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Machinability: Zirconia-reinforced lithium silicate glass ceramic versus lithium disilicate glass ceramic

机译:可加工性:氧化锆增强锂硅酸锂玻璃陶瓷与锂大胆玻璃陶瓷

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摘要

Diamond grinding used in dental adjustment of high-strength zirconia-reinforced lithium silicate glass ceramic (ZLS) and lithium disilicate glass ceramic (LDGC) is challenging in restorative dentistry. This study aimed to compare the machinability of ZLS and LDGC in diamond grinding in terms of machining forces and energy, debris, surface and edge chipping damage. Grinding experiments in simulation of dental adjustment were conducted using a computer-assisted high-speed dental handpiece and coarse diamond burs. A piezoelectric force dynamometer and a high-speed data acquisition system were used for on-processing monitoring for assessment of grinding forces and energy. Grinding debris and grinding-induced surface and edge chipping damage were examined using scanning electron microscopy. The results show that grinding of ZLS required higher tangential and normal forces and energy than LDGC (p 0.05), continued efforts are required to explore new reinforcement technologies for optimized LDGC.
机译:用于高强度氧化锆硅酸锂玻璃陶瓷(ZLS)和锂大胆玻璃陶瓷(LDGC)的牙科调节的金刚石研磨是在恢复性牙科挑战。本研究旨在将ZLS和LDGC在加工力和能量,碎屑,表面和边缘切削损伤方面的钻石研磨的可加工性。使用计算机辅助的高速牙科手机和粗钻毛刺进行牙科调整模拟的研磨实验。压电力测力计和高速数据采集系统用于对磨削力和能量进行评估的处理监控。使用扫描电子显微镜检查研磨碎片和研磨诱导的表面和边缘切削损坏。结果表明,ZLS的研磨需要更高的切向和正常力量和能量而不是LDGC(P 0.05),持续努力探索用于优化LDGC的新型加固技术。

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