A mathematical model, named FiresCone, was developed to simulate the pyrolysis and combustion processes of different types of combustible materials, which also took into account both gas and solid phases. In the present study, some non-charring and intumescent-protected polymer samples were investigated regarding their combustion behaviors in response to pre-determined external heat fluxes. The modeling results were validated against the experimental outcomes obtained from a cone calorimeter. The predicted mass loss rates of the samples were found to fit reasonably well with the experimental data collected under various levels of external irradiation. Both the experimental and modeling results showed that the peak mass loss rate of the non-...
The development of effective flame retardant polymeric materials is of great interest to the fire pr...
International audienceThe predictive capabilities of the pyrolysis model implemented in the IRSN ISI...
The ability to predict fire behaviour of materials is of key interest to building materials industry...
A mathematical model, named FiresCone, was developed to simulate the pyrolysis and combustion proces...
A mathematical model, named FiresCone, was developed to simulate the pyrolysis and combustion proces...
A mathematical model, named FiresCone, was developed to simulate the pyrolysis and combustion proces...
Controlled atmosphere, radiation-driven gasification experiments were conducted on a series of synth...
The heat transfer and burning behavior of the intumescent fire-retardant polypropylene were studied ...
A quantitative understanding of an intumescent material’s reaction to fire remains largely an unsolv...
Fire is a real threat for people and property. However, if the risks can be identified before the ac...
Fire is a real threat for people and property. However, if the risks can be identified before the ac...
The relationship between physical properties and fire performance as measured in the cone calorimete...
Although non-charring polymers have been frequently utilized in the industry, public transport and b...
One-dimensional model is fundamental to two- or three-dimensional modeling of combustible materials,...
The ability to predict fire behaviour of materials is of key interest to building materials industry...
The development of effective flame retardant polymeric materials is of great interest to the fire pr...
International audienceThe predictive capabilities of the pyrolysis model implemented in the IRSN ISI...
The ability to predict fire behaviour of materials is of key interest to building materials industry...
A mathematical model, named FiresCone, was developed to simulate the pyrolysis and combustion proces...
A mathematical model, named FiresCone, was developed to simulate the pyrolysis and combustion proces...
A mathematical model, named FiresCone, was developed to simulate the pyrolysis and combustion proces...
Controlled atmosphere, radiation-driven gasification experiments were conducted on a series of synth...
The heat transfer and burning behavior of the intumescent fire-retardant polypropylene were studied ...
A quantitative understanding of an intumescent material’s reaction to fire remains largely an unsolv...
Fire is a real threat for people and property. However, if the risks can be identified before the ac...
Fire is a real threat for people and property. However, if the risks can be identified before the ac...
The relationship between physical properties and fire performance as measured in the cone calorimete...
Although non-charring polymers have been frequently utilized in the industry, public transport and b...
One-dimensional model is fundamental to two- or three-dimensional modeling of combustible materials,...
The ability to predict fire behaviour of materials is of key interest to building materials industry...
The development of effective flame retardant polymeric materials is of great interest to the fire pr...
International audienceThe predictive capabilities of the pyrolysis model implemented in the IRSN ISI...
The ability to predict fire behaviour of materials is of key interest to building materials industry...