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Innovative hydroxyapatite/bioactive glass composites processed by spark plasma sintering for bone tissue repair

机译:火花等离子体烧结处理的新型羟基磷灰石/生物活性玻璃复合材料用于修复骨组织

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摘要

Hydroxyapatite-based composites (HA-C) with bioglass as second phase are usually produced by hot-pressing or pressureless sintering. However, such methods require thermal levels which exceed the crystallization temperature of the glass, with possible negative effects on the bioactivity of the final system. Spark plasma sintering (SPS) is a powerful consolidation technique in terms of both processing time and temperature. In this work SPS has been employed, for the first time, to obtain HA-C with an innovative bioglass as second phase. Such glass was designed to be used whenever a thermal treatment is required, thanks to its low tendency to crystallize. A systematic study is conducted to identify the optimal sintering conditions for preparing highly dense composites and, at the same time, to minimize the crystallization of the glassy phase. The obtained samples are highly bioactive and display higher compactness and hardness with respect to the counterparts produced by conventional sintering methods.
机译:生物玻璃作为第二相的基于羟基磷灰石的复合材料(HA-C)通常通过热压或无压烧结来生产。然而,这些方法需要超过玻璃结晶温度的热水平,这可能对最终系统的生物活性产生负面影响。就处理时间和温度而言,火花等离子体烧结(SPS)是一种强大的固结技术。在这项工作中,SPS首次被用于获得HA-C和第二阶段的创新生物玻璃。由于这种玻璃的结晶趋势低,因此其设计用于需要进行热处理的任何地方。进行了系统的研究,以确定用于制备高密度复合材料的最佳烧结条件,同时最大程度地减少玻璃相的结晶。相对于通过常规烧结方法生产的对应物,所获得的样品具有高生物活性并且显示出更高的致密性和硬度。

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