主管:中华人民共和国应急管理部
主办:应急管理部天津消防研究所
ISSN 1009-0029  CN 12-1311/TU

Fire Science and Technology ›› 2023, Vol. 42 ›› Issue (4): 454-457.

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Study on combustion characteristics of glass fiber phenolic composite material for cargo compartment side panels of civil aircraft

Liu Quanyi1,2, Ma Kaiqing1,2, Wei Chaoyue1,2, Zhang Ben1,2   

  1. (1. Civil Aircraft Fire Science and Safety Engineering Key Laboratory of Sichuan Province, Civil Aviation Flight University of China, Sichuan Guanghan 618307, China; 2. College of Civil Aviation Safety Engineering, Civil Aviation Flight University of China, Sichuan Guanghan 618307, China)
  • Online:2023-04-15 Published:2023-04-15

Abstract: In order to explore the combustion characteristics of the side panel material of civil aircraft cargo hold, cone calorimeter was used to study its combustion characteristics under fire environments, and two evaluation indexes were used to evaluate the fire hazard of the material. The experimental results show that the heat release rate curve of the material has only one growth peak. When the heat radiation intensity increases from 20 kW/m2 to 50 kW/m2, the heat release rate peak of the material combustion increases from 98.64 kW/m2 to 201.46 kW/m2, and the mass loss increases with the increase of radiation intensity. CO and CO2 production increased with the increase of radiation intensity during combustion; through the combustion ignition model, the theoretical critical heat flux of the sidewall material is 10.20 kW/m2; the change of thermal radiation value has a great influence on the fire risk index of aircraft cargo compartment sidewall plate.

Key words: aircraft cargo panel, glass fiber/phenolic resin, combustion characteristics, heat release rate