首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Comparative study of the wear of the pair human teeth/Vita Enamic? vs commonly used dental ceramics through chewing simulation
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Comparative study of the wear of the pair human teeth/Vita Enamic? vs commonly used dental ceramics through chewing simulation

机译:对人类牙齿的磨损的比较研究/ VITA稀有? 通过咀嚼模拟,VS常用的牙科陶瓷

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Ceramic based prosthetic materials have been used in dental restorations due to their excellent aesthetic and biocompatibility. However, due to concerns related to their mechanical properties and abrasive action against natural teeth, a proper selection of these materials is crucial to preserve the occlusal interactions and prevent abnormal dental wear. The aim of this work is to compare the wear performance of Vita Enamic?, a polymer infiltrated ceramic (PIC), with that of other three commercial ceramic based dental materials - Zirconia, Leucite and Zirconia Veneered - when tested against natural teeth. The crystalline structure, wettability, topography and hardness of the prosthetic materials were characterized before wear testing. Chewing simulator experiments (360,000 cycles, load 49?N) against dental human cusps were carried out using artificial saliva as lubricant. The wear of both teeth and prosthetic materials was quantified and the involved wear mechanisms were analyzed by scanning electron microscopy. The results showed that Zirconia presented the most suitable tribological behavior, since it led to the lowest wear on both occlusal surfaces. The prosthetic material presenting the highest wear was Vita Enamic?. Regarding the cusps’ wear, the highest values were found for both Leucite and Zirconia Veneered. Polishing wear was the main wear mechanism in Zirconia system (prosthetic material and opposing enamel), while in the remaining ones was fragile fracture associated with abrasive wear. No direct relation could be established between wettability, initial roughness and hardness of the prosthetic materials and the wear of the tribological systems. Contrarily, microstructure and toughness revealed to be critical parameters.
机译:由于其出色的美学和生物相容性,陶瓷的假体材料已用于牙科修复物。 However, due to concerns related to their mechanical properties and abrasive action against natural teeth, a proper selection of these materials is crucial to preserve the occlusal interactions and prevent abnormal dental wear.这项工作的目的是比较Vita纯属陶瓷(PIC)的Vita纯陶瓷(PIC)的磨损性能,其中三种商用陶瓷基牙科材料 - 氧化锆,益酸和氧化锆贴面 - 当测试到自然牙齿时。在磨损测试之前表征了假体材料的晶体结构,润湿性,形貌和硬度。使用人造唾液作为润滑剂,进行咀嚼模拟器实验(360,000个循环,负载49℃)对抗牙科人的骨囊。量化了牙齿和假体材料的磨损,通过扫描电子显微镜分析了所涉及的磨损机制。结果表明,氧化锆呈现出最合适的摩擦学行为,因为它导致两个咬合表面上的最低磨损。呈现最高磨损的假体材料是Vita稀有?关于尖牙的磨损,为硅藻土和氧化锆贴面发现最高值。抛光磨损是氧化锆系统(假体材料和相反牙釉质)的主要磨损机制,而在其余的磨损器中是易碎的骨折与磨料磨损相关。在润湿性,假肢材料的润湿性,初始粗糙度和硬度和摩擦学系统的磨损之间没有直接关系。相反,微观结构和韧性显示出是关键参数。

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