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首页> 外文期刊>Journal of the European Ceramic Society >Anisotropy and thermal stability of hot-forged BICUTIVOX oxygen ion conducting ceramics
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Anisotropy and thermal stability of hot-forged BICUTIVOX oxygen ion conducting ceramics

机译:热锻BICUTIVOX氧离子传导陶瓷的各向异性和热稳定性

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摘要

The oxygen ion conductivity of ultra dense, hot forged Bi_4(Me_xV_(1-x))_2O_(11) (BIMEVOX) ceramics is reported for the first time. A novel approach to electrode preparation, including laser trenching, was developed to perform 4-probe impedance spectroscopy and determine conductivity of small bar-shaped samples with high accuracy and precision. Hot forged (HF) Bi_4(Cu_(0.05)Ti_(0.05)V_(0.90))_2O_(11) (BICUTTVOX) ceramic, with modest preferred orientation (11%), exhibits anisotropy by a factor of 2 in its conductivity. Brick layer model (BLM) analysis of complex impedance plots reveals that the relative contribution of grains and grain boundaries to the total resistance is direction dependent, in the low temperature γ' phase. The total ionic conductivity of BICUTIVOX, prepared either by hot-forging or conventional sintering, appears to be stable with thermal aging and cycling. Anisotropy in the thermal expansion of polycrystalline BIMEVOX ceramics is also reported.
机译:首次报道了超致密热锻Bi_4(Me_xV_(1-x))_ 2O_(11)(BIMEVOX)陶瓷的氧离子电导率。开发了一种新的电极制备方法,包括激光开槽,以执行4探针阻抗谱并以高精度和高精度确定小条形样品的电导率。热锻(HF)Bi_4(Cu_(0.05)Ti_(0.05)V_(0.90))_ 2O_(11)(BICUTTVOX)陶瓷具有适度的首选取向(11%),在其电导率中表现出各向异性为2倍。复杂阻抗图的砖层模型(BLM)分析表明,在低温γ'相中,晶粒和晶界对总电阻的相对贡献与方向有关。通过热锻或常规烧结制备的BICUTIVOX的总离子电导率在热老化和循环过程中似乎是稳定的。还报道了多晶BIMEVOX陶瓷的热膨胀各向异性。

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