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摻雜氧化物對ZrO2相結構穩定性及燒結性能的影響

Effect of doping oxides on the structure stability and sintering properties of ZrO2 phase

  • 摘要: 采用共沉淀-凝膠方法,通過低溫煅燒和中溫燒結,分別制備了Y2O3、Al2O3摻雜的ZrO2粉體和陶瓷;利用X射線衍射分析、掃描電鏡和透射電鏡等手段,對摻雜不同氧化物ZrO2相結構的穩定性及燒結性能進行了研究.結果表明:在ZrO2中摻雜摩爾分數5%的Y2O3或者Al2O3,870℃焙燒15min的粉體前者為立方相,后者為四方相;它們的粉體成型后經1400℃燒結4h,前者在室溫下仍能保持立方相,后者卻得到的是單斜相;在焙燒粉末中,Al3+固溶到ZrO2的晶格中,對ZrO2四方相晶格起到穩定作用,而在其陶瓷中,Al3+從ZrO2的晶格中擴散到晶界,對ZrO2不起穩定作用,只起促進燒結和細化晶粒的作用.

     

    Abstract: ZrO2 powders and ceramics doped with Y2O3 and Al2O3 respectively were prepared by a copreeipitation-gel method using low temperature calcining and medium temperature sintering. The structure stability and sintering properties of ZrO2 phase doped with the different oxides were studied by X-ray diffraction, scanning electron microscopy and transmission electron microscopy. The results show that calcined at 870℃ for 15 min, ZrO2 powders doped with Y2O3 of 5% in molar fraction have a cubic phase, but those doped with Al2O3 of 5% in molar fraction have a tetragonal phase. After sintering the formed powders at 1 400℃ for 4 h, the former remains the cubic phase at room temperature, but the latter has a monoclinic phase. In the calcining powders, Al3+ dissolves into the lattice of ZrO2 and stabilizes the ZrO2 tetragonal lattice; whereas in their ceramic, Al3+ diffuses from the ZrO2 lattice to the grain boundaries, so it can not afford a stabilizing effect on the ZrO2, only plays a role in promoting the sintering and thinning grain.

     

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