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首页> 外文期刊>Journal of Materials Science >Microscopic structural evolution in terms of porosity in high-Tc superconductors
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Microscopic structural evolution in terms of porosity in high-Tc superconductors

机译:高温超导体中孔隙率的微观结构演变

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The low critical current densities of high-Tc superconductors materials can be related to the microstructural imperfections such as pores and microcracks, which reduce the effective current carrying cross section. The present work examines the characterisation of the state of microstructure and its evolution during thermal treatment of Bi2Sr2Ca1Cu2O8. The dilatometric analysis was used to study the shrinkage mechanism during sintering. The microstructure of the sintered samples was characterised in terms of pores distribution and apparent density. Open porosity was measured by mercury porosimeter. In order to compare the results, ultrasonic characterisation such as the longitudinal and transverse wave velocities in the ceramic was carried out. From an ultrasonic point of view, these microstructural features act as inhomogeneities and the ultrasonic parameters will depend on the geometrical arrangement of microstructure (pores have an effect both on Young's modulus and attenuation).
机译:高Tc超导体材料的低临界电流密度可能与微结构缺陷(例如孔和微裂纹)有关,从而降低了有效载流截面。本工作检查了Bi2Sr2Ca1Cu2O8热处理过程中微观结构状态的表征及其演变。膨胀分析法用于研究烧结过程中的收缩机理。根据孔分布和表观密度表征了烧结样品的微观结构。用水银孔率计测量开孔率。为了比较结果,进行了超声波表征,例如陶瓷中的纵向和横向波速。从超声的角度来看,这些微结构特征起着不均匀性的作用,超声参数将取决于微结构的几何排列(孔对杨氏模量和衰减都有影响)。

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