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Toughened Epoxy Filled with Ferromagnetic Particles as High Temperature Resistant Microwave Absorbing Coating

机译:钢化环氧树脂填充着铁磁颗粒,作为耐高温微波吸收涂层

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In this work, microwave absorbing coatings consisted of toughened epoxy and ferromagnetic particles were prepared. The epoxy groups and isocyanate groups were investigated by Fourier Transform Infrared (FTIR) spectroscopy. Mechanical properties of the coatings are effectively improved comparing with the one employing unmodified epoxy in room temperature. After heat treat at 150°C for approximate 100 hours, the coatings still have special impact strength between 45 and 50Kg·cm according to Chinese National Standards GB 1732-1993 and flexibility about 2-3 mm according to Chinese National Standards GB 6742-2007. Complex permittivity ε(f) and permeability μ(f) of the ferromagnetic particles were measured using network analyzer in the frequency range from 2 to 18 GHz, to explain the reflection loss behavior of the coatings tested in microwave chamber. The morphology of ferromagnetic particles and their random dispersion in the coatings were observed by field emission scanning electron microscope (FESEM).
机译:在这项工作中,制备了由钢化环氧树脂和铁磁性颗粒组成的微波吸收涂层。通过傅里叶变换红外(FTIR)光谱研究环氧基团和异氰酸酯基团。与室温下采用未改性环氧树脂的涂层的机械性能有效改善。在150℃下热处理100小时后,涂层仍然具有45%至50kg·CM的特殊冲击强度,根据中国国家标准GB 1732-1993和据中国国家标准GB 6742-2007的灵活性约2-3毫米。使用从2至18GHz的频率范围内的网络分析仪测量铁磁性颗粒的复杂介电常数ε(f)和渗透μ(f),以解释在微波室中测试的涂层的反射损耗行为。通过场发射扫描电子显微镜(FeSEM)观察铁磁性颗粒的形态及其在涂层中的随机分散体。

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