Double-side staggered-tooth tau/2 short primary permanent magnet synchronous linear motor
A permanent magnet synchronous linear and primary technology, applied in the direction of electrical components, electromechanical devices, electric components, etc., can solve the problems of the average thrust of the motor, the increase of fluctuations, and the impact on the control accuracy of the linear motor system, so as to improve performance and suppress thrust fluctuating effect
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Embodiment approach 1
[0020] Such as figure 1 , 2 , 3, and 4 show the first embodiment of the short-primary permanent magnet synchronous linear motor with bilateral staggered teeth τ / 2 of the present invention, and its pole-slot matching is 16 poles and 18 slots. Bilateral staggered tooth short primary permanent magnet synchronous linear motor, which includes a primary component 1, a secondary component 2 and a secondary component 3, wherein the primary component 1 is composed of a core yoke 1-1, an upper layer core tooth 1-2, The lower core teeth 1-3, the upper armature winding 1-4 and the lower armature winding 1-5; the secondary component 12 is composed of a permanent magnet 2-1 and a yoke plate 2-2, and each pair of poles includes two A permanent magnet, the secondary assembly 2 3 is composed of a permanent magnet 3-1 and a yoke plate 3-2, each pair of poles includes two permanent magnets, and the corresponding permanent magnets 2-1-1 and 3- The magnetization direction of 1-1 is the same, th...
Embodiment approach 2
[0027] Such as Figure 5 , 6 Shown is the second embodiment of the short-primary permanent magnet synchronous linear motor with bilateral staggered teeth τ / 2 of the present invention, and its pole-slot matching is 16 poles and 18 slots.
[0028] The arrangement of the upper layer armature winding and the lower layer armature winding of the primary component 1 is exactly the same as that of the first embodiment.
[0029] The upper half of the iron core yoke 1-1 of the primary assembly 1 is also staggered by τ / 2 along with the movement of the upper armature, and the lower half remains unchanged.
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