首页> 外文期刊>Acta odontologica Scandinavica. >Load-bearing capacity of handmade and computer-aided design--computer-aided manufacturing-fabricated three-unit fixed dental prostheses of particulate filler composite.
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Load-bearing capacity of handmade and computer-aided design--computer-aided manufacturing-fabricated three-unit fixed dental prostheses of particulate filler composite.

机译:手工和计算机辅助设计的承载能力-计算机辅助制造制造的颗粒填料复合材料的三单元固定式牙修复体。

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摘要

OBJECTIVE: To compare handmade and computer-aided design-computer-aided manufacturing (CAD-CAM)-fabricated fixed dental prostheses (FDPs) composed of a particulate filler composite. MATERIAL AND METHODS: Handmade FDPs were made of restorative composite (Z 100) and CAD-CAM-fabricated FDPs were made of commercial CAD-CAM blocks (VITA Temp) and two experimental CAD-CAM blocks of particulate filler composite. Experimental CAD composite A was prepared by mixing 31.2 wt.% of dimethacrylate resin with 68.7 wt.% of filler particles of barium oxide silicate (BaSiO(2)). Experimental CAD composite B was prepared by mixing 25.6 wt.% of dimethacrylate resin with 74.3 wt.% of filler particles of BaSiO(2). Six groups were fabricated (n = 6 in each); FDPs were statically loaded until final fracture. RESULTS: Experimental CAD composites A and B revealed the highest load-bearing capacity of the FDPs, while Z 100 showed the lowest. CONCLUSION: FDPs made of experimental CAD composite blocks showed higher load-bearing capacities than handmade commercial composites and commercial blocks.
机译:目的:比较手工和计算机辅助设计-计算机辅助制造(CAD-CAM)制造的由颗粒状填充物复合物制成的固定式义齿(FDP)。材料与方法:手工FDP由恢复性复合材料(Z 100)制成,而CAD-CAM制造的FDP由商业CAD-CAM块(VITA Temp)和两个实验性的颗粒填料复合物CAD-CAM块制成。通过将31.2 wt。%的二甲基丙烯酸酯树脂与68.7 wt。%的氧化钡硅酸盐(BaSiO(2))的填料颗粒混合来制备实验CAD复合材料A。通过将25.6 wt。%的二甲基丙烯酸酯树脂与74.3 wt。%的BaSiO(2)填料颗粒混合来制备实验CAD复合材料B。制造了六组(每组n = 6); FDP被静态加载直到最终断裂。结果:实验CAD复合材料A和B显示出FDP的最高承载能力,而Z 100显示出最低。结论:由实验性CAD复合材料块制成的FDP表现出比手工商用复合材料和商用块更高的承重能力。

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