Lin C T, Lee S Y, Keh E S, Dong D R, Huang H M, Shih Y H
Graduate Institute of Oral Rehabilitation Sciences, National Defense Medical Center, Taipei, Taiwan, R.O.C.
J Oral Rehabil. 2000 Nov;27(11):919-26. doi: 10.1046/j.1365-2842.2000.00573.x.
The effect of silanization and filler fraction on the mechanical properties of aged dental composites was investigated. Experimental composites (75/25 Bis-GMA/TEGDMA resin reinforced with 0, 12.6, 30.0, and 56.5 vol% 8 microm silanized/unsilanized BaSiO6) were fabricated into 4.7 mm diameter x 2.2 mm thick discs and 3.5 mm diameter x 7.3 mm thick discs for diametral tensile and compressive tests, respectively. The effect of immersion in 75% ethanol at 37 degrees C for 0-30 days on the diametral tensile strength (DTS) and compressive strength (CS) of the samples was evaluated and analysed by ANOVA and Tukey LSD test. The fracture interface between filler and resin matrix was then examined by scanning electron microscope. Results and subsequent statistical evidence from DTS (18.6+/-7.6 MPa, silanized versus 11.7+/-2.6 MPa, unsilanized) and CS (85.1+/-29.7 MPa, silanized versus 56.0+/-11.3 MPa, unsilanized) strongly implies that silanization may greatly enhance the mechanical properties of the resin composites. Furthermore, it also shows that both DTS and CS increased proportionally as the filler fraction of the composites increased. However, in the unsilanized groups, DTS decreased (up to 40%) as the filler fraction increased, and CS showed no relevance to the filler fraction at all. As for the influence of aging, it was found that both DTS and CS showed a significant decrease after immersion in 75% ethanol, and silanization heavily correlated with the filler fraction of aged-resin composites. Microscopic examination of the fractured samples showed that failure primarily occurred within the resin matrix per se for silanized composites and adjacent to the filler particles for unsilanized composites. All the evidence points to the conclusion that mechanical properties of aged-resin composites can be greatly influenced by silanization and the filler fraction.
研究了硅烷化和填料比例对老化牙科复合材料力学性能的影响。将实验性复合材料(用0、12.6、30.0和56.5体积%的8微米硅烷化/未硅烷化的BaSiO6增强的75/25双酚A缩水甘油醚/三乙二醇二甲基丙烯酸酯树脂)分别制成直径4.7毫米×厚2.2毫米的圆盘和直径3.5毫米×厚7.3毫米的圆盘,用于径向拉伸和压缩试验。通过方差分析和Tukey LSD检验评估并分析了样品在37℃下于75%乙醇中浸泡0至30天对其径向拉伸强度(DTS)和压缩强度(CS)的影响。然后通过扫描电子显微镜检查填料与树脂基体之间的断裂界面。DTS(硅烷化的为18.6±7.6兆帕,未硅烷化的为11.7±2.6兆帕)和CS(硅烷化的为85.1±29.7兆帕,未硅烷化的为56.0±11.3兆帕)的结果及后续统计证据强烈表明,硅烷化可大大提高树脂复合材料的力学性能。此外,还表明随着复合材料填料比例的增加,DTS和CS均成比例增加。然而,在未硅烷化组中,随着填料比例增加,DTS下降(高达40%),且CS与填料比例完全无关。至于老化的影响,发现浸泡在75%乙醇中后,DTS和CS均显著下降,且硅烷化与老化树脂复合材料的填料比例密切相关。对断裂样品的显微镜检查表明,硅烷化复合材料的失效主要发生在树脂基体本身内部,而未硅烷化复合材料的失效发生在填料颗粒附近。所有证据都指向这样一个结论:老化树脂复合材料的力学性能会受到硅烷化和填料比例的极大影响。