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Preparation and Characterization of Mechanical Properties of Hydroxyapatite/Carbon Nanotube Laminated Ceramic Composites Consolidated by Spark Plasma Sintering

机译:火花等离子体烧结固结羟基磷灰石/碳纳米管层压陶瓷复合材料力学性能的制备及表征

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Laminated xCNTs-HAP/yCNTs-HAP ceramic composites were consolidated using a spark plasma sintering(SPS) technique at SPS temperature 900°C, pressure 40MPa and holding time 5min. The effect of carbon nanotubes content and thickness of each layer on mechanical properties of the composites was investigated. It was demonstrated that the stratified structure improvedthe flexural strength obviously. All the flexural strength of laminar compositewashigher than that of single CNTs-HAP ceramic, up to 112.4MPa. Since the matrix of each layer wereHAP, the difference liesonly in the content of carbon nanotubes, thus avoiding the common problem of the interlayer bonding in other layered composites with different materials. In order to characterize the toughness of the layered composite, the stress-strain curve was compared showingthat the existence of the stratified structure improved the stress-strain obviously.
机译:使用SPS温度900℃,压力40MPa和保持时间5min,在SPS温度下使用叠层XCNTS-HAP / YCNTS-HAP陶瓷复合材料。研究了每层碳纳米管含量和厚度对复合材料的机械性能的影响。证明分层结构明显提高了弯曲强度。层压晶体复合材料的所有弯曲强度高于单个CNTS-HAP陶瓷,高达112.4MPa。由于每层的矩阵是HAP,因此在碳纳米管的含量中延伸的差异,从而避免了在具有不同材料的其他层状复合材料中的中间层键合的常见问题。为了表征层状复合材料的韧性,比较应力 - 应变曲线,表明分层结构的存在显然改善了应力 - 应变。

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