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Strength, energy absorption capability and self-sensing properties of multifunctional carbon nanotube reinforced mortars

机译:多功能碳纳米管增强砂浆的强度,能量吸收能力和自感性能

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摘要

The development of multifunctional self-sensing mortars reinforced with multi wall carbon nanotubes (MWCNTs) is herein carried out. The purpose is twofold: to determine the impact of nano modification on the strength, the stiffness, and the toughening effect that MWCNTs can provide; and to evaluate the multi-functionality and smartness of cement mortars, reinforced with 0.08, 0.1, 0.3 and 0.5 wt% of cement well-dispersed MWCNTs. The experimental determination of the mechanical properties of 3, 7 and 28 d nanomodified mortars was achieved through three point bending, uniaxial compression, and fracture mechanics experiments. The evaluation of the smartness of the nanoreinforced mortars was achieved by measuring the fractional change in the electrical resistance of specimens, induced by external cyclic compressive loading in the elastic region. The excellent reinforcing capability of MWCNTs is demonstrated by a significant improvement in flexural strength (87%), Young's modulus (92%), flexural toughness (83%), first crack strength (64%) and first crack toughness (65%). Results from piezoresistivity experiments confirm that the nanoreinforced mortars exhibit an increased change in resistivity under cyclic compressive loading, which is indicative of the amplified sensitivity of the material in strain sensing. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文进行了用多壁碳纳米管(MWCNT)增强的多功能自感砂浆的开发。目的是双重的:确定纳米改性对MWCNT可以提供的强度,刚度和增韧效果的影响。并评估用0.08、0.1、0.3和0.5 wt%的水泥良好分散的MWCNT增强的水泥砂浆的多功能性和智能性。通过三点弯曲,单轴压缩和断裂力学实验,可以确定3、7和28 d纳米改性砂浆的力学性能。纳米增强砂浆的智能性评估是通过测量由弹性区域中的外部循环压缩载荷引起的试样电阻的分数变化来实现的。 MWCNTs的优异补强能力通过抗弯强度(87%),杨氏模量(92%),抗弯韧性(83%),首次断裂强度(64%)和首次断裂韧性(65%)的显着提高而得到证明。压阻实验的结果证实,纳米增强砂浆在循环压缩载荷下的电阻率变化增大,这表明材料在应变传感中的灵敏度得到了放大。 (C)2016 Elsevier Ltd.保留所有权利。

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