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Disilicate Dental Ceramic Surface Preparation by 1070 nm Fiber Laser: Thermal and Ultrastructural Analysis

机译:1070 nm光纤激光器制备二硅酸盐牙科陶瓷表面的热和超结构分析

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摘要

Lithium disilicate dental ceramic bonding, realized by using different resins, is strictly dependent on micro-mechanical retention and chemical adhesion. The aim of this in vitro study was to investigate the capability of a 1070 nm fiber laser for their surface treatment. Samples were irradiated by a pulsed fiber laser at 1070 nm with different parameters (peak power of 5, 7.5 and 10 kW, repetition rate (RR) 20 kHz, speed of 10 and 50 mm/s, and total energy density from 1.3 to 27 kW/cm2) and the thermal elevation during the experiment was recorded by a fiber Bragg grating (FBG) temperature sensor. Subsequently, the surface modifications were analyzed by optical microscope, scanning electron microscope (SEM), and energy dispersive X-ray spectroscopy (EDS). With a peak power of 5 kW, RR of 20 kHz, and speed of 50 mm/s, the microscopic observation of the irradiated surface showed increased roughness with small areas of melting and carbonization. EDS analysis revealed that, with these parameters, there are no evident differences between laser-processed samples and controls. Thermal elevation during laser irradiation ranged between 5 °C and 9 °C. A 1070 nm fiber laser can be considered as a good device to increase the adhesion of lithium disilicate ceramics when optimum parameters are considered.
机译:通过使用不同的树脂实现的二硅酸锂牙科陶瓷粘合严格取决于微机械保持力和化学粘合性。这项体外研究的目的是研究1070 nm光纤激光器对其表面进行处理的能力。用不同参数(峰值功率分别为5、7.5和10 kW,重复率(RR)20 kHz,速度为10和50 mm / s,总能量密度为1.3至27)以1070 nm的脉冲光纤激光照射样品kW / cm 2 ),并通过光纤布拉格光栅(FBG)温度传感器记录实验过程中的温度升高。随后,通过光学显微镜,扫描电子显微镜(SEM)和能量色散X射线光谱仪(EDS)分析表面改性。在5 kW的峰值功率,20 kHz的RR和50 mm / s的速度下,对被辐照表面的显微镜观察显示出粗糙度增加,熔化和碳化的区域很小。 EDS分析表明,有了这些参数,激光处理的样品和对照之间没有明显的差异。激光辐照期间的温度升高范围为5°C至9°C。当考虑最佳参数时,可以将1070 nm光纤激光器视为提高二硅酸锂陶瓷附着力的良好设备。

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