@inproceedings{33d27ffb057c408cb2c9de029373dce2,
title = "Depth profiling of polymer composites by ultrafast laser ablation",
abstract = "Past work has shown femtosecond laser ablation to be a non-thermal process at low fluences in polymer systems. The ablation rate in this low fiuence regime is very low, allowing for micro-scale removal of material. We have taken advantage of this fact to perform shallow depth profiling ablation on carbon fiber reinforced polymer (CFRPj composites. Neat resin and composite samples were studied to establish reference ablation profiles. These profiles and the effects of the heterogeneous distribution of carbon fibers were observed through optical and scanning electron microscopy. Weathered materials that have been subjected to accelerated tests in artificial sunlight or high temperature conditions were ablated to evaluate any correlation between exposure and change in ablation characteristics. Preliminary Raman and micro-A TR analysis performed before and after ablation shows no chemical changes indicative of thermal effects. The low-volume-ablation property was utilized in an attempt to expose the sizing-matrix interphase for analysis.",
author = "Young, \{Christopher N.\} and Clayton, \{Clive R.\} and Longtin, \{Jon P.\} and Granata, \{Richard D.\}",
year = "2010",
doi = "10.1115/IMECE2009-11790",
language = "English",
isbn = "9780791843840",
series = "ASME International Mechanical Engineering Congress and Exposition, Proceedings",
publisher = "American Society of Mechanical Engineers (ASME)",
pages = "343--346",
booktitle = "Proceedings of the ASME International Mechanical Engineering Congress and Exposition 2009, IMECE 2009",
note = "ASME 2009 International Mechanical Engineering Congress and Exposition, IMECE2009 ; Conference date: 13-11-2009 Through 19-11-2009",
}