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Effect of annealing temperature on coercivity of Nd-Fe-B magnets with TbFeAl doping by process of hot-pressing
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作者 Ze-Teng Shu Bo Zheng +6 位作者 Guang-Fei ding Shi-Cong Liao jing-hui di Shuai Guo Ren-Jie Chen A-Ru Yan Lei Shi 《Chinese Physics B》 SCIE EI CAS CSCD 2020年第5期479-483,共5页
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 tempera... 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 factorαis changed according to the intrinsic coercivity model formula.Theαof 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. 展开更多
关键词 hot-pressed COERCIVITY MICROSTRUCTURE anisotropy field
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Enhanced oxidation resistance of low-carbon MgO-C refractories with ternary carbides:a review 被引量:4
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作者 Chao Yu Bo Dong +5 位作者 Yu-feng Chen Bei-yue Ma Jun ding Cheng-ji Deng Hong-xi Zhu jing-hui di 《Journal of Iron and Steel Research International》 SCIE EI CAS CSCD 2022年第7期1052-1062,共11页
The demand for low-carbon MgO–C refractories is ever growing to meet the development of advanced steelmaking technologies and efficient energy conservation.Meanwhile,to improve the oxidation resistance and inhibit th... The demand for low-carbon MgO–C refractories is ever growing to meet the development of advanced steelmaking technologies and efficient energy conservation.Meanwhile,to improve the oxidation resistance and inhibit the weakness of low-carbon MgO–C refractories,antioxidants are necessary.The application of ternary carbides that focused on improving the oxidation performance of MgO–C refractories has been explored,and the ternary carbides including Al_(4)O_(4)C,Al8B_(4)C_(7),Al_(4)SiC_(4),Ti_(2)AlC,Ti_(3)AlC_(2),and Ti_(3)SiC_(2)have been proved effective.The crystal structure,physical properties,oxidation behavior,and synthesis of these ternary carbides were summarized,and their oxidation mechanism in assisting antioxidation of MgO–C refractories was discussed.In addition,the potential aspects related to the usage and development of ternary carbides in low-carbon MgO–C refractories were proposed. 展开更多
关键词 Low-carbon MgO–C refractory Ternary carbide MAX phase Oxidation mechanism Oxidation resistance
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