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Influence of Microencapsulated Phase Change Material (PCM) Addition on (Micro) Mechanical Properties of Cement Paste

机译:微胶囊相变材料(PCM)的添加对水泥浆(微)力学性能的影响

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摘要

Excessive cracking can be a serious durability problem for reinforced concrete structures. In recent years, addition of microencapsulated phase change materials (PCMs) to concrete has been proposed as a possible solution to crack formation related to temperature gradients. However, the addition of PCM microcapsules to cementitious materials can have some drawbacks, mainly related to strength reduction. In this work, a range of experimental techniques has been used to characterize the microcapsules and their effect on properties of composite cement pastes. On the capsule level, it was shown that they are spherical, enabling good distribution in the material during the mixing process. Force needed to break the microcapsules was shown to depend on the capsule diameter and the temperature, i.e., whether it is below or above the phase change temperature. On the cement paste level, a marked drop of compressive strength with increasing PCM inclusion level was observed. The indentation modulus has also shown to decrease, probably due to the capsules themselves, and to a lesser extent due to changes in porosity caused by their inclusion. Finally, a novel micro-cube splitting technique was used to characterize the tensile strength of the material on the micro-meter length scale. It was shown that the strength decreases with increasing PCM inclusion percentage, but this is accompanied by a decrease in measurement variability. This study will contribute to future developments of cementitious composites incorporating phase change materials for a variety of applications.
机译:对于钢筋混凝土结构,过度开裂可能是严重的耐久性问题。近年来,已经提出将微囊化的相变材料(PCM)添加到混凝土中作为与温度梯度有关的裂纹形成的可能解决方案。然而,将PCM微胶囊添加到水泥质材料中可能具有一些缺点,主要与强度降低有关。在这项工作中,已使用了一系列实验技术来表征微胶囊及其对复合水泥浆性能的影响。在胶囊水平上,显示它们是球形的,从而在混合过程中能够在物料中良好地分布。证明破坏微胶囊所需的力取决于胶囊直径和温度,即其低于还是高于相变温度。在水泥浆水平上,观察到抗压强度随着PCM夹杂物含量的增加而显着下降。压痕模量也已显示出降低,这可能是由于胶囊本身引起的,而较小程度的是由于包含它们引起的孔隙率的变化。最后,一种新颖的微立方体分裂技术被用来在微米长度尺度上表征材料的拉伸强度。结果表明,强度随着PCM夹杂物百分比的增加而降低,但这伴随着测量变异性的降低。这项研究将有助于水泥相复合材料的未来发展,其中包括相变材料,可用于多种应用。

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