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Fire Retardant Performance of Rice Husk Ash-Based Geopolymer Coated Mild Steel - A Factorial Design and Microstructure Analysis

机译:基于稻壳灰煤的地质聚合物涂层轻度钢的阻燃性能 - A级设计和微观结构分析

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Higher content of silica in geopolymer coating resulted in better thermal properties. Since rice husk ash (RHA) has the highest silica content compared to other aluminosilicate sources available, it offers the best potential to be an alternative silica source in producing geopolymer coating binder. In this study, five factors including ratio of alkaline activator (AA) (A), ratio of RHA/AA (B), curing temperature (C), curing time (D) and concentration of NaOH (E) were analyzed using statistical analysis to identify the significant factors that mostly influence fire retardant performance of RHA-based geopolymer coating. The fire retardant tests were conducted and results recorded included (i) time taken to reach 300°C and (ii) temperature at equilibrium. Sample S7 (coating composition of A=5.5, B=0.3, C=50°C, D=7days, E=8M) which produced the best fire retardant performance was selected for further detailed investigation using thermogravimetry analysis (TGA) and scanning electron microscopy (SEM). It was found that the back temperature of mild steel plate of sample S7 reached 300°C after 17 minutes and achieved an equilibrium state at 398°C. SEM micrographs showed the presence of needle-like structures formed after fire test might be the reason for the best fire performance of sample S7.
机译:岩土聚合物涂层中的二氧化硅含量较高导致较好的热性能。由于与其他可用的铝硅酸盐来源相比,稻壳灰(RHA)具有最多的二氧化硅含量,因此它提供了在生产地质聚合物涂层粘合剂中成为替代二氧化硅源的最佳潜力。在本研究中,使用统计分析分析了五种因素,包括碱性活化剂(AA),RHA / AA(A),固化温度(C),固化时间(D)和浓度的NaOH(E)的比例确定大多数影响rha基地质聚合物涂层的阻燃性能的重要因素。进行阻燃试验,并记录的结果包括(I)在平衡下达到300℃和(II)温度的时间。选择制备最佳阻燃性能的样品S7(A = 5.5,B = 0.3,C = 50℃,D = 7天,E = 8M),以进一步详细研究使用热重率分析(TGA)和扫描电子进一步详细研究显微镜(SEM)。发现样品S7的温和钢板的后温度在17分钟后达到300℃,并在398℃下实现平衡状态。 SEM显微照片显示出在火试验后形成的针状结构的存在可能是样品S7最佳火灾性能的原因。

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