Logo image
Characterization of aerosolized particles in effluents from carbon fibre composites incorporating nanomaterials during simultaneous fire and impact
Journal article   Open access   Peer reviewed

Characterization of aerosolized particles in effluents from carbon fibre composites incorporating nanomaterials during simultaneous fire and impact

R. Chapple, C. Chivas-Joly, J-C Roux, Loic Dumazert, L. Ferry, J-M. Lopez-Cuesta, E.L. Erskine and Baljinder K. Kandola
NanoImpact, Vol.29, 100446
01/2023

Abstract

carbon fibre composites nanomaterials impact and fire aerosol soot
This work investigates the aerosols emitted from carbon fibre-reinforced epoxy composites (CFC) incorporating nanomaterials (nanoclays and nanotubes), subjected to simultaneous fire and impact, representing an aeroplane or automotive crash. Simultaneous fire and impact tests were performed using a previously described bespoke testing methodology with the capability to collect particles released from the front/back faces of the impacted composites plus the effluents. In this work the methodology has been further developed by connecting the Dekati Low Pressure Impactor (DLPI) and Mini Particle Sampler (MPS) sampling system in the extraction chimney. The aerosols emitted have been characterized using various devices devoted to the analysis of aerosols. The influence of the nanoadditives in the matrix on the number concentration and the size distribution of airborne particles produced, was studied with a cascade impactor in the 5 nm–10 µm range. The morphology of the separated soot fractions was examined by SEM. The measurement of aerodynamic size of particles that can deposit in human respiratory tract indicate that 75% of the soot and particles released from CFC could deposit in the lungs reaching the bronchi region at a minimum. There was however, a minimal difference between the number particle concentrations or particle-size mass distribution of particles from CFC and CFC containing nanoadditives. Moreover, no fibres were found in the effluents.
pdf
Characterization of aerosolized particles in effluents from carbon fibre composites incorporating nanomaterials during simultaneous fire and impact3.94 MBDownloadView
Published (Version of record)Open AccessCC BY-NC-ND V4.0 Open Access
url
Link to Published VersionView
Published (Version of record)CC BY-NC-ND V4.0 Open

Metrics

22 File views/ downloads
20 Record Views
1 Times Cited - Scopus

Details

Logo image

Usage Policy