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首页> 外文期刊>Materials science & engineering, C. Materials for Biogical applications >Photoelastic analysis of mandibular full-arch implant-supported fixed dentures made with different bar materials and manufacturing techniques
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Photoelastic analysis of mandibular full-arch implant-supported fixed dentures made with different bar materials and manufacturing techniques

机译:用不同棒材和制造技术制成的下颌全拱形植入固定假牙的光弹性分析

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Abstract Purpose To compare the stress distribution of mandibular full dentures supported with implants according to the bar materials and manufacturing techniques using a qualitative photoelastic analysis. Material and methods An acrylic master model simulating the mandibular arch was fabricated with four Morse taper implant analogs of 4.5×6mm. Four different bars were manufactured according to different material and techniques: fiber-reinforced resin (G1, Trinia, CAD/CAM), commercially pure titanium (G2, cpTi, CAD/CAM), cobalt?chromium (G3, Co-Cr, CAD/CAM) and cobalt?chromium (G4, Co-Cr, conventional cast). Standard clinical and laboratory procedures were used by an experienced dental technician to fabricate 4 mandibular implant-supported dentures. The photoelastic model was created based on the acrylic master model. A load simulation (150N) was performed in total occlusion against the antagonist. Results Dentures with fiber-reinforced resin bar (G1) exhibited better stress distribution. Dentures with machined Co-Cr bar (G3) exhibited the worst standard of stress distribution, with an overload on the distal part of the posteriors implants, followed by dentures with cast Co-Cr bar (G4) and machined cpTi bar (G2). Conclusion The fiber-reinforced resin bar exhibited an adequate stress distribution and can serve as a viable alternative for oral rehabilitation with mandibular full dentures supported with implants. Moreover, the use of the G1 group offered advantages including reduced weight and less possible overload to the implants components, leading to the preservation of the support structure. ]]>
机译:<![cdata [ 抽象 目的 进行比较使用定性光弹性分析根据棒材和制造技术支持植入物的下颌全牙本质的应力分布。 材料和方法 丙烯酸大师模拟下颌拱制下颌弧形用4.5 6 毫米。根据不同的材料和技术制造四个不同的条:纤维增强树脂(G1,Trinia,CAD / Cam),商业纯钛(G2,CPTI,CAD / CAM),钴α铬(G3,CO-CR,CAD /凸轮)和钴?铬(G4,CO-CR,常规铸造)。经验丰富的牙科技师使用标准临床和实验室程序来制作4个下颌植入物支持的假牙。基于丙烯酸主模型创建了光弹性模型。负载模拟(150 N)对拮抗剂的总阻塞进行。 结果 义齿纤维增强树脂棒(G1)表现出更好的应力分布。具有加工Co-Cr棒(G3)的假牙表现出最差的应力分布标准,后者植入物的远端部分的过载,然后用铸造CO-CR棒(G4)和机加工CPTI棒(G2)的义齿。 结论 纤维增强树脂棒表现出足够的应力分布,可作为具有植入物支持的下颌全部假牙的口腔康复的可行替代品。此外,G1组的使用提供了优点,包括减轻重量和更少可能的过载,导致植入物组件的保存。 ]]>

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