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首页> 外文期刊>International Journal of Technology >Physical and Microwave Absorption Characteristics of High Powered Ultrasonically Irradiated Crystalline BaFe9Mn1.5Ti1.5O19 Particles
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Physical and Microwave Absorption Characteristics of High Powered Ultrasonically Irradiated Crystalline BaFe9Mn1.5Ti1.5O19 Particles

机译:高功率超声辐照结晶Bafe9Mn1.5Ti1.5O19颗粒的物理和微波吸收特性

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Barium hexaferrite (BHF) with the chemical formula BaFe12O19 is a well-known permanent magnet and is still primarily used in various electrical devices. Because of its excellent magnetic properties, BHF is potentially one of the best candidates as a microwave absorber. For this investigation, the magnetic and microwave absorption characteristics of nanostructured BHF and BaFe9Mn1.5Ti1.5O19 were study. The high coercivity of BHF was substantially reduced through Mn-Ti partial substitution for Fe atoms with a minor reduction of its saturation magnetization. Nanostructured Mn-Ti–doped BHF was obtained through particle size reduction with high-powered ultrasonic irradiation. After 12 h of ultrasonic irradiation, the mean particle of BHF reduced to 61 nm from 380 nm, and the Mn-Ti–doped BHF reduced from 545 nm to 95 nm. The mean crystallite size of the two samples was 15 and 18 nm, respectively. Hence, the particles of both samples contained only a few crystallites. The characterization of reflection loss revealed that the highest absorption value achieved by the nanostructured BaFe9Mn1.5Ti1.5O19 sample was 19.75 dB at 13.6 GHz, and approximately 90% of the intensity of incoming electromagnetic waves was reduced by the material.
机译:具有化学式Bafe12O19的六偏发射石(BHF)是众所周知的永磁体,仍然主要用于各种电气装置。由于其优异的磁性特性,BHF可能是作为微波吸收剂的最佳候选者之一。对于该研究,纳米结构BHF和BAFE9MN1.5TI1.5019的磁性和微波吸收特性是研究。通过用于Fe原子的Mn-Ti部分取代基本上减少了BHF的高矫顽力,其饱和磁化强调略有降低。通过用高功率超声辐射进行粒度降低获得纳米结构MN-Ti掺杂的BHF。在超声波照射12小时后,BHF的平均颗粒从380nm降至61nm,并且Mn-Ti掺杂的BHF从545nm降至95nm。两个样品的平均微晶尺寸分别为15至18nm。因此,两个样品的颗粒仅含有几种微晶。反射损失的表征显示,纳米结构Bafe9MN1.5TI1.5019样品所达到的最高吸收值为19.75dB,在13.6GHz下,该材料的收缩电磁波的约90%的强度降低。

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