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Laboratory studies of the influence of thermal cycling on anti-wear properties of composites used in biotribological friction PAIRS

机译:热循环热循环对生物摩擦对中使用复合材料抗磨性能的影响的实验研究

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This paper presents the problems associated with changes in resistance to the tribological wear of light-cured polymer matrix ceramic composites (LC PMCCs) used in conservative dentistry and in dental prosthetics (fillings of carious cavities, dental bridges, structural reinforcements of the dental arch). Wear resistance of the surface layer of PMCCs depends on the time of exposure to the conditions of the oral environment, such as alternating temperatures and the exposure to liquids. The aim of the study was to assess changes in the mechanical properties of the surface layer under thermal cycling in liquid. Indentation hardness tests and scratch tests were performed before and after conditioning. Conditioning included 10,000 cycles of step temperature changes (10-70°C). The results of the scratch tests showed that universal composites that had relatively high filler contents were more resistant to scratching than flow type composites with lower filler contents. It was found that cyclic changes in ambient temperature reduced the wear resistance of universal composites but improved the resistance of flow type composites. In addition, in the case of flow type composites, the hardness of the surface layer was also increased.
机译:本文介绍了与保守牙科和牙科假肢在保守牙科和牙科假肢(龋齿的填充物,牙科桥,牙弓结构增强)中使用的耐光固化聚合物基质陶瓷复合材料(LC PMCCs)变化相关的问题。 PMCC的表面层的耐磨性取决于暴露于口腔环境条件的时间,例如交替的温度和暴露于液体。该研究的目的是评估在液体中热循环下表面层的机械性能的变化。在调节之前和之后进行压痕硬度测试和划痕试验。调理包括10,000个步进温度变化(10-70°C)。划痕试验的结果表明,具有比具有较低填充物含量的流动式复合材料更高的填充物含量的通用复合材料更耐刮擦。发现环境温度的循环变化降低了通用复合材料的耐磨性,但改善了流动式复合材料的电阻。另外,在流动式复合材料的情况下,表面层的硬度也增加。

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