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High‐Power Effects in Flame‐Sprayed and Hot‐Pressed Nickel‐Aluminum‐Gallium Spinels

机译:火焰喷涂和热压镍铝镓尖晶石的高功率效应

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摘要

Significant improvements on high‐power handling capability of ferrites in the nickel‐aluminum‐gallium spinel system (NAGS) have been obtained by hot pressing these materials. The materials investigated were NiAlxGayFe2-(x+y)O4, where x+y was 0.975. The x/y ratio was varied from 2.24:1 to 2.95:1. Cavity measurements were made on these samples at S band to approximately 2 MW peak which is equivalent to approximately 35 rf Oe. Nonlinearity was determined by observing the decrease in the peak of susceptibility χ″ at an applied field required to maximize χ″. Results are compared to samples prepared by conventional ceramic techniques in this system and in the magnesium‐manganese‐iron system. Conventionally prepared and flame‐sprayed materials in the nickel‐aluminum‐gallium spinel system showed an improvement of approximately ten times in power handling capability over a ferrite in the magnesium manganese system. Samples of nickel‐aluminum‐gallium spinels that were hot pressed showed a hundred times improvement in the power handling capability compared to the magnesium manganese ferrite. A description of the techniques and procedures required for flame spraying and hot pressing materials in this system is given.
机译:通过热压这些材料,镍铝镓尖晶石系统(NAGS)中的铁素体大功率处理能力得到了显着改善。研究的材料是NiAlxGayFe2-(x + y)O4,其中x + y为0.975。 x / y比在2.24:1至2.95:1之间变化。在这些样品的S波段至大约2 MW峰值处进行腔测量,这相当于大约35 rf Oe。非线性是通过观察在最大化χ''所需的施加磁场下磁化率χ''峰值的降低来确定的。将结果与在该系统和镁锰铁系统中通过常规陶瓷技术制备的样品进行比较。镍铝镓尖晶石系统中常规制备和火焰喷涂的材料显示出的功率处理能力比镁锰系统中的铁氧体提高了约十倍。与镁锰铁氧体相比,热压的镍铝镓尖晶石样品的功率处理能力提高了一百倍。给出了该系统中火焰喷涂和热压材料所需的技术和程序的说明。

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    《Journal of Applied Physics》 |1964年第3期|共3页
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  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
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  • 正文语种 eng
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