Glass fiber composite materials in epoxy resin with different content of a nitrile rubber modified hybrid resin were manufactured by infusion with two different rubber concentrations. SX 10 epoxy resin was modified to improve the response of the laminates under impact loads. At the aim to test the improvement of the impact resistance over the conventional epoxy resin system, the rectangular specimens 100∗150 mm2 were dynamically loaded in the center by a falling weight machine, Ceast Fractovis, using a cylindrical impactor with a hemispherical nose 19,8 mm in diameter and a total mass of 3.6 kg. Impact tests were carried out at penetration to obtain the complete load-displacement curve useful to measure the penetration energy and to highlight the characteristics points for the increasing energies evaluation, 5J, 10J and 20J, to investigate the damage start and propagation. After the impact tests, the specimens were observed by visual inspection to investigate the delamination extension whereas a confocal microscope was used for the indentation measurements. The obtained results on the modified epoxy system were compared to neat GFRP laminates impact performances. No significant impact performance difference was recorded between samples with different nitrile rubber modifier content. A higher indentation was recorded on the modified samples related with a lower delamination extension. It could represent a good practical results since from a simple external damage measurement it can be possible to obtain information about a low internal delamination. © 2016 The Authors.

Impact Performance of GFRP Laminates with Modified Epoxy Resin / Papa, Ilaria; Ricciardi, M. R.; Antonucci, V.; Lopresto, V.; Langella, A.. - In: PROCEDIA ENGINEERING. - ISSN 1877-7058. - 167:(2016), pp. 160-167. (Intervento presentato al convegno International Symposium on Dynamic Response and Failure of Composite materials, DRAF 2016 tenutosi a Hotel Continental Terme Island of Ischia, Italy nel 7 September 2016 through 9 September 2016) [10.1016/j.proeng.2016.11.683].

Impact Performance of GFRP Laminates with Modified Epoxy Resin

PAPA, ILARIA;Lopresto, V.;Langella, A.
2016

Abstract

Glass fiber composite materials in epoxy resin with different content of a nitrile rubber modified hybrid resin were manufactured by infusion with two different rubber concentrations. SX 10 epoxy resin was modified to improve the response of the laminates under impact loads. At the aim to test the improvement of the impact resistance over the conventional epoxy resin system, the rectangular specimens 100∗150 mm2 were dynamically loaded in the center by a falling weight machine, Ceast Fractovis, using a cylindrical impactor with a hemispherical nose 19,8 mm in diameter and a total mass of 3.6 kg. Impact tests were carried out at penetration to obtain the complete load-displacement curve useful to measure the penetration energy and to highlight the characteristics points for the increasing energies evaluation, 5J, 10J and 20J, to investigate the damage start and propagation. After the impact tests, the specimens were observed by visual inspection to investigate the delamination extension whereas a confocal microscope was used for the indentation measurements. The obtained results on the modified epoxy system were compared to neat GFRP laminates impact performances. No significant impact performance difference was recorded between samples with different nitrile rubber modifier content. A higher indentation was recorded on the modified samples related with a lower delamination extension. It could represent a good practical results since from a simple external damage measurement it can be possible to obtain information about a low internal delamination. © 2016 The Authors.
2016
Impact Performance of GFRP Laminates with Modified Epoxy Resin / Papa, Ilaria; Ricciardi, M. R.; Antonucci, V.; Lopresto, V.; Langella, A.. - In: PROCEDIA ENGINEERING. - ISSN 1877-7058. - 167:(2016), pp. 160-167. (Intervento presentato al convegno International Symposium on Dynamic Response and Failure of Composite materials, DRAF 2016 tenutosi a Hotel Continental Terme Island of Ischia, Italy nel 7 September 2016 through 9 September 2016) [10.1016/j.proeng.2016.11.683].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11588/701318
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