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首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Damping and mechanical behavior of metal-ceramic composites applied to novel dental restorative systems
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Damping and mechanical behavior of metal-ceramic composites applied to novel dental restorative systems

机译:金属陶瓷复合材料的阻尼和力学行为应用于新型牙科恢复系统

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摘要

Conversely to natural teeth, where periodontal ligament (PDL) and pulp works as a damper reducing the effect of the stress on surrounding structures, when natural teeth is lost and replaced or restored the biting forces are directly transmitted to the bone or affect the integrity of the adjacent bottom layers. In this study, damping capacity and dynamic Young's modulus of CoCrMo-porcelain composites for dental restorations were evaluated. Dynamic Young's modulus and damping capacity of materials were assessed by dynamic mechanical analyzes (DMA) at 1 and 10 Hz frequencies, over a temperature ranging (18-60 degrees C). Results show that by reinforcing dental porcelain with metallic particles, producing ceramic matrix composites (CMCs) with 20 vol% and 40 vol% of metallic particles, the damping capacity and dynamic Young's modulus are improved. A decrease on both properties of the metal matrix composites (MMCs) with increasing ceramic particles content (from 20 vol% to 40 vol% of ceramic phase) was observed for all the studied frequencies and temperatures. While damping capacity is strongly dependent on frequency, no significant difference in dynamic Young's modulus was found.
机译:相反,牙周韧带(PDL)和纸浆作为阻尼器的牙齿,当天然牙齿丢失并恢复或恢复咬合时,牙周韧带(PDL)和纸浆作为阻尼器的效果降低了对周围结构的影响。直接传递到骨骼或影响完整性相邻的底层。在本研究中,评估了Cocrmo-瓷复合材料的阻尼能力和动态杨氏模量进行牙科修复物。通过在1和10 Hz频率的动态机械分析(DMA),在温度范围内(18-60℃),通过动态机械分析(DMA)进行动态杨氏模量和材料的阻尼能力。结果表明,通过用金属颗粒加强牙科瓷,产生陶瓷基复合材料(CMC),具有20体积%和40体积%的金属颗粒,改善阻尼能力和动态的杨氏模量。对于所有研究的频率和温度,观察到具有增加陶瓷颗粒含量的金属基质复合材料(MMC)的性质(MMC)的性质降低。虽然阻尼能力强烈依赖于频率,但发现了动态杨氏模量没有显着差异。

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