Manolea H, Degeratu Sonia, Deva V, Coles Evantia, Draghici Emma
Department of Morphology and Semiology of Stomatognate System, Dental Materials and Dental Prosthesis Technology , Faculty of Dentistry, UMF Craiova.
Faculty of Electromechanics, University of Craiova.
Curr Health Sci J. 2009 Jan;35(1):60-3. Epub 2009 Mar 21.
The mechanical properties of the light-cured composite resins are related to the material composition, but also vary according to the light-source characteristics used for polymerization. In this study we followed the compressive strength variation for a light-cured composite resin according to the time of exposure to the curing light. With that end in view,18 test pieces were made from a light-cured hybrid composite material (Filtek Z250). The test pieces where then submitted to a compressive force by a mechanical properties universal testing machine. Our results didn't show an increase of the compressive strength according to the light-curing time increasing, than only in the light-curing time limit indicated by the manufacturer. A longer light-curing time may induce a shrinkage polymerization growth with the formation of internal tensions inside the material. The composite materials light-curing in short layers as long as there is indicated by the manufacturer seems to be a safer method to make the best from a resin qualities, then an exaggerated increase of the light-curing time. The light-curing is indicated to be done in the direction of the compressive forces. To confirm this supposition other mechanical tests are also necessary.
光固化复合树脂的机械性能与材料组成有关,但也会因用于聚合的光源特性而有所不同。在本研究中,我们跟踪了一种光固化复合树脂在暴露于固化光的时间内抗压强度的变化。为此,用一种光固化混合复合材料(Filtek Z250)制作了18个试件。然后用一台机械性能通用试验机对这些试件施加压力。我们的结果并未显示抗压强度随光固化时间的增加而增加,仅在制造商规定的光固化时间限制内有所增加。较长的光固化时间可能会导致收缩聚合增长,并在材料内部形成内应力。按照制造商的指示以短层方式进行复合材料的光固化,似乎是充分利用树脂性能的更安全方法,而不是过度延长光固化时间。光固化应在压力方向上进行。为了证实这一假设,还需要进行其他机械测试。