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Magnetic and microwave absorbing properties of Al and Zn substituted barium hexaferrites in X-band region

机译:X波段区域中Al和Zn取代的六价钡铁氧体的磁吸收和微波吸收特性

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In this study, the Al and Zn substituted barium hexaferites with x = 0, 0.5, and 1 were prepared using wet mechanical alloying along with calcination at 1200°C and sintering at 1250°C. X-ray diffraction (XRD) characterization shows that single phase of M-type barium hexaferrites are formed in substitution amount x 0 and 0.5, and there are W-type barium hexaferrites peaks detected at x = 1. The addition of AlZn decrease the coercivity from 1.721 to 0.986 kOe at x = 0 and 1 respectively. Increasing the composition from x = 0.5 to x = 1 also reduce the magnetization saturation significantly. The microwave absorption of the prepared AlZn substituted barium hexaferrites with thickness 2 mm in X-band region is still relatively low, the maximum return loss is achieved when substitution amount x is 1 with value of 12.2 dB at 10.5 GHz. Increasing the substitution amount x of AlZn from 0 to 1 only slightly increases the value of return loss and shifts to lower frequencies.
机译:在这项研究中,使用湿式机械合金化以及在1200°C下煅烧和在1250°C下烧结制备x = 0、0.5和1的Al和Zn取代的六价钡钡铁氧体。 X射线衍射(XRD)表征表明,在取代量x 0和0.5处形成了M型六方铁氧体单相,并且在x = 1处检测到W型六方铁氧体峰.AlZn的添加会降低矫顽力x = 0和1时分别从1.721到0.986 kOe。将组成从x = 0.5增加到x = 1也会显着降低磁化饱和度。所制得的在X波段厚度为2 mm的AlZn取代的六价钡铁氧体的微波吸收仍然相对较低,当在10.5 GHz处的取代量x为1且值为12.2 dB时,可获得最大的回波损耗。 AlZn的取代量x从0增加到1只会稍微增加回波损耗的值并转移到较低的频率。

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