Montanari, Gian Carlo ;
Seri, Paolo ;
Karttunen, Mikko ;
Paajanen, Mika ;
Lahti, Kari ;
Rytöluoto, Ilkka
(2017)
Nanocomposite Polypropylene For DC Cables And Capacitors: A New European Project.
DOI
10.23919/ISEIM.2017.8088777.
In: Proceedings of 2017 International Symposium on Electrical Insulating Materials (ISEIM).
IEEE,
pp. 433-436.
ISBN 978-4-88686-099-6.
Full text disponibile come:
Anteprima |
Documento di testo(pdf) (Conference Proceedings)
Licenza: Salvo eventuali più ampie autorizzazioni dell'autore, il contributo può essere liberamente consultato e può essere effettuato il salvataggio e la stampa di una copia per fini strettamente personali di studio, di ricerca e di insegnamento, con espresso divieto di qualunque utilizzo direttamente o indirettamente commerciale. Ogni altro diritto sul materiale è riservato.
Download (701kB)
| Anteprima
|
Abstract
This paper presents the scientific background of a new European project, GRIDABLE, which was launched at the beginning of 2017 and has to deliver results in manufacturing and characterization of LV-MV capacitors and MV-HV cables for DC application. The innovation is in the development of nanostructured materials based on polypropylene and silica, and the relevant capacitor and cable manufacturing procedures. The initial results regarding the electrical properties of PP-SiO2 materials, which have brought to the proposal of this project, are presented in this paper, focusing on breakdown strength and space charge measurements performed on nanofilled PP films for capacitors.
Abstract
This paper presents the scientific background of a new European project, GRIDABLE, which was launched at the beginning of 2017 and has to deliver results in manufacturing and characterization of LV-MV capacitors and MV-HV cables for DC application. The innovation is in the development of nanostructured materials based on polypropylene and silica, and the relevant capacitor and cable manufacturing procedures. The initial results regarding the electrical properties of PP-SiO2 materials, which have brought to the proposal of this project, are presented in this paper, focusing on breakdown strength and space charge measurements performed on nanofilled PP films for capacitors.
Tipologia del documento
Estratto da libro
Autori
Parole chiave
HVDC; space charge; nanocomposite; DC cable; Capacitor; SiO2
Settori scientifico-disciplinari
ISBN
978-4-88686-099-6
DOI
Data di deposito
13 Giu 2018 14:58
Ultima modifica
13 Giu 2018 14:58
Nome del Progetto
Programma di finanziamento
EC - H2020
URI
Altri metadati
Tipologia del documento
Estratto da libro
Autori
Parole chiave
HVDC; space charge; nanocomposite; DC cable; Capacitor; SiO2
Settori scientifico-disciplinari
ISBN
978-4-88686-099-6
DOI
Data di deposito
13 Giu 2018 14:58
Ultima modifica
13 Giu 2018 14:58
Nome del Progetto
Programma di finanziamento
EC - H2020
URI
Statistica sui download
Statistica sui download
Gestione del documento: