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Melt-Spun Fe–Co–B–Cu Alloys With High Magnetic Flux Density for Relax-Type Magnetometers

机译:高磁通密度的熔纺Fe–Co–B–Cu合金,用于松弛型磁力计

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摘要

Melt-spun Fe$_{63}$ Co$_{21}$ B$_{15}$ Cu ribbons were annealed at temperatures between 573 K and 623 K in longitudinal and transverse-magnetic field in order to prepare a representative set of relaxed amorphous and partially crystallized samples having uniaxial anisotropy. The optimal magnetic characteristics for the relaxation sensor were obtained after longitudinal field annealing for 1 h at 593 K, which corresponds to early crystallization stage in the heat treated amorphous material. The magnetic flux density after such heat treatment reaches 1.83 T and the value of coercive field is 4.2 A/m. The corresponding relaxation characteristics obtained by using ferroprobe designed as a flat, double-layer coil tightly surrounding the ribbon core with the dimensions of 60 $,times,$3 mm show good prospects for the potential use of these alloys as core materials in the relax-type fluxgate magnetometers mainly due to the extending of their linear measuring range as compared to the currently used commercial materials while keeping the similar sensitivity.
机译:熔融纺丝的Fe $ _ {63} $ Co $ _ {21} $ B $ _ {15} $铜带在纵向和横向磁场中于573 K至623 K之间的温度退火,以制备代表性的铜带具有单轴各向异性的松弛非晶态和部分结晶的样品的制备。在593 K上进行了1 h的纵向磁场退火后,获得了弛豫传感器的最佳磁特性,这对应于热处理后的非晶态材料的早期结晶阶段。热处理后的磁通密度达到1.83T,矫顽场的值为4.2A / m。通过将铁探针设计为紧密围绕带状磁芯的扁平双层线圈而获得的相应弛豫特性,带状磁芯的尺寸为60乘3毫米,显示出将这些合金用作弛豫中的磁芯材料的良好前景-型磁通门磁力计的主要原因是与目前使用的商用材料相比,其线性测量范围有所扩大,同时保持了相似的灵敏度。

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