Silicone rubber‐nanoceramic composites for 5G antenna substrates

Hasanain B. Altalebi, Alaa A. Atiyah, Saad B. H. Farid
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Abstract

Abstract Here, the eligibility of silicone rubber‐nanoceramic composites as flexible substrates for sub‐6 GHz 5G antennas is investigated. Two different composites are prepared using the solution mixing method, namely mono and hybrid composites. The reflection and transmission coefficient (S‐parameters) of composites are measured using a rectangular waveguide‐based transmission line technique in conjunction with a Vector Network Analyzer (VNA) at C‐band frequencies (4–8 GHz). The Nicolson–Ross–Weir (NRW) algorithm is adopted to extract the complex permittivity and loss tangent of the material under test. Due to the synergetic effect, the silicone rubber hybrid composite (0.12BiVO 4 +0.12LaNbO 4 ) exhibits the advantage of a lowered loss tangent while retaining a good dielectric constant at 5.78 GHz. A rectangular microstrip patch antenna is designed and simulated with CST software using 0.12BVO/0.12LNO/0.76SR composite as a substrate. Moreover, based on the simulation, the antenna with the proposed substrate has acceptable performance at 5.78 GHz with the return loss, directivity, and gain of −25.05 dB, 5.46 dBi and 2.74 dBi, respectively. As a result, the composite material's ability to act as a suitable substrate for a 5 GHz Wi‐Fi antenna is confirmed.
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用于5G天线基板的硅橡胶-纳米陶瓷复合材料
本文研究了硅橡胶纳米陶瓷复合材料作为sub - 6 GHz 5G天线柔性基板的适用性。采用溶液混合的方法制备了两种不同的复合材料,即单一复合材料和混杂复合材料。地理的反射和透射系数参数)的复合材料测量使用基于一个矩形波导传输线技术结合矢量网络分析仪(VNA) C波段频率(4 - 8 GHz)。采用Nicolson-Ross-Weir (NRW)算法提取被测材料的复介电常数和损耗正切。由于协同效应,硅橡胶杂化复合材料(0.12BiVO 4 +0.12LaNbO 4)具有降低正切损耗的优点,同时在5.78 GHz处保持良好的介电常数。采用0.12BVO/0.12LNO/0.76SR复合材料作为衬底,设计了矩形微带贴片天线,并利用CST软件进行了仿真。仿真结果表明,采用该衬底的天线在5.78 GHz时具有良好的性能,回波损耗、方向性和增益分别为- 25.05 dB、5.46 dBi和2.74 dBi。结果表明,该复合材料可以作为5ghz Wi - Fi天线的合适基板。
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