A PHOTOELASTIC ANALYSIS OF STRESS DISTRIBUTIONS AROUND FIVE DIFFERENT TYPES OF ENDOSSEOUS IMPLANTS ACCORDING TO THEIR STRUCTURES

5종 골내 임플란트의 구조에 따른 주위의 응력분산에 관한 광탄성학적 연구

  • Lee Jeong-Nam (Department of Dentistry Graduate School, Kyungpook National University) ;
  • Cho Sung-Am (Department of Dentistry Graduate School, Kyungpook National University)
  • 이정남 (경북대학교 치과대학 보철학교실) ;
  • 조성암 (경북대학교 치과대학 보철학교실)
  • Published : 1993.12.01

Abstract

This study was performed for the purpose of evaluating the stress distributions around five different types of implants according to their structures. The stress distribution around the surrounding bone was analysed by two-dimensional photoelastic method. Five epoxy resin models were made, and vertical and lateral forces were applied to the models. A circular polariscope was used to record the isochromatic fringes. The results of this study were summerized as follows : 1. Threaded type implants showed more even stress distribution patterns than cylinderical type implants when vertical and lateral forces were applied. 2. The stress concentrated patterns were observed at the neck portion and middle portion of the cylindrical type implants comparing with threaded type implants when vertical force was applied. 3. Model 1 and model 4 which are tthreaded type implants showed similar stress distribution patterns at the middle and apical portions and more stress was concentrated at the neck porion of model 1 comparing with model 4 when vertical force was applied. The stresses around model 1 were more evenly distributed when lateral force was applied. 4. More stress was concentrated at the neck and middle portion of cylindrical type implants than threaded type implants when lateral force was applied. 5. Model 1 showed the most even stress distribution patterns when lateral force was applied and stress distribution did no occured at the apical portion of modedl 2 when lateral force was applied. 6. There were almost no differences in stress concentrated patterns with or without having hollow design. And the stress concentrated patterns were observed at the corner of apex in model 5 which has hollow design when vertical force was applied.

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