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Impact Behavior of Three Notched All-Ceramic Restorations after Soaking in Artificial Saliva

机译:人工唾液浸泡后三种缺刻全瓷修复体的冲击行为

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Biomechanics play a critical role in influencing the clinical applications of all-ceramic dental restorations. The restorative biomaterials have to demonstrate mechanical durability in the oral environment because they are always exposed to a variety of oral environments. This study was designed to evaluate the effect of soaking time, notch and saliva pH values on the impact energy of three commonly used all-ceramic materials for CAD/CAM. The leucite-reinforced glass ceramic (ProCAD), lithium disilicate glass ceramic (IPS e.max CAD) and zirconia-based ceramic materials (IPS e.max ZirCAD) were used. The experimental results indicated that the impact energy of ProCAD decreased with an increase in soaking time, but not for IPS e.max CAD and IPS e.max ZirCAD. The impact energy of the zirconia system was higher than leucite-reinforced and lithium disilicate-based ceramic systems. When subjected to preformed 0.5 mm U-shape notch on the bar specimen of 3 mm thick, the impact energy of the all-ceramic restorations revealed a markedly reduction of about 80%–90%, almost irrespective of dental compositions, which indicated the effect of flaw to a great degree. No statistically significant influence (p 0.05) of pH values (4, 7 and 9) on impact energy was found for each group. It is concluded that the no matter which all-ceramic materials were used, it was appreciably sensitive to the presence of notches. The ceramic composition and microstructure have been shown to affect mechanical durability.
机译:生物力学在影响全瓷牙修复体的临床应用中起着至关重要的作用。修复性生物材料必须在口腔环境中表现出机械耐久性,因为它们始终会暴露在各种口腔环境中。这项研究旨在评估浸泡时间,刻痕和唾液p​​H值对三种常用的全陶瓷CAD / CAM材料的冲击能的影响。使用了白云石增强玻璃陶瓷(ProCAD),二硅酸锂玻璃陶瓷(IPS e.max CAD)和氧化锆基陶瓷材料(IPS e.max ZirCAD)。实验结果表明,ProCAD的冲击能量随浸泡时间的增加而降低,但对于IPS e.max CAD和IPS e.max ZirCAD却没有。氧化锆体系的冲击能量高于白云石增强和二硅酸锂基陶瓷体系。当对3 mm厚的棒状样品进行预成型的0.5 mm U形缺口时,全瓷修复体的冲击能量显着降低了约80%-90%,几乎与牙齿组成无关,这表明了效果缺陷的程度很大。没有发现每组的pH值(4、7和9)对冲击能量具有统计学意义(p> 0.05)。可以得出结论,无论使用哪种全陶瓷材料,它都对缺口的存在非常敏感。陶瓷成分和微观结构已显示出会影响机械耐久性。

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