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Microwave Absorbing Properties of W-Type Hexaferrite Ba(MnZn)xCo2(1-x)Fe16O27

机译:W型六角铁氧体Ba(MnZn)xCo2(1-x)Fe16O27的微波吸收特性

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MnZn-doped W-type barium cobalt ferrite powder composites of Ba(MnZn)xCo2(1-x)Fe16O27 (x = 0.1, 0.2, 0.3, 0.4, and 0.5) were prepared in a sol-gel process. The microwave absorbing properties of the composites in the range of 2 - 18 GHz and their electromagnetic loss mechanisms were studied. The results demonstrated that the synthesized Ba(MnZn)xCo2(1-x)Fe16O27 samples possess a W-type phase of the crystal structure with a hexagonal flaky shape in micro-morphology, and the samples exhibited a soft magnetic trait that enables improving their microwave absorption properties through suitable MnZn doping. For Ba(MnZn)0.4Co1.2Fe16O27 with a thickness of 2.8 mm, the reflection loss peak was -40.7 dB at a frequency of 7.3 GHz, with a bandwidth of 6.6 GHz at a loss of less than -10 dB. The microwave absorption primarily resulted from magnetic losses caused by magnetization relaxation, domain wall resonance, and natural resonance.
机译:通过溶胶-凝胶法制备了Ba(MnZn)xCo2(1-x)Fe16O27(x = 0.1、0.2、0.3、0.4和0.5)的MnZn掺杂W型钡钴铁氧体粉末复合材料。研究了复合材料在2-18 GHz范围内的微波吸收特性及其电磁损耗机理。结果表明,合成的Ba(MnZn)xCo2(1-x)Fe16O27样品在微观形貌上具有六方片状晶体结构的W型相,并且样品具有软磁特性,可以改善其磁特性。通过适当的MnZn掺杂获得微波吸收性能。对于厚度为2.8 mm的Ba(MnZn)0.4Co1.2Fe16O27,在7.3 GHz频率处反射损耗峰值为-40.7 dB,带宽为6.6 GHz且损耗小于-10 dB。微波吸收主要是由磁化弛豫,畴壁共振和自然共振引起的磁损耗引起的。

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