The effect of ZnO particle lattice termination on the DC conductivity of LDPE nanocomposites

Author:

Karlsson M. E.12345,Calamida A.12345,Forchheimer D.1678,Hillborg H.9108,Ström V.1111258ORCID,Gardner J. M.1231314ORCID,Hedenqvist M. S.12345,Olsson R. T.12345ORCID

Affiliation:

1. KTH Royal Institute of Technology

2. School of Engineering Sciences in Chemistry

3. Biotechnology and Health

4. Fibre and Polymer Technology

5. SE-100 44 Stockholm

6. Nanostructure Physics

7. SE-106 91 Stockholm

8. Sweden

9. ABB Power Grids Research

10. SE-721 78 Västerås

11. School of Industrial Engineering and Management

12. Material Science and Engineering

13. Department of Chemistry

14. SE-114 28 Stockholm

Abstract

Nanocomposite insulation materials for HVDC cables are demonstrated to dominantly rely on the inorganic particle terminations.

Funder

Energimyndigheten

Publisher

Royal Society of Chemistry (RSC)

Subject

Microbiology

Reference44 articles.

1. Highly Efficient Interfaces in Nanocomposites Based on Polyethylene and ZnO Nano/Hierarchical Particles: A Novel Approach toward Ultralow Electrical Conductivity Insulations

2. The impact of MgO nanoparticle interface in ultra-insulating polyethylene nanocomposites for high voltage DC cables

3. Influence of nanoparticle surface coating on electrical conductivity of LDPE/Al2O3 nanocomposites for HVDC cable insulations

4. P. Bergelin , M.Jeroense , T.Quist and H.Rapp , 640 kV Extruded HVDC Cable System, Technical Paper , NKT , 2017

5. T. Hjertberg , V.Englund , P.Hagstrand , W.Loyens , U.Nilsson and A.Smedberg , Materials for HVDC cables, Jicable HVDC'13 , France , 2013 , pp. 11–15

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