High-strength, electrically insulated industrial meta-aramid paper reinforced with polyethylene terephthalate microfibre pulp in a sandwich structure

IF 4.9 2区 工程技术 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC High Voltage Pub Date : 2024-08-18 DOI:10.1049/hve2.12474
Meijun Chen, Songjun Yao, Guobin Zhu, Mengyun Wu, Zhiying Li, Siwei Xiong, Shiwen Yang, Hua Wang, Liangbo Zhu, Luoxin Wang
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Abstract

The weak interfacial strength and porous structure of the meso-aramid paper cause mechanical and insulating deficiencies. Enhancing density, regulating pore structure, and improving interfacial interactions of meso-aramid are crucial for promoting the performance of meso-aramid papers. A PMIA/polyethylene terephthalate (PET) composite paper was prepared using the wet method with meso-aramid short cut fibres (PMIA) and PET pulp as raw materials. The sandwich-structured PMIA/PET paper was achieved by covering PET microfiber non-wovens served as the surface layer while the PMIA/PET composite paper acted as the core layer. During the high-temperature hot pressing process, the PET pulp transformed into a viscous melt that coated on aramid fibres in between layers, forming a typical ‘reinforced concrete’ interface structure within the core layer of the PMIA/PET composite paper. The PET non-wovens on top and bottom surfaces were converted into a dense PET film that filled and covered the holes and defects in the PMIA/PET composite paper. This unique structure enabled the sandwich-structured PMIA/PET composite paper to exhibit excellent tensile strength (80.41 N/cm) and breakdown strength (56.35 kV/mm), surpassing most reported performances of meso-aramid papers in literature. This work not only provides novel insights for preparing high-performance meso-aramid papers, but also shows potential applications for other materials and structures.

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高强度,电绝缘工业间位芳纶纸增强与聚对苯二甲酸乙二醇酯微纤维纸浆在一个三明治结构
介层芳纶纸的界面强度较弱,其多孔结构导致了其机械性能和绝缘性能的不足。提高介层芳纶的密度、调节介层芳纶的孔隙结构、改善介层芳纶的界面相互作用是提高介层芳纶纸性能的关键。以中介芳纶短切纤维(PMIA)和PET纸浆为原料,采用湿法制备了PMIA/聚对苯二甲酸乙二醇酯(PET)复合纸。以PET超纤维非织造布为表层,PMIA/PET复合纸为核心层,制备出夹层结构的PMIA/PET纸。在高温热压过程中,PET纸浆转化为粘性熔体,在层与层之间涂覆在芳纶纤维上,在PMIA/PET复合纸的核心层内形成典型的“钢筋混凝土”界面结构。将上下表面的PET无纺布转化成致密的PET薄膜,填充和覆盖PMIA/PET复合纸中的孔洞和缺陷。这种独特的结构使得夹层结构的PMIA/PET复合纸具有优异的抗拉强度(80.41 N/cm)和击穿强度(56.35 kV/mm),超过了文献中报道的大多数中介芳纶纸的性能。这项工作不仅为制备高性能介芳纶论文提供了新的见解,而且在其他材料和结构中也显示了潜在的应用前景。
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来源期刊
High Voltage
High Voltage Energy-Energy Engineering and Power Technology
CiteScore
9.60
自引率
27.30%
发文量
97
审稿时长
21 weeks
期刊介绍: High Voltage aims to attract original research papers and review articles. The scope covers high-voltage power engineering and high voltage applications, including experimental, computational (including simulation and modelling) and theoretical studies, which include: Electrical Insulation ● Outdoor, indoor, solid, liquid and gas insulation ● Transient voltages and overvoltage protection ● Nano-dielectrics and new insulation materials ● Condition monitoring and maintenance Discharge and plasmas, pulsed power ● Electrical discharge, plasma generation and applications ● Interactions of plasma with surfaces ● Pulsed power science and technology High-field effects ● Computation, measurements of Intensive Electromagnetic Field ● Electromagnetic compatibility ● Biomedical effects ● Environmental effects and protection High Voltage Engineering ● Design problems, testing and measuring techniques ● Equipment development and asset management ● Smart Grid, live line working ● AC/DC power electronics ● UHV power transmission Special Issues. Call for papers: Interface Charging Phenomena for Dielectric Materials - https://digital-library.theiet.org/files/HVE_CFP_ICP.pdf Emerging Materials For High Voltage Applications - https://digital-library.theiet.org/files/HVE_CFP_EMHVA.pdf
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