Adjustable motor stator lamination fixture tool
A motor stator and adjustable technology, which is applied in the manufacture of stator/rotor body, etc., can solve the problems of non-adjustable motor stator laminations, increase the cost of manufacturing motors, and complicated operations, so as to improve manufacturing accuracy and overall performance and reduce the production of motors. cost, the effect of streamlining workflow
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specific Embodiment approach 1
[0012] Specific implementation mode one: as Figure 1~4 As shown, the adjustable motor stator lamination tooling tool of this embodiment includes a first lead screw 1, an upper taper sleeve 2, a positioning cylinder 3, a support platform upper cover 6, a support platform base 8, a lower taper sleeve 9, a positioning cylinder Disc base 12, first driving mechanism, second driving mechanism, three second lead screws 5, three inner telescopic webs 4, three outer telescopic webs 7, three top plates 10 and three positioning keys 11; positioning circle The disc seat 12 is a hollow structure, the lower end of the first leading screw 1 is installed at the center of the positioning disc seat 12, the lower end of the positioning cylinder 3 passes through the first leading screw 1 and is affixed to the upper surface of the positioning disc seat 12, The positioning cylinder 3 is coaxial with the first lead screw 1 and is vertically arranged. Both ends of the first lead screw 1 are processe...
specific Embodiment approach 2
[0016] Specific implementation mode two: as image 3 As shown, the first driving mechanism in this embodiment includes a second motor 18 and a second gearbox 19 , and the second motor 18 is connected to the lower end of the first lead screw 1 through the second gearbox 19 . With such a design, the first lead screw 1 can be driven to rotate forward or reversely. Other components and connections are the same as those in the first embodiment.
specific Embodiment approach 3
[0017] Specific implementation mode three: as image 3 As shown, the second driving mechanism of this embodiment includes a first motor 14, a first gearbox 15, a gear box 16, three large gears 21, six small gears 22, three short worms 23, two long worms 24 and Five worm gears 17; first sensor 13, first motor 14, first gearbox 15, gearbox 16, three large gears 21, six small gears 22, three short worms 23, two long worms 24 and five Each worm gear 17 is located in the positioning disc seat 12, and each gear box 16 is provided with a large gear 21, two small gears 22 and a short worm 23, and the lower end of each second leading screw 5 is sheathed with a large Gear 21, the large gear 21 in each gearbox 16 meshes with the short worm 23 through two small gears 22, three short worms 23 and two long worms 24 mesh with each other through four of the five worm wheels 17, the first The electric motor 14 meshes with the remaining one of the five worm wheels 17 through the first gearbox ...
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