高透过率镀膜玻璃对电磁脉冲的屏蔽效果研究

Che-Min Cheng, Yu-Hsin Chen, Sheng-Yi Lin, Sheng D. Chao, Shun-Feng Tsai
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摘要

本研究根据美国军用标准MIL-STD-188-125-1中的电磁脉冲屏蔽要求,建立了一个3000 × 3000 × 3000 mm电磁脉冲屏蔽室,研究了导电涂层玻璃材料的屏蔽效果。在10 kHz ~ 1 GHz的宽带EMP条件下,测量并验证了导电镀膜玻璃样品的EMP SE。将In2O3、SnO2、Ta2O5、NbO、SiO2、TiO2、Al2O3等导电材料按不同比例混合,在玻璃表面制备导电薄膜涂层。然后将混合溶液涂覆在玻璃靶上,以促进导电氧化物和屏蔽金属结构之间的导电连续性。玻璃样品尺寸为1000 × 600 mm,电导率σ = 4.0064 × 103 ~ 4.7438 × 103 (S/cm),透过率为74 ~ 77%,膜阻为6.4 ~ 6.8 Ω/□。实验结果表明,该玻璃在1 GHz EMP下的SE为35 ~ 40 dB,满足美国国家通信协调中心要求的至少30 dB的3级屏蔽保护要求。这种玻璃将能量密度衰减了1000倍以上,相当于屏蔽了97%以上的电磁脉冲能量。因此,该玻璃材料可作为汽车、船舶、飞机窗户的高透射率导电玻璃,以防止电磁脉冲。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Study on Shielding Effectiveness of High Transmittance Coating Film Glasses against Electromagnetic Pulse
This study investigated the shielding effectiveness (SE) of glass materials with conductive coatings by establishing a 3000 × 3000 × 3000 mm electromagnetic pulse (EMP)—shielded room according to the EMP shielding requirements in the US military standard MIL-STD-188-125-1. The EMP SE of conductive-coated glass samples was measured and verified with the broadband EMP conditions of 10 kHz∼1 GHz. The conductive thin film coating on the glass was made by mixing conductive materials, including In2O3, SnO2, Ta2O5, NbO, SiO2, TiO2, and Al2O3, at different ratios. The mixed solutions were then coated onto the glass targets to facilitate conductive continuity between the conductive oxides and the shielding metal structure. The glass samples had dimensions of 1000 × 600 mm, which had electrolytic conductivity σ = 4.0064 × 103∼4.7438 × 103 (S/cm), 74∼77% transmittance, and 6.4∼6.8 Ω/□ film resistance. The experimental results indicated that the glass had SE of 35∼40 dB under 1 GHz EMP, satisfying the US National Coordinating Center for Communications’ Level 3 shielding protection requirement of at least 30 dB. The glass attenuated energy density by more than 1000 times, which is equivalent to shielding over 97% of EMP energy. Accordingly, the glass materials can be used as high-transmittance conductive glass for windows of automobiles, vessels, and aircrafts to protect from EMPs.
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