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    고투자율, 저보자력을 갖는 Ni - Zn Ferrite의 개발에 관한 연구

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    https://www.riss.kr/link?id=A76075628

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    다국어 초록 (Multilingual Abstract) kakao i 다국어 번역

    The effects of the various raw material composition and sintered temperature on the physical properties of Ni-Zn ferrite have been investigated.<br/>
    They turned out to be spinel structure by X-ray diffraction and the size of grain from microscope was from 6 ㎛ to 16 ㎛.<br/>
    As the sintering temperature was increased from 1030 ℃ to 1070 ℃, the initial permeability and magnetic induction has increased and the both of Q factor and coercive force has decreased.<br/>
    The coercive force and curie temperature were almost the same at each specimen. Their values were about 0.20 Oe and 220 ℃. The frequency of specimen will used in the range from 400 ㎑ to 20 ㎒. The basic composition of Ni_(0.14)Zn_(0.64)Cu_(0.22)Fe₂O₄ (specimen B) sintered at 1050 ℃ shows the best results at magnetic induction(Br & Bm).
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    The effects of the various raw material composition and sintered temperature on the physical properties of Ni-Zn ferrite have been investigated.<br/> They turned out to be spinel structure by X-ray diffraction and the size of grain from microsc...

    The effects of the various raw material composition and sintered temperature on the physical properties of Ni-Zn ferrite have been investigated.<br/>
    They turned out to be spinel structure by X-ray diffraction and the size of grain from microscope was from 6 ㎛ to 16 ㎛.<br/>
    As the sintering temperature was increased from 1030 ℃ to 1070 ℃, the initial permeability and magnetic induction has increased and the both of Q factor and coercive force has decreased.<br/>
    The coercive force and curie temperature were almost the same at each specimen. Their values were about 0.20 Oe and 220 ℃. The frequency of specimen will used in the range from 400 ㎑ to 20 ㎒. The basic composition of Ni_(0.14)Zn_(0.64)Cu_(0.22)Fe₂O₄ (specimen B) sintered at 1050 ℃ shows the best results at magnetic induction(Br & Bm).

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