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Track Ⅴ

Track Ⅴ

Research and Application of Insulating Materials Supporting Environmentally Friendly Electrical Equipment
支撑环保型电工装备的绝缘材料研究与应用
Submission Deadline: June 30, 2026

 

Chair: Co-chairs:  
Yu Zheng Ruichao Peng Peng Zhao
Wuhan University, China Wuhan University, China China Electric Power Research Institute, China
     
Keywords:    
  • Environmentally friendly insulating gas (环保绝缘气体)
  • Environmentally friendly insulating liquid (环保绝缘液)
  • Recoverable solid insulating material (可回收固体绝缘材料)
  • Gas-insulated transmission line (气体绝缘输电线路)
  • Environmentally friendly transformer (环保型变压器)
  • Environmentally friendly cable (环保型电缆)
     
Topics:    
  • Molecular design and green synthesis of environmentally friendly insulating materials (including gases, liquids, and solids) 
    (环保绝缘材料(含气体、液体、固体)分子设计与绿色合成)
  • The withstand performance of environmentally friendly insulation materials under multiple physical fields 
    (环保绝缘材料在多物理场下的耐受特性)
  • The compatibility of environmentally friendly insulation materials in equipment 
    (环保绝缘材料在设备中的相容性)
  • Aging/deterioration characteristics and their detection of environmental insulation materials 
    (环保绝缘材料的老化/劣化特性及其检测)
  • Optimized design and operation and maintenance technology for environmental protection insulation equipment 
    (环保绝缘装备优化设计与运维技术)
  • Other topics related to environmentally friendly insulation materials 
    (其他与环保绝缘材料有关的主题)
     
Summary:    
  • This track focuses on the bottleneck of insulating materials in the decarbonization of the entire life cycle of electrical equipment. Targeted at power grid enterprises, equipment manufacturers, research institutes, and environmental policy researchers, it aims to clarify the design, service characteristics, material compatibility, and operation and maintenance testing schemes of environmentally friendly insulating materials (such as environmentally friendly gases, natural esters, and degradable polymers), in order to promote the green transformation of the power industry.
     
  • 聚焦电工装备全生命周期脱碳中绝缘材料这一瓶颈环节,面向电网企业、装备制造商、科研院所及环保政策研究者,旨在明确环保绝缘材料(如环保气体、天然酯、可降解高分子)的设计、服役特性、材料相容性及运维检测方案等,推动电力行业绿色转型。