Polypropylene Copolymers and Blends for HVDC Cable Insulation: Initial Characterization and Pilot-scale Production
Diban, Bassel; Mazzanti, Giovanni; Seri, Paolo; Diaz, Rolando Ezequiel; Rytöluoto, Ilkka; Paajanen, Mika; Saarimäki, Eetta; Lahti, Kari; Niittymäki, Minna; Mourad, Maya; Leproux, Anais; Anyszka, Rafal; Wurm, Frederik; Rheinberger, Timo (2024)
Diban, Bassel
Mazzanti, Giovanni
Seri, Paolo
Diaz, Rolando Ezequiel
Rytöluoto, Ilkka
Paajanen, Mika
Saarimäki, Eetta
Lahti, Kari
Niittymäki, Minna
Mourad, Maya
Leproux, Anais
Anyszka, Rafal
Wurm, Frederik
Rheinberger, Timo
2024
This publication is copyrighted. You may download, display and print it for Your own personal use. Commercial use is prohibited.
Julkaisun pysyvä osoite on
https://urn.fi/URN:NBN:fi:tuni-202503062596
https://urn.fi/URN:NBN:fi:tuni-202503062596
Kuvaus
Peer reviewed
Tiivistelmä
This paper introduces a preliminary characterization of polypropylene-based copolymers as well as a possible ternary blend as a candidate to be used for HVDC cable insulation in the framework of the European project NEWGEN (New GENeration of HVDC insulating materials, cables and systems). The effect of production process scale-up (from mini-scale to pilot-scale cast-processing) is also investigated for the promising PP ternary blend which is essentially composed of homophasic PP random copolymer (RACO), heterophasic PP copolymer (HECO), and propylene-based elastomer (PBE). The preliminary dielectric characterization introduces a promising RACO/HECO/PBE blend with a similar and comparable performance of mini-scale and up-scaled specimens. Mechanical characterization show that incorporating HECO and PBE in the ternary blend reduces the stiffness metrics of RACO towards suitable values for HVDC cable applications.
Kokoelmat
- TUNICRIS-julkaisut [20683]