首页> 外文期刊>Journal of materials science >Stress sensitivity of inductance in NiMgCuZn ferrites and development of a stress insensitive ferrite composition for microinductors
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Stress sensitivity of inductance in NiMgCuZn ferrites and development of a stress insensitive ferrite composition for microinductors

机译:NiMgCuZn铁氧体中电感的应力敏感性和用于微电感器的应力不敏感性铁氧体组合物的开发

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摘要

Three series of NiMgCuZn ferrites were prepared by conventional sintering process. The formation of single phase in these ferrites was confirmed by x-ray diffraction. Initial permeability measurements on these samples were carried out in the temperature range of 30-400℃. The effect of the external applied stress on the open magnetic circuit type coil with these ferrites was studied by applying uniaxial compressive stress parallel to magnetizing direction and the change in the inductance was measured. The variation of ratio of inductance (△L/L)% increases upto certain applied compressive stress and there after it decreases, showing different stress sensitivities for different compositions of ferrites studied in the present work. With a view to develop stress insensitive NiMgCuZn ferrite, a low stress sensitivity composition among all the ferrites studied was chosen and different amounts of SiO_2 were added to it and a series of ferrite compositions were prepared. The variation of ratio of inductance (△L/L)% with external applied compressive stress was examined. These results show that, 0.05 wt% SiO_2 added Ni_(0.3)Mg_(0.3)Cu_(0.1)Zn_(0.3)Fe_2O_4 ferrite exhibited stress insensi-tivity. It was noticed that addition of SiO_2 was found to be effective in reducing the stress sensitivity. This was confirmed from the elastic behaviour studies at room temperature on these ferrite samples. These studies were carried out to develop a ferrite composition for its use as core material for microinductor applications.
机译:采用常规烧结工艺制备了三组NiMgCuZn铁氧体。通过X射线衍射证实了在这些铁氧体中单相的形成。这些样品的初始渗透率测量是在30-400℃的温度范围内进行的。通过施加平行于磁化方向的单轴压缩应力,研究了外部施加应力对带有这些铁氧体的开式磁路型线圈的影响,并测量了电感的变化。在一定的外加压应力作用下,电感比(△L / L)%的变化增大,然后减小,对本工作中研究的不同铁素体成分表现出不同的应力敏感性。为了开发对应力不敏感的NiMgCuZn铁氧体,在所有研究的铁氧体中选择了低应力敏感性成分,并向其中添加了不同量的SiO_2,制备了一系列铁素体成分。研究了电感比(△L / L)%随外加压应力的变化。这些结果表明,添加了0.05wt%的SiO 2的Ni_(0.3)Mg_(0.3)Cu_(0.1)Zn_(0.3)Fe_2O_4铁氧体表现出应力敏感性。注意到发现添加SiO 2对于降低应力敏感性是有效的。这些铁氧体样品在室温下的弹性行为研究证实了这一点。进行这些研究以开发出铁氧体组合物,其用作微电感器应用的芯材。

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  • 来源
    《Journal of materials science》 |2008年第5期|399-405|共7页
  • 作者单位

    Ceramic Composite Materials Laboratory, Department of Physics, Sri Krishnadevaraya University, S.V. Puram, Anantapur 515 003, India;

    Ceramic Composite Materials Laboratory, Department of Physics, Sri Krishnadevaraya University, S.V. Puram, Anantapur 515 003, India;

    Ceramic Composite Materials Laboratory, Department of Physics, Sri Krishnadevaraya University, S.V. Puram, Anantapur 515 003, India;

    Ceramic Composite Materials Laboratory, Department of Physics, Sri Krishnadevaraya University, S.V. Puram, Anantapur 515 003, India;

    Microwave Laboratory, Department of Physics, Indian Institute of Technology, Chennai 600 036, India;

    Ceramic Composite Materials Laboratory, Department of Physics, Sri Krishnadevaraya University, S.V. Puram, Anantapur 515 003, India;

  • 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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