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Experimental investigation on thermomechanical properties and micro-machinability of carbon nanofibre reinforced epoxy nanocomposites

Le, Bao; Fu, Guoyu; Khaliq, Jibran; Huo, Dehong; Shyha, Islam

Authors

Bao Le

Guoyu Fu

Jibran Khaliq

Dehong Huo



Abstract

A comprehensive experimental investigation on thermomechanical properties and micro-machinability of carbon nanofibre reinforced epoxy nanocomposites (EP/CNF) is presented in this study. The machinability indicators including cutting force and surface roughness have been investigated. Tensile properties, morphology of tensile fracture surfaces, glass transition temperature, machined chip morphology, and machined surface morphology were also characterised. To investigate the effect of both workpiece material properties and operating conditions on the machinability of EP/CNF, three controlled quantitative factors were selected at different levels, namely CNF loading, cutting speed and feed per tooth (FPT). Micromilling experiments were performed on an ultra-precision desktop micro-machine tool using titanium‑carbon-nitride (TiCN) coated micro-end mills. Among all compositions with CNF concentration ranging from 0.3 to 1 wt%, EP/1 wt% CNF exhibited the best machinability among other nanocomposites with its lowest cutting force of approximately 0.5 N and surface roughness of 0.18 μm. Size effect appeared at FPT below minimum uncut chip thickness (MUCT) indicated by the strong deterioration of surface quality owing to the dominant ploughing effect.

Citation

Le, B., Fu, G., Khaliq, J., Huo, D., & Shyha, I. (2023). Experimental investigation on thermomechanical properties and micro-machinability of carbon nanofibre reinforced epoxy nanocomposites. Journal of Manufacturing Processes, 99, 781-793. https://doi.org/10.1016/j.jmapro.2023.05.080

Journal Article Type Article
Acceptance Date May 23, 2023
Online Publication Date Jun 6, 2023
Publication Date 2023-08
Deposit Date Jul 13, 2023
Publicly Available Date Jul 13, 2023
Journal Journal of Manufacturing Processes
Print ISSN 1526-6125
Publisher Elsevier
Peer Reviewed Peer Reviewed
Volume 99
Pages 781-793
DOI https://doi.org/10.1016/j.jmapro.2023.05.080
Keywords Nanocomposites, Thermomechanical, Micro end milling, Carbon nanofibre, Machinability

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