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Computational and Experimental Approaches for Determining Scattering Parameters of OPEFB/PLA Composites to Calculate the Absorption and Attenuation Values at Microwave Frequencies

机译:确定OPEFB / PLA复合材料散射参数的计算和实验方法以计算微波频率的吸收和衰减值

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摘要

This article describes attenuation and absorption measurements using the microstrip transmission line technique connected with a microwave vector network analyzer (Agilent 8750B). The magnitudes of the reflection (S11) and transmission (S21) coefficients obtained from the microstrip transmission line were used to determine the attenuation and absorption of oil palm empty fruit bunch/polylactic acid (OPEFB/PLA) composites in a frequency range between 0.20 GHz and 12 GHz at room temperature. The main structure of semi-flexible substrates (OPEFF/PLA) was fabricated using different fiber loading content extracted from oil palm empty fruit bunch (OPEFB) trees hosted in polylactic acid (PLA) using the Brabender blending machine, which ensured mixture homogeneity. The commercial software package, Computer Simulation Technology Microwave Studio (CSTMWS), was used to investigate the microstrip line technique performance by simulating and determine the S11 and S21 for microwave substrate materials. Results showed that the materials’ transmission, reflection, attenuation, and absorption properties could be controlled by changing the percentage of OPEFB filler in the composites. The highest absorption loss was calculated for the highest percentage of filler (70%) OPEFB at 12 GHz to be 0.763 dB, while the lowest absorption loss was calculated for the lowest percentage of filler 30% OPEFB at 12 GHz to be 0.407 dB. Finally, the simulated and measured results were in excellent agreement, but the environmental conditions slightly altered the results. From the results it is observed that the value of the dielectric constant (εr′) and loss factor (εr″) is higher for the OPEFB/PLA composites with a higher content of OPEFB filler. The dielectric constant increased from 2.746 dB to 3.486 dB, while the loss factor increased from 0.090 dB to 0.5941 dB at the highest percentage of 70% OPEFB filler. The dielectric properties obtained from the open-ended coaxial probe were required as input to FEM to calculate the S11 and S21 of the samples.
机译:本文使用与微波矢量网络分析仪(Agilent 8750B)连接的微带传输线技术描述衰减和吸收测量。从微带传输线获得的反射(S11)和变速器(S21)系数的幅度用于确定油棕空果束/聚乳酸(OPEFB / PLA)复合材料在0.20GHz之间的频率范围内的衰减和吸收室温下12 GHz。使用烧结酸(PLA)中托管在聚乳酸(PLA)中的不同纤维负载含量,使用Brabender混合机用不同的纤维载量含量来制造半柔性衬底(OPEFF / PLA)的主要结构,确保混合均匀性。商业软件包计算机仿真技术微波工作室(CSTMWS)用于通过模拟和确定微波衬底材料的S11和S21来研究微带线技术性能。结果表明,通过改变复合材料中的OPEFB填料的百分比,可以控制材料的透射率,反射,衰减和吸收性。为12GHz的最高百分比的填料(70%)OPEFB为0.763dB计算出最高吸收损失,而在12GHz下以0.407 dB的最低百分比填料30%OPEFB计算最低吸收损失。最后,模拟和测量结果具有很好的协议,但环境条件略有改变了结果。从结果开始,观察到介电常数(εr')和损耗因子(εr“)的值对于具有较高含量的OPEFB填充物的opeFB / PLA复合材料较高。介电常数从2.746 dB增加到3.486dB,而损耗因子以70%OPEFB填料的最高百分比增加0.090 dB至0.5941 dB。从开口结束的同轴探针获得的电介质特性被要求作为FEM的输入来计算样品的S11和S21。

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