It is evident that the number of studies on the use of nanomaterials in power engineering has been steadily increasing [1]-[5]. Although the first commercial applications of nanomaterials, such as partial-discharge-resistant enamel wires, SF 6-free medium-voltage switchgear, and HV dc crosslinked polyethylene (XLPE) cables, are being actively promoted [6]-[8], the power engineering industry has significantly lagged behind the automotive and aerospace industries in the use of nanotechnology materials in their products.

A. Krivda, T. Tanaka, M. Frechette, J. Castellon, D. Fabiani, G.C. Montanari, et al. (2012). Characterisation of epoxy micro and nano composite materials for power engineering applications. IEEE ELECTRICAL INSULATION MAGAZINE, 28-2, 38-51 [10.1109/MEI.2012.6159180].

Characterisation of epoxy micro and nano composite materials for power engineering applications

FABIANI, DAVIDE;MONTANARI, GIAN CARLO;
2012

Abstract

It is evident that the number of studies on the use of nanomaterials in power engineering has been steadily increasing [1]-[5]. Although the first commercial applications of nanomaterials, such as partial-discharge-resistant enamel wires, SF 6-free medium-voltage switchgear, and HV dc crosslinked polyethylene (XLPE) cables, are being actively promoted [6]-[8], the power engineering industry has significantly lagged behind the automotive and aerospace industries in the use of nanotechnology materials in their products.
2012
A. Krivda, T. Tanaka, M. Frechette, J. Castellon, D. Fabiani, G.C. Montanari, et al. (2012). Characterisation of epoxy micro and nano composite materials for power engineering applications. IEEE ELECTRICAL INSULATION MAGAZINE, 28-2, 38-51 [10.1109/MEI.2012.6159180].
A. Krivda; T. Tanaka; M. Frechette; J. Castellon; D. Fabiani; G.C. Montanari; R. Gorur; P. Morshuis; S. Gubanski; J. Kindersberger; A. Vaughn; S. Peli...espandi
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11585/130609
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