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METHOD OF WINDING OF ARMATURE FOR AN AXIAL FLUX PERMANENT MAGNET CORELESS MACHINES

机译:轴向磁通永磁电机的电枢缠绕方法

摘要

The present invention relates to a manufacturing method of an armature winding of the axial flux permanent magnet type core-less device,; In the armature winding assembly in the axial direction of the permanent magnet magnetic flux type core-less devices;; And the armature winding is the stator, and configured by winding the coil on a winding jig to accommodate (Jig) of the stator windings in response to the width and length corresponding to the stator armature is constant,; By the jig of the corresponding armature coil winding of an inner diameter (Ri) and outer (Ro) of the axial electrical machine with a hexagon, and; The armature coil, each side length of the inscribed angle of the hexagon in the jig of the winding is a method such as that characterized in that the assembly to variably select the configuration according to the number of sizes and the pole of the permanent magnet are combined (M) with the armature constant by having,; Can be applied to the shaft in the direction flux permanent magnet device and, by comparing with the conventional coil winding method applied to a jig shaped to improve the suitable density of the coil per unit as a way of improving the stator coil wound volume density,; By removing the electromagnetic losses of the iron loss and the cogging torque (Cogging Torque) which is caused by the use of a conventional armature core of the electric machine and improving the ratio of the output per unit weight of the axial unit,; Does not use the stator core of the armature can be instrumental to a very compact configuration of the length in the axial direction will be useful inventions it has a wide range of applicability.
机译:本发明涉及轴向磁通永磁型无铁芯装置的电枢绕组的制造方法。在电枢绕组组件中沿轴向方向的永磁磁通型无铁芯装置;并且电枢绕组是定子,并且通过将线圈缠绕在绕组夹具上以响应于对应于定子电枢的宽度和长度恒定来容纳定子绕组(Jig)而构成;通过对应的电枢线圈的夹具,将轴向电机的内径(Ri)和外径(Ro)缠绕成六边形,并且;电枢线圈,绕组的夹具中的六边形的内切角的各边长度是这样的方法,其特征在于,根据尺寸和永磁体的极数可变地选择配置的组件是通过使(M)与电枢常数相结合;可以应用于方向磁通量永磁装置的轴上,并且与应用于夹具的常规线圈绕线方法相比,该夹具的形状可以提高每单位线圈的合适密度,从而提高定子线圈的绕线密度, ;通过消除由使用传统的电机电枢铁芯引起的铁损和齿槽转矩(Cogging Torque)的电磁损耗,并改善了轴向单元每单位重量的输出比例,不使用电枢的定子芯可以对轴向上的长度的非常紧凑的构造起作用,这将是有用的发明,它具有广泛的适用性。

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