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Machinability of lithium disilicate glass ceramic in in vitro dental diamond bur adjusting process

机译:二硅酸锂玻璃陶瓷体外牙科金刚石车针调节工艺的可加工性

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Esthetic high-strength lithium disilicate glass ceramics (LDGC) are used for monolithic crowns and bridges produced in dental CAD/CAM and oral adjusting processes, which machinability affects the restorative quality. A machinability study has been made in the simulated oral clinical machining of LDGC with a dental handpiece and diamond burs, regarding the diamond tool wear and chip control, machining forces and energy, surface finish and integrity. Machining forces, speeds and energy in in vitro dental adjusting of LDGC were measured by a high-speed data acquisition and force sensor system. Machined LDGC surfaces were assessed using three-dimensional non-contact chromatic confocal optical profilometry and scanning electron microscopy (SEM). Diamond bur morphology and LDGC chip shapes were also examined using SEM. Minimum tool wear but significant LDGC chip accumulations were found. Machining forces and energy significantly depended on machining conditions (p < 0.05) and were significantly higher than other glass ceramics (p < 0.05). Machining speeds dropped more rapidly with increased removal rates than other glass ceramics (p < 0.05). Two material machinability indices associated with the hardness, Young's modulus and fracture toughness were derived based on the normal force-removal rate relations, which ranked LDGC the most difficult to machine among glass ceramics. Surface roughness for machined LDGC was comparable for other glass ceramics. The removal mechanisms of LDGC were dominated by penetration-induced brittle fracture and shear-induced plastic deformation. Unlike most other glass ceramics, distinct intergranular and transgranular fractures of lithium disilicate crystals were found in LDGC. This research provides the fundamental data for dental clinicians on the machinability of LDGC in intraoral adjustments. (C) 2015 Elsevier Ltd. All rights reserved.
机译:美观的高强度二硅酸锂玻璃陶瓷(LDGC)用于在牙科CAD / CAM和口腔调节过程中生产的整体式牙冠和牙桥,其可加工性会影响修复质量。在使用牙科手机和金刚石钻头进行LDGC的模拟口腔临床加工中,已经进行了可加工性研究,涉及金刚石刀具的磨损和切屑控制,加工力和能量,表面光洁度和完整性。通过高速数据采集和力传感器系统测量了LDGC的体外牙科调节中的机械力,速度和能量。使用三维非接触式彩色共聚焦光学轮廓仪和扫描电子显微镜(SEM)评估了LDGC的加工表面。还使用SEM检查金刚石钻头形态和LDGC芯片形状。发现刀具磨损最小,但LDGC芯片积聚明显。加工力和能量显着取决于加工条件(p <0.05),并且显着高于其他玻璃陶瓷(p <0.05)。与其他玻璃陶瓷相比,随着去除率的提高,加工速度下降得更快(p <0.05)。根据法向力去除率的关系,得出了两种与硬度,杨氏模量和断裂韧性相关的材料可加工性指标,这使LDGC成为玻璃陶瓷中最难加工的材料。加工的LDGC的表面粗糙度与其他玻璃陶瓷相当。 LDGC的去除机理主要是渗透引起的脆性断裂和剪切引起的塑性变形。与大多数其他玻璃陶瓷不同,LDGC中发现了二硅酸锂晶体的明显的晶间和晶间断裂。这项研究为口腔临床医生提供了口腔内调整中LDGC的可加工性的基础数据。 (C)2015 Elsevier Ltd.保留所有权利。

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