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Evolution of intergranular microstructure and critical current properties of polycrystalline Co-doped BaFe(2)As(2)through high-energy milling

机译:晶间微观结构的演化和多晶共掺杂烘焙(2)作为(2)通过高能铣削的临界性能

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摘要

The effect of microstructure control on intergranular critical current density (J(c)) was evaluated using Co-doped Ba122 as a model material. Polycrystalline bulk samples were prepared by sintering mechanically alloyed powder prepared by planetary ball milling. Between low and intermediate milling energy, refinement of grain size, improvement in the uniformity of structure and composition, and a threefold improvement inJ(c)were observed with increasing milling energy. These indicate that the high-energy milling is an effective method for the synthesis of single-phase Ba122 samples and improvement ofJ(c)by controlling the microstructure. At very high milling energy, the grain size of Ba122 reached as small as 30 nm, abnormal aggregates were formed, and the magneticT(c)andJ(c)decreased. Our results suggest that the suppression of the formation of large aggregates and control of grain boundary properties are necessary to achieve superior critical current properties.
机译:使用共掺杂Ba122作为模型材料评价微观结构控制对晶间临界电流密度(J(c))的影响。 通过通过行星球铣削制备的机械合金粉末制备多晶体散装样品。 在低和中间研磨能量之间,通过增加铣削能量,观察到晶粒尺寸的细化,结构和组成均匀性,以及三倍改善inj(c)。 这些表明,高能量铣削是通过控制微观结构来合成单相Ba122样品和改善的单相Ba122样品和改善的方法。 在非常高的研磨能量下,形成小至30nm的Ba122的粒度,形成异常的聚集体,磁阻(c)和j(c)降低。 我们的研究结果表明,抑制大聚集体和晶界性能的控制是必要的,以实现优异的临界电流特性。

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