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Research of Curing Time and Temperature-Dependent Strengths and Fire Resistance of Geopolymer Foam Coated on an Aluminum Plate

机译:铝板上涂层岩土聚合物泡沫的固化时间和温度依赖性强度和耐火性研究

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Geopolymer foam (GF) uses a potassium activator and can be cured at high temperatures, which can improve its mechanical properties. In this study, we attempted to test this hypothesis by comparing the flexural and compressive strength, apparent density and fire resistance of GF. The composition of the GF used in the experiment included a potassium activator, basalt ground fiber and aluminum powder with a mass ratio to the binder of 0.45, 0.3 and 0.015, respectively. The samples were cured at room temperature and at 50, 70, 85 and 105 °C with a curing time of 2, 4, 6, 12 and 24 h. Then, the samples were kept until being tested on the third, seventh, 14th and 28th day. The results showed that the flexural and compressive strength and apparent density improved and stabilized after seven days at 85 °C. Furthermore, the GF exhibited a substantial increase after three days in its flexural strength by 111% and compressive strength by 122.9% at the optimal temperature of 85 °C for 2 h compared to the values at RT after 28 days. The GF had an apparent density of 0.558–0.623 g/cm3 on the 28th day. As a new alternative to aluminum materials, investigating the fire resistance of sandwich panels (an aluminum plate covered with a GF layer) is important for their safe impregnation. Sandwich panels with thicknesses of 10–20 mm were exposed to a gas fire. The test results showed that the sandwich panels had significantly improved fire resistance compared to unprotected panels. The longest fire resistance times for the aluminum plate coated with 20 mm of GF layer thickness was 7500 s. Thus, the GF coated on the aluminum plate exhibited superior fire resistance and a reduced heat transfer rate compared to uncoated panels.
机译:地缘聚合物泡沫(GF)使用钾活化剂,可以在高温下固化,可以改善其机械性能。在这项研究中,我们试图通过比较GF的弯曲和抗压强度,表观密度和耐火性来测试这一假设。实验中使用的GF的组合物包括分别与0.45,0.3和0.015的粘合剂的钾活化剂,玄武岩接地纤维和铝粉分别为0.45,0.3和0.015。将样品在室温下固化,50,70,85和105℃,固化时间为2,4,6,12和24小时。然后,保持样品直至在第三,第七,第14天和第28天进行测试。结果表明,在85℃下七天后,弯曲和抗压强度和表观密度改善和稳定。此外,GF在其弯曲强度下三天后表现出显着增加111%,并且在85℃的最佳温度下抗压强度为2小时,与妊娠的值相比,在28天后的值相比。第28天的GF表观密度为0.558-0.623g / cm3。作为铝材料的新替代方案,研究夹层面板的耐火性(用GF层覆盖的铝板)对于它们的安全浸渍很重要。厚度为10-20毫米的夹层面板暴露于气体火灾。测试结果表明,与未受保护的面板相比,夹心板具有显着改善的防火抗性。涂有20mm的GF层厚度的铝板的最长耐火性时间为7500秒。因此,与未涂覆的面板相比,涂在铝板上的GF具有优异的耐火性和减少的传热速率。

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