基于有限元法的电力巡线机器人机械结构动态特性分析
文广1,苏睿1,姚锟1,吴学峰2,惠重粒2
(1.成都工业学院 智能制造学院,四川 成都 611730;2.成都天可精创科技有限公司,四川 成都 610041)
摘要:电力巡线机器人往往工作在距地数十米的高空,经常承受随机性的风载荷,其机械结构的动态特性对其动态响应影响较大。以某轮飞式电力巡线机器人为研究对象,利用有限元软件,对其动态特性进行分析,通过分析获取结构的固有频率、振型等动态特性参数。分析结果表明:该机器人机械结构在约束状态下的前6阶固有频率分别为:4961.1 Hz、19722 Hz、29702 Hz、94488 Hz、121190 Hz、161450 Hz,各阶模态振型表现为:第1、5、6阶为结构绕Z轴的摆动振型,第2阶为结构绕Y轴的摆动振型,第3、4阶为结构绕X轴的摆动振型,其中第4、6阶模态对结构动态特性的影响最大。分析结果为该机器人机械结构的动态优化提供了理论基础。
关键词:电力巡线机器人;模态分析;谐响应分析;固有频率;振型 
中图分类号:TP242.3 文献标志码:A doi:10.3969/j.issn.1006-0316.2020.01.007
文章编号:1006-0316 (2020) 01-0041-05
Dynamic Characteristics Analysis of Mechanical Structure of Electric Patrol Robot Based on Finite Element Method
WEN Guang1,SU Rui1,YAO Kun1,WU Xuefeng2,HUI Chongli2
( 1.School of Intelligent Manufacturing, Chengdu Technological University, Chengdu 611730, China; 2.Chengdu Tianke Jingchuang Technology Co., Ltd., Chengdu 610041, China )
Abstract:Electric patrol robot often works tens of meters above the ground and bears random wind loads, and the dynamic characteristics of the mechanical structures have a great impact on their dynamic response. This paper studies a flying electric patrol robot. The dynamic characteristics of the robot are analyzed by using finite element software, and the natural frequencies and vibration modes of the structure are obtained through analysis. The results show that the first six natural frequencies of the mechanical structure are 4961.1, 19722, 29702, 94488, 121190 and 161450 Hz, respectively. In the first, fifth and sixth order, the swing modes of the structure are around Z axis. In the second order, the swing modes of the structure are around Y axis, and in the third and fourth order, the swing modes of the structure are around X axis. Among them, the fourth and sixth modes have the greater influence on the dynamic characteristics of the structure. The analysis results provide a theoretical basis for the dynamic optimization of the mechanical structure of the robot. 
Key words:electric patrol robot;modal analysis;harmonic analysis;natural frequencies;vibration type
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收稿日期:2019-09-03
基金项目:四川省科技厅应用基础研究项目——基于安全保护功能的高空作业机器人自动控制系统研究(2018JY0132);成都工业学院引进人才科研启动项目(2017RC009,2017RC007)
作者简介:文广(1988-),男,湖北荆州人,博士,讲师,主要研究方向为智能机械结构设计与优化、摩擦学。
 

 

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