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Investigation of the Role of Nano-Titanium on Corrosion and Thermal Performance of Structural Concrete with Macro-Encapsulated PCM

机译:纳米钛对宏观封装PCM结构混凝土的腐蚀和热性能的影响

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摘要

The present study aims to investigate the impact of thermal energy storage aggregate (TESA) and nano-titanium (NT) on properties of structural concrete. TESA was made of scoria encapsulated with phase change materials (PCMs). Coarse aggregates were replaced by TESA at 100% by volume of aggregate and NT was added at 5% by weight of cement. Compressive strength, probability of corrosion, thermal performance, and microstructure properties were studied. The results indicated that the presence of TESA reduced the compressive strength of concrete, although the strength was still high enough to be used as structural concrete. The use of TESA significantly improved the thermal performance of concrete, and slightly improved the resistance of corrosion in concrete. The thermal test results showed that TESA concrete reduces the peak temperature by 2 °C compared to the control. The addition of NT changed the microstructure of concrete, which resulted in higher compressive strength. Additionally, the use of NT further enhanced the thermal performance of TESA concrete by reducing the probability of corrosion remarkably. These results confirmed the crucial role of NT in improving the permeability and the thermal conductivity of mixtures containing PCM. In other words, the charging and discharging of TESA was enhanced with the presence of NT in the mixture.
机译:本研究旨在研究热能储存骨料(TESA)和纳米钛(NT)对结构混凝土性能的影响。 TESA由掺有相变材料(PCM)的炉渣制成。粗骨料用100%骨料体积的TESA代替,NT的加入量为水泥重量的5%。研究了抗压强度,腐蚀可能性,热性能和微观结构性能。结果表明,TESA的存在降低了混凝土的抗压强度,尽管强度仍然足够高,可以用作结构混凝土。 TESA的使用显着提高了混凝土的热性能,并略微提高了混凝土的耐腐蚀性。热测试结果表明,TESA混凝土与对照组相比,峰值温度降低了2°C。 NT的添加改变了混凝土的微观结构,从而提高了抗压强度。另外,NT的使用通过显着降低腐蚀的可能性进一步提高了TESA混凝土的热性能。这些结果证实了NT在改善含PCM混合物的渗透性和导热性方面的关键作用。换句话说,在混合物中存在NT时,TESA的充放电得以增强。

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