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Microwave absorption properties of strontium ferrite and carbon black based nanocomposites for stealth applications

机译:锶铁氧体和炭黑基纳米复合材料的隐形吸收性能

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In this paper, strontium ferrite epoxy (SrF) nanocomposite and carbon black (CB) loaded strontium ferrite epoxy (CBSrF) nanocomposite are synthesized and tested for their possible usage as efficient microwave absorbers in the stealth technology. To this end, the reflection coefficients of these nanocomposites are measured in the X-band in order to retrieve their electromagnetic properties and reflection loss in the designated frequency bands. It is observed that the permittivity values of the CBSrF nanocomposite samples are substantially enhanced as compared to those of the SrF nanocomposite, which is primarily due to the inclusion of carbon black powder in the resultant nanocomposite sample. The magnetic properties of the CBSrF nanocomposite on the other hand are found to be inferior as compared with the SrF nanocomposite due to presence of carbon black. The maximum reflection loss achieved for the SrF nanocomposite is found to be 25.19 dB at 13.32 GHz for 10.5 mm thickness, while for CBSrF nanocomposite the maximum achieved reflection loss is 31.15 dB at 10.32 GHz for 9.5 mm thickness. Hence, the carbon black loaded strontium ferrite epoxy nanocomposite shows higher absorption performance than the SrF nanocomposite.
机译:在本文中,合成了锶铁氧体环氧树脂(SrF)纳米复合材料和负载炭黑(CB)的锶铁氧体环氧树脂(CBSrF)纳米复合材料,并测试了它们在隐身技术中作为高效微波吸收剂的可能用途。为此,在X-带中测量这些纳米复合材料的反射系数,以便检索它们在指定频带中的电磁特性和反射损耗。观察到,与SrF纳米复合材料相比,CBSrF纳米复合材料样品的介电常数值显着提高,这主要是由于在所得纳米复合材料样品中包含炭黑粉末。另一方面,由于炭黑的存在,发现CBSrF纳米复合材料的磁性能比SrF纳米复合材料的磁性能差。发现对于10.5 mm厚度的SrF纳米复合材料,在13.32 GHz处实现的最大反射损耗为25.19 dB,而对于CBSrF纳米复合材料,对于9.5 mm的厚度,在10.32 GHz处实现的最大反射损耗为31.15 dB。因此,负载炭黑的锶铁氧体环氧纳米复合材料显示出比SrF纳米复合材料更高的吸收性能。

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