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    • 1. 发明授权
    • Method of assembling a magnetic rotor
    • 组装磁性转子的方法
    • US4562641A
    • 1986-01-07
    • US523924
    • 1983-08-17
    • Philip C. MosherMohd A. Aleem
    • Philip C. MosherMohd A. Aleem
    • H02K15/02H02K1/24H02K1/28
    • H02K1/24H02K1/28Y10T29/49012
    • A high speed shaftless rotor construction is disclosed including a method of sequentially building up the rotor to facilitate disassembly for reworking and maintaining precise alignment of the reassembled elements. End turn supports are matched and preliminarily assembled with bolts to the core and the parts machined to achieve desired tolerances. After machining, the end turn supports are separated from the core, matched with end shaft fittings and additional machining carried out, after which the turn supports are separated from the end shaft fittings and reattached with the core. The shaft fittings are realigned with the assembled end support fittings and bolted into position after which final machining can be completed. All elements are then disassembled and the parts deburred and cleaned to eliminate any contamination prior to winding the field coil. After reassembly, winding of the field core and completion of the electrical connections, a cylindrical sleeve is disposed over the main core assembly and conventionally joined to effect a rigid structural rotor member capable of withstanding high speeds.
    • 公开了一种高速无轴转子结构,其包括依次构建转子的方法,以便于拆卸以便重新组装并保持重新组装元件的精确对准。 端部匝支撑件与螺栓匹配并预先组装到芯部,并且加工的部件实现所需的公差。 加工后,端部转动支架与芯部分离,与端轴配件匹配,并进行附加加工,之后转向支架与端轴配件分离,并与芯重新连接。 轴配件与组装的端部支撑配件重新对齐,并螺栓固定到位,然后可以完成最终加工。 然后将所有元件拆卸,并将零件去毛刺和清洁,以消除在缠绕励磁线圈之前的任何污染物。 在重新组装,磁芯的卷绕和电连接的完成之后,圆柱形套筒设置在主芯组件上方,并且常规地连接以实现能够耐受高速的刚性结构转子构件。
    • 2. 发明授权
    • Method of precision winding a rotor
    • 精密缠绕转子的方法
    • US4583696A
    • 1986-04-22
    • US723968
    • 1985-04-15
    • Philip C. Mosher
    • Philip C. Mosher
    • H02K3/18H02K3/32H02K15/09B21F3/04B65H54/08H01F41/04
    • H02K3/325H02K3/18Y10T29/49071
    • According to the invention, an insulator is provided at the axial ends of a rotor core. The insulator has radially spaced rows of notches at intervals approximately equal to the diameter of the winding wire for guiding placement of the turns of the winding at a predetermined location. After completion of the first turn, the wire is skewed at a first angle with respect to the plane of the first turn to coincide with the second notch and the remainder of turns in the first layer in turn completed in substantially parallel relationship. At the completion of the last turn of the first layer, the wire is crossed over the next to the last turn, skewing the winding in an opposite direction and situating the wire in the valleys formed between the successive turns in the first layer. The sequence continues alternately for the remaining layers.
    • 根据本发明,在转子芯的轴向端部设置绝缘体。 绝缘体具有径向间隔开的一排切口,其间隔大致等于绕组线的直径,用于引导绕组匝在预定位置的放置。 在第一匝完成之后,线相对于第一匝的平面以第一角度倾斜以与第二匝重合,并且第一层中的匝的其余部分又以基本平行的关系完成。 在第一层的最后一回合完成时,电线在最后一个回合的下一个交叉处交叉,使绕组在相反的方向上偏斜,并将电线定位在形成在第一层的连续回转之间的谷中。 该序列交替地为剩余的层继续。
    • 5. 发明授权
    • Improved magnetic rotor
    • 改进磁转子
    • US4614888A
    • 1986-09-30
    • US759213
    • 1985-07-26
    • Philip C. MosherMohd A. Aleem
    • Philip C. MosherMohd A. Aleem
    • H02K1/24H02K1/28H02K1/22
    • H02K1/24H02K1/28
    • A high speed shaftless rotor construction is disclosed including a method of sequentially building up the rotor to facilitate disassembly for reworking and maintaining precise alignment of the reassembled elements. End turn supports are matched and preliminarily assembled with bolts to the core and the parts machined to achieve desired tolerances. After machining, the end turn supports are separated from the core, matched with end shaft fittings and additional machining carried out, after which the turn supports are separated from the end shaft fittings and reattached with the core. The shaft fittings are realigned with the assembled end support fittings and bolted into position after which final machining can be completed. All elements are then disassembled and the parts deburred and cleaned to eliminate any contamination prior to winding the field coil. After reassembly, winding of the field core and completion of the electrical connections, a cylindrical sleeve is disposed over the main core assembly and conventionally joined to effect a rigid structural rotor member capable of withstanding high speeds.
    • 公开了一种高速无轴转子结构,其包括依次构建转子的方法,以便于拆卸以便重新组装并保持重新组装元件的精确对准。 端部匝支撑件与螺栓匹配并预先组装到芯部,并且加工的部件实现所需的公差。 加工后,端部转动支架与芯部分离,与端轴配件匹配,并进行附加加工,之后转向支架与端轴配件分离,并与芯重新连接。 轴配件与组装的端部支撑配件重新对齐,并螺栓固定到位,然后可以完成最终加工。 然后将所有元件拆卸,并将零件去毛刺和清洁,以消除在缠绕励磁线圈之前的任何污染物。 在重新组装,磁芯的卷绕和电连接的完成之后,圆柱形套筒设置在主芯组件上方,并且常规地连接以实现能够耐受高速的刚性结构转子构件。
    • 6. 发明授权
    • Precision wound rotor and method of winding
    • 精密绕线转子及缠绕方法
    • US4603274A
    • 1986-07-29
    • US568536
    • 1984-01-05
    • Philip C. Mosher
    • Philip C. Mosher
    • H02K3/18H02K3/32H02K3/46
    • H02K3/18H02K3/325
    • According to the invention, an insulator is provided at the axial ends of a rotor core. The insulator has radially spaced rows of notches at intervals approximately equal to the diameter of the winding wire for guiding placement of the turns of the winding at a predetermined location. After completion of the first turn, the wire is skewed at a first angle with respect to the plane of the first turn to coincide with the second notch and the remainder of turns in the first layer in turn completed in substantially parallel relationship. At the completion of the last turn of the first layer, the wire is crossed over the next to the last turn, skewing the winding in an opposite direction and situating the wire in the valleys formed between the successive turns in the first layer. The sequence continues alternately for the remaining layers.
    • 根据本发明,在转子芯的轴向端部设置绝缘体。 绝缘体具有径向间隔开的一排切口,其间隔大致等于绕组线的直径,用于引导绕组匝在预定位置的放置。 在第一匝完成之后,线相对于第一匝的平面以第一角度倾斜以与第二匝重合,并且第一层中的匝的其余部分又以基本平行的关系完成。 在第一层的最后一回合完成时,电线在最后一个回合的下一个交叉处交叉,使绕组在相反的方向上偏斜,并将电线定位在形成在第一层的连续回转之间的谷中。 该序列交替地为剩余的层继续。