Relationship between Thermal Conductivity and Compressive Strength of Insulation Concrete: A Review

Chao Wu, Shaoqing Liu, Jianping Guo, Hongqiang Ma, Li He
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Abstract

Developing insulation concrete with high strength is essential for the construction of energy saving buildings. This is important to achieve carbon neutrality in the modern building industry. This paper reviews the existing studies in the literature on insulation concrete. This paper aims to reveal the correlation between the thermal conductivity and strength of concrete and identify the most effective method to make insulation concrete with lower thermal conductivity but higher strength. The review is carried out from two perspectives, including the effects of different foaming methods and various lightweight aggregates. As for the foaming methods, the chemical and mechanical foaming methods are discussed. As for the lightweight aggregates, cenospheres, porous aggregates, aerogels, and phase change materials are assessed. It is clearly observed that the thermal conductivity and compressive strength of concrete can be fitted by a linear function. As for the foaming methods, chemical foaming using hydrogen peroxide is the most effective to produce concrete with relatively lower thermal conductivity and higher compressive strength. For concrete with lightweight aggregates, cenospheres are the best option. Finally, recommendations are made to develop concrete with lower thermal conductivity and higher strength.
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保温混凝土导热系数与抗压强度关系的研究进展
开发高强度保温混凝土是建设节能建筑的必要条件。这对于实现现代建筑行业的碳中和非常重要。本文对已有的保温混凝土研究文献进行了综述。本文旨在揭示混凝土的导热系数与强度之间的关系,找出制造低导热系数高强度保温混凝土的最有效方法。从不同发泡方式和各种轻骨料的影响两方面进行了综述。在发泡方法方面,分别讨论了化学发泡法和机械发泡法。对于轻质骨料,评估了微球、多孔骨料、气凝胶和相变材料。可以清楚地观察到,混凝土的导热系数和抗压强度可以用线性函数拟合。在发泡方法方面,双氧水化学发泡是最有效的,可以生产出导热系数较低、抗压强度较高的混凝土。对于轻质集料的混凝土,微球是最好的选择。最后,对开发导热系数低、强度高的混凝土提出了建议。
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