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Co-based magnetic microwire and field-tunable multifunctional macro-composites

机译:钴基磁性微丝和现场可调多功能宏复合材料

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摘要

Structural, magnetic and mechanical properties of Co-based magnetic microwires and their composites had been investigated. It was found that annealing amorphous microwires at 600 degrees C caused a drastic variation in the amorphous structure due to crystallization and consequently degraded the soft magnetic properties of the microwires. The tensile tests on the single microwires of different size with and without glass-coated layer revealed a coherent correlation between the mechanical properties and the wire geometry. When compared with single magnetic microwires, the magnetic and magneto-impedance properties of composites were much improved. The strong field dependence of the effective permittivity and transmission/reflection parameters in the Gigahertz range of the composites containing short wires or arrays of continuous wires indicated that these new composites are promising candidate materials for a variety of self-sensing applications. (C) 2009 Elsevier B.V. All rights reserved.
机译:研究了钴基磁性微丝及其复合材料的结构,磁性和机械性能。发现在600℃下对非晶态微丝进行退火会由于结晶而导致非晶态结构的急剧变化,并因此降低了微线的软磁性能。在具有和不具有玻璃涂层的不同尺寸的单根微丝上进行的拉伸试验表明,机械性能和金属丝几何形状之间具有一致的相关性。与单条磁性微丝相比,复合材料的磁阻抗和磁阻抗特性得到了很大改善。在包含短导线或连续导线阵列的复合材料的千兆赫范围内,有效介电常数和透射/反射参数的强场相关性表明,这些新的复合材料是各种自感测应用的有前途的候选材料。 (C)2009 Elsevier B.V.保留所有权利。

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