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Mechanical strength and subcritical crack growth under wet cyclic loading of glass-infiltrated dental ceramics

机译:玻璃渗透牙科陶瓷在湿循环载荷下的机械强度和亚临界裂纹扩展

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摘要

Objectives. Evaluate the flexural strength (σ) and subcritical crack growth (SCG) under cyclic loading of glass-infiltrated alumina-based (IA, In-Ceram Alumina) and zirconia-reinforced (IZ, In-Ceram Zirconia) ceramics, testing the hypothesis that wet environment influences the SCG of both ceramics when submitted to cyclic loading.rnMethods. Bar-shaped specimens of IA (n = 45) and IZ (n = 45) were fabricated and loaded in three-point bending (3P) in 37 ℃ artificial saliva (IA_(3P) and IZ_(3P)) and cyclic fatigued (F) in dry (D) and wet (W) conditions (IA_(Fd), IA_(Fw), IZ_(fd), IZ_(fw)). The initial σ and the number of cycles to fracture were obtained from 3P and F tests, respectively. Data was examined using Weibull statistics. The SCG behavior was described in terms of crack velocity as a function of maximum stress intensity factor (K_(lmax)).rnResults. The Weibull moduli (m = 8) were similar for both ceramics. The characteristic strength (σ_0) of IA and IZ was and 466 Mpa 550 Mpa, respectively. The wet environment significantly increased the SCG of IZ, whereas a less evident effect was observed for IA. In general, both ceramics were prone to SCG, with crack propagation occurring at K_1 as low as 43-48% of their critical K_1. The highest σ of IZ should lead to longer lifetimes for similar loading conditions.rnSignijicance. Water combined with cyclic loading causes pronounced SCG in IZ and IA materials. The lifetime of dental restorations based on these ceramics is expected to increase by reducing their direct exposure to wet conditions and/or by using high content zirconia ceramics with higher strength.
机译:目标。评估玻璃渗透的氧化铝基(IA,Ceram氧化铝)和氧化锆增强(IZ,In-Ceram氧化锆)陶瓷在循环载荷下的弯曲强度(σ)和亚临界裂纹扩展(SCG),检验以下假设:潮湿环境在承受周期性载荷时会影响两种陶瓷的SCG。制作IA(n = 45)和IZ(n = 45)的棒状标本,并在37℃人工唾液(IA_(3P)和IZ_(3P))中以三点弯曲(3P)加载并循环疲劳( F)在干燥(D)和潮湿(W)条件下(IA_(Fd),IA_(Fw),IZ_(fd),IZ_(fw))。初始σ和断裂循环数分别通过3P和F测试获得。使用威布尔统计数据检查数据。用裂纹速度作为最大应力强度因子(K_(lmax))的函数描述了SCG行为。两种陶瓷的威布尔模量(m = 8)相似。 IA和IZ的特征强度(σ_0)分别为466 Mpa和550 Mpa。潮湿环境显着增加了IZ的SCG,而对IA则观察到的效果较差。通常,两种陶瓷都易于发生SCG,裂纹扩展发生在K_1处,其临界K_1的比例为43-48%。在相似的负载条件下,IZ的最高σ会导致更长的使用寿命。水与循环载荷的结合会在IZ和IA材料中引起明显的SCG。通过减少直接暴露在潮湿环境中和/或通过使用具有更高强度的高含量氧化锆陶瓷,预计可以提高基于这些陶瓷的牙齿修复剂的使用寿命。

著录项

  • 来源
    《Dental materials》 |2010年第5期|p.483-490|共8页
  • 作者单位

    Department of Dental Materials and Prosthodontics, Sao Paulo State Uniuersity-UNESP, Sao Paulo, Brazil;

    rnComplex Materials, Department of Materials, ETH Zurich, 8093 Zurich, Switzerland;

    rnDepartment of Dental Materials and Prosthodontics, Sao Paulo State Uniuersity-UNESP, Sao Paulo, Brazil;

    rnDental School, University of Passo Fundo, Passo Fundo, RS, Brazil Rua Uruguai 2001, 401, Passo Fundo, RS 99010-112, Brazi;

  • 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

    glass-infiltrated ceramic; cyclic fatigue; subcritical crack growth; strength; weibull statistics;

    机译:玻璃渗透陶瓷;周期性疲劳亚临界裂纹扩展强度;威布尔统计;
  • 入库时间 2022-08-18 03:47:25

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