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Fatigue of dental ceramics

机译:牙科陶瓷的疲劳

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Objectives Clinical data on survival rates reveal that all-ceramic dental prostheses are susceptible to fracture from repetitive occlusal loading. The objective of this review is to examine the underlying mechanisms of fatigue in current and future dental ceramics. Data/sources The nature of various fatigue modes is elucidated using fracture test data on ceramic layer specimens from the dental and biomechanics literature. Conclusions Failure modes can change over a lifetime, depending on restoration geometry, loading conditions and material properties. Modes that operate in single-cycle loading may be dominated by alternative modes in multi-cycle loading. While post-mortem examination of failed prostheses can determine the sources of certain fractures, the evolution of these fractures en route to failure remains poorly understood. Whereas it is commonly held that loss of load-bearing capacity of dental ceramics in repetitive loading is attributable to chemically assisted 'slow crack growth' in the presence of water, we demonstrate the existence of more deleterious fatigue mechanisms, mechanical rather than chemical in nature. Neglecting to account for mechanical fatigue can lead to gross overestimates in predicted survival rates. Clinical significance Strategies for prolonging the clinical lifetimes of ceramic restorations are proposed based on a crack-containment philosophy.
机译:目的关于存活率的临床数据表明,全瓷牙修复体因反复咬合负荷而容易骨折。这篇综述的目的是研究当前和未来牙科陶瓷疲劳的潜在机理。数据/来源使用来自牙科和生物力学文献的陶瓷层标本上的断裂测试数据阐明了各种疲劳模式的性质。结论取决于修复体的几何形状,加载条件和材料特性,失效模式会在整个生命周期内发生变化。在单周期加载中运行的模式可能由多周期加载中的替代模式主导。尽管对失败的假体进行验尸检查可以确定某些骨折的根源,但这些骨折在走向失败的过程中的演变仍知之甚少。通常认为牙科陶瓷在重复加载中的承重能力下降是由于在水存在下化学辅助的“缓慢裂纹扩展”所致,但我们证明了存在更有害的疲劳机制,即机械性而非化学性。忽视机械疲劳会导致预测生存率的高估。临床意义基于裂纹抑制原理,提出了延长陶瓷修复体临床寿命的策略。

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