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Preparation and Characterization of Semi-Flexible Substrates from Natural Fiber/Nickel Oxide/Polycaprolactone Composite for Microstrip Patch Antenna Circuitries for Microwave Applications

机译:用于微带贴材天线电路的天然纤维/氧化镍/聚己内酯复合物的半柔性衬底的制备与表征微带应用

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摘要

The study intended to utilizing waste organic fiber for low-cost semi-flexible substrate fabrication to develop microstrip patch antennas for low band communication applications. All the semi-flexible substrates (12.2 wt. % OPEFF/87.8 wt. % PCL, 12.2 wt. % NiO/87.8 wt. % PCL, and 25 wt. % OPEFF/25 wt. % NiO/50 wt. % PCL) were fabricated by oil palm empty fruit fiber (OPEFF) mixed with nickel oxide (NiO) nanoparticles reinforced with polycaprolactone (PCL) as a matrix using a Thermo Haake blending machine. The morphology and crystalized structure of the substrates were tested using Fourier transform infrared (FTIR) spectrometry, X-ray diffraction (X-RD) technique, and scanning electron microscopy (SEM), respectively. The thermal stability behavior of the substrates was analyzed using thermogravimetric analysis (TGA) and differential thermogravimetric (DTG) thermogram. The dielectric properties were characterized by an open-ended coaxial probe (OEC) connected with Agilent N5230A PNA-L Network Analyzer included the 85070E2 dielectric software at frequency range of 8 to 12 GHz. The experimental results showed that NiO/OPEFF/PCL composites exhibit controllable permittivity dielectric constant εr′(f) between 1.89 and 4.2 (Farad/meter, (F/m)), with loss factor εr′′(f) between 0.08 and 0.62 F/m, and loss tangent (tan δ) between 0.05 and 0.18. Return losses measurement of the three patch antennas OPEFF/PCL, NiO/PCL, and OPEFF/NiO/PCL are −11.93, −14.2 and −16.3 dB respectively. Finally, the commercial software package, Computer Simulation Technology Microwave Studio (CSTMWS), was used to investigate the antenna performance by simulate S-parameters based on the measured dielectric parameters. A negligible difference is found between the measured and simulated results. Finally, the results obtained encourage the possibility of using natural fibers and nickel oxide in preparation of the substrates utilize at microwave applications.
机译:该研究旨在利用废有机纤维进行低成本半柔性基板制造,用于开发用于低频带通信应用的微带贴片天线。所有半柔性衬底(12.2重量%Opeff / 87.8重量%PCL,12.2重量%。%NiO / 87.8wt。%PCL和25重量%。%OPEFF / 25重量%NIO / 50重量%PCL)用氧化镍(NIO)纳米颗粒混合的油棕空果纤维(OPEFF)制造,所述氧化镍(NIO)纳米粒子用聚己内酯(PCL)加强,作为使用Thermo Haake混合机的基质。使用傅里叶变换红外(FTIR)光谱法,X射线衍射(X-RD)技术和扫描电子显微镜(SEM)来测试基板的形态和​​结晶结构。使用热重分析(TGA)和差动热重分析器分析基板的热稳定性行为。通过与Agilent N5230A PNA-L网络分析仪连接的开口结束同轴探针(OEC)的特征在于,包括85070E2电介质软件,在8到12 GHz的频率范围内。实验结果表明,NIO / OPEFF / PCL复合材料在1.89和4.2(Farad / Meter(F / M))之间表现出可控介电常数介电常数εr'(f),损耗因子εr'''(f)介于0.08和0.62之间F / m,损耗切线(TANδ)在0.05和0.18之间。返回损耗三个贴片天线OPEFF / PCL,NIO / PCL和OPEFF / NIO / PCL分别为-11.93,-14.2和-16.3 dB。最后,商业软件包计算机仿真技术微波演播室(CSTMWS)用于通过基于测量的介电参数模拟S参数来研究天线性能。在测量和模拟结果之间发现了可忽略的差异。最后,获得的结果促进了在微波应用中使用自然纤维和氧化镍的可能性在微波应用中使用。

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