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highly pure raw materials
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  高纯原料
     MnZn ferrite with low power loss and high Bs in high operating temperature has been prepared by choosing highly pure raw materials,using conventional ceramic process,adding nanosized SiO2 and ordinary CaCO3.High density at low ZnO2 content and Bs=450mT at 100℃ were obtained.
     选用高纯原料,采用传统氧化物陶瓷工艺,复合添加纳米SiO2、普通CaCO3,制备MnZn铁氧体材料,实现了低ZnO、高密度,高温(100℃)Bs达到了450mT;
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  相似匹配句对
     The Preparation of Highly Pure Prenol
     高纯度异戊烯醇的制备
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     Rapid Determination of Highly-pure Mercury
     高纯汞的快速测定
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     Pure nonsense
     纯粹吃饱了撑的
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     HIGHLY CHRISTMAS
     非常圣诞
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     F-pure Submodules
     F-纯子模
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MnZn ferrite with low power loss and high Bs in high operating temperature has been prepared by choosing highly pure raw materials,using conventional ceramic process,adding nanosized SiO2 and ordinary CaCO3.High density at low ZnO2 content and Bs=450mT at 100℃ were obtained.The Pcv-T curve becomes flat because of K1 →0 by adding TiO2 in twice,adjusting Mn3O4 content,controlling Fe2+.According to the solid-phase reaction mechanism of ferrite,firing parameters and matched atmosphere were determined for low...

MnZn ferrite with low power loss and high Bs in high operating temperature has been prepared by choosing highly pure raw materials,using conventional ceramic process,adding nanosized SiO2 and ordinary CaCO3.High density at low ZnO2 content and Bs=450mT at 100℃ were obtained.The Pcv-T curve becomes flat because of K1 →0 by adding TiO2 in twice,adjusting Mn3O4 content,controlling Fe2+.According to the solid-phase reaction mechanism of ferrite,firing parameters and matched atmosphere were determined for low power loss and hign Bs in high temperature ferrite TP4F material.

选用高纯原料,采用传统氧化物陶瓷工艺,复合添加纳米SiO2、普通CaCO3,制备MnZn铁氧体材料,实现了低ZnO、高密度,高温(100℃)Bs达到了450mT;通过二次添加TiO2杂质、调整Mn3O4含量控制Fe2+,使K1→0,获得了较为平坦的Pcv~T曲线。根据铁氧体各温区固相反应的机理研究出烧结工艺与混合气氛的合理匹配技术并应用于材料研制。成功研制出了高温高Bs、低功耗MnZn铁氧体TP4F材料。

 
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