Tanoue N, Matsumura H, Atsuta M
Department of Fixed Prosthodontics, Nagasaki University School of Dentistry, Sakamoto, Japan.
J Oral Rehabil. 1998 May;25(5):358-64. doi: 10.1046/j.1365-2842.1998.00241.x.
This study examined properties of four composite veneering materials polymerized with two different photo-curing units for the purpose of evaluating curing performance of the combination of composite material and curing unit. Two microfilled (Dentacolor and Thermoresin LC II) and two hybrid (Cesead II and Solidex) composite materials designed for prosthetic veneer were selected. The respective light sources of the units were a xenon (Dentacolor XS) and a metal halide (Hyper L II) lamp. The composite materials were exposed with the photo-curing unit for 60 s on each side (i.e. from top and bottom). Knoop hardness, compressive strength, flexural strength, flexural modulus, water absorption and water solubility were determined according to standardized testing methods. The specimens exposed with the metal halide unit generally exhibited greater Knoop hardness number, and compressive strength and lower solubility than those exposed with the xenon unit. A microfilled material (Thermoresin LC II) cured with the metal halide unit exhibited significantly improved results for all tests as compared with the same material cured with the xenon unit.
本研究检测了四种复合贴面材料与两种不同光固化设备聚合后的性能,旨在评估复合材料与固化设备组合的固化性能。选择了两种用于修复性贴面的微填料(Dentacolor和Thermoresin LC II)和两种混合填料(Cesead II和Solidex)复合材料。这些设备各自的光源分别是氙灯(Dentacolor XS)和金属卤化物灯(Hyper L II)。将复合材料在光固化设备下每面曝光60秒(即从顶部和底部)。根据标准化测试方法测定努氏硬度、抗压强度、抗弯强度、弯曲模量、吸水率和水溶性。与氙灯设备曝光的试样相比,金属卤化物设备曝光的试样通常表现出更高的努氏硬度值和抗压强度,以及更低的溶解度。与用氙灯设备固化的相同材料相比,用金属卤化物设备固化的微填料材料(Thermoresin LC II)在所有测试中均表现出显著改善的结果。