Fire Spread Characteristics of Metal-Polyethylene Sandwich Panels

Author:

Zhou RuORCID,Chen Zhihao,Fan Yinke,Yu Zhengjiang,Qian Jianan,Jiang Juncheng

Abstract

An experimental study was conducted to determine the characteristics of the flame spread and droplets of metal-polyethylene (PE) sandwich panels during combustion. The mass-loss rate, average flame height, temperature, and fire spread rate were investigated. The results showed that the fire spread rate, mass change of the droplets, average flame height, and temperature increased with an increase in the sample length, except for the mass loss rate of the 40 cm-long sample. The time interval between the droplets decreased, and the flame pulsation frequency increased. The relationship between the flame height and sample length was determined. During the combustion process, bending deformation and top flame phenomena occurred due to the shrinkage of the PE, which increased the fire risk. The distance between the outer surface of the expanded metal aluminum layer and the insulation panel increased with an increase in the panel length. A schematic diagram of the fire spread of the metal sandwich panel was established based on the observations and theoretical analysis. The mechanism and combustion behavior of the metal sandwich panels were determined to provide references for the construction of metal sandwich panels of exterior walls.

Funder

National Natural Science Foundation of China

Six Talent Peaks Project in Jiangsu Province

Key Laboratory of Building Fire Protection Engineering and Technology of Ministry of Public Security of the People's Republic of China

Publisher

MDPI AG

Subject

Building and Construction,Civil and Structural Engineering,Architecture

Reference34 articles.

1. Thermal investigation of thin precast concrete sandwich panels

2. Fire case analysis of thermal insulation materials of high-rise buildings;Liu;Low Temp. Arch. Technol.,2017

3. Experimental and computational investigations on fire resistance of GFRP composite for building façade;Quynh;Compos. Part B-Eng.,2014

4. Resisting Collapse of Steel-faced Sandwich Panel Walls and Ceilings Exposed to Fire

5. Sandwich panels for external cladding-fire safety issues and implications for the risk assessment process;Cooke;Fire Eng. J.,2001

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