Design of Ultrasonic Vibration Device using PZT Actuator for Precision Laser Machining

압전구동기를 이용한 정밀 가공용 초음파 진동장치 설계

  • Kim, W.J. (Department of Mechanical Engineering, Ajou University) ;
  • Fei, L. (Department of Mechanical Engineering, Ajou University) ;
  • Cho, S.H. (Korea Institute Of Machinery and Materials) ;
  • Park, J.K. (Korea Institute Of Machinery and Materials) ;
  • Lee, M.G. (Department of Mechanical Engineering, Ajou University)
  • Received : 2011.05.01
  • Accepted : 2011.06.21
  • Published : 2011.06.30

Abstract

As the aged population grows around the world, many medical instruments and devices have been developed recently. Among the devices, a drug delivery stent is a medical device which requires precision machining. Conventional drug delivery stent has problems of residual polymer and decoating because the drug is coated on the surface of stent with the polymer. If the drug is impregnated in micro hole array on the surface of the stent, the problem can be solved. Micro sized holes are generally fabricated by laser machining; however, the fabricated holes do not have an enough aspect ratio to contain the drug or a good surface finish to deliver it to blood vessel tissue. To overcome these problems, we propose a vibration-assisted machining mechanism with PZT (Piezoelectric Transducers) for the fabrication of micro sized holes. If the mechanism vibrates the eyepiece of the laser machining head, the laser spot on the workpiece will vibrate vertically because objective lens in the eyepiece shakes by the mechanism's vibration. According to the former researches, the vibrating frequency over 20kHz and amplitude over 500nm are preferable. The vibration mechanism has cylindrical guide, hollowed PZT and supports. In the cylinder, the eyepiece is mounted. The cylindrical guide has upper and low plates and side wall. The shape of plates and side wall are designed to have high resonating frequency and large amplitude of motion. The PZT also is selected to have high actuating force and high speed of motion. The support has symmetrical and rigid characteristics.

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