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Microwave ferrite material as well as preparation method and application thereof
The invention discloses a microwave ferrite material as well as a preparation method and application thereof. The microwave ferrite material is prepared from the following raw material components in percentage by mass: 99.6 to 99.95 percent of main component Li < 0.43 > Zn < 0.27 > Ti < 0.13 > Fe < 2.167 > Bi < 0.003 > O < 4 >, 0.0375 to 0.3 percent of ZBS glass additive and 0.0125 to 0.1 percent of SBA glass additive. The LiZnTi microwave ferrite material prepared by the invention can be sintered and prepared at a low temperature (-900 DEG C), also has good magnetic performance and a microscopic compact structure, and can be used as a material for preparing an LTCC phase shifter.
本发明公开了一种微波铁氧体材料及其制备方法和应用,由以下质量百分含量的原料组分制成:99.6~99.95%的Li0.43Zn0.27Ti0.13Fe2.167Bi0.003O4主成分,0.0375~0.3%的ZBS玻璃添加剂及0.0125~0.1%SBA玻璃添加剂。本发明所制备的LiZnTi微波铁氧体材料可在低温下(~900℃)烧结和制备,同时还具有良好的磁性能和微观致密结构,可用作制备LTCC移相器的材料。
Microwave ferrite material as well as preparation method and application thereof
The invention discloses a microwave ferrite material as well as a preparation method and application thereof. The microwave ferrite material is prepared from the following raw material components in percentage by mass: 99.6 to 99.95 percent of main component Li < 0.43 > Zn < 0.27 > Ti < 0.13 > Fe < 2.167 > Bi < 0.003 > O < 4 >, 0.0375 to 0.3 percent of ZBS glass additive and 0.0125 to 0.1 percent of SBA glass additive. The LiZnTi microwave ferrite material prepared by the invention can be sintered and prepared at a low temperature (-900 DEG C), also has good magnetic performance and a microscopic compact structure, and can be used as a material for preparing an LTCC phase shifter.
本发明公开了一种微波铁氧体材料及其制备方法和应用,由以下质量百分含量的原料组分制成:99.6~99.95%的Li0.43Zn0.27Ti0.13Fe2.167Bi0.003O4主成分,0.0375~0.3%的ZBS玻璃添加剂及0.0125~0.1%SBA玻璃添加剂。本发明所制备的LiZnTi微波铁氧体材料可在低温下(~900℃)烧结和制备,同时还具有良好的磁性能和微观致密结构,可用作制备LTCC移相器的材料。
Microwave ferrite material as well as preparation method and application thereof
一种微波铁氧体材料及其制备方法和应用
XU FANG (Autor:in) / YANG HONGWEI (Autor:in) / DAI BO (Autor:in) / REN YONG (Autor:in) / GUO MEIJUN (Autor:in) / SUN-BAI CHENGWEN (Autor:in) / LIU GUIXIANG (Autor:in)
05.07.2022
Patent
Elektronische Ressource
Chinesisch
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