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Effect of multiscale reinforcement on the mechanical properties and microstructure of microcrystalline cellulose-carbon nanotube reinforced cementitious composites

机译:多尺度增强对微晶纤维素-碳纳米管增强水泥基复合材料力学性能和微观结构的影响

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The present research investigated for the first time the combined effect of microcrystalline cellulose (MCC) and carbon nanotube (CNT) on the performance of cement composites. Multi-scale or hierarchical composites were developed by dispersing MCC and multi-wall CNT (MWCNT) within the cementitious matrix as reinforcements. Homogeneous suspensions of MCC (0.4 wt% and 1 wt%) and CNTs (0.2 wt% and 0.6 wt%) in water were prepared using two different surfactants, cetyltrimethylammoniumbromide (CTAB) and Pluronic F-127 using ultrasonication energy, and the suspensions were subsequently added to cement-sand mixture to fabricate cementitious composites. The composite samples were stored in water for 28 and 56 days to carry out the hydration process and were next characterized for flexural and compressive properties, dry bulk density, porosity, hydration products and fracture surface morphology. It was observed that the flexural and compressive strengths of cement composites improved significantly due to the MCC - CNT hybrid reinforcement. The highest improvements in flexural strength of 12.3% and 23.2% and compressive strength of 16.3% and 27.9% were achieved with 0.5 wt % MCC-0.3 wt % CNT in 28 and 56 days, respectively. In addition, significant improvements in flexural modulus, flexural strain and fracture energy were also noticed. Positive influence of hybrid reinforcement on the porosity of cementitious composites was also confirmed; the average pore diameter of plain mortar reduced from 47.5 nm to 30 run. Further, the multi-scale composites exhibited higher bulk density, better hydration and crack bridging by CNTs leading to higher fracture energy.
机译:本研究首次研究了微晶纤维素(MCC)和碳纳米管(CNT)对水泥复合材料性能的综合影响。通过将MCC和多壁CNT(MWCNT)分散在水泥基体内作为增强材料,可以开发出多尺度或分层的复合材料。使用两种不同的表面活性剂,十六烷基三甲基溴化铵(CTAB)和Pluronic F-127使用超声能制备MCC(0.4 wt%和1 wt%)和CNTs(0.2 wt%和0.6 wt%)在水中的均相悬浮液,随后将其添加到水泥砂混合物中以制造水泥复合材料。将复合材料样品在水中储存28天和56天以进行水合过程,然后对其弯曲和压缩特性,干堆积密度,孔隙率,水合产物和断裂表面形态进行表征。观察到,由于MCC-CNT杂化增强,水泥复合材料的弯曲和压缩强度显着提高。用0.5wt%的MCC-0.3wt%的CNT分别在28和56天内获得了12.3%和23.2%的抗弯强度和16.3%和27.9%的抗压强度的最高改进。另外,还注意到弯曲模量,弯曲应变和断裂能的显着改善。还证实了混合增强对水泥基复合材料孔隙率的积极影响。普通砂浆的平均孔径从47.5 nm减小到30纳米。此外,多尺度复合材料表现出更高的堆积密度,更好的水合和CNTs的裂缝桥接,从而导致更高的断裂能。

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