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Research Progress in High-Temperature-Resistant Electromagnetic Wire.
Haomin Li1, Minglu Feng1, Lianning Guo1
1State Key Laboratory of Electrical Insulation and Power Equipment, Xi'an Jiaotong University, Xi'an 710049, China.
High-temperature-resistant electromagnetic wires are crucial for demanding industries. This review categorizes and analyzes advancements in organic, composite, and inorganic insulated wires to meet evolving temperature requirements.
Area of Science:
- Materials Science
- Electrical Engineering
Background:
- Electromagnetic wires are essential for energy and signal transmission.
- Traditional wires face limitations in meeting high-temperature resistance demands, particularly in aerospace and atomic energy sectors.
- Developing advanced high-temperature-resistant electromagnetic wires is critical for industrial progress.
Purpose of the Study:
- To categorize high-temperature-resistant electromagnetic wires into organic, organic-inorganic composite, and inorganic insulated types.
- To review the current research status and analyze material selection principles for these wire types.
- To compare preparation techniques and identify future development directions.
Main Methods:
- Categorization of high-temperature-resistant electromagnetic wires.
- Analysis of material selection principles for conductors.
- Review of current research and technical preparation routes.
- Comparison of different insulation types and their preparation methods.
Main Results:
- Methods for enhancing temperature resistance in organic insulated wires are presented.
- Principles for selecting conductor materials in organic-inorganic and inorganic insulated wires are analyzed.
- Current research status of advanced insulated wires is reviewed, with a comparison of preparation techniques for inorganic insulated wires.
Conclusions:
- Significant advancements have been made in high-temperature-resistant electromagnetic wire technology.
- Challenges remain in optimizing performance and manufacturing processes.
- Future development should focus on organic-inorganic composite and inorganic insulation for enhanced thermal stability.
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