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首页> 外文期刊>Composites Science and Technology >Electromagnetic properties of multiphase composites containing barium strontium titanate and nickel zinc ferrite inclusions from 1-4 GHz
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Electromagnetic properties of multiphase composites containing barium strontium titanate and nickel zinc ferrite inclusions from 1-4 GHz

机译:含有钛酸钡的多相复合材料的电磁特性,1-4 GHz含镍锌铁素体夹杂物

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摘要

The growing importance of nonlinear transmission lines for pulsed power and high power microwave devices in defense and industrial applications motivates material development for system optimization. This study investigates composites manufactured with various volume loadings of both nonlinear magnetic (nickel zinc ferrite) and dielectric (barium strontium titanate) inclusions in a silicone matrix. Increasing the volume fraction of barium strontium titanate (BST) and nickel zinc ferrite (NZF) increased the permittivity with a stronger dependence on BST volume fraction. Increasing NZF volume fraction increased the magnetic permeability, while changing BST volume fraction had no effect. The DC dielectric breakdown voltage decreased exponentially with increased NZF volume fraction. Adding as little as 5% BST to an NZF composite more than doubled the breakdown threshold compared to a composite containing NZF alone. For example, adding 10% BST to a 15% NZF composite increased the breakdown strength by over 800%. The combination of tunability of permittivity and permeability by managing BST and NZF volume fractions with the increased dielectric breakdown strength by introducing BST make this a promising approach for designing high power nonlinear transmission lines with input pulses of hundreds of kilovolts.
机译:防御和工业应用中脉冲功率和高功率微波器件的非线性传输线的不断增长的重要性激励了系统优化的材料开发。该研究研究了在硅氧烷基质中用非线性磁性(镍锌铁氧体)和介电(钛酸锶钡)夹杂物的各种体积载荷制造的复合材料。增加钛酸钡(BST)和镍锌铁素体(NZF)的体积分数增加了渗透性,并依赖于BST体积分数。增加NZF体积分数增加磁导率,同时改变BST体积馏分没有效果。 DC介电击穿电压随着NZF体积分数的增加而指数逐渐降低。与单独的单独的NZF的复合材料相比,增加了多达5%BST到NZF复合材料的击穿阈值增加了多倍。例如,将10%BST加入15%NZF复合材料将击穿强度增加超过800%。通过引入BST通过管理BST和NZF体积分数通过引入BST的增加和NZF体积分数来组合介电常数和渗透率的组合使得这是一种有望的方法,用于设计具有数百千伏的输入脉冲的高功率非线性传输线。

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