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Dependences of microstructure on electromagnetic interference shielding properties of nano-layered Ti3AlC2 ceramics

机译:纳米Ti3AlC2纳米陶瓷微观结构对电磁干扰屏蔽性能的影响

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摘要

The microstructure dependent electromagnetic interference (EMI) shielding properties of nano-layered Ti3AlC2 ceramics were presented in this study by comparing the shielding properties of various Ti3AlC2 ceramics with distinct microstructures. Results indicate that Ti3AlC2 ceramics with dense microstructure and coarse grains are more favourable for superior EMI shielding efficiency. High EMI shielding effectiveness over 40 dB at the whole Ku-band frequency range was achieved in Ti3AlC2 ceramics by microstructure optimization, and the high shielding effectiveness were well maintained up to 600 °C. A further investigation reveals that only the absorption loss displays variations upon modifying microstructure by allowing more extensive multiple reflections in coarse layered grains. Moreover, the absorption loss of Ti3AlC2 was found to be much higher than those of highly conductive TiC ceramics without layered structure. These results demonstrate that nano-layered MAX phase ceramics are promising candidates of high-temperature structural EMI shielding materials and provide insightful suggestions for achieving high EMI shielding efficiency in other ceramic-based shielding materials.
机译:通过比较各种具有不同微结构的Ti3AlC2陶瓷的屏蔽性能,提出了纳米层Ti3AlC2陶瓷的微结构相关的电磁干扰(EMI)屏蔽性能。结果表明,具有致密的微观结构和粗大晶粒的Ti3AlC2陶瓷具有更好的EMI屏蔽效率。通过微结构优化,Ti3AlC2陶瓷在整个Ku频段频率范围内都达到了40 dB的高EMI屏蔽效果,并且在高达600 C的温度下也能很好地保持较高的屏蔽效果。进一步的研究表明,通过允许粗层晶粒中更广泛的多次反射,只有吸收损失在改变微观结构时显示出变化。此外,发现Ti3AlC2的吸收损耗比没有分层结构的高导电TiC陶瓷的吸收损耗高得多。这些结果表明,纳米层MAX相陶瓷是高温结构EMI屏蔽材料的有希望的候选者,并为在其他基于陶瓷的屏蔽材料中实现高EMI屏蔽效率提供了有见地的建议。

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