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Manganese zinc ferrite material with ultrahigh saturation magnetic flux density and preparation method thereof
The invention belongs to the technical field of magnetic materials, and particularly relates to a manganese zinc ferrite material with ultrahigh saturation magnetic flux density and a preparation method thereof. By controlling the addition range of the main components and the auxiliary components and on the premise of adjusting the pre-sintering and sintering processes, the ferrite material with excellent performance is obtained, and the ferrite material has ultrahigh Bs and more than 500mT at the high temperature of 100 DEG C, can effectively reduce the volume of electronic components, and is beneficial to miniaturization of instruments and equipment.
本发明属于磁性材料技术领域,具体涉及一种具有超高饱和磁通密度的锰锌铁氧体材料及其制备方法。本发明通过控制主成分和辅成分的添加范围,在调整预烧和烧结工艺的前提下,得到了一种性能极好的铁氧体材料,其在100℃高温下具有超高Bs,超过500mT,可以有效减小电子元件的体积,有利于仪器设备小型化。
Manganese zinc ferrite material with ultrahigh saturation magnetic flux density and preparation method thereof
The invention belongs to the technical field of magnetic materials, and particularly relates to a manganese zinc ferrite material with ultrahigh saturation magnetic flux density and a preparation method thereof. By controlling the addition range of the main components and the auxiliary components and on the premise of adjusting the pre-sintering and sintering processes, the ferrite material with excellent performance is obtained, and the ferrite material has ultrahigh Bs and more than 500mT at the high temperature of 100 DEG C, can effectively reduce the volume of electronic components, and is beneficial to miniaturization of instruments and equipment.
本发明属于磁性材料技术领域,具体涉及一种具有超高饱和磁通密度的锰锌铁氧体材料及其制备方法。本发明通过控制主成分和辅成分的添加范围,在调整预烧和烧结工艺的前提下,得到了一种性能极好的铁氧体材料,其在100℃高温下具有超高Bs,超过500mT,可以有效减小电子元件的体积,有利于仪器设备小型化。
Manganese zinc ferrite material with ultrahigh saturation magnetic flux density and preparation method thereof
一种具有超高饱和磁通密度的锰锌铁氧体材料及其制备方法
ZHANG HAILANG (author) / GU XIEFENG (author) / XU JIE (author) / PENG CHUNLAN (author) / LI BIN (author) / HUANG ZIQIAN (author) / ZHANG ZHENGWEI (author)
2023-10-20
Patent
Electronic Resource
Chinese
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