Fatigue resistance of CAD/CAM resin composite molar crowns

材料科学 复合材料 臼齿 牙冠(牙科) 循环应力 复合数 立体显微镜 牙瓷 抗弯强度 白榴石 牙本质 陶瓷 压力(语言学) 牙科 哲学 医学 语言学
作者
Fatma A. Shembish,Hui Tong,Marina R. Kaizer,Malvin N. Janal,Van P. Thompson,Niek Opdam,Yu Zhang
出处
期刊:Dental Materials [Elsevier BV]
卷期号:32 (4): 499-509 被引量:117
标识
DOI:10.1016/j.dental.2015.12.005
摘要

To demonstrate the fatigue behavior of CAD/CAM resin composite molar crowns using a mouth-motion step-stress fatigue test. Monolithic leucite-reinforced glass-ceramic crowns were used as a reference. Fully anatomically shaped monolithic resin composite molar crowns (Lava Ultimate, n = 24) and leucite reinforced glass-ceramic crowns (IPS Empress CAD, n = 24) were fabricated using CAD/CAM systems. Crowns were cemented on aged dentin-like resin composite tooth replicas (Filtek Z100) with resin-based cements (RelyX Ultimate for Lava Ultimate or Multilink Automix for IPS Empress). Three step-stress profiles (aggressive, moderate and mild) were employed for the accelerated sliding-contact mouth-motion fatigue test. Twenty one crowns from each group were randomly distributed among these three profiles (1:2:4). Failure was designated as chip-off or bulk fracture. Optical and electron microscopes were used to examine the occlusal surface and subsurface damages, as well as the material microstructures. The resin composite crowns showed only minor occlusal damage during mouth-motion step-stress fatigue loading up to 1700 N. Cross-sectional views revealed contact-induced cone cracks in all specimens, and flexural radial cracks in 2 crowns. Both cone and radial cracks were relatively small compared to the crown thickness. Extending these cracks to the threshold for catastrophic failure would require much higher indentation loads or more loading cycles. In contrast, all of the glass-ceramic crowns fractured, starting at loads of approximately 450 N. Monolithic CAD/CAM resin composite crowns endure, with only superficial damage, fatigue loads 3–4 times higher than those causing catastrophic failure in glass-ceramic CAD crowns.
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