共 59 条
Effect of functionalized halloysite nanotubes on fire resistance and water tolerance of intumescent fire-retardant coatings for steel structures
被引:1
作者:
Zhang, Qi
[1
]
Shu, Yongjun
[1
]
Zhang, Yinghao
[1
]
Huo, Siqi
[2
]
Ye, Guofeng
[1
]
Wang, Cheng
[1
]
Liu, Zhitian
[1
]
机构:
[1] Wuhan Inst Technol, Hubei Engn Technol Res Ctr Optoelect & New Energy, Sch Mat Sci & Engn, Wuhan 430205, Peoples R China
[2] Univ Southern Queensland, Ctr Future Mat, Sch Engn, Springfield 4300, Australia
基金:
澳大利亚研究理事会;
关键词:
Functionalized halloysite nanotubes;
Intumescent fire-retardant coatings;
Fire resistance;
Water tolerance;
FLAME-RETARDANT;
CLAY NANOTUBES;
THERMAL-DEGRADATION;
PYROLYSIS ANALYSIS;
D O I:
10.1016/j.porgcoat.2024.108843
中图分类号:
O69 [应用化学];
学科分类号:
081704 ;
摘要:
To improve the comprehensive performance of intumescent fire-retardant coatings, the functionalized halloysite nanotubes (HNTs-D, HNTs@Fe3O4, and HNTs-D@Fe3O4) were synthesized as synergistic flame retardants and incorporated into intumescent fire-retardant coatings (IFRC) for steel structures, demonstrating significant flame retardant properties. Among these modified halloysite nanosheets, HNTs-D@Fe3O4 showed the best flame retardancy and water resistance. Adding the optimal addition amount (3 wt%) of HNTs-D@Fe3O4 can increase the residual weight of coating from 28.10 % to 38.40 % and reduce the backside temperature of the coated steel plate from 288 degrees C to 177 degrees C, indicating that HNTs-D@Fe3O4 can effectively improve the thermal stability and insulation performances of intumescent fire-retardant coatings. Cone calorimetric analysis showed HNTsD@Fe3O4 can effectively suppress the heat and smoke release of the intumescent fire-retardant coatings. Compared with the unmodified coating sample, the total heat release (THR) and total smoke release (TSR) of the HNTs-D@Fe3O4-containing coating sample were reduced by 66.04 % and 11.36 %. HNTs-D@Fe3O4 facilitates the formation of dense char layers confirmed by the micro morphology characterization. Further mechanism analysis shows that HNTs-D@Fe3O4 has obvious catalytic carbonization effect and is helpful to construct the dense expanded char layer with higher graphitization degree. The uniformly dispersed HNTs-D@Fe3O4 improved the water resistance of intumescent fire-retardant coatings, which is mainly due to the hydrophobicity and barrier effect, thus effectively preventing the loss of water-soluble components.
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