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铁粉改性地质聚合物热参数的测定

Determination of the Thermal Parameters of Geopolymers Modified with Iron Powder.

作者信息

Prałat Karol, Ciemnicka Justyna, Koper Artur, Szczypiński Michał Marek, Łoś Piotr, Nguyen Van Vu, Le Van Su, Rapiejko Cezary, Ercoli Roberto, Buczkowska Katarzyna Ewa

机构信息

Institute of Faculty of Civil Engineering, Faculty of Civil Engineering, Mechanics and Petrochemistry, Warsaw University of Technology, I. Łukasiewicza 17, 09-400 Płock, Poland.

Department of Material Science, Faculty of Mechanical Engineering, Technical University od Liberec, Studentská 2, 461 17 Liberec, Czech Republic.

出版信息

Polymers (Basel). 2022 May 13;14(10):2009. doi: 10.3390/polym14102009.

Abstract

The paper presents the results of research concerning the influence of a metallic micromaterial on the thermal conductivity specific heat , and thermal diffusivity of modified geopolymers. Iron oxide in the form of powder with an average granulation of 10 μm was used as the geopolymer-modifying material. The research concerned geopolymer composite samples with metakaolin (activated with potassium silicate) and the addition of iron in amounts ranging from 0.5% to 2.5% in relation to the weight of the metakaolin. Additionally, the samples were modified with sand and fireclay in two different amounts-1:1 and 1:1.2 in relation to the metakaolin. The addition of fireclay caused a decrease in the thermal conductivity of the composites by 30% when compared to the samples with the addition of sand. The lowest value of the thermal conductivity coefficient was obtained for the geopolymer with metakaolin and fireclay. When the ratio of these components in the composite was 1:1, the value of thermal conductivity was equal to 0.6413 W/(m·K), while in the case of their ratio being 1:1.2, it was equal to 0.6456 W/(m·K). In the samples containing fireclay, no significant influence of the added iron on the values of thermal conductivity was noticed. In the case of the geopolymer with sand, the effect was noticeable, and it was most visible in the samples containing metakaolin and sand in the ratio of 1:1.2. It was noticed that with an increase in the addition of Fe, the thermal conductivity of the composite increased.

摘要

本文介绍了关于金属微材料对改性地质聚合物的热导率、比热容和热扩散率影响的研究结果。平均粒度为10μm的粉末状氧化铁被用作地质聚合物改性材料。该研究涉及偏高岭土(用硅酸钾活化)制成的地质聚合物复合材料样品,并添加相对于偏高岭土重量0.5%至2.5%的铁。此外,样品用两种不同用量的沙子和耐火粘土进行改性,相对于偏高岭土的比例分别为1:1和1:1.2。与添加沙子的样品相比,添加耐火粘土使复合材料的热导率降低了30%。含偏高岭土和耐火粘土的地质聚合物的热导率系数最低。当复合材料中这些组分的比例为1:1时,热导率值等于0.6413W/(m·K),而当比例为1:1.2时,热导率值等于0.6456W/(m·K)。在含有耐火粘土的样品中,未观察到添加的铁对热导率值有显著影响。在含沙子的地质聚合物中,这种影响是明显的,在偏高岭土与沙子比例为1:1.2的样品中最为明显。可以注意到,随着铁添加量的增加,复合材料的热导率增加。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/318a/9148025/24af0ce660cb/polymers-14-02009-g001.jpg

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