Computational Evaluation of Dental Adhesive for Four Direct Restorative Procedures

Direct restoration is recovering the damaged tooth within the mouth by filling the cavity on the tooth using filling material. Therefore, the filling material and location of a cavity are essential in determining the durability of the restored part. This study aims to determine the stress distributi...

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书目详细资料
发表在:International Journal of Online and Biomedical Engineering
主要作者: 2-s2.0-105000210127
格式: 文件
语言:English
出版: International Federation of Engineering Education Societies (IFEES) 2025
在线阅读:https://www.scopus.com/inward/record.uri?eid=2-s2.0-105000210127&doi=10.3991%2fijoe.v21i03.54099&partnerID=40&md5=13f26c8692c83454b4ab2020689cc64f
实物特征
总结:Direct restoration is recovering the damaged tooth within the mouth by filling the cavity on the tooth using filling material. Therefore, the filling material and location of a cavity are essential in determining the durability of the restored part. This study aims to determine the stress distribution in the teeth using finite element analysis (FEA) with lithium disilicate as a filling material. The binding strength created between tooth enamel and lithium disilicate is different for each restoration class with varying locations of a cavity. In this study, ANSYS Engineering Simulation Software was employed to analyze the stress distribution for four types of classes of direct restoration (class 1, 2, 5, and 6). The analyses were made by applying vertical force on the tooth crown with 600N magnitude. The results show class 1 was 121.2 MPa which is the lowest maximum von mises stress value. The results obtained are beneficial to increase the understanding of the behavior of lithium disilicate as a filling material and the quality of tooth restoration. © 2025 by the authors of this article.
ISSN:26268493
DOI:10.3991/ijoe.v21i03.54099