ANALYSIS OF ACTIVATED CARBON (PETUNG BAMBOO)/LATEX COMPOSITE AS X-BAND WAVE-ABSORBING MATERIAL

Khoirotun Nadiyyah, Dwi Wahyu Hardiyanto, Dwi Irma Aprilia, Rizky Firmansyah, Nurul Amaliya Triyuliana, M. Zainuri
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Abstract

In maintaining the sovereignty of a country, especially in border regions was needed defense tools that had the latest technology, such as stealth technology. Stealth technology was applied to military ships or aircraft so that they could not be detected by Radio Detection and Ranging. Stealth technology in this research was realized by coating the ship's or aircraft's body using RAM (Radar Absorbing Material). RAM could be composed of dielectric materials, such as activated carbon. The activated carbon was synthesized from Dendrocalamus Asper. This research aimed to analyze the proper of composition the composite and thickness of the RAM for the X-band wave range. The methods were carbonization, activation by KOH and HCl solutions, and characterization. The characterizations were by XRD, FTIR, and SEM to identify the active carbon phase, and VNA to determine the value of reflection loss. The variations in this research were composite composition (7:3, 9:1) and thickness (1mm, 3mm).  And obtained that it has been formed a composite of activated carbon of petung bamboo and latex of rubber tree, which is indicated by the formation of two broad peaks in the diffraction pattern, the presence of band groups C=C, C-C, C-H, C-O, O-H, and morphology with a porous structure. In addition, the highest reflection loss is obtained for the 9:1 composite and thickness of 3 mm, which reached -17.25 dB at a frequency of 9.32 GHz.
活性炭(桐竹)/乳胶复合材料作为x波段吸波材料的分析
为了维护一个国家的主权,特别是在边境地区,需要具有最新技术的防御工具,例如隐形技术。隐身技术被应用于军舰或飞机上,使它们无法被无线电探测和测距技术发现。本研究中的隐身技术是通过在舰船或飞机的机体上涂覆RAM(雷达吸收材料)来实现的。RAM可以由介质材料组成,如活性炭。以菖蒲为原料合成了活性炭。本研究旨在分析RAM在x波段波段的组成、组成和厚度的适宜性。方法包括炭化、KOH和HCl活化和表征。采用XRD、FTIR、SEM对活性炭进行了表征,通过VNA测定了反射损耗值。本研究的变化是复合成分(7:3,9:1)和厚度(1mm, 3mm)。得到了竹材活性炭与橡胶树乳胶形成的复合材料,在衍射图上形成两个宽峰,存在带群C=C, C-C, C- h, C- o, O-H,形貌具有多孔结构。在9.32 GHz频率下,当复合材料厚度为3 mm时,反射损耗最大,达到-17.25 dB。
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