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首页> 外文期刊>The Journal of Prosthetic Dentistry >Repair of denture base resin using woven metal and glass fiber: effect of methylene chloride pretreatment.
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Repair of denture base resin using woven metal and glass fiber: effect of methylene chloride pretreatment.

机译:使用金属编织物和玻璃纤维修复义齿基料树脂:二氯甲烷预处理的效果。

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摘要

STATEMENT OF PROBLEM: A durable repairing system for denture base fracture is desired to avoid recurrent fracture. Purpose. This study evaluated the strength and modulus of elasticity of repaired acrylic specimens reinforced with various processes. MATERIAL AND METHODS: Transverse strength and modulus of elasticity of repaired acrylic denture base specimens were evaluated with a 3-point bending test and compared with a heat-polymerized control. Autopolymerizing acrylic resin was used with woven metal fiber and glass fiber with and without methylene chloride surface treatment (n = 6 per group). The specimens were cut in half and fixed in a metal mold to obtain a space for placing the repairing resin. A cavity was prepared when metal or glass fiber was used. All specimens were stored in 37 degrees C distilled water for 48 hours before the test. All data were statistically analyzed with 1-way ANOVA, and differences among groups were analyzed with Fisher test (P< or =.05). RESULTS: The mean value of the transverse strength for the control was 87.2 MPa. The specimens repaired by glass fiber with methylene chloride surface treatment exhibited the highest transverse strength (96.8 MPa), which was significantly higher than that of the control (P< or =.05). The elastic modulus of the specimens repaired by glass fiber with methylene chloride surface treatment (4189.3 MPa) was significantly greater than that of the control (2683.7 MPa) at a 95% level of confidence. The values of transverse strength and elastic modulus were highest when the surface treatment was combined with a reinforcing glass fiber. CONCLUSION: Reinforcement with glass fiber and methylene chloride pretreatment produced transverse strength and a modulus of elasticity higher than the control.
机译:问题陈述:需要一种用于义齿基托断裂的耐用修复系统,以避免复发性骨折。目的。这项研究评估了用各种方法增强的修复丙烯酸样品的强度和弹性模量。材料与方法:用三点弯曲试验评估修复后的丙烯酸义齿基托样品的横向强度和弹性模量,并将其与热聚合对照进行比较。将自动聚合丙烯酸树脂与金属编织纤维和玻璃纤维一起使用,并进行和不进行二氯甲烷表面处理(每组n = 6)。将样品切成两半并固定在金属模具中以获得用于放置修复树脂的空间。当使用金属或玻璃纤维时,准备了空腔。在测试之前,将所有样品在37℃的蒸馏水中储存48小时。所有数据均采用1次方差分析进行统计分析,各组之间的差异通过Fisher检验进行分析(P <或= .05)。结果:对照组的横向强度平均值为87.2 MPa。玻璃纤维经二氯甲烷表面处理修复的样品具有最高的横向强度(96.8 MPa),显着高于对照的横向强度(P <或= .05)。在95%的置信水平下,玻璃纤维经二氯甲烷表面处理(4189.3 MPa)修复的样品的弹性模量显着大于对照(2683.7 MPa)。当表面处理与增强玻璃纤维结合使用时,横向强度和弹性模量值最高。结论:玻璃纤维和二氯甲烷预处理增强后,其横向强度和弹性模量均高于对照。

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