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首页> 外文期刊>Journal of advanced concrete technology >Effect of Self-Healing on the Different Transport Properties of Cementitious Composites
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Effect of Self-Healing on the Different Transport Properties of Cementitious Composites

机译:自愈对水泥基复合材料不同输运性能的影响

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This research focuses on the effects of self-healing on the different transport properties of microcracked Engineered Cementitious Composites (ECC) with different maturity levels and incorporating three different mineral admixtures with greatly varying chemical compositions. The effect of self-healing capability on transport properties was assessed using water sorptivity and rapid chloride permeability tests (RCPT). Experimental results revealed that with the selection of proper mineral admixture type and conditioning, a 92% recovery in water sorptivity results is attainable. Moreover, a considerable amount of this recovery took place after only 7 days of water curing, significantly lowering the risk of water transport by capillary suction into cracked ECC. Like the sorptivity measurements, most of the chloride ion penetrability values could also be reduced up to a great extent after 30 days of water curing, so most of the results fell into the low penetrability level during this period, as prescribed by ASTM C1202. Although self-healing in terms of RCPT results started to be visible in the first 7 days of water curing, significant improvements needed more time in RCPTs, unlike the sorptivity results. Overall, these findings suggest that the rate of self-healing varies depending on the different transport mechanisms dominant in a given infrastructure type during its service life.
机译:这项研究的重点是自我修复对具有不同成熟度的微裂纹工程胶结复合材料(ECC)的不同输运性能的影响,并结合了三种化学成分差异很大的矿物掺合料。使用吸水率和快速氯化物渗透性测试(RCPT)评估了自我修复能力对运输性能的影响。实验结果表明,通过选择适当的矿物掺合料类型和调节条件,可以实现92%的吸水率回收率。此外,仅在水固化7天后就发生了相当多的这种回收,从而显着降低了通过毛细管抽吸将水输送到破裂的ECC中的风险。像吸水率测量一样,在水固化30天后,大部分氯离子的渗透性值也可以在很大程度上降低,因此,按照ASTM C1202的规定,在此期间,大多数结果都降至低渗透性水平。尽管在水固化的前7天就可以看到RCPT的自我修复效果,但是与吸收性结果不同,RCPT的显着改进需要更多的时间。总体而言,这些发现表明,自愈速度取决于在给定基础设施类型的使用寿命中占主导地位的不同运输机制。

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