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Comparing Between Two Lights Curing of Dental Restorative (Laser and Halogen) by Using Physical Parameters

机译:使用物理参数比较牙科修复剂(激光和卤素)的两种光固化

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Light sources and light curing techniques for composite resins have improved remarkably. Aragon Ion Laser (AL) have been introduced for curing dental composite and to overcome drawbacks of the conventional quartz-tungsten halogen lights (QTHs). The aim of research to study the mechanical properties (Hardness & Degree of cure) of composite material after light curing by different sources (Halogen and Laser). These feature were including hardness and depth of cure in both curing unit ( laser argon and halogen light ) in different exposure (10 , 20 , and 30) by using two of fillers material swissTEC and composan LCM types . The(216) samples have been prepared and dividing into (6) groups , micrometer are used to measuring the depth of cure according to (ISO 4049/2000) . Hardness test are made by Vickers hardness testing with diameter (6mm) and thickness (2mm) of samples, The results of the depth of cure appeared the resin composite by aragon laser light curing is greater than halogen light with about (0.05).In (10 sec ) depth of cure (DOC) of halogen in 2.072, but in laser argon is2.640, 20 sec halogen is 3.047 , and in aragon laser is 3.090 of swissTEC type but for composanLCM for (10 sec) depth of cure halogen is 2.25, laser argon is 2.530, 20 Sec halogen is 2.577 , but in aragon laser is 2.921 , the result values of (DOC), hardness tests are increased with increasing the exposure time, also show the depth of cure and hardness for swissTEC type larger than composan LCM. The properties of the composite enhance better when laser is used as a cure unit in a comparison with the halogen light.
机译:用于复合树脂的光源和光固化技术已得到显着改善。引入了Aragon离子激光器(AL)来固化牙科复合材料并克服传统的石英钨卤素灯(QTH)的缺点。研究目的是研究通过不同来源(卤素和激光)光固化后复合材料的机械性能(硬度和固化度)。这些功能包括使用两种填充材料swissTEC和composan LCM类型,在不同的曝光量(10、20和30)下,在两个固化单元(激光氩气和卤素灯)中的硬度和固化深度。准备了(216)个样品并将其分为(6)组,使用千分尺根据(ISO 4049/2000)测量固化深度。硬度测试是通过维氏硬度测试进行的,样品的直径为6mm,厚度为2mm,固化深度的结果表明,采用Aragon激光固化的树脂复合材料比卤素光大约(0.05)。卤素的固化深度(DOC)为10秒(2.072),但激光氩为2.640,卤素为2047秒为3.047,氩弧激光为swissTEC类型的3.090,但对于composanLCM(10秒),卤素的固化深度为2.25,激光氩为2.530,卤素为20秒为2.577,而在阿拉贡激光为2.921,(DOC)的结果值,硬度测试随暴露时间的增加而增加,并且显示swissTEC类型的固化深度和硬度更大比composan LCM与卤素灯相比,当将激光用作固化单元时,复合材料的性能会更好地增强。

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