A Study on Prevention of Fire Proliferation in Building-Type Solar Modules
Abstract
:1. Introduction
2. Materials and Methods
2.1. PV Module Specimens and FR Coating
- Power of the solar module: 1.6 W (270 mA, 6 V).
- Module dimensions: 110 × 110 mm2, thickness 2.8 mm.
- FR coating thickness: 0 μm (Raw-1-3), 50 μm (FR-1), 100 μm (FR-2), 200 μm (FR-3).
- Microstructure analysis: DMi8 optical microscope (Leica Microsystems, Wetzlar, Germany); Merlin Compact scanning electron microscope with EDS (Carl Zeiss AG, Oberkochen, Germany).
2.2. Combustion Test
3. Results
3.1. FR Coating Reaction Mechanism
- 1st step (FR coating): application of FR coating on the bottom of the back sheet of PV panel.
- 2nd step (chemical reaction): melting of FR coating by flame and initiation of chemical reaction.
- 3rd step (char expansion): release of N2 gas from melamine and formation of porous char.
- 4th step (surface oxidation): stabilization of porous char and thermal barrier oxidation layer.
3.2. Combustion Test Results
4. Conclusions
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Conflicts of Interest
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Jung, Y.C.; Song, M.J.; Park, H.K.; Lee, M.C.; Lee, S.Y. A Study on Prevention of Fire Proliferation in Building-Type Solar Modules. Fire 2025, 8, 194. https://doi.org/10.3390/fire8050194
Jung YC, Song MJ, Park HK, Lee MC, Lee SY. A Study on Prevention of Fire Proliferation in Building-Type Solar Modules. Fire. 2025; 8(5):194. https://doi.org/10.3390/fire8050194
Chicago/Turabian StyleJung, Yong Chan, Min Ji Song, Hee Kyung Park, Min Chul Lee, and Soo Yeol Lee. 2025. "A Study on Prevention of Fire Proliferation in Building-Type Solar Modules" Fire 8, no. 5: 194. https://doi.org/10.3390/fire8050194
APA StyleJung, Y. C., Song, M. J., Park, H. K., Lee, M. C., & Lee, S. Y. (2025). A Study on Prevention of Fire Proliferation in Building-Type Solar Modules. Fire, 8(5), 194. https://doi.org/10.3390/fire8050194