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激光处理牙科陶瓷/水泥层:传输能量、温度效应和表面特性。

Laser treatment of dental ceramic/cement layers: transmitted energy, temperature effects and surface characterisation.

机构信息

Department of Prosthodontics, Implantology and Biomaterials, University Hospital Aachen, RWTH Aachen University, 52074, Aachen, Germany.

出版信息

Lasers Med Sci. 2015 Feb;30(2):591-7. doi: 10.1007/s10103-013-1340-3. Epub 2013 Jun 22.

Abstract

In the present paper, we investigate the behaviour of different dental materials under laser irradiation. We have used e.max Ceram, e.max ZirCAD, and e.max Press dental ceramics and glass ionomer cement Ketac Cem in the present study. The dental ceramics were prepared in the form of samples with thickness of 0.5-2 mm. We used two lasers [solid-state laser (Er:YAG, Fidelis III+, Fotona) and an 810- nm diode laser (FOX, A.R.C)] for the transillumination of ceramic samples. It has been shown that the laser energy transmitted through the ceramic material decreases to 30-40% of the original values along with an increase in the thickness of the irradiated sample. Pigmented ceramic samples show more laser energy loss compared to the samples containing no pigment. We investigated the temperature evolution in composite sandwiched ceramic/cement samples under laser treatment. The increase in the irradiation time and laser power led to a temperature increase of up to 80 °C. The surfaces of irradiated ceramic samples were examined with X-ray photoelectron spectroscopy to evaluate changes in chemical composition, such as a decrease in the C signal, accompanied by a strong increase in the Zr peak for the Er:YAG laser, while the 810-nm diode laser showed no change in the ratio of elements on the surface.

摘要

在本论文中,我们研究了不同牙科材料在激光照射下的行为。我们在本研究中使用了 e.max Ceram、e.max ZirCAD 和 e.max Press 牙科陶瓷以及玻璃离子水门汀 Ketac Cem。牙科陶瓷以厚度为 0.5-2 毫米的样品形式制备。我们使用了两种激光[固体激光器(Er:YAG,Fidelis III+,Fotona)和 810nm 二极管激光器(FOX,ARC)]对陶瓷样品进行透照。结果表明,随着辐照样品厚度的增加,激光能量透过陶瓷材料的衰减至原始值的 30-40%。含有颜料的陶瓷样品比不含颜料的样品表现出更多的激光能量损失。我们研究了激光处理下夹在陶瓷/水泥之间的复合材料中温度的演变。辐照时间和激光功率的增加导致温度上升至 80°C。用 X 射线光电子能谱法检查辐照陶瓷样品的表面,以评估化学成分的变化,例如 C 信号的减少,同时 Er:YAG 激光的 Zr 峰大幅增加,而 810nm 二极管激光在表面元素比例上没有变化。

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