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自适应智能电磁防护材料测试方法研究
引用本文:成伟,王妍,王赟,赵敏,曲兆明,卢聘,王庆国.自适应智能电磁防护材料测试方法研究[J].装备环境工程,2017,14(4):32-35.
作者姓名:成伟  王妍  王赟  赵敏  曲兆明  卢聘  王庆国
作者单位:军械工程学院 静电与电磁防护研究所,石家庄,050003
摘    要:目的在强电磁场环境下研究自适应智能电磁防护材料的相变特性。方法针对自适应智能电磁防护材料相变前后电导率的变化范围大、需要强场激励状况,考虑测试系统强场生成、大动态范围、测试精度以及相应的绝缘性和较高的安全性要求,采用电容充放电原理设计强场激励测试电路,搭建绝缘环境,确保操作的安全性和测试数据的可靠性。结果利用测试系统对现有商业化电阻器进行验证试验,得到的特性曲线与理论相一致。结论测试系统能够满足自适应智能电磁防护材料相变特性试验的需求,可获取有效且可靠的测试数据。

关 键 词:智能电磁防护材料  电容充放电方法  强场环境
收稿时间:2017/1/21 0:00:00
修稿时间:2017/4/15 0:00:00

Testing Method for Adaptive Intelligent Electromagnetic Shielding Material
CHENG Wei,WANG Yan,WANG Yun,ZHAO Min,QU Zhao-ming,LU Pin and WANG Qing-guo.Testing Method for Adaptive Intelligent Electromagnetic Shielding Material[J].Equipment Environmental Engineering,2017,14(4):32-35.
Authors:CHENG Wei  WANG Yan  WANG Yun  ZHAO Min  QU Zhao-ming  LU Pin and WANG Qing-guo
Institution:Research Institute of Electrostatic and Electromagnetive Protection, Mechanical Engineering College, Shijiazhuang 050003, China,Research Institute of Electrostatic and Electromagnetive Protection, Mechanical Engineering College, Shijiazhuang 050003, China,Research Institute of Electrostatic and Electromagnetive Protection, Mechanical Engineering College, Shijiazhuang 050003, China,Research Institute of Electrostatic and Electromagnetive Protection, Mechanical Engineering College, Shijiazhuang 050003, China,Research Institute of Electrostatic and Electromagnetive Protection, Mechanical Engineering College, Shijiazhuang 050003, China,Research Institute of Electrostatic and Electromagnetive Protection, Mechanical Engineering College, Shijiazhuang 050003, China and Research Institute of Electrostatic and Electromagnetive Protection, Mechanical Engineering College, Shijiazhuang 050003, China
Abstract:Objective To study on the phase transition phenomenon of adaptive intelligent electromagnetic shielding material in electromagnetic field environment. Methods Based on large range of conductivity change, requirement of strong electromagnetic field motivation of adaptive intelligent electromagnetic shielding material and considering strong electromagnetic field generation of testing system, large dynamic range, precision, corresponding insulation and high safety requirement, the capacitance charge-discharge principle was adopted to design a test circuit for strong electromagnetic field motivation and create a insulation environment to guarantee safety of operation and reliability test data. Results The characteristic curve obtained in the verification test on commercial resistor with the testing system was in line with the theory. Conclusion The testing system meets the demands of phase transition property test on adaptive intelligent electromagnetic shielding material and can obtain effective and reliable test data..
Keywords:intelligent electromagnetic shielding material  capacitance charging and discharging method  electromagnetic field environment
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