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임플랜트의 체결방식에 따른 초기조임력에 의한 응력분포 및 전하중에 관한 연구
이범현,전흥재,이수홍,한종현,Lee Bum-Hyun,Chun Heoung-Jae,Lee Soo-Hong,Han Chong-Hyun 대한치과보철학회 2006 대한치과보철학회지 Vol.44 No.2
Statement of problem: One of common problems associated with single teeth dental implant prosthetic is the loosening of screws that retain the implants. Purpose: The maintenance of screw joint stability is considered a function of the preload achieved in the screw when the suggested initial tightening torque is applied. The purpose of this study was to investigate acquired preload after initial clamping torque for estimating screw joint stability. Material and methods: A comparative study on the effect of initial clamping of two types of implant systems with different connections was conducted Three dimensional non-linear finite element analysis is adopted to compare the characteristics of screw preloads and stress distributions between two different types of implant systems composed with abutment, screw, and fixture under the same loading and boundary conditions. Results: 1. When the initial clamping torque of 32Ncm was applied to the implant systems, all types of implants generated the maximum effective stress at the first helix region of screw. 2. Morse taper connection types of implants generate lower stress distributions compared to those by butt joint connection types or implants due to large contact surface between abutment and fixture. 3. The internal types of implant systems with friction grip type implant systems have higher resistance to screw loosening than that of the external types of implant systems since the internal types of implant systems generated larger preload than that generated by the external types for the same tightening moments.
다양한 설계변수를 고려한 수직하중을 받는 일체형 임플랜트의 최적설계
최재민,전흥재,이수홍,한종현,Choi Jae-Min,Chun Heoung-Jae,Lee Soo-Hong,Han Chong-Hyun 대한치과보철학회 2006 대한치과보철학회지 Vol.44 No.2
Statement of problem: The researches on the influence of design variables on the stress distribution in cortical and trabecular bones and on optimal design for implant system were limited. Purpose: The purpose of this study is to identify the sensitivities of design parameters and to suggest the optimal parameters for designing the onebody type implant system. Material and methods: Stresses arising in the implant system were obtained by finite element analysis using a three dimensional model. An onebody type implant system[Oneplant (Warrantec. Co. Ltd., Korea)] was considered in this study. Vortical load(150 N) was applied on the top of the abutment along the axial direction. The initial design variables set for sensitivity analysis were radius of fixture, numbers of micro thread, numbers of power thread, height of micro thread, future length, tapered angle of future, inclined angle of thread, width of micro thread and width of power thread. The statistical technique of Design of Experiments(DOE) was applied tn the simulation model to deduce effective design parameters on stress distributions in bones. The deduced design parameters were incorporated into a fully automated design tool which is coupled with the finite element analysis and numerical optimization to determine the optimal design parameters. Results: 1. The result of sensitivity analysis showed six design variables - radius of future, tapered angle of fixture, inclined angle of thread, numbers of power thread, numbers of micro thread and height of micro thread - were more influential than the others. 2. The optimal values of design variables can be deduced by coupling finite element analysis (FEA) and design optimization tool(DOT).
임프란트의 상부구조물 형상과 하중조건에 따른 3차원 유한요소해석을 이용한 하악골의 응력분포에 관한 연구
신하식,전흥재,한종현,이수홍,Shin Ha-Shik,Chun Heoung-Jae,Han Chong-Hyun,Lee Soo-Hong 대한치과보철학회 2003 대한치과보철학회지 Vol.41 No.5
Statement of problem : There are many studies focused on the effect of shape of futures on stress distribution in the mandibular bone. However, there are no studies focused on the effect of the abutment types on stress distribution in mandibular bone. Purpose : The purpose of this study is to investigate the effect of three different abutment types on the stress distributions in the mandibular bone due to various loads by performing finite element analysis. Material and method : Three different implant systems produced by Warantec (Seoul, Korea), were modeled to study the effect of abutment types on the stress distribution in the mandibular bone. The three implant systems are classified into oneplant (Oneplant, OP-TH-S11.5). internal implant (Inplant, IO-S11.5) and external implant (Hexplant, EH-S11.5). All abutments were made of titanium grade ELI. and all fixtures were made of titanium grade IV. The mandibular bone used in this study is constituted of compact and spongeous bone assumed to be homogeneous, isotropic and linearly elastic. A comparative study of stress distributions in the mandibular bone with three different types of abutment was conducted. Results : It was found that the types of abutments have significant influence on the stress distribution in the mandibular bone. It was due to difference in the load transfer mechanism and the size of contact area between abutment and fixture. Also the maximum effective stress in the mandibular bone was increased with the increase of inclination angle of load. Conclusion : It was concluded that the maximum effective stress in the bone by the internal implant was the lowest among the maximum effective stresses by other two types.
치조골흡수 유형에 따른 치근단 절제술의 수술적 평가에 관한 연구
홍형택,전흥재,Hong, Hyoung Taek,Chun, Heoung Jae 한국전산구조공학회 2013 한국전산구조공학회논문집 Vol.26 No.6
본 논문에서는 치조골의 흡수 유형에 따른 치근단 절제술의 수술적 평가를 수행하였다. 유한요소해석이 사용되었으며 CT 이미지를 통하여 동양 성인 여성의 상악 중절치의 3D 모델을 사용하였다. 연구에는 상악중절치의 정상저작하중조건이 적용되었다. 치조골 흡수 유형에 따른 치근 절제술의 평가를 위해 정상모델과 함께 치조골의 전체적 흡수 모델, 순측 흡수 모델 및 설측 흡수 모델을 비교하였다. 이에 따라 설측 치조골 흡수의 영향은 순측 치조골의 흡수에 비해 치아의 유지 안정성에 미치는 영향이 작음을 확인하고, 설측 치조골 흡수로 인해 치근이 노출된 환자를 대상으로 한 치근 절제술의 위험 가능성을 제시하였다. The surgical evaluation of the apicoectomy with various types of alveolar bone resorption was conducted in current study. The apicoectomy is the common and important treatment in endodontics. Finite element analysis was used for evaluation. The 3D solid model of the maxillary central incisor was reconstructed using CT images of a mature Asian female. Loading and boundary conditions were simulated in the normal mastication of maxillary central incisor. For evaluation of apicoectomy, lingual, labial and entire alveolar bone resorption models were developed. In the results, lingual alveolar bone resorption did not significantly influence stress distribution pattern of root dentin and labial alveolar bone had an important role for supporting structural stability in tooth system.
Cement Type 맞춤형 인공고관절의 설계 변수 변화에 따른 Cement 두께 변화와 이에 대한 응력 분석
박흥석,전흥재,윤인찬,이문규,서덕찬,최귀원,Park, Heung-Seok,Chun, Heoung-Jae,Youn, In-Chan,Lee, Moon-Kyu,Seo, Duck-Chan,Choi, Kui-Won 대한의용생체공학회 2006 의공학회지 Vol.27 No.6
The choice of suitable hip implant is one of important factors in the total hip arthroplasty (THA). In clinical view point, an improper adaptation of hip implant might induce abnormal stress distribution to the bone, which can shorten the lifespan of replaced hip implant. Currently, interest in the custom-designed hip implants has increased as studies reveal the significance of geometric shape of patient's femur in modeling and designing the implants. In this study, we have developed custom-designed hip implant models with various sizes, and analyzed the stress distribution in the bone and bone cement using the Finite Element Method. It was found that minimizing the gap between implant stem and femoral cavity is crucial to minimize the stress concentration in the bone.