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Strain and damage sensing properties on multifunctional cement composites with CNF admixture

机译:含CNF的多功能水泥复合材料的应变和损伤传感特性

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摘要

Both strain and damage sensing properties on carbon nanofiber cement composites (CNFCC) are reported in the present paper. Strain sensing tests were first made on the material’s elastic range. The applied loading levels have been previously calculated from mechanical strength tests. The effect of several variables on the strain-sensing function was studied, e.g. cement pastes curing age, current density, loading rate or maximum stress applied. All these parameters were discussed using the gage factor as reference. After this first set of elastic experiments, the same specimens were gradually loaded until material’s failure. At the same time both strain and resistivity were measured. The former was controlled using strain gages, and the latter using a multimeter on a four probe setup. The aim of these tests was to prove the sensitivity of these CNF composites to sense their own damage, i.e. check the possibility of fabricating structural damage sensors with CNFCC’s. All samples with different CNF dosages showed good strain-sensing capacities for curing periods of 28 days. Furthermore, a 2%CNF reinforced cement paste has been sensitive to its own structural damage.
机译:本文报道了碳纳米纤维水泥复合材料(CNFCC)的应变和损伤传感特性。应变传感测试首先在材料的弹性范围内进行。施加的载荷水平先前已根据机械强度测试计算得出。研究了几个变量对应变传感功能的影响,例如水泥浆的固化年龄,电流密度,加载速率或施加的最大应力。所有这些参数均以量规因子为参考进行了讨论。在第一组弹性实验之后,逐渐加载相同的样本,直到材料破裂。同时测量应变和电阻率。前者使用应变计进行控制,后者使用万用表对四个探头进行控制。这些测试的目的是证明这些CNF复合材料检测其自身损坏的敏感性,即检查使用CNFCC制造结构损坏传感器的可能性。具有不同CNF剂量的所有样品在28天的固化时间内均显示出良好的应变感应能力。此外,2%CNF增强水泥浆对其自身的结构损伤敏感。

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