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Load-bearing properties of minimal-invasive monolithic lithium disilicate and zirconia occlusal onlays: Finite element and theoretical analyses

机译:微创整体式二硅酸锂和氧化锆咬合垫的承载特性:有限元和理论分析

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摘要

Objective. The aim of this study was to test the hypothesis that monolithic lithium disilicate glass-ceramic occlusal onlay can exhibit a load-bearing capacity that approaches monolithic zirconia, due to a smaller elastic modulus mismatch between the lithium disilicate and its supporting tooth structure relative to zirconia. Methods. Ceramic occlusal onlays of various thicknesses cemented to either enamel or dentin were considered. Occlusal load was applied through an enamel-like deformable indenter or a control rigid indenter. Flexural tensile stress at the ceramic intaglio (cementation) surface-a cause for bulk fracture of occlusal onlays-was rigorously analyzed using finite element analysis and classical plate-on-foundation theory. Results. When bonded to enamel (supported by dentin), the load-bearing capacity of lithium disilicate can approach 75% of that of zirconia, despite the flexural strength of lithium disilicate (400 MPa) being merely 40% of zirconia (1000 MPa). When bonded to dentin (with the enamel completely removed), the load-bearing capacity of lithium disilicate is about 57% of zirconia, still significantly higher than the anticipated value based on its strength. Both ceramics show slightly higher load-bearing capacity when loaded with a deformable indenter (enamel, glass-ceramic, or porcelain) rather than a rigid indenter. Significance. When supported by enamel, the load-bearing property of minimally invasive lithium disilicate occlusal onlays (0.6-1.4 mm thick) can exceed 70% of that of zirconia. Additionally, a relatively weak dependence of fracture load on restoration thickness indicates that a 1.2 mm thin lithium disilicate onlay can be as fracture resistant as its 1.6 mm counterpart.
机译:目的。这项研究的目的是检验以下假说:由于二硅酸锂与其支撑齿结构之间的弹性模量失配较小,因此二硅酸锂玻璃陶瓷咬合覆盖物可表现出接近单氧化锆的承载能力。 。方法。考虑了牙釉质或牙本质粘合的各种厚度的陶瓷咬合垫。通过搪瓷样的可变形压头或对照刚性压头施加咬合载荷。使用有限元分析和经典的地基基础理论,对陶瓷凹版(胶结)表面的弯曲拉伸应力进行了严格分析,这是咬合上颌骨整体断裂的原因。结果。当结合到搪瓷(由牙本质支撑)上时,尽管二硅酸锂(400 MPa)的抗弯强度仅为氧化锆(1000 MPa)的40%,但二硅酸锂的承载能力可以达到氧化锆的75%。当粘结到牙本质上(完全去除牙釉质)时,二硅酸锂的承载能力约为氧化锆的57%,仍远高于基于其强度的预期值。当装有可变形压头(搪瓷,玻璃陶瓷或瓷器)而不是刚性压头时,两种陶瓷均显示出稍高的承重能力。意义。当用搪瓷支撑时,微创二硅酸锂咬合垫(0.6-1.4 mm厚)的承重性能可能超过氧化锆的承重性能的70%。此外,断裂载荷对修复厚度的依赖性相对较弱,这表明1.2毫米薄的二硅酸锂覆盖物可以像其1.6毫米对应物一样耐断裂。

著录项

  • 来源
    《Dental materials》 |2013年第7期|742-751|共10页
  • 作者

    Li Ma; Petra C. Guess; Yu Zhang;

  • 作者单位

    Materials Science and Engineering Division, Material Measurement laboratory, National Institute of Standards and Technology, 100 Bureau Drive, Gaithersburg, MD 20899, USA;

    Department o/Prosthodontics, School of Dentistry, Albert-Ludidgs-Uniuersity Freiburg, Germany;

    Department o/Biomaterials and Biomimetics, New York University College of Dentistry, 345 East 24th Street, New Yorfe, NY 10010, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Load-bearing capacity; Monolithic ceramic restorations; Lithium disilicate; Zirconia; Flexural fracture;

    机译:承重能力;整体陶瓷修复体;二硅酸锂;氧化锆弯曲断裂;

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