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Research on Eddy-Current Testing of Functional Polymer Composite Material

机译:功能高分子复合材料涡流测试研究

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Polymer composite materials mixed with conductive particles can be used as electromagnetic interference shielding and absorbing materials. Considering the extreme environmental conditions of coating stealth weapons and forming mobile signal shields, it is necessary to develop a non-destructive test of these materials, as the function of shielding and absorbing would not work if the object has some discontinuous areas. In this paper, the eddy-current effect of polymer composite materials with discontinuous conductors was tested, and a finite-element model and a high-frequency (~MHz) eddy-current testing system were developed. The induced voltage occurred on the surface of the composite objects, leading to skin effect. The study results show that the reactance response changes depend on the liftoff distance. Thus, the feasibility of high-frequency electromagnetic test measured in the discontinuous areas of the continuous conductive polymeric material surfaces can be verified.
机译:混合有导电颗粒的聚合物复合材料可用作电磁干扰屏蔽和吸收材料。考虑到涂覆隐形武器和形成移动信号防护罩的极端环境条件,有必要对这些材料进行无损检测,因为如果物体有一些不连续的区域,则防护和吸收功能将无法正常工作。本文测试了具有不连续导体的聚合物复合材料的涡流效应,并建立了有限元模型和高频(〜MHz)涡流测试系统。感应电压出现在复合物体的表面上,从而导致皮肤效应。研究结果表明,电抗响应的变化取决于提升距离。因此,可以验证在连续导电聚合物材料表面的不连续区域中测量高频电磁测试的可行性。

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