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复合树脂的机械性能用光固化蓝色 DPSS 激光。

Mechanical properties of composite resins light-cured using a blue DPSS laser.

机构信息

Department of Dental Materials, School of Dentistry, Pusan National University, Yangsan, 626-870, South Korea.

出版信息

Lasers Med Sci. 2013 Feb;28(2):597-604. doi: 10.1007/s10103-012-1117-0. Epub 2012 May 15.

Abstract

Lasers have many favorable features as a light source owing to their monochromaticity and coherence. This study examined the mechanical properties of composite resins that were light-cured using a diode-pumped solid state (DPSS) laser. Eight composite resins were light-cured using four different light sources (one quartz-tungsten-halogen (QTH), two light-emitting diodes (LEDs), and one DPSS laser with a wavelength of 473 nm). The light intensity of the DPSS laser and remaining light-curing units were approximately 500 and 900 mW/cm(2), respectively. The microhardness, flexural properties, and compressive properties were evaluated using the Vickers hardness test, three-point bending test, and compression test, respectively. In most cases, the microhardness, flexural properties, and compressive properties of the specimens light-cured using the DPSS laser were similar to those obtained using the other light-curing units. Within the limits of the study, the microhardness, flexural modulus, and compressive strength were linearly correlated with the filler content (in weight percent). The flexural modulus and compressive modulus were also linearly correlated with the microhardness. Even with a much lower light intensity, the DPSS laser with a wavelength of 473 nm can polymerize composite resins and give comparable mechanical properties to those obtained using the other light-curing units.

摘要

激光具有单色性和相干性等许多有利的光源特性。本研究检查了使用二极管泵浦固态(DPSS)激光光固化的复合材料的力学性能。使用四种不同的光源(一种石英钨卤素(QTH)、两种发光二极管(LED)和一种波长为 473nm 的 DPSS 激光)对八种复合材料进行光固化。DPSS 激光和剩余光固化单元的光强度分别约为 500 和 900mW/cm2。使用维氏硬度试验、三点弯曲试验和压缩试验分别评估了显微硬度、弯曲性能和压缩性能。在大多数情况下,使用 DPSS 激光光固化的试样的显微硬度、弯曲性能和压缩性能与使用其他光固化单元获得的结果相似。在研究范围内,显微硬度、弯曲模量和压缩强度与填料含量(重量百分比)呈线性相关。弯曲模量和压缩模量也与显微硬度呈线性相关。即使光强度低得多,波长为 473nm 的 DPSS 激光也可以聚合复合材料,并提供与使用其他光固化单元获得的机械性能相当的性能。

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