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

Author:

Pallon L. K. H.12345,Hoang A. T.67895,Pourrahimi A. M.12345,Hedenqvist M. S.12345,Nilsson F.12345,Gubanski S.67895,Gedde U. W.12345,Olsson R. T.12345

Affiliation:

1. KTH Royal Institute of Technology

2. School of Chemical Science and Engineering

3. Fibre and Polymer Technology

4. SE-100 44 Stockholm

5. Sweden

6. Chalmers University of Technology

7. Department of Materials and Manufacturing Technology

8. High Voltage Engineering

9. SE-412 96 Göteborg

Abstract

Ultra-insulating polyethylene nanocomposites were achieved by appropriate MgO nanoparticle surface modification, resulting in unprecedented dispersion and 2 orders of magnitude lower conductivity.

Publisher

Royal Society of Chemistry (RSC)

Subject

General Materials Science,Renewable Energy, Sustainability and the Environment,General Chemistry

Reference48 articles.

1. T. Hjertberg , V.Englund, P.-O.Hagstrand, W.Loyens, U.Nilsson and A.Smedberg, in Jicable-HVDC'13, Perpignan, France, 2013

2. O. Saksvik , in 9th IET International Conference on Advances in Power System Control, Operation and Management, Hong Kong, China, 2012

3. C. O. Olsson , Modelling of thermal behaviour of polymer insulation at high electric DC fields, in CON-6, 5th European Thermal-Sciences Conference, Eindhoven, The Netherlands, 2008

4. Frost & Sullivan , European Smart Grid Market – Advanced Components M 521-14, 2009

5. On the computation of electric field and temperature distribution in HVDC cable insulation

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