Abstract
Epoxy composite adhesively bonded metal joints are extensively used in various industries including automobile, aerospace, oil and gas, etc. Despite their several structural advantages, the adhesively bonded composite structures suffer from peel stress concentrations due to load path eccentricity that usually act as a stimulator for cohesive and interfacial failures. Most of the adhesive and composite adhesively bonded metal joints reveal adhesive, cohesive and mixed-mode failure at the interface of adhesive and adherend interface, respectively. These failures immensely affect the whole integrity of the structure. A substantial amount of research conducted to overcome these stress concentrations by incorporating nanoparticles in epoxy adhesive for toughening of epoxy composite and achieving better wettability of adherend’s surface. In the present study, a critical review has been performed to study the influence of nanoparticle type, size and concentration on performance and safety of epoxy composite adhesively bonded various metals based joints.
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Louchaert, G., Garg, R., Singla, A., Gupta, R., Goyat, M.S. (2018). Influence of Nanoparticle Type, Size and Concentration on Performance and Safety of Epoxy Composite Adhesively Bonded Metal Joints: A Critical Review. In: Anand, G., Pandey, J., Rana, S. (eds) Nanotechnology for Energy and Water . ICNEW 2017. Springer Proceedings in Energy. Springer, Cham. https://doi.org/10.1007/978-3-319-63085-4_9
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DOI: https://doi.org/10.1007/978-3-319-63085-4_9
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