Abdullah Mohd Na'im, Mustapha Mazli, Sallih Nabihah, Ahmad Azlan, Mustapha Faizal, Dahliyanti Ayu
Department of Aerospace Engineering, Faculty of Engineering, Universiti Putra Malaysia, Serdang 43400, Malaysia.
Department of Mechanical Engineering, Universiti Teknologi PETRONAS, Seri Iskandar 32610, Malaysia.
Materials (Basel). 2021 Jun 22;14(13):3440. doi: 10.3390/ma14133440.
The utilisation of rice husk ash (RHA) as an aluminosilicate source in fire-resistant coating could reduce environmental pollution and can turn agricultural waste into industrial wealth. The overall objective of this research is to develop a rice-husk-ash-based geopolymer binder (GB) fire-retardant additive (FR) for alkyd paint. Response surface methodology (RSM) was used to design the experiments work, on the ratio of RHA-based GB to alkyd paint. The microstructure behaviour and material characterisation of the coating samples were studied through SEM analysis. The optimal RHA-based GB FR additive was formulated at 50% wt. FR and 82.628% wt. paint. This formulation showed the result of 270 s to reach 200 °C and 276 °C temperature at equilibrium for thermal properties. Furthermore, it was observed that the increased contents of RHA showed an increment in terms of the total and open porosities and rough surfaces, in which the number of pores on the coating surface plays an important role in the formation of the intumescent char layer. By developing the optimum RHA-based GB to paint formulation, the coating may potentially improve building fire safety through passive fire protection.
将稻壳灰(RHA)用作防火涂料中的硅铝酸盐来源可以减少环境污染,并能将农业废弃物转化为工业财富。本研究的总体目标是开发一种用于醇酸漆的基于稻壳灰的地质聚合物粘结剂(GB)阻燃添加剂(FR)。采用响应面方法(RSM)来设计关于基于RHA的GB与醇酸漆比例的实验工作。通过扫描电子显微镜(SEM)分析研究了涂层样品的微观结构行为和材料特性。基于RHA的GB FR添加剂的最佳配方为50%重量的FR和82.628%重量的漆。该配方的热性能结果显示,达到200℃需要270秒,平衡温度为276℃。此外,观察到RHA含量的增加导致总孔隙率和开孔孔隙率以及粗糙表面增加,其中涂层表面的孔隙数量在膨胀炭层的形成中起重要作用。通过开发基于RHA的GB与漆的最佳配方,该涂层可能通过被动防火来潜在地提高建筑消防安全。