undefined

PP/PP-HI/silica nanocomposites for HVDC cable insulation: Are silica clusters beneficial for space charge accumulation?

Publiceringsår

2021

Upphovspersoner

He, Xiaozhen; Rytöluoto, Ilkka; Seri, Paolo; Anyszka, Rafal; Mahtabani, Amirhossein; Naderiallaf, Hadi; Niittymäki, Minna; Saarimäki, Eetta; Mazel, Christelle; Perego, Gabriele; Lahti, Kari; Paajanen, Mika; Dierkes, Wilma; Blume, Anke

Abstrakt

New potential High Voltage Direct Current (HVDC) cable insulation materials based on nanocomposites are developed in this study. The nanocomposites are produced by blending of polypropylene (PP), propylene-ethylene copolymer (PP–HI) and a modified fumed silica (A-silica) in a concentration of 1 and 2 wt %. The A-silica is successfully modified with (3-aminopropyl)triethoxysilane (APTES) via a solvent-free method, as proven by infrared spectroscopy, thermogravimetry and transmission electron microscope mapping. A-silica in the polymer matrix acts as a nucleating agent resulting in an increase of the crystallization temperature of the polymers and a smaller crystal size. Moreover, the silica addition modified the crystals morphology of the unfilled PP/PP-HI blend. The composite containing A-silica with 2 wt% contains bigger-size silica clusters than the composite filled with 1 wt%. The composite with the higher A-silica concentration shows lower space charge accumulation and a lower charge current value. Besides, much deeper traps and lower trap density are observed in the composite with 2 wt% A-silica addition compared to the one with a lower concentration. Surprisingly, the presence of silica clusters with dimensions of more than 200 nm exhibit a positive effect on reducing the space charge accumulation. However, the real cause of this improvement might be due to change of the electron distribution stemming from the amine-amine hydrogen bond formation, or the change of the chain mobility due to the presence of occluded polymer macromolecules constrained inside the high structure silica clusters. Both phenomena may lead to a higher energetic barrier of charge de-trapping, thus increasing the depth of the charge traps.
Visa mer

Organisationer och upphovspersoner

Tammerfors universitet

Rytöluoto Ilkka Orcid -palvelun logo

Lahti Kari Orcid -palvelun logo

Niittymäki Minna Orcid -palvelun logo

Teknologiska forskningscentralen VTT Ab

Saarimäki Eetta Orcid -palvelun logo

Rytöluoto Ilkka Orcid -palvelun logo

Paajanen Mika

Publikationstyp

Publikationsform

Artikel

Moderpublikationens typ

Tidning

Artikelstyp

En originalartikel

Målgrupp

Vetenskaplig

Kollegialt utvärderad

Kollegialt utvärderad

UKM:s publikationstyp

A1 Originalartikel i en vetenskaplig tidskrift

Publikationskanalens uppgifter

Journal/Serie

Polymer testing

Volym

98

Artikelnummer

107186

Publikationsforum

65267

Publikationsforumsnivå

1

Öppen tillgång

Öppen tillgänglighet i förläggarens tjänst

Ja

Öppen tillgång till publikationskanalen

Helt öppen publikationskanal

Licens för förläggarens version

CC BY

Parallellsparad

Ja

Övriga uppgifter

Vetenskapsområden

Kemi; El-, automations- och telekommunikationsteknik, elektronik; Materialteknik

Nyckelord

[object Object],[object Object],[object Object],[object Object],[object Object],[object Object]

Förlagets internationalitet

Internationell

Språk

engelska

Internationell sampublikation

Ja

Sampublikation med ett företag

Ja

DOI

10.1016/j.polymertesting.2021.107186

Publikationen ingår i undervisnings- och kulturministeriets datainsamling

Ja