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首页> 外文期刊>The Journal of Advanced Prosthodontics >Comparison of the fracture resistances of glass fiber mesh- and metal mesh-reinforced maxillary complete denture under dynamic fatigue loading
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Comparison of the fracture resistances of glass fiber mesh- and metal mesh-reinforced maxillary complete denture under dynamic fatigue loading

机译:玻璃纤维网和金属网增强的上颌全口义齿在动态疲劳载荷下的抗断裂性能比较

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PURPOSE The aim of this study was to investigate the effect of reinforcing materials on the fracture resistances of glass fiber mesh- and Cr–Co metal mesh-reinforced maxillary complete dentures under fatigue loading. MATERIALS AND METHODS Glass fiber mesh- and Cr–Co mesh-reinforced maxillary complete dentures were fabricated using silicone molds and acrylic resin. A control group was prepared with no reinforcement (n = 15 per group). After fatigue loading was applied using a chewing simulator, fracture resistance was measured by a universal testing machine. The fracture patterns were analyzed and the fractured surfaces were observed by scanning electron microscopy. RESULTS After cyclic loading, none of the dentures showed cracks or fractures. During fracture resistance testing, all unreinforced dentures experienced complete fracture. The mesh-reinforced dentures primarily showed posterior framework fracture. Deformation of the all-metal framework caused the metal mesh-reinforced denture to exhibit the highest fracture resistance, followed by the glass fiber mesh-reinforced denture ( P CONCLUSION The glass fiber mesh-reinforced denture exhibits a fracture resistance higher than that of the unreinforced denture, but lower than that of the metal mesh-reinforced denture because of the deformation of the metal mesh. The glass fiber mesh-reinforced denture maintains its shape even after fracture, indicating the possibility of easier repair.
机译:目的本研究的目的是研究增强材料对疲劳载荷下玻璃纤维网状和Cr-Co金属网状上颌全口义齿的抗断裂性能的影响。材料和方法玻璃纤维网和Cr-Co网增强的上颌全口义齿是使用硅树脂模具和丙烯酸树脂制成的。对照组不设补强组(每组n = 15)。在使用咀嚼模拟器施加疲劳载荷之后,通过通用测试机测量抗断裂性。分析断裂图案并通过扫描电子显微镜观察断裂表面。结果循环加载后,所有假牙均无裂纹或断裂。在抗断裂测试中,所有未加固的假牙都经历了完全断裂。网格状义齿主要表现为后框架断裂。全金属骨架的变形导致金属网片增强的义齿显示出最高的抗断裂性,其次是玻璃纤维网片增强的义齿(P结论)玻璃纤维网片增强的义齿的抗断裂性高于未增强的义齿。义齿,但由于金属网的变形而低于金属网增强的义齿,玻璃纤维网增强的义齿即使在断裂后也能保持其形状,表明易于修复的可能性。

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