Developing rigid polyurethane foam (RPUF) featuring well-balanced heat insulation, mechanical robustness, flame retardancy, and smoke inhibition properties through a halogen-free method is crucial for the advancement of building heat-isolated materials. In this study, a multi-component synergistic flame-retardant system was rationally constructed, consisting of Si/B ceramic precursors modified expandable graphite (EG-SB) and γ-aminopropyltriethoxysilane/phytic acid functionalized CeCoFe-LDH (LDH-SP), as well as ammonium polyphosphate (APP). Owing to the relatively low flame-retardant filler loading, the target RPUF composite retained an ordered pore structure with a low thermal conductivity of 0.028 W/(m·K). Besides, by virtue of the improved dispersibility of EG-SB and LDH-SP, the target RPUF composite exhibited desired compressive strength (0.21 MPa) and heat reliability (remaining char of 30.7 wt %). Benefiting from the remarkable cooperative flame-resistant effects of EG-SB, LDH-SP, and APP, the fire safety of the resultant RPUF composite was effectively enhanced (UL-94 V-0 grade; LOI value of 31.6%). Relative to pristine RPUF, the PHRR, THR, PSPR, and TSP parameters of the target RPUF composite decreased by 66.2%, 48.3%, 62.5%, and 92.9%, respectively, accompanied by significantly suppressed CO and HCN release. This work provides a feasible and viable route to fabricating high-performance RPUF thermal insulation materials with balanced comprehensive properties.
Rigid polyurethane foam (RPUF) composites were modified with bio‐based chitosan (CS) as a green functional additive to replace conventional synthetic flame retardants for building insulation applications. The RPUF/CS composites were systematically characterized by FTIR, thermogravimetric analysis (TG), limiting oxy...
Hua Xie, Hong-Rui Li, Guo-Qing Sun et al.· Journal of Vinyl and Additiv...· 0 citations
This study presents a sustainable strategy to fabricate flame-retardant flexible polyurethane foam (FPUF) via a green aqueous Pickering foam templating method. Lignin was used as a biobased stabilizer and gelation agent, while 10-(2,5-dihydroxyphenyl)-10H-9-oxa-10-phosphaphenanthrene 10-oxide (DOPO-HQ) served as a halo...
Zheng-Hao Shi, Qin Wang, E. Tsang et al.· Langmuir· 0 citations
Epoxy resin (EP) is widely used due to its excellent processability and stability, but its inherent flammability limits its application in flame-retardant scenarios. This study aims to develop an EP composite material that integrates highly effective flame retardancy, smoke suppression, thermal conductivity (TC), and...
To address the limitations of traditional binary flame retardant systems for waterborne polyurethane (WPU), this work proposes a ternary hybrid flame retardant design strategy: boron nitride (BN) particles coated with phytic acid (PA) and chitosan (CS) (BN@PA‐CS) were fabricated via a facile, green modification strat...
Bin Huang, Shao-Yuan Wu, De-Yu Liu et al.· Journal of Applied Polymer S...· 0 citations
Developing efficient, halogen‐free fireproof polymers with low environmental impact remains challenging due to high loading requirements of traditional inorganic fillers and the resulting mechanical defects they cause. In this study, a combined flame‐retardant system comprising expandable graphite (EG) and flake Ca...
Shu-Yi Mo, Qi-Fei Guo, Wen-Qian Luo et al.· Journal of Applied Polymer S...· 0 citations
To address the challenge of balancing flame retardancy and dust suppression in conventional coal mine treatment materials, a multi-component synergistic flame-retardant dust-suppressant gel was fabricated using carboxymethyl cellulose (CMC) as the matrix, compounded with ammonium polyphosphate (APP), zinc borate (ZB),...
Jiang Wang, Zhen-Zhen Zhang, Xin-Ni He et al.· Gels· 0 citations
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