Reaction to fire of polymethylmethacrylate and polyvinylchloride under reduced oxygen concentrations in a controlled-atmospherecone calorimeter

Author:

Chatenet Sarah1,Authier Olivier1ORCID,Bourbigot Serge2ORCID,Fontaine Gaëlle2ORCID

Affiliation:

1. EDF R&D, Chatou, France

2. University Lille, CNRS, INRAE, Centrale Lille, UMR 8207 - UMET - Unité Matériaux et Transformations, Lille, France

Abstract

Electrical cable sheaths are the most abundant fire load in nuclear power plants, mainly in rooms that are kept in under slight pressure. This configuration leads fires to grow in under-ventilated and vitiated conditions. Assessing fire threat involves characterizing the heat released, responsible for fire growth, and the smoke evolved, which may interact with sensitive components in the area. For that purpose, a revisited controlled-atmosphere cone calorimeter has been designed, set up, and coupled to a Fourier transformed infrared spectrometer and an electrical low-pressure impactor to measure simultaneously the evolved gases and aerosols, respectively. This bench-scale apparatus has been first qualified with polymethylmethacrylate. It has second been used to characterize polyvinylchloride cable sheath representative material reaction to fire in under-ventilated and vitiated conditions. It appeared that vitiation in under-ventilated fires lowers the heat release rate and the fuel mass loss rate.

Publisher

SAGE Publications

Subject

Mechanical Engineering,Mechanics of Materials,Safety, Risk, Reliability and Quality

Reference43 articles.

1. Effects of vitiation on the heat release rate in mechanically-ventilated compartment fires

2. The calculation of the heat release rate by oxygen consumption in a controlled-atmosphere cone calorimeter

3. Standard test methods for measurement of synthetic polymer material flammability using a fire propagation apparatus (FPA), https://www.astm.org/e2058-13.html (accessed 13 January 2022).

4. NF P92-190-1; NF ISO 5660-1:2015. Reaction-to-fire tests—heat release, smoke production and mass loss rate—part 1: heat release rate (cone calorimeter method) and smoke production rate (dynamic measurement).

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