摘要
为了实现涡流检测的自动化要求以及提高检测系统的稳定性和检测效率,设计了一种基于ADAMS的自动化涡流检测系统。用SolidWorks平台建立涡流检测机构,设计一种用伺服电动机拨动被测工件的涡流检测系统。利用虚拟样机技术ADAMS运动仿真平台建立仿真机构的动力学模型,通过运动仿真获得机构的运动学参数,对比分析与交叉辊子检测机构的被测工件曲线图,得出结论。仿真结果表明,所设计的涡流检测系统能够在较稳定的条件下完成工件的检测。该系统在满足检测效率的同时,较好地保证了工件在涡流检测过程中的稳定性和自动化性能。
In order to achieve the automation requirements of eddy current testing and improve the stability and efficiency of the testing system,an automated eddy current testing system is designed based on ADAMS.The SolidWorks platform is used to establish an eddy current testing mechanism,and an eddy current testing system is designed that uses a servo motor to move the workpiece under test.The virtual prototype technology ADAMS motion simulation platform is used to establish the dynamic model of the simulation mechanism,the kinematic parameters of the mechanism are obtained through the motion simulation,and the curve diagram of the measured workpiece of the cross-roller inspection mechanism is compared and analyzed,and a conclusion is drawn.The simulation results show that the designed eddy current inspection system can complete the inspection of the workpiece in a relatively stable condition.The system not only satisfies the inspection efficiency,but also better guarantees the stability of the workpiece during the eddy current inspection process and further automation performance.
作者
郭北涛
杨宏伟
GUO Beitao;YANG Hongwei(School of Mechanical and Power Engineering,Shenyang University of Chemical Technology,Shenyang 110142,China)
出处
《机械工程师》
2022年第4期17-19,22,共4页
Mechanical Engineer
基金
沈阳市科技计划项目(F16-228-6-00)。
关键词
涡流检测
伺服系统
仿真分析
稳定性能
eddy current testing
servo system
simulation analysis
stable performance