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Improvement on corrosion resistance of sintered Nd-Fe-B with bilayer Al/Cr thin films (CROSBI ID 316988)

Prilog u časopisu | izvorni znanstveni rad | međunarodna recenzija

Shi, Zhen; Zeng, Hang; Zhang, Zejun; Zhang, Xiaowei; Ćurković, Lidija; Mandić, Vilko; Fu, Song; Wang, Wei; Liu, Jun; Zhao, Lizhong et al. Improvement on corrosion resistance of sintered Nd-Fe-B with bilayer Al/Cr thin films // Journal of magnetism and magnetic materials, 565 (2023), 170222, 9. doi: 10.1016/j.jmmm.2022.170222

Podaci o odgovornosti

Shi, Zhen; Zeng, Hang; Zhang, Zejun; Zhang, Xiaowei; Ćurković, Lidija; Mandić, Vilko; Fu, Song; Wang, Wei; Liu, Jun; Zhao, Lizhong; Zhang, Xuefeng

engleski

Improvement on corrosion resistance of sintered Nd-Fe-B with bilayer Al/Cr thin films

Corrosion induced irredeemable magnetic loss of Nd-Fe-B permanent magnets is of great concern in industrial applications. Surface coating treatment provides an effective approach for improving corrosion resistance, but the coating induced magnetic strength deterioration should also be taken into account, in addition to the pur- suing of anti-corrosion performance. Herein, bilayer thin Al/Cr films were prepared on Nd-Fe-B magnets, the corrosion behavior and mechanical properties of Nd-Fe-B were investigated. The results revealed that Al/Cr film with 510 nm thickness provided the best anti-corrosion performance in 3.5 wt% NaCl solution, offering a corrosion current density of 2.08 × 10-7 A/cm2 which was two orders of magnitude lower than that of bare Nd- Fe-B magnets. Bilayer structured Al/Cr film with Cr2O3 passivation layer can effectively prevent the penetration of the corrosive ions. In addition, deposition of Al/Cr film on Nd-Fe-B magnets gave no significant impact on the magnetic properties, furthermore, the hardness and Young’s modulus were both improved. The present work demonstrated that Al/Cr films have great potential to be utilized for providing effective corrosion and me- chanical protections for Nd-Fe-B magnets.

sintered Nd-Fe-B; Al/Cr films; corrosion resistance; hardness; magnetron sputtering

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Podaci o izdanju

565

2023.

170222

9

objavljeno

0304-8853

1873-4766

10.1016/j.jmmm.2022.170222

Povezanost rada

Interdisciplinarne tehničke znanosti, Kemija, Kemijsko inženjerstvo, Temeljne tehničke znanosti

Poveznice
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