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Low Temperature Sintering Characteristics of Hot Press Sintered SrFe12O19 Ferrites for Use in Microwave LTCC Circulators
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Sichuan Province Key Laboratory of Information Materials and Devices Application,Chengdu University of Information Technology,Sichuan Province Key Laboratory of Information Materials and Devices Application,Chengdu University of Information Technology,Sichuan Province Key Laboratory of Information Materials and Devices Application,Chengdu University of Information Technology,Sichuan Province Key Laboratory of Information Materials and Devices Application,Chengdu University of Information Technology,Sichuan Province Key Laboratory of Information Materials and Devices Application,Chengdu University of Information Technology

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    Abstract:

    The SrFe12O19 ferrites with different amount of Bi2O3 additive were prepared by hot press sintering process at a low fired temperature of 870 °C compatible to the LTCC (low temperature co-fired ceramics) technology, and their low temperature sintering characteristics were investigated, including the crystal phase composition, sintering density, porosity, and magnetic properties. The results show that the addition of Bi2O3 promotes the formation of SrFe12O19 phase structure and increases the sintering compactness and magnetic properties for the ferrites fabricated at 870 °C. The ferrites with Bi2O3 content from 2 to 4 wt % exhibit a compact microstructure with sintering density higher than 4.65 g?cm-3 and porosity lower than 10%, which contributes to the enhanced saturation magnetization Ms and intrinsic coercivity Hci above 252.4 kA?m-1 and 312.9 kA?m-1, respectively. Moreover, the potentiality of the SrFe12O19 ferrites for use in microwave LTCC circulators is also discussed based on their low temperature sintering characteristics.

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[Peng Long, Li Lezhong, Wang Rui, Tu Xiaoqiang, Hu Yun. Low Temperature Sintering Characteristics of Hot Press Sintered SrFe12O19 Ferrites for Use in Microwave LTCC Circulators[J]. Rare Metal Materials and Engineering,2017,46(4):951~954.]
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History
  • Received:December 21,2014
  • Revised:January 31,2015
  • Adopted:March 25,2015
  • Online: August 04,2017
  • Published: