首页> 外文期刊>Inorganic materials: applied research >Investigation of Microstructural Features, Phase Composition, and Magnetic Characteristics of YBCO-Based Composites and Additives of CuO Non-Superconducting Component Prepared in Low-Pressure Arc Discharge Plasma
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Investigation of Microstructural Features, Phase Composition, and Magnetic Characteristics of YBCO-Based Composites and Additives of CuO Non-Superconducting Component Prepared in Low-Pressure Arc Discharge Plasma

机译:在低压电弧放电等离子体中制备的基于YBCO基复合材料的微观结构特征,相组合物和磁特性和CuO非超导组分的添加剂

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摘要

A method making it possible to form HTS ceramics of non-superconducting coating consisting of self-organizing CuO crystals, whose sizes are less than the coherence length, i.e., within several tens of nanometers, has been developed. It has been shown that the combination of self-organizing structures in the form of whiskers and nanoparticles which arise as a result of combined sintering of YBa_(2)Cu_(3)O_((7– x ))powders and electric arc CuO nanopowders results in a significant increase in the current density and appearance of peak effect at high magnetic fields. Very high current density arises from the complex vortex pinning, where whisker defects provide high pinning energy and nanoparticles suppress flux creep. The morphology of such structures can be controlled by a simple change in the concentration of nanodisperse additives. It has been shown that 20 wt % of CuO additive is optimal.
机译:一种方法,其可以形成由自组织CuO晶体组成的非超导涂层的HTS陶瓷,其尺寸小于相干长度,即,在几十纳米内部开发。已经表明,由于YBA_(2)Cu_(3)O _((7- X))粉末和电弧CuO纳米粉末和电弧CuO纳米粉末和电弧CuO纳米粉末而产生的晶须和纳米颗粒形式的自组织结构的组合。导致在高磁场下电流密度和峰值效应外观的显着增加。非常高的电流密度由复杂的涡旋固定产生,其中晶须缺陷提供高钉扎能量和纳米颗粒抑制磁通蠕变。这种结构的形态可以通过纳米分散添加剂浓度的简单变化来控制。已经表明,20wt%的CuO添加剂是最佳的。

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