合成聚合物基环氧FeNdB-Cu复合材料,用于雷达吸收涂层

Sri Mulyati Latifah, D. Prajitno, M. Syukron
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摘要

合成聚合物基环氧FeNdB-Cu复合材料,用于雷达吸收涂层。雷达(无线电探测和测距)是一种利用电磁原理探测、测量和绘制目标坐标的技术。因此,为了应对这些威胁,隐身技术应运而生,其中之一就是雷达吸收剂涂层方法(RAC)。本研究旨在确定在Fe-Nd-B雷达吸收材料中添加Cu对聚合物基复合材料(PMC)的影响。采用粉末冶金方法,采用行星球磨机进行磨粉和机械合金化工艺,转速为1000转/分,压实负荷为25 kg/mm2,烧结时间为60分钟,温度为1000℃,烧结时间为3小时。涂覆过程采用常规方法进行,最多涂覆1层,当Cu添加量为1%wt时,树脂和磁粉的变化量分别为(95:5)、(90:10)和(85:5)。基于表征,在组成(85:15)时获得了最低的RL,在10.36 GHz频率下为32.08 dB,掺杂后的磁性表征矫顽力为0.096 kOe,饱和度为5.22 kG。磁粉添加后,PMC硬度升高,邵氏硬度为29.2;磁粉添加至0.5 MPa时,PMC附着力降低。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
SYNTHESIS POLYMER MATRIX COMPOSITE EPOXY FeNdB-Cu FOR RADAR ABSORBER COATING APPLICATION
SYNTHESIS POLYMER MATRIX COMPOSITE EPOXY FeNdB-Cu FOR RADAR ABSORBER COATING APPLICATION. Radar (Radio Detection and Ranging) is a technology using the principle of electromagnetic for detecting, measuring, and mapping target coordinates. So stealth technology was created to tackle these threats, one of which is the radar absorber coating method (RAC). This research aims to identify the effect addition of Cu to Fe-Nd-B radar absorber material as polymer matrix composite (PMC). The processes were done by powder metallurgy method, started by milling and mechanical alloying process using planetary ball mill for 60 minutes 1000 rpm, 25 kg/mm2 of compaction load, and sintering at the temperature 1000 oC for 3 hours. The coating process was carried out conventional method as much as 1 layer, the variation of resin and magnetic powder are (95:5), (90:10), and (85:5) with the addition of Cu 1%wt. Based on the characterization the lowest RL was obtained at the composition (85:15) with the value 32.08 dB at the frequency of 10.36 GHz, magnetic characterization after doping addition coercivity 0.096 kOe and Saturation 5.22 kG. PMC hardness was raising following to addition of magnetic powder with the 29.2 HD Shore D, and adhesivity value was decreased following to addition of magnetic powder to 0.5 MPa.
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