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Development of Carbon Nanotube Modified Cement Paste with Microencapsulated Phase-Change Material for Structural–Functional Integrated Application

机译:微胶囊相变材料碳纳米管改性水泥浆的开发

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摘要

Microencapsulated phase-change materials (MPCM) can be used to develop a structural–functional integrated cement paste having high heat storage efficiency and suitable mechanical strength. However, the incorporation of MPCM has been found to degrade the mechanical properties of cement based composites. Therefore, in this research, the effect of carbon nanotubes (CNTs) on the properties of MPCM cement paste was evaluated. Test results showed that the incorporation of CNTs in MPCM cement paste accelerated the cement hydration reaction. SEM micrograph showed that CNTs were tightly attached to the cement hydration products. At the age of 28 days, the percentage increase in flexural and compressive strength with different dosage of CNTs was found to be up to 41% and 5% respectively. The optimum dosage of CNTs incorporated in MPCM cement paste was found to be 0.5 wt %. From the thermal performance test, it was found that the cement paste panels incorporated with different percentages of MPCM reduced the temperature measured at the center of the room by up to 4.6 °C. Inverse relationship was found between maximum temperature measured at the center of the room and the dosage of MPCM.
机译:微囊化相变材料(MPCM)可用于开发具有结构功能的集成水泥浆,该浆具有较高的储热效率和适当的机械强度。然而,已发现掺入MPCM会降低水泥基复合材料的机械性能。因此,在这项研究中,评估了碳纳米管(CNT)对MPCM水泥浆性能的影响。测试结果表明,在MPCM水泥浆中掺入CNT可以加速水泥水化反应。 SEM显微照片表明,CNT紧密地附着在水泥水合产物上。在28天龄时,发现不同剂量的CNT的抗折强度和抗压强度分别增加了41%和5%。发现掺入MPCM水泥浆中的CNT的最佳剂量为0.5重量%。从热性能测试中发现,掺有不同百分比的MPCM的水泥浆板使房间中心处测得的温度降低了4.6°C。在房间中心测得的最高温度与MPCM的剂量之间存在反比关系。

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