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J Electr Electron Mater : Journal of Electrical and Electronic Materials

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Li2CO3와 B2O3를 첨가한 Bi1/2Na1/2TiO3-SrTiO3 무연 압전 세라믹스의 저온 소성 연구

이상섭, 박영석, 즈엉짱안, 무클리샤아이샤데비타, 한형수, 이재신

Low Temperature Sintering of Lead-Free Bi1/2Na1/2TiO3-SrTiO3 Piezoceramics by Li2CO3-B2O3 Addition

Sang Sub Lee, Young-seok Park, Trang An Duong, Mukhlishah Aisyah Devita, Hyoung-su Han, Jae-shin Lee
J Electr Electron Mater 2022;35(1):24-31.
Published online: January 1, 2022
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This study investigated microstructures, crystal structures, polarization, dielectric and electromechanical properties of 0.76Bi1/2Na1/2TiO3-0.24SrTiO3 (BNT-24ST)-based piezoceramcs by adding Li2CO3 and B2O3 (LB) as sintering aids for low-temperature sintering. All samples were successfully synthesized using conventional solid-state reaction method and sintered at 950, 1,000, 1,050, 1,100 and 1,175℃ for 2 hours. Without LB, specimens required sintering temperatures over 1,175℃ for sufficient densification, while the addition of 0.10-mol LB decreased the sintering temperatures down to 950℃. The average grain size and dielectric properties of BNT-24ST-10LB ceramics were enhanced with increasing sintering temperature. We found that the low-temperature sintered BNT-24ST piezoceramics by adding LB showed the d33*value of 402 pm/V at 4 kV/mm after sintering at 1,050℃, which was better than that of high-temperature fired specimens sintered at 1,175℃ without LB (242 pm/V). We believe that the results of this study promise a candidate for low-cost multilayer ceramic actuator applications.

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Low Temperature Sintering of Lead-Free Bi1/2Na1/2TiO3-SrTiO3 Piezoceramics by Li2CO3-B2O3 Addition
J Electr Electron Mater. 2022;35(1):24-31.   Published online January 1, 2022
Download Citation

Download a citation file in RIS format that can be imported by all major citation management software, including EndNote, ProCite, RefWorks, and Reference Manager.

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Low Temperature Sintering of Lead-Free Bi1/2Na1/2TiO3-SrTiO3 Piezoceramics by Li2CO3-B2O3 Addition
J Electr Electron Mater. 2022;35(1):24-31.   Published online January 1, 2022
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