, et al.Axis orbit automatic identification on time-series similarity mining for hydropower units[J]. Journal of Drainage and Irrigation Machinery Engineering ,2017,35(12):1054-1057,1062.
[6]崔立, 张洪生.基于轴心轨迹自动辨识的高速主轴系统故障诊断研究[J].上海第二工业大学学报,2018,35(2):134-139.
CUI Li, ZHANG Hongsheng.Study on Fault Diagnosis of High-Speed Spindle System Based on Automatic Identification of Axis Orbit[J]. Journal of Shanghai Second Polytechnic University ,2018,35(2):134-139.
[7]冉祥锋, 姜宏, 周建平, 等.基于轴心轨迹的转子升速过程故障特征提取方法研究[J].机床与液压,2018,46(17):173-176,184.
RAN Xiangfeng, JIANG Hong, ZHOU Jianping, et al.Study on Fault Feature Extraction Method in Rotor Acceleration Process Based on Axis Orbit[J]. Machine Tool & Hydraulics ,2018,46(17):173-176,184.
[8]向玲,张悦.基于轴心轨迹形态的转子裂纹故障分析[J].动力工程学报,2018,38(5):380-385.
XIANG Ling, ZHANG Yue. Fault Analysis of a Cracked Rotor Based on Morphological Characteristics of Axis Orbits[J]. Journal Of Chinese Society Of Power Engineering ,2018,38(5):380-385.
[9]王飞,罗贵火,崔海涛.转速比对双转子系统非线性动力学特性影响[J].南京航空航天大学学报,2018,50(3):367-374.
WANG Fei, LUO Guihuo, CUI Haitao.Influence of Speed Ratio on Nonlinear Dynamic Characteristics for Dual Rotor System[J].Journal of Nanjing University of Aeronautics & Astronauticsv,2018,50(3):367-374.
[10]范伟, 李建兰, 刘建雄, 等.旋转失速激振力作用下航空发动机转子振动特性[J].航空动力学报,2017,32(5):1120-1130.
FAN Wei, LI Jianlan, LIU Jianxiong, et al.Aeroengine rotor system vibration characteristics under action of rotating stall transverse load[J]. Journal of Aerospace Power,2017,32(5):1120-1130.
[11]颜文忠,Konstantin Shaposhnikov,张大义, 等.基础振动对转子系统动力特性影响的试验研究[J].推进技术,2016,37(11):2157-2164.
YAN Wenzhong, Konstantin Shaposhnikov, ZHANG Dayi, et al.et al.Experimental Investigation on Dynamic Characteristics of Rotor System Subject to Foundation Vibration[J].Journal of Propulsion Technology,2016,37(11):2157-2164.
[12]白雪川,曹树谦,杨蛟, 等.机动飞行时航空发动机反向旋转双转子动力学实验研究[J].机械科学与技术,2015,34(4):623-628.
Bai Xuechuan, Cao Shuqian, Yang Jiao, et al.Experiment Research on Aero-engine Counter-rotating Dual-rotor Dynamics Subjected to Maneuvering Conditions[J]. Mechanical Science and Technology for Aerospace Engineering,2015,34(4):623-628.
[13]徐方程,刘占生,张雯, 等.箔片摩擦效应对转子-箔片轴承系统动力学特性影响试验[J].航空动力学报,2014,29(11):2758-2766.
XU Fangcheng, LIU Zhansheng, ZHANG Wen, et al.Dynamic performance tests of bump-type gas foil journal bearing-rotor system in start-up and shut-down procedures[J].Journal of Aerospace Power ,2014,29(11):2758-2766.
[14]唐振寰,周海仑,成晓鸣.转子系统非协调进动在波德图中的响应分析[J].机械设计与制造,2018,(4):84-86.
TANG Zhenhuan, ZHOU Hailun, CHENG Xiaoming.Research on Response of Non-Synchronous of Rotor System in the Bode Diagram[J].Machinery Design & Manufacture,2018,(4):84-86.
[15]杜春华, 吉洪湖, 胡娅萍, 等.指尖封严的转子轴心轨迹与泄漏特性的试验[J].航空动力学报,2016,31(11):2575-2584.
DU Chunhua, JI Honghu, HU Yaping, et al. Experiment on axis locus of rotor and leakage characteristics of finger seal[J]. Journal of Aerospace Power,2016,31(11):2575-2584.
[16]杜春华,吉洪湖,胡娅萍, 等.低前挡板型小尺寸刷式封严泄漏特性的试验[J].航空动力学报,2017,32(2):298-305.
DU Chunhua, JI Honghu, HU Yaping, et al.Experimental investigation on leakage characteristics of small size brush seal with low front plate[J].Journal of Aerospace Power,2017,32(2):298-305.
[17]乔保栋, 姜广义, 赵开宁. 航空发动机转子轴心轨迹提取研究[C] //中国航空学会. 2015航空试验测试技术学术交流会论文集.北京:中航工业沈阳发动机设计研究所,2015:140-142,163.
[18]赵项伟, 罗贵火, 王飞.静偏心对挤压油膜阻尼器减振特性影响的数值分析[J].航空发动机,2018,44(3):42-48.
ZHAO Xiang-wei, LUO Gui-huo, WANG Fei.Numerical Analysis of Effects of Static Eccentricity on Vibration Characteristics of Squeeze Film Damper[J].Aeroengine ,2018,44(3):42-48.
[19]慕琴琴, 燕群, 黄文超.航空发动机旋转叶片-机匣碰摩动力学特性研究[J].航空计算技术,2017,47(6):9-13.
MU Qin-qin, YAN Qun, HUANG Wen-chao. Study on Rubbing Dynamic Characteristics of Aero-engine Rotatingblade-casing[J]. Aeronautical Computing Technique ,2017,47(6):9-13.
[20]徐洪志,王南飞,蒋东翔.双转子系统轴承座松动的动力学模型及故障特性[J].航空动力学报,2016,31(11):2781-2794.
XU Hongzhi, WANG Nanfei, JIANG Dongxiang.Bearing pedestal looseness dynamic model of dual rotor system and fault feature[J].Journal of Aerospace Power ,2016,31(11):2781-2794.
[21]魏之平.基于叶尖间隙测量系统的轴心轨迹测量技术研究[J].测控技术,2013,32(7):35-37.
WEI Zhiping.Research on Axes-Track Measurement Based on Tip Clearance Measurement System[J].Measurement & Control Technology ,2013,32(7):35-37.
[22]邱博, 王志华, 李中成.基于阶次提取法的轴系轴心轨迹分析[J].船海工程,2017,46(1):69-72.
QIU Bo, WANG Zhihua, LI Zhongcheng. Analysis of Shaft Centerline Orbit Based on Order Extraction[J]. Ship & Ocean Engineering ,2017,46(1):69-72.
[23] 李德葆,陆秋海. 工程振动试验分析[M].北京:清华大学出版社,2004
[24] 廖明夫. 航空发动机转子动力学[M]. 西安:西北工业大学出版社,2015
[25] 赵玫,周海亭,陈光冶等. 机械振动与噪声学[M]. 北京:科学出版社,2004
[26] 傅志方,华宏星. 模态分析理论与应用[M]. 上海:上海交通大学出版社,2000
[27] 闻邦椿,顾家柳,夏松波等. 高等转子动力学:理论、技术与应用[M]. 北京:机械工业出版社,2000