首页> 外文期刊>Solid State Communications >Fabrication, micro structure, mechanical and transporting properties of BaZrO_3-particles-dispersed YBa_2Cu_3O_(7-δ) mixed conduction composites
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Fabrication, micro structure, mechanical and transporting properties of BaZrO_3-particles-dispersed YBa_2Cu_3O_(7-δ) mixed conduction composites

机译:BaZrO_3-颗粒分散的YBa_2Cu_3O_(7-δ)混合导电复合材料的制备,微观结构,力学性能和传输性能

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摘要

A mixed conducting YBa_2Cu_3O_(7-δ) (YBC)-based composite was developed via addition of excess BaO and iso-molar ZrO_2 to form BaZrO_3 (BZ) dispersed particles in situ. XRD shows that as-synthesized composites are composed of binary phases of YBC and BZ. It is found that the dispersed BZ particles can effectively suppress the grain growth of basic phase YBC especially in the longitudinal c-axis direction, leading to change in grains from bar-like to cubic-like. Compared with the pure phase YBC, the composite with 10 mol% of BZ exhibits higher relative density and oxygen permeability and much improved mechanical strength. The electrical conductivity measurement shows that the electrical transporting properties of the composites are also affected due to the change in microstructure and densification.
机译:通过添加过量的BaO和等摩尔ZrO_2来开发混合导电YBa_2Cu_3O_(7-δ)(YBC)基复合材料,从而原位形成BaZrO_3(BZ)分散颗粒。 XRD表明合成后的复合物由YBC和BZ的二元相组成。发现分散的BZ颗粒可以有效地抑制碱性相YBC的晶粒生长,特别是在纵向c轴方向上,导致晶粒从棒状变为立方状。与纯相YBC相比,含10 mol%BZ的复合材料具有更高的相对密度和透氧性,并且机械强度大大提高。电导率测量表明,由于微观结构和致密化的变化,复合材料的电传输性能也受到影响。

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