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Effects of the Usage of Wasted Diatomite and Phase Change Materials as Partial Replacement of Cement on the Mechanical Properties of Concrete

机译:浪费的硅藻土和相变材料用作水泥对混凝土力学性能的部分替代的影响

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In this study, the wasted diatomite was added to the cement mortar after heat treatment, and the potential of replacing the silica fume to prepare high-strength concrete was discussed. In addition, the diatomite was used to adsorb the polyethylene glycol (PEG) to prepare a shape-stabilized phase change material (SSPCM). Moreover, the compressive strength of concrete and its performance as a temperature-regulating building material by the addition of SSPCM were investigated. The results show that the average compressive strength of the diatomite-containing test mortar after adding a water reducing agent reaches 505.27 kg/cm2, which meets the requirements of the compressive strength of the high-strength concrete. The thermal analysis results show that the diatomite successfully adsorbs PEG and the average compressive strength of SSPCM-containing test mortar reaches 235.42 kg/cm2, which meets the basic requirements of the compressive strength of concrete. The illuminating test shows that the internal temperature of the pristine cement test mortar is mostly higher than the surface temperature. However, the test mortar prepared by adding the SSPCM has a maximum reduction of internal temperature of 2.24 oC as compared with the surface temperature. It is shown that the diatomite which adsorbed phase change material can achieve the functions of lowering the internal temperature and adjusting the temperature of building materials.
机译:在该研究中,在热处理后,将浪费的硅藻土加入到水泥砂浆中,并讨论了更换二氧化硅烟气以制备高强度混凝土的潜力。此外,硅藻土用于吸附聚乙二醇(PEG)以制备形状稳定的相变材料(SSPCM)。此外,研究了混凝土的抗压强度及其通过添加SSPCM作为温度调节建筑材料的性能。结果表明,加入冷水剂后含硅沸石试验研钵的平均抗压强度达到505.27千克/厘米2,符合高强度混凝土抗压强度的要求。热分析结果表明,硅藻土成功吸附PEG和含SSPCM的试验砂浆的平均抗压强度达到235.42千克/厘米2,符合混凝土抗压强度的基本要求。照明试验表明,原始水泥测试砂浆的内部温度大多高于表面温度。然而,通过添加SSPCM制备的测试砂浆,与表面温度相比,通过添加SSPCM的内部温度的最大降低。结果表明,吸附相变材料的硅藻土可以实现降低内部温度并调节建筑材料温度的功能。

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