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    • 8. 发明授权
    • Apparatus for cooling stator lamination stacks of electrical machines
    • 用于冷却电机定子叠片的装置
    • US07633194B2
    • 2009-12-15
    • US11553028
    • 2006-10-26
    • Robert T DawseyConstantin C. StancuEric R. OstromYoung Doo
    • Robert T DawseyConstantin C. StancuEric R. OstromYoung Doo
    • H02K9/08
    • H02K1/20B60L1/003B60L3/0061B60L2220/46B60L2220/50B60L2240/425H02K5/20H02K9/10H02K9/19Y02T10/641Y02T10/642
    • A coaxial stack of laminations for a stator of an electrical machine uses laminations that are substantially identical and in direct abutment with one another. Each of the laminations has an outer periphery and an inner periphery with the outer periphery being defined by an array of outwardly projecting pins and the inner periphery being defined by an array of inwardly projecting teeth. The outwardly projecting pins cooperate with a jacket surrounding the stack to provide a cooling space through which cooling liquid flows while the teeth provide spaces therebetween for receiving for receiving stator windings. The number of pins (npin) is proportional to the number of teeth (nth) according to the relationship (2K+1)/(2Kth) times the number of teeth (nth), where K is a selected integer number and Kth is the number of teeth past which each lamination is rotated with respect to adjacent laminations so that spaces between the teeth of adjacent laminations are aligned.
    • 用于电机的定子的同轴叠层叠片使用基本上相同并且彼此直接邻接的叠片。 每个叠片具有外周边和内周边,其外围由向外突出的销的阵列限定,并且内周由内向突出的齿阵列限定。 向外突出的销与围绕堆叠的护套配合以提供冷却空间,冷却液通过该空间流动,同时齿在其间提供空间用于接收定子绕组。 根据与齿数(nth)的关系(2K + 1)/(2Kth)乘以(n)的关系(n),针数(npin)与齿数(nth)成比例,其中K是选定的整数,Kth是 每个层叠相对于相邻叠片旋转的齿数,使得相邻叠片的齿之间的空间对准。
    • 9. 发明授权
    • Permanent magnet machine rotor
    • 永磁机转子
    • US07479723B2
    • 2009-01-20
    • US11668910
    • 2007-01-30
    • Robert T DawseyConstantin C. StancuEric R. OstromYoung Doo
    • Robert T DawseyConstantin C. StancuEric R. OstromYoung Doo
    • H02K1/27
    • H02K1/2766
    • A rotor for an interior permanent magnet machine has a rotor body having an output shaft and a first cavity filled with magnetic material. Second cavities are disposed inboard of the first cavities and are not filled with magnetic material. Non-magnetic rods extend through the second cavities and protrude beyond end faces of the rotor body. The rods are press-fit in blind bores formed in non-magnetic end plates disposed adjacent the end faces of the rotor body. Shrink disks are shrunk around projecting ends of the output shaft in abutting relation with the end plates. In order to prevent induced voltage from generating current in the cage formed by the rods and end plates, an oxide layer is disposed between the rods and blind bores in the end plates.
    • 用于内部永磁体机器的转子具有转子体,其具有输出轴和填充有磁性材料的第一腔体。 第二空腔设置在第一空腔的内侧,并且不填充磁性材料。 非磁性棒延伸穿过第二腔并突出超过转子体的端面。 杆被压配合在形成在邻近转子体的端面设置的非磁性端板中的盲孔中。 收缩盘在输出轴的突出端处与端板邻接而收缩。 为了防止感应电压在由杆和端板形成的保持架中产生电流,在端板中的棒和盲孔之间设置氧化物层。
    • 10. 发明申请
    • Permanent magnet machine rotor
    • 永磁机转子
    • US20080100167A1
    • 2008-05-01
    • US11552713
    • 2006-10-25
    • Robert T. DawseyConstantin C. StancuEric R. OstromYoung Doo
    • Robert T. DawseyConstantin C. StancuEric R. OstromYoung Doo
    • H02K21/14
    • H02K1/20H02K9/19
    • A rotor for an interior permanent magnet machine has a rotor body having an output shaft and a first cavity filled with magnetic material. Second cavities are disposed inboard of the first cavities and are not filled with magnetic material. Non-magnetic rods extend through the second cavities and protrude beyond end faces of the rotor body. The rods are press-fit in blind bores formed in non-magnetic end plates disposed adjacent the end faces of the rotor body. Shrink disks are shrunk around projecting ends of the output shaft in abutting relation with the end plates. In order to prevent induced voltage from generating current in the cage formed by the rods and end plates, an oxide layer is disposed between the rods and blind bores in the end plates.
    • 用于内部永磁体机器的转子具有转子体,其具有输出轴和填充有磁性材料的第一腔体。 第二空腔设置在第一空腔的内侧,并且不填充磁性材料。 非磁性棒延伸穿过第二腔并突出超过转子体的端面。 杆被压配合在形成在邻近转子体的端面设置的非磁性端板中的盲孔中。 收缩盘在输出轴的突出端处与端板邻接而收缩。 为了防止感应电压在由杆和端板形成的保持架中产生电流,在端板中的棒和盲孔之间设置氧化物层。