Stator core for rotating electric machine
A stator core and rotating motor technology, applied in the direction of electrical components, electromechanical devices, electric components, etc., can solve the problems of increased eddy current loss at the fastening part, deterioration of productivity, and no consideration of eddy current loss, etc., to achieve suppression of eddy current loss and suppression of eddy current loss The effect of increasing the increase and suppressing the decrease in lamination accuracy
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no. 1 approach
[0102] Such as figure 1 As shown, the stator core 1 of this embodiment is constituted by arranging a plurality of split cores 10 in an annular shape in the circumferential direction. The stator including the stator core 1 is combined with a rotor provided therein to form a rotating electrical machine (both not shown), and is used, for example, as a motor or a generator.
[0103] Each split core 10 is formed by punching a substantially T-shaped metal steel plate 12 punched out by a punching machine in the axial direction ( figure 1 The upper and lower directions in the middle) are stacked and formed separately. also refer to figure 2 (a), the split core 10 has: a back yoke 20 extending in an arcuate shape with a predetermined radial width; protruding radially inward from a circumferential middle portion of the back yoke 20, and spaced around the back yoke 20; The teeth 30 are wound with a coil (not shown) around an insulator or the like. Therefore, the split core 10 is for...
no. 2 approach
[0112] Next, a stator core 1 of a rotating electric machine according to a second embodiment of the present invention will be described. It should be noted that the basic structure of the stator core 1 of the second embodiment is the same as that of the first embodiment, and only the structure of the fastening portion is different. Therefore, the same reference numerals are attached to the same or corresponding parts to omit or simplify description.
[0113] Such as image 3 As shown, in the fastening portion 40A of the present embodiment, the protruding portion 41 and the recessed portion 42 have a triangular shape that protrudes radially inward when viewed from the axial direction.
[0114] In addition, the fastening portion 40A is similar to the fastening portion 40 of the first embodiment, and its circumferential end surfaces 43 and radial end surfaces 44 are formed to extend linearly in the axial direction, so that the fastening portion 40A is formed in a flat fastening s...
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Abstract
Description
Claims
Application Information
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