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CaF2-SiO2型硅傳感器輔助電極的制備及其定硅性能

Preparation and property of silicon sensor auxiliary electrodes based on the CaF2-SiO2 system

  • 摘要: 以CaF2+SiO2作為硅傳感器輔助電極材料,將其均勻涂覆于ZrO2(MgO)固體電解質表面,在高純Ar氣保護下,1400℃焙燒30min制備得到定硅傳感器.利用X射線衍射儀、掃描電子顯微鏡以及能量色散譜儀系統研究了制備條件對于焙燒后形成的輔助電極膜層組成、物相和微觀形貌的影響.膜層中不存在CaF2,而是以SiO2固體顆粒、CaO·MgO·2SiO2固溶體及ZrSiO4為主.另外,探討了輔助電極膜層中物相的變化對于膜層黏結性以及定硅性能的影響.在1450℃下對鐵液中硅含量進行測試,傳感器響應時間在10s左右,穩定時間在20s以上,而且傳感器的重復性也很理想.當鐵液中硅質量分數在0.5%~1.5%時,硅傳感器測量值與化學分析法分析值相吻合.

     

    Abstract: A silicon sensor auxiliary electrode was successfully synthesized by evenly coating CaF2+SiO2 powder on the surface of ZrO2(MgO) solid electrolyte and roasting at 1400 ℃ for 30 min in high purity Ar atmosphere. The effects of preparing conditions on the composition,crystal phase and morphology of the formed auxiliary electrode membrane after calcination were systematically investigated by X-ray diffraction,scanning electron microscopy and energy dispersive spectrometry. It is shown that SiO2 solid particles,CaO·MgO·2SiO2 solid solution and ZrSiO4 are the main components of the formed auxiliary electrode layer and no CaF2 exists in the layer. In addition,the influences of phase transformation on the film adhesive property and silicon sensor performance were also discussed. The as-prepared silicon sensor which is used to detect silicon content in molten iron at 1450 ℃ shows a better performance.When the silicon content ranges from 0.5% to 1.5% in liquid iron,the testing result based on this silicon sensor with a response time of 10 s and a steady time more than 20 s agrees well with the value based on the chemical analysis method.

     

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