가공력 제어 위치 서보 시스템을 이용한 초음파 가공기의 개발

Development of Ultrasonic Machine with Force Controlled Position Servo System

초록

The machining technology for the brittle materials such as ceramics are applied to the fields of MEMS(micro electromechanical system) by the progress of new machining technologies such as Etching, Diamond machining, Micro drilling, EDM(Electro discharge machining), ECDM(Electro discharge machining), USM(Ultrasonic machining), LBM(Laser beam machining), EBM(Electron beam machining). Especially, the USM technology can be applied to the dieletric brittle materials such as silicon, borosilicate glass, silicon nitride, quartz and ceramics with high aspect ratio. The micro machining system with machining force controlled position servo is developed in this paper and the optimized ultrasonic machining algorithm is constructed by the force controlled position servo control. The load cell is adapted in the force measuring and the servo control algorithm, suit for the ultrasonic machining characteristics, is estabilished with using the PID auto-tunning functions at the PMAC system which is generally adapted in the field of robot industries. The precision force signal amplifier is constructed with high precision operational amplifier AD524. The vacuum adsorption chuck which is made of titanum and internal flow line is engraved, is used in the workpiece fixing. The mahining results by USM shows that there are some deviation between the force command and the actual machining force that the servo control algorithm should be applied in the machining procedures. Therefore, the constant force controlled position servo system is developed for the micro USM system and by the examination machining process in USM, the stable USM system is realized by tracking the average value of machining force.

키워드

Ultrasonic MachiningMEMSForce FeedbackPosition ServoPIDAuto Tunning
제목
가공력 제어 위치 서보 시스템을 이용한 초음파 가공기의 개발
제목 (타언어)
Development of Ultrasonic Machine with Force Controlled Position Servo System
저자
장인배이승범전병희
발행일
2004-06
유형
Y
저널명
소성가공
13
3
페이지
253 ~ 261