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首页> 外文期刊>The International journal of prosthodontics >Effect of glass-fiber reinforcement and water storage on fracture toughness (KIC) of polymer-based provisional crown and FPD materials.
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Effect of glass-fiber reinforcement and water storage on fracture toughness (KIC) of polymer-based provisional crown and FPD materials.

机译:玻璃纤维增​​强和储水对聚合物基临时胎冠和FPD材料的断裂韧性(KIC)的影响。

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摘要

PURPOSE: The effect of glass-fiber reinforcement and water storage on the fracture toughness (KIC) of polymer-based provisional crown and fixed partial denture (FPD) materials was investigated. MATERIALS AND METHODS: Five unreinforced single-edged, notched control specimens and five test specimens reinforced with unidirectional E-glass fibers (Stick) were fabricated from three dimethacrylate-based provisional materials and one monomethacrylate-based provisional material. The specimens were stored in water at 37 degrees C for 1, 7, 30, or 60 days. Specimens were loaded in three-point bending at a cross-head speed of 0.1 mm/s. Mode I plane-strain KIC was calculated using the maximum load, and results of the two groups were compared. The water storage effect on KIC with time was also evaluated. RESULTS: The KIC of provisional materials reinforced with glass fibers (range 7.5 to 13.8 MNm(-1.5)) was significantly higher than that of unreinforced materials (range 1.3 to 3.1 MNm(-1.5)), by a factor of 4.4 to 5.5. A small, gradual decrease of KIC in reinforced specimens occurred with aqueous storage, but it was not statistically significant. CONCLUSION: The KIC of polymer-based provisional crown and FPD materials was significantly increased when they were reinforced with unidirectional E-glass fibers. Water storage for up to 2 months still left the reinforced materials with KIC values in excess of 7 MNm(-1.5). Hence, their performance was satisfactory.
机译:目的:研究玻璃纤维增​​强和储水对聚合物基临时冠和固定局部义齿(FPD)材料的断裂韧性(KIC)的影响。材料与方法:用三种基于二甲基丙烯酸酯的临时材料和一种基于单甲基丙烯酸酯的临时材料制造了5个未增强的单边缘带缺口的对照样品和5个用单向E玻璃纤维(Stick)增强的测试样品。将样本在37摄氏度的水中保存1、7、30或60天。以0.1mm / s的十字头速度以三点弯曲加载样品。使用最大载荷计算I型平面应变KIC,并比较两组的结果。还评估了水对KIC随时间的影响。结果:玻璃纤维增​​强的临时材料(范围为7.5至13.8 MNm(-1.5))的KIC显着高于未增强材料的KIC(范围为1.3至3.1 MNm(-1.5)),其系数为4.4至5.5。含水储存使增强标本中的KIC逐渐减小,但无统计学意义。结论:单向电子玻璃纤维增​​强的聚合物基临时胎冠和FPD材料的KIC显着增加。储水长达2个月仍使增强材料的KIC值超过7 MNm(-1.5)。因此,他们的表现令人满意。

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