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一些牙科材料应力行为的有限元分析

Finite element analysis (FEA) of the stress behavior of some dental materials.

作者信息

Di Francesco Paolo, Bechir Anamaria, Popescu Anca Iuliana, Chivu Manuela Victoria, Dobrescu Anca Monica, Comăneanu Raluca Monica, Târcolea Mihail

机构信息

Doctoral School of Dental Medicine, Titu Maiorescu University, Bucharest, Romania.

Department of Specialized Dental Medicine Disciplines, Faculty of Dental Medicine, Titu Maiorescu University, Bucharest, Romania.

出版信息

J Med Life. 2025 Jan;18(1):29-37. doi: 10.25122/jml-2025-0005.

Abstract

This study compared the biomechanical behavior of three widely used dental materials-zirconia, lithium disilicate (IPS e.max CAD), and 3D-printed composite (VarseoSmile CrownPlus)- for maxillary anterior bridge restorations. Finite element analysis (FEA) was employed to evaluate the mechanical response of these materials under normal occlusal forces, replicating real clinical conditions. Key factors analyzed included stress distribution, deformation, and potential for failure under high loads. For each material, material constants such as Poisson's ratio and Young's modulus were used in the simulations, with the values chosen from validated literature sources. The findings demonstrated that zirconia exhibited superior mechanical strength and uniform stress distribution, making it an ideal material for posterior restorations subjected to high biomechanical stresses. Lithium disilicate showed balanced stress distribution and proved to be a versatile material suitable for both anterior and moderate-load restorations, with its superior aesthetic properties making it an attractive option for anterior areas. On the other hand, 3D-printed composite materials were found to have higher stress concentrations, particularly in occlusal regions, and exhibited lower elasticity compared to the other materials, limiting their use in permanent restorations but making them suitable for temporary restorations or areas with lower mechanical demands. This study provides valuable insights into the selection of dental materials for different clinical scenarios, emphasizing the importance of FEA in optimizing material choice and restoration design. The results suggest that while zirconia is ideal for long-term durability, lithium disilicate remains the preferred choice for aesthetic requirements, with 3D-printed composites serving as a promising alternative for long-term temporary applications.

摘要

本研究比较了三种广泛使用的牙科材料——氧化锆、二硅酸锂(IPS e.max CAD)和3D打印复合材料(VarseoSmile CrownPlus)在上颌前牙桥修复中的生物力学行为。采用有限元分析(FEA)来评估这些材料在正常咬合力下的力学响应,模拟实际临床情况。分析的关键因素包括应力分布、变形以及高负荷下的失效可能性。对于每种材料,在模拟中使用了泊松比和杨氏模量等材料常数,其值选自经过验证的文献来源。研究结果表明,氧化锆表现出优异的机械强度和均匀的应力分布,使其成为承受高生物力学应力的后牙修复的理想材料。二硅酸锂显示出平衡的应力分布,被证明是一种通用材料,适用于前牙和中等负荷修复,其优异的美学性能使其成为前牙区域的有吸引力的选择。另一方面,发现3D打印复合材料具有较高的应力集中,特别是在咬合区域,并且与其他材料相比表现出较低的弹性,这限制了它们在永久性修复中的使用,但使其适用于临时修复或机械需求较低的区域。本研究为不同临床场景下牙科材料的选择提供了有价值的见解,强调了有限元分析在优化材料选择和修复设计中的重要性。结果表明,虽然氧化锆是长期耐久性的理想选择,但二硅酸锂仍然是美学要求的首选,3D打印复合材料是长期临时应用的有前途的替代品。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c67e/11891613/3a90cd296a5c/JMedLife-18-029-g001.jpg

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