首页> 外文期刊>Journal of prosthodontics: official journal of the American College of Prosthodontists >Effects of accelerated artificial daylight aging on bending strength and bonding of glass fibers in fiber-embedded maxillofacial silicone prostheses.
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Effects of accelerated artificial daylight aging on bending strength and bonding of glass fibers in fiber-embedded maxillofacial silicone prostheses.

机译:人工日光加速老化对嵌入纤维的颌面硅树脂假体的弯曲强度和玻璃纤维粘结的影响。

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摘要

PURPOSE: The purpose of this study was to test the effect of different periods of accelerated artificial daylight aging on bond strength of glass fiber bundles embedded into maxillofacial silicone elastomer and on bending strength of the glass fiber bundles. METHODS AND MATERIALS: Forty specimens were fabricated by embedding resin-impregnated fiber bundles (1.5-mm diameter, 20-mm long) into maxillofacial silicone elastomer. Specimens were randomly allocated into four groups, and each group was subjected to different periods of accelerated daylight aging as follows (in hours); 0, 200, 400, and 600. The aging cycle included continuous exposure to quartz-filtered visible daylight (irradiance 760 W/m(2)) under an alternating weathering cycle (wet for 18 minutes, dry for 102 minutes). Pull-out tests were performed to evaluate bond strength between fiber bundles and silicone using a universal testing machine at 1 mm/min crosshead speed. Also a three-point bending test was performed to evaluate bending strength of the fiber bundles. One-way ANOVA and Bonferroni post hoc tests were carried out to detect statistical significance (p < 0.05). RESULTS: Mean (SD) values of maximum pull-out forces (in N) for groups 1 to 4 were: 13.63 (7.45), 19.67 (1.37), 13.58 (2.61), and 10.37 (2.52). Group 2 exhibited the highest pull-out force that was statistically significant when compared to the other groups. Maximum bending strengths of fiber bundles were in the range of 917.72 MPa to 1124.06 MPa. Bending strength significantly increased after 200 and 400 hours of aging only. CONCLUSIONS: After 200 hours of exposure to artificial daylight and moisture conditions, bond strength between glass fibers and heat-cured silicones is optimal, and the bending strength of the glass fiber bundles is enhanced.
机译:目的:本研究的目的是测试不同时期的人工日光加速老化对嵌入颌面硅橡胶中的玻璃纤维束的粘结强度以及玻璃纤维束的弯曲强度的影响。方法和材料:将树脂浸渍的纤维束(直径1.5毫米,长20毫米)嵌入上颌面硅氧烷弹性体中,制成40个样品。将标本随机分为四组,每组分别经历如下不同的加速日光老化的时间段(以小时为单位); 0、200、400和600。老化周期包括在交替的老化周期(潮湿18分钟,干燥102分钟)下连续暴露于石英过滤的可见日光(辐射760 W / m(2))。使用万能试验机以1 mm / min的十字头速度进行拉力试验,以评估纤维束和硅树脂之间的粘结强度。还进行了三点弯曲测试以评估纤维束的弯曲强度。进行了单向方差分析和Bonferroni事后检验,以检测统计学显着性(p <0.05)。结果:第1组至第4组的最大拔出力(以N为单位)的平均值(SD)为:13.63(7.45),19.67(1.37),13.58(2.61)和10.37(2.52)。与其他组相比,第2组表现出最高的拔出力,具有统计学意义。纤维束的最大抗弯强度在917.72 MPa至1124.06 MPa的范围内。仅在老化200和400小时后,弯曲强度就会显着提高。结论:在人造日光和潮湿条件下暴露200小时后,玻璃纤维与热固化有机硅之间的粘结强度最佳,并且玻璃纤维束的弯曲强度得到增强。

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