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    SCOPUS KCI등재

    치아파절시험과 유한요소해석에서의 치경 변형률에 관한 연구

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    https://www.riss.kr/link?id=A82257810

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    다국어 초록 (Multilingual Abstract) kakao i 다국어 번역

    When occlusal force is applied to a tooth, stress concentration occurs on the dental cervical line. This study investigated to find the maximum force and strain of natural teeth using an Instron and strain gauges, comparing the strain of cervical enamel using finite element analysis(FEA). Tests were conducted with a mandibular first premolar applying the conditions of occlusion. Then, the FEA was processed with the same as conditions of the fracture test. The test showed that the maximum force, maximum compressive strain and maximum tensional strain was 278±26 N, 0.668×10<SUP>-3</SUP>±0.678×10<SUP>-3</SUP> and 0.248×10<SUP>-3</SUP>±0.102×10<SUP>-3</SUP>, respectively. It was found that six of eight measured strains were within the range of estimated strains by the FEA. Even though it was assumed that properties of FE models were isotropic, it could prove useful as a reference in understanding the tendency of dental strain.
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    When occlusal force is applied to a tooth, stress concentration occurs on the dental cervical line. This study investigated to find the maximum force and strain of natural teeth using an Instron and strain gauges, comparing the strain of cervical enam...

    When occlusal force is applied to a tooth, stress concentration occurs on the dental cervical line. This study investigated to find the maximum force and strain of natural teeth using an Instron and strain gauges, comparing the strain of cervical enamel using finite element analysis(FEA). Tests were conducted with a mandibular first premolar applying the conditions of occlusion. Then, the FEA was processed with the same as conditions of the fracture test. The test showed that the maximum force, maximum compressive strain and maximum tensional strain was 278±26 N, 0.668×10<SUP>-3</SUP>±0.678×10<SUP>-3</SUP> and 0.248×10<SUP>-3</SUP>±0.102×10<SUP>-3</SUP>, respectively. It was found that six of eight measured strains were within the range of estimated strains by the FEA. Even though it was assumed that properties of FE models were isotropic, it could prove useful as a reference in understanding the tendency of dental strain.

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    참고문헌 (Reference)

    1 김성민, "유한요소법을 이용한 척추 삽입형 경추판 시스템에 대한 생체역학적 피로해석" 한국정밀공학회 25 (25): 96-103, 2008

    2 Kinney, J. H., "The mechanical properties of human dentin:A critical review and re-evaluation of the dental literature" 14 (14): 13-29, 2003

    3 Lee, H. E., "Stresses at the cervical lesion of maxillary premolar-a finite element investigation" 30 (30): 283-290, 2002

    4 Lee, W. C., "Stress-induced cervical lesions:review of advances in the past 10 years" 75 (75): 487-494, 1996

    5 Chun, K. J., "Stress Analysis of Mandibular First Premolar with Finite Element Models" 18-, 2007

    6 Palamara, D., "Strain patterns in cervical enamel of teeth subjected to occlusal loading" 16 (16): 412-419, 2000

    7 Kim, Y. J., "Oral Prophylaxis" Daehan Publisher 1-6, 2005

    8 Horiuchi, H., "Occlusion and mastication.In:Oral Physiology" Gomoonsa 129-152, 2003

    9 전경진, "Morphological Study and Stress Analysis of Korean Mandibular Second Premolar" 한국정밀공학회 10 (10): 141-145, 2009

    10 Habelitz, S., "Mechanical properties of human dental enamel on the nanometre scale" 46 (46): 173-183, 2001

    1 김성민, "유한요소법을 이용한 척추 삽입형 경추판 시스템에 대한 생체역학적 피로해석" 한국정밀공학회 25 (25): 96-103, 2008

    2 Kinney, J. H., "The mechanical properties of human dentin:A critical review and re-evaluation of the dental literature" 14 (14): 13-29, 2003

    3 Lee, H. E., "Stresses at the cervical lesion of maxillary premolar-a finite element investigation" 30 (30): 283-290, 2002

    4 Lee, W. C., "Stress-induced cervical lesions:review of advances in the past 10 years" 75 (75): 487-494, 1996

    5 Chun, K. J., "Stress Analysis of Mandibular First Premolar with Finite Element Models" 18-, 2007

    6 Palamara, D., "Strain patterns in cervical enamel of teeth subjected to occlusal loading" 16 (16): 412-419, 2000

    7 Kim, Y. J., "Oral Prophylaxis" Daehan Publisher 1-6, 2005

    8 Horiuchi, H., "Occlusion and mastication.In:Oral Physiology" Gomoonsa 129-152, 2003

    9 전경진, "Morphological Study and Stress Analysis of Korean Mandibular Second Premolar" 한국정밀공학회 10 (10): 141-145, 2009

    10 Habelitz, S., "Mechanical properties of human dental enamel on the nanometre scale" 46 (46): 173-183, 2001

    11 Jordan, R. E., "Kraus’dental anatomy and occlusion" Mosby-Year Book 43-66, 1992

    12 Xu, H. H., "Indentation damage and mechanical properties of human enamel and dentin" 77 (77): 472-480, 1998

    13 Potiket, N., "In vitro fracture strength of teeth restored with different allceramic crown systems" 92 (92): 491-495, 2004

    14 McCabe, J. F., "Gold and alloys of noble metals.In:Applied Dental Materials" Blackwell 62-70, 2008

    15 Dejak, B., "Finite element analysis of mechanism of cervical lesion formation in simulated molars during mastication and parafunction" 94 (94): 520-529, 2005

    16 Pegoretti, A., "Finite element analysis of a glass fibre reinforced composite endodontic post" 23 (23): 2667-2682, 2002

    17 Dong, X., "Fatigue crack propagation path across the dentino-enamel junction complex in human teeth" 66 (66): 103-109, 2003

    18 Antonio, C., "Fatigue and fracture.In:ASM Handbook" ASM International 665-667, 1992

    19 Arola, D., "Fatigue and fracture of bovine dentin" 42 (42): 380-388, 2002

    20 Craig, R. G., "Elastic and mechanical properties of human dentin" 37 (37): 710-718, 1958

    21 An, G. B., "Effect of strength mis-match and dynamic loading on ductile fracture initiation" 70 (70): 1359-1377, 2003

    22 Wang, R., "Anisotropic fracture in bovine root and coronal dentin" 21 (21): 429-436, 2005

    23 Chun, J., "A study on standardization of the internal and external morphology in the mandibular first premolar" 131-, 2004

    24 Ausiello, P., "3D finite element analyses of cusp movements in a human upper premolar,restored with adhesive resin-based composites" 10 : 1269-1277, 2001

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