Co-P薄膜的制备及其磁性能

Haicheng Wang, Zhongmei Du, Lijin Wang, Guanghua Yu, Fengwu Zhu
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引用次数: 3

摘要

采用化学沉积法制备了Co-P磁性薄膜。实验结果表明,薄膜厚度对矫顽力有显著影响。当薄膜厚度从300 nm到5 μm变化时,矫顽力从45.36 kA/m急剧下降到22.28 kA/m。随着薄膜厚度的增加,矫顽力变化缓慢。当膜的厚度为300 nm时,沉积膜的矫顽力高达45.36 kA/m,剩余磁化强度高达800 kA/m。将Co-P膜沉积在编码器磁鼓表面,直径为40 mm,记录到512个磁极,即磁化节距为0.245 mm。测试结果表明,输出信号良好,波形稳定,脉冲占比完整。与γ-Fe2O3涂层相比,Co-P薄膜更适合作为高分辨率磁旋转编码器的磁记录介质。
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Preparation and magnetic properties of Co-P thin films

Magnetic Co-P thin films were prepared by electroless deposition. The experiment results show that the film thickness has a significant influence on the coercivity. While the film thickness varied from 300 nm to 5 μm, the coercivity dropped sharply from 45.36 to 22.28 kA/m. As the film thickness increased further, the coercivity varied slowly. When the thickness of the film was 300 nm, the deposited film could realize the coercivity as high as 45.36 kA/m, and the remanent magnetization as high as 800 kA/m. The Co-P films were deposited on the surface of magnetic drums of encoders, whose diameter was 40 mm, and then 512 magnetic poles were recorded, meaning that the magnetizing pitch was 0.245 mm. The testing results indicate that the output signals are perfect, the output waveforms are steady and the pulses account is integral. Compared with the γ-Fe2O3 coating, the Co-P thin film is suitable to be the magnetic recording media for the high resolution magnetic rotary encoder.

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