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首页> 外文期刊>Composite interfaces >Synergistic effect of zero-dimensional spherical carbon nanoparticles and one-dimensional carbon nanotubes on properties of cement-based ceramic matrix: microstructural perspectives and crystallization investigations
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Synergistic effect of zero-dimensional spherical carbon nanoparticles and one-dimensional carbon nanotubes on properties of cement-based ceramic matrix: microstructural perspectives and crystallization investigations

机译:零维球形碳纳米颗粒和一维碳纳米管对水泥基陶瓷基体性能的协同效应:微观结构和结晶研究

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In the present investigation, hybrid effect of spherical carbon nanoparticles and carbon nanotubes as zero- and one-dimensional entities, respectively (synthesized by novel CVD route), on properties of cement ceramic matrix was studied. Ceramic matrix composites were fabricated using different dosages (% by wt. of cement) of as-synthesized nanoadditive (labeled as rCNTs) and tested for their resistance to compression at increasing hydration curing times of 7, 14, and 28days. Evolution of different inorganic crystalline phases in composites was examined using X-ray diffraction (XRD). Improvement in mechanical behavior of composites was explained on the basis of microstructural observations using field emission scanning electron microscopy (FE-SEM). Electrical behavior was evaluated using four-probe method and it was observed that addition of nanoadditive had a semiconducting influence on ceramic matrix composites. Thermal behavior of composites was investigated using thermogravimetric analysis (TGA) and compared with that of unreinforced counterpart. All the properties of rCNT composites were compared with carbon black (pCB) cement mortar nanocomposites. Obtained results indicated a maximum improvement of 13.5% in strength in case of 0.125% rCNT cement mortar composite. Electrical and thermal properties were improved with incorporation of rCNTs indicating significant potential for the practical application of low-cost novel rCNT in the preparation of cement-based materials of high strength and smart functionality.
机译:在本研究中,研究了球形碳纳米颗粒和碳纳米管分别作为零维和一维实体(通过新颖的CVD途径合成)对水泥陶瓷基体性能的混杂效应。陶瓷基质复合材料是使用不同剂量(按水泥重量计)的合成纳米添加剂(标记为rCNT)制成的,并测试了它们在增加的7天,14天和28天水化固化时间下的抗压缩性。使用X射线衍射(XRD)检查了复合材料中不同无机结晶相的演变。基于使用场发射扫描电子显微镜(FE-SEM)的微观结构观察,解释了复合材料机械性能的改善。使用四探针法评估电性能,并且观察到纳米添加剂的添加对陶瓷基复合材料具有半导体影响。使用热重分析(TGA)研究了复合材料的热性能,并将其与未增强材料的热性能进行了比较。将rCNT复合材料的所有性能与炭黑(pCB)水泥砂浆纳米复合材料进行了比较。所得结果表明,在使用0.125%rCNT水泥砂浆复合材料的情况下,强度最大提高了13.5%。掺入rCNT改善了电学和热学性能,表明低成本新型rCNT在制备高强度和智能功能性水泥基材料中的实际应用具有巨大潜力。

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