Bjurström Anton, Edin Hans, Hillborg Henrik, Nilsson Fritjof, Olsson Richard T, Pierre Max, Unge Mikael, Hedenqvist Mikael S
Department of Fibre and Polymer Technology, Polymeric Materials Division, School of Engineering Sciences in Chemistry, Biotechnology and Health, KTH Royal Institute of Technology, Stockholm, SE-100 44, Sweden.
NKT HV Cables, Technology Consulting, Västerås, SE-721 78, Sweden.
Adv Mater. 2024 Dec;36(52):e2401464. doi: 10.1002/adma.202401464. Epub 2024 Jul 1.
This review focuses on the use of polyolefins in high-voltage direct-current (HVDC) cables and capacitors. A short description of the latest evolution and current use of HVDC cables and capacitors is first provided, followed by the basics of electric insulation and capacitor functions. Methods to determine dielectric properties are described, including charge transport, space charges, resistivity, dielectric loss, and breakdown strength. The semicrystalline structure of polyethylene and isotactic polypropylene is described, and the way it relates to the dielectric properties is discussed. A significant part of the review is devoted to describing the state of art of the modeling and prediction of electric or dielectric properties of polyolefins with consideration of both atomistic and continuum approaches. Furthermore, the effects of the purity of the materials and the presence of nanoparticles are presented, and the review ends with the sustainability aspects of these materials. In summary, the effective use of modeling in combination with experimental work is described as an important route toward understanding and designing the next generations of materials for electrical insulation in high-voltage transmission.
本综述聚焦于聚烯烃在高压直流(HVDC)电缆和电容器中的应用。首先简要介绍了HVDC电缆和电容器的最新发展及当前应用,接着阐述了电绝缘和电容器功能的基础知识。描述了测定介电性能的方法,包括电荷传输、空间电荷、电阻率、介电损耗和击穿强度。介绍了聚乙烯和等规聚丙烯的半结晶结构,并讨论了其与介电性能的关系。综述的很大一部分致力于描述在考虑原子尺度和连续介质方法的情况下,聚烯烃电学或介电性能建模与预测的现状。此外,还介绍了材料纯度和纳米颗粒存在的影响,综述最后讨论了这些材料的可持续性问题。总之,将建模与实验工作有效结合被描述为理解和设计下一代高压输电电气绝缘材料的重要途径。