Cite this article:
Ze-Teng Shu, Bo Zheng, Guang-Fei Ding, Shi-Cong Liao, Jing-Hui Di, Shuai Guo, Ren-Jie Chen, A-Ru Yan, Lei Shi. Effect of annealing temperature on coercivity of Nd-Fe-B magnets with TbFeAl doping by process of hot-pressingJ. Chin. Phys. B, 2020, 29(5): 057501.
| Ze-Teng Shu, Bo Zheng, Guang-Fei Ding, Shi-Cong Liao, Jing-Hui Di, Shuai Guo, Ren-Jie Chen, A-Ru Yan, Lei Shi. Effect of annealing temperature on coercivity of Nd-Fe-B magnets with TbFeAl doping by process of hot-pressingJ. Chin. Phys. B, 2020, 29(5): 057501. |
Effect of annealing temperature on coercivity of Nd-Fe-B magnets with TbFeAl doping by process of hot-pressing
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Abstract
The Nd-Fe-B magnets are pre-sintered and then processed with hot-pressing, and the resulting magnets are called the hot-pressed pretreated (HPP) magnets. The coercivity of the HPP magnets increases as the annealed temperature increases. When the annealing temperature is 900℃, the coercivity of the magnet is only 17.6 kOe (1 Oe=79.5775 A·m-1), but when the annealing temperature rises up to 1060℃, the coercivity of the magnet reaches 23.53 kOe, which is remarkably increased by 33.7%. The microstructure analysis indicates that the grain surface of the HPP magnet becomes smoother as the annealed temperature increases. The microstructure factor α is changed according to the intrinsic coercivity model formula. The α of the magnet at 900℃ is only 0.578, but it is 0.825 at 1060℃. Microstructural optimization is due mainly to the increase of coercivity of the HPP magnet. -
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