Nanocomposites of PAn-DBSA/γ-Fe 2O 3 with electrical and ferromagnetic behavior(σ= 2.18×10 -3-5.00×10 -5 S/cm, M s=3.7-16.6 m 2·A/kg, H c=8 805.2-9 133.1 A/m) were prepared by a chemical modification-...Nanocomposites of PAn-DBSA/γ-Fe 2O 3 with electrical and ferromagnetic behavior(σ= 2.18×10 -3-5.00×10 -5 S/cm, M s=3.7-16.6 m 2·A/kg, H c=8 805.2-9 133.1 A/m) were prepared by a chemical modification-redoping method in a neutral medium. The products were characterized by TEM, XRD, UV-Vis, four-probe method, and magnetometer. The results indicate that the electrical and magnetic properties of the nanocomposites strongly depend on γ-Fe 2O 3 content. With the increase of γ-Fe 2O 3 content, the electrical conductivity is decreased and saturation magnetization is increased.展开更多
定子无磁轭模块化(yokeless and segmented armature,YASA)轴向磁通永磁电机具有功率密度和转矩密度高、效率高、轴向结构紧凑、易于维修的优点,在电动汽车、风力发电等领域有广阔的应用前景,已有大量文献对YASA电机进行分析研究。该文...定子无磁轭模块化(yokeless and segmented armature,YASA)轴向磁通永磁电机具有功率密度和转矩密度高、效率高、轴向结构紧凑、易于维修的优点,在电动汽车、风力发电等领域有广阔的应用前景,已有大量文献对YASA电机进行分析研究。该文基于国内外对YASA电机已开展的研究工作,介绍该类电机的典型拓扑结构,并从电机电磁特性计算方法与性能优化、损耗分析与抑制技术、温升与散热研究、齿槽转矩削弱技术、结构强度校核与制造偏差分析,以及定子铁心材料选取等方面进行综述,并对该类电机当前的应用情况进行整理。最后,基于YASA电机的研究现状,对未来研究的发展趋势进行展望。展开更多
文摘Nanocomposites of PAn-DBSA/γ-Fe 2O 3 with electrical and ferromagnetic behavior(σ= 2.18×10 -3-5.00×10 -5 S/cm, M s=3.7-16.6 m 2·A/kg, H c=8 805.2-9 133.1 A/m) were prepared by a chemical modification-redoping method in a neutral medium. The products were characterized by TEM, XRD, UV-Vis, four-probe method, and magnetometer. The results indicate that the electrical and magnetic properties of the nanocomposites strongly depend on γ-Fe 2O 3 content. With the increase of γ-Fe 2O 3 content, the electrical conductivity is decreased and saturation magnetization is increased.
文摘定子无磁轭模块化(yokeless and segmented armature,YASA)轴向磁通永磁电机具有功率密度和转矩密度高、效率高、轴向结构紧凑、易于维修的优点,在电动汽车、风力发电等领域有广阔的应用前景,已有大量文献对YASA电机进行分析研究。该文基于国内外对YASA电机已开展的研究工作,介绍该类电机的典型拓扑结构,并从电机电磁特性计算方法与性能优化、损耗分析与抑制技术、温升与散热研究、齿槽转矩削弱技术、结构强度校核与制造偏差分析,以及定子铁心材料选取等方面进行综述,并对该类电机当前的应用情况进行整理。最后,基于YASA电机的研究现状,对未来研究的发展趋势进行展望。