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The influence of deposition parameters on production of soft Fe81Co13.5Si3.5C2 and Fe67Co18Si1B14 films

机译:沉积参数对软质Fe81Co13.5Si3.5C2和Fe67Co18Si1B14薄膜生产的影响

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摘要

Production parameters are important for the production of desirable type of magnetic materials. The feasibility of low coercivity amorphous films production using a novel rotating cryostat (RC) technique for sensor application was investigated. Fe81Co13.5Si3.5C2 and Fe67Co18Si1B14 amorphous films was vaporised using a resistively heated furnace on to a liquid nitrogen cooled polyimide Kapton(TM) substrate rotated at the speed of 1300 rpm. The Orthogonal design process was applied in order to systematically optimise the deposition process and parameters over the output functions for the production of low coercivity films. The results indicate that the process can be easily optimised at these level settings with the goal of having the low coercivity amorhous films. By comparing the output function differences with standard deviation for coercivity, the effects of all input parameters (furnace shape, furnace power, mass of material and the gap between substrate and source) on coercivity values of films were analysed. Furthermore, the amorphous nature of these films was confirmed by X-ray measurement.
机译:生产参数对于生产所需类型的磁性材料很重要。研究了使用新型旋转低温恒温器(RC)技术生产低矫顽力非晶膜的可行性。使用电阻加热炉将Fe81Co13.5Si3.5C2和Fe67Co18Si1B14无定形膜蒸发到以1300 rpm的速度旋转的液氮冷却的聚酰亚胺Kapton TM基板上。应用正交设计过程是为了在生产低矫顽力薄膜的输出函数上系统地优化沉积过程和参数。结果表明,以低矫顽力非晶薄膜为目标,可以在这些水平设置下轻松优化该过程。通过将输出函数差异与矫顽力的标准偏差进行比较,分析了所有输入参数(炉形,炉功率,材料质量以及基板与源之间的间隙)对薄膜矫顽力值的影响。此外,通过X射线测量证实了这些膜的非晶性质。

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