首页 | 本学科首页   官方微博 | 高级检索  
     检索      


Numerical investigation of cavitation generated by an ultrasonic dental scaler tip vibrating in a compressible liquid
Institution:1. School of Mathematics, College of Engineering and Physical Sciences, University of Birmingham, Birmingham, United Kingdom;2. Department of Mathematics, College of Science, Salahaddin University-Erbil, Kurdistan Region, Iraq;3. College of Engineering, Peking University, Beijing 100871, China;4. School of Dentistry, College of Medical and Dental Sciences, University of Birmingham, Birmingham, United Kingdom
Abstract:Bacterial biofilm accumulation around dental implants is a significant problem leading to peri-implant diseases and implant failure. Cavitation occurring in the cooling water around ultrasonic scaler tips can be used as a novel solution to remove debris without any surface damage. However, current clinically available instruments provide insufficient cavitation around the activated tip surface. To solve this problem a critical understanding of the vibro-acoustic behaviour of the scaler tip and the associated cavitation dynamics is necessary. In this research, we carried out a numerical study for an ultrasound dental scaler with a curved shape tip vibrating in water, using ABAQUS based on the finite element method. We simulated the three-dimensional, nonlinear and transient interaction between the vibration and deformation of the scaler tip, the water flow around the scaler and the cavitation formation and dynamics. The numerical model was well validated with the experiments and there was excellent agreement for displacement at the free end of the scaler. A systematic parametric study has been carried out for the cavitation volume around the scaler tip in terms of the frequency, amplitude and power of the tip vibration. The numerical results indicate that the amount of cavitation around the scaler tip increases with the frequency and amplitude of the vibration. However, if the frequency is far from the natural frequency, the cavitation volume around the free end decreases due to reduced free end vibration amplitude.
Keywords:Vibro-acoustics  Finite element method  Cavitation  Dental implant  Ultrasonic scaler tip
本文献已被 ScienceDirect 等数据库收录!
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号