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Improvement on mechanical and piezoresistivity properties of cementitious binder by using surface oxidized multi-wall carbon nanotubes

机译:通过表面氧化的多壁碳纳米管改善水泥基粘合剂的机械和压阻性能

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Two types of the cementitious binders (MWNT/CB,AMNT/CB) filled with 0.5 wt.% multi-wall carbon nanotube (MWNT), and acid-treatment MWNT (AMNT) were prepared. The surfaces of MWNT and AMNT were firstly characterized with TEM micrograph and FT-IR spectrum before and after acid oxidation. The electrical resistivities (ρ) and the longitudinal strains (εl) of two cured nanocomposites under cyclic compressive stress (σ ) are real-time collected, in order to investigate their piezoresistivity properties, associated with mechanical behaviors. On one hand, acid treatment can enhance interface bonding between AMNT and cementitious binder decorated with some hydrophilic groups, resulting in some mechanical improvements; on the other hand, it causes better distribution and more network pathway, AMNT/CB has resultantly balanced piezoresistivity property with regular and consistent variation of ρ following the σ, or the εl, and fixed stress/strain sensitivity (around 62), compared to that of MWNT/CB.
机译:制备填充有0.5重量%的多壁碳纳米管(MWNT)和酸处理的MWNT(AMNT)的两种类型的水泥粘合剂(MWNT / CB,AMNT / CB)。酸氧化前后,通过TEM显微镜和FT-IR光谱对MWNT和AMNT表面进行了表征。实时收集两种固化的纳米复合材料在循环压缩应力(σ)下的电阻率(ρ)和纵向应变(εl),以研究其压阻特性,以及机械行为。一方面,酸处理可以增强AMNT与装饰有一些亲水基团的胶结粘结剂之间的界面键合,从而改善机械性能。另一方面,它导致更好的分布和更多的网络路径,与MWNT / CB。

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