首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Lithium disilicate glass-ceramic vs translucent zirconia polycrystals bonded to distinct substrates: Fatigue failure load, number of cycles for failure, survival rates, and stress distribution
【24h】

Lithium disilicate glass-ceramic vs translucent zirconia polycrystals bonded to distinct substrates: Fatigue failure load, number of cycles for failure, survival rates, and stress distribution

机译:锂峰玻璃 - 陶瓷与半透明氧化锆多晶键合与不同的基材:疲劳破坏载荷,失效,存活率和应力分布的循环次数

获取原文
获取原文并翻译 | 示例
           

摘要

The present study evaluated the fatigue behavior of monolithic translucent zirconia polycrystals (TZ) and lithium disilicate glass-ceramic (LD) bonded to different substrates. Disc-shaped specimens of ceramic materials TZ and LD were bonded to three substrates with different elastic modulus (E) (fiber-reinforced composite (FRC) - softest material, E = 14.9 GPa; titanium alloy (Ti) - intermediary properties, E = 115 GPa; and zirconia (Yz) - stiffest material, E = 210 GPa). The surfaces were treated and bonded with resin cement (disc-disc set-up). Fatigue testing followed a step-stress approach (initial maximum load = 200 N for 5000 cycles, incremental step load = 200 N for 10,000 cycles/step). The fatigue failure load and number of cycles until failure were recorded and statistically analyzed. Fractographic and finite element (FEA) analyzes were conducted as well. TZ ceramic depicted higher fatigue failure load, number of cycles until failure, and survival probabilities than LD, irrespective of the substrate. Moreover, TZ and LD presented better fatigue behaviors when bonded to substrates Ti and Yz in comparison to FRC. FEA revealed lower tensile stresses at restorative material when bonded to stiffer substrates. Fractography showed that the fracture origin started at bottom surface of restorative material (except for TZ bonded to Yz, in which crack initiated at load contact point). Translucent zirconia polycrystals present superior mechanical behavior than lithium disilicate glass-ceramic. The substrate type influences the mechanical performance of monolithic dental ceramics (stiffer substrates lead to better fatigue behavior).
机译:本研究评估了整体立体半透明氧化锆多晶(TZ)和锂钠玻璃 - 陶瓷(LD)与不同底物的疲劳行为。用不同弹性模量(e)(纤维增强复合材料(FRC) - 最柔软的材料,E = 14.9GPa;钛合金(TI) - 中间特性,碳化物材料的陶瓷材料TZ和LD键合至三个基板。钛合金(TI) - 中间特性,E = 115 GPA;和氧化锆(YZ) - 最硬质材料,E = 210 GPA)。用树脂水泥(盘式圆盘设置)处理表面和粘合。疲劳测试遵循阶梯应力方法(初始最大载荷= 200 n,5000个循环,增量步骤负载= 200 n为10,000个循环/步骤)。在记录和统计分析之前,疲劳失效负载和循环次数。也进行了配方和有限元(FEA)分析。 TZ陶瓷描绘了较高的疲劳破坏载荷,循环次数,直到失效,而且生存概率比LD,无论基材如何。此外,与FRC相比,TZ和LD呈现给底物Ti和YZ时更好的疲劳行为。当粘合到纤巧的基材上时,FEA在恢复材料中显示较低的拉伸应力。断裂结果表明,骨折起点在恢复材料的底表面开始(除了键合到YZ之外,其中裂纹在负载接触点开始)。半透明氧化锆多晶呈现出优于锂硅酸锂玻璃陶瓷的卓越的机械行为。基材类型影响整体牙科陶瓷的机械性能(纤巧的基材导致更好的疲劳行为)。

著录项

相似文献

  • 外文文献
  • 中文文献
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号