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수직력하에서 임프란트 나사형태에 따른 응력의 3차원 유한요소법적 분석
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  • 수직력하에서 임프란트 나사형태에 따른 응력의 3차원 유한요소법적 분석
저자명
김우택,차용두,오세종,박상수,김현우,박양호,박준우,이건주,Kim. Woo-Taek,Cha. Yong-Doo,Oh. Se-Jong,Park. Sang-Soo,Kim. Hyun-Woo,Park. Yang-Ho,Park. Jun-Woo
간행물명
大韓口腔顎顔面外科學會誌
권/호정보
2001년|27권 2호|pp.111-117 (7 pages)
발행정보
대한구강악안면외과학회
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이 논문은 한국과학기술정보연구원과 논문 연계를 통해 무료로 제공되는 원문입니다.
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기타언어초록

There are three designs of thread form in screw type implants: V-thread, Reverse buttress thread and Square thread. The purpose of this study was to find out how thread form designs have an influence on the equivalent stress, equivalent strain, maximum shear stress and maximum shear strain and which design of thread form generates more maximum equivalent stress and strain. 3-D finite element analysis was used to evaluate the stress and strain patterns of three tread types. The results of this study were as follow. 1. Under the 200N of axial load, the value of maximum equivalent stress is smallest in square thread and there is no significant difference between that of V thread and reverse buttress thread. 2. Under the 200N of axial load, the value of maximum equivalent strain is largest in V thread and smallest in square thread. 3. Under the 200N of axial load, the value of maximum shear stress is smallest in square thread and there is no significant difference between that of V thread and reverse buttress thread. 4. Under the 200N of axial load, the value of maximum equivalent strain is largest in V thread and there is no significant difference between that of square thread and reverse buttress thread. 5. Above results show that the square thread has special advantages in stress and strain compared with other thread types, especially in shear stess which is most determinant to implant-bone interface. Considering the superior biomechanical properties of square form implant, we presume that square form implant has better clinical results than the other types of implants in the same clinical conditions.