材料科学
碳纳米管
胶凝的
复合材料
抗弯强度
硅粉
抗压强度
流变学
高效减水剂
水泥
色散(光学)
物理
光学
作者
Mohd Mukarram Ali,Ghaith Nassrullah,Rashid K. Abu Al‐Rub,Bashar El‐Khasawneh,Seyed Hamidreza Ghaffar,Tae‐Yeon Kim
标识
DOI:10.1016/j.dibe.2024.100415
摘要
This paper presents the impact of incorporating carbon nanotubes (CNTs) into the 3D printing of cementitious materials, along with the effective dispersion of CNTs. Compared to the control mix, adding CNTs with superplasticizer significantly enhanced the printing quality by reducing the error in height of two-layers from 38% to 30% and an 81% enhancement in the buildability. Moreover, rheology properties revealed shear-thinning behaviour with lower viscosity, resulting in improved flowability. The progressive increase in CNT concentrations up to 0.2% yielded a noteworthy improvement in the mechanical properties. At 28 days, the incorporation of 0.2% CNTs resulted in a significant increase in the flexural strength, compressive strength, and Young's modulus by 99%, 72%, and 43%, respectively, compared to the mix containing silica fume. Microstructural investigation of the CNT-cement matrix revealed nanoscale crack bridges formed by CNTs, reinforcing the cementitious material and improving its mechanical properties.
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