Effects and characterisations of pulse electrodeposition parameters of silver in terms of scattering parameter and surface roughness for waveguides operating at high frequencies

IF 1 4区 工程技术 Q4 ENGINEERING, MECHANICAL International Journal of Surface Science and Engineering Pub Date : 2021-07-08 DOI:10.1504/ijsurfse.2021.116326
Caner Başaran, N.A. �°, I. Karakaya
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引用次数: 0

Abstract

The signal quality of antennas and waveguides in the transmission of electromagnetic waves are very much dependent on the surface finish of these devices. Effects of pulse parameters on the surface properties of silver coatings of the copper substrates have been analysed in terms of surface roughness and S-parameter (scattering parameter). The duty cycle, frequency and average current density were used as three pulse parameters. Three levels were selected for each parameter in the experimental design. The surface finish was found to be directly proportional to duty cycle and average current density but inversely proportional to frequency. The S11 scattering parameter observations were made relative to a gold-plated reference coupon. It was analysed that the smoother surface had more reflection power in terms of S11 parameter thus decreasing the loss of radiation.
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高频波导散射参数和表面粗糙度对银脉冲电沉积参数的影响和表征
天线和波导在电磁波传输中的信号质量很大程度上取决于这些器件的表面光洁度。从表面粗糙度和s参数(散射参数)两方面分析了脉冲参数对铜基底银镀层表面性能的影响。采用占空比、频率和平均电流密度作为三个脉冲参数。在实验设计中,每个参数选择三个水平。表面光洁度与占空比和平均电流密度成正比,而与频率成反比。S11散射参数的观测是相对于一个镀金的参考券。从S11参数的角度分析,光滑的表面具有更强的反射能力,从而降低了辐射损失。
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来源期刊
CiteScore
1.60
自引率
25.00%
发文量
21
审稿时长
>12 weeks
期刊介绍: IJSurfSE publishes refereed quality papers in the broad field of surface science and engineering including tribology, but with a special emphasis on the research and development in friction, wear, coatings and surface modification processes such as surface treatment, cladding, machining, polishing and grinding, across multiple scales from nanoscopic to macroscopic dimensions. High-integrity and high-performance surfaces of components have become a central research area in the professional community whose aim is to develop highly reliable ultra-precision devices.
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