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Gripping mechanism of stator assembling machine

A clamping mechanism and stator group technology, applied in workpiece clamping devices, manufacturing stator/rotor bodies, manufacturing tools, etc., can solve problems such as large motor coaxiality and cylindricity matching error, large motor power loss, and defective products.

Active Publication Date: 2010-06-30
SUZHOU INDAL PARK TAIGE ELECTRONICS SCI &TECH
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0002] Usually the assembly of the stator and rotor is done manually. After the stamped stator core steel sheets or rotor core steel sheets are stacked together according to the specified number to form the stator core or rotor core according to the design requirements, through Manually assemble the two together. Due to the manual assembly, there are problems of low positioning accuracy and low assembly efficiency during assembly; especially when the assembly accuracy is poor and the tolerance is large, it is impossible to adjust the fit clearance manually during assembly. Precise adjustment, resulting in large errors in motor coaxiality and cylindricity, resulting in large motor power loss, high noise and other accumulated disadvantages that are difficult to eliminate, resulting in defective products

Method used

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  • Gripping mechanism of stator assembling machine
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  • Gripping mechanism of stator assembling machine

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Embodiment Construction

[0010] Combine below Figure 1-2 The technical solution of the present invention is described in detail.

[0011] figure 1 The overall structure diagram of the clamping machine is shown. The clamping mechanism has two symmetrical parts, and each part includes a cylinder 1, a clamping part and a sliding mechanism.

[0012] The cylinder 1 is installed on the stator assembly machine through an L-shaped mounting base 9, and the mounting base 9 has a hole for the piston of the cylinder 1 to extend out; the piston is connected with the sliding mechanism.

[0013] The sliding mechanism includes a guide rod fixing seat, a slider 4 , a guide rod 5 and a base 8 . Described sliding mechanism has two groups of guide rod holders, slider 4 and guide rod 5, and described two groups of guide rod holders, slider 4 and guide rod 5 are respectively placed on the left and right sides of the piston rod symmetrically; Each set of guide rod fixing seats includes two guide rod fixing seats, which...

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Abstract

The invention relates to a gripping mechanism of a stator assembling machine. The gripping mechanism comprises a left part and a right part. Each part comprises a cylinder (1), a gripping part and a sliding mechanism, and is characterized in that the piston of the cylinder (1) is connected with the sliding mechanism and the gripping part is fixed on the sliding mechanism. Since the gripping mechanism uses the cylinders for gripping and positioning, the invention has the advantages of simple structure, convenient operation and high reliability.

Description

technical field [0001] The invention relates to a clamping mechanism of a stator assembly machine, in particular to a mechanism for clamping a rotor on a stator assembly machine. Background technique [0002] Usually the assembly of the stator and rotor is done manually. After the stamped stator core steel sheets or rotor core steel sheets are stacked together according to the specified number to form the stator core or rotor core according to the design requirements, through Manually assemble the two together. Due to the manual assembly, there are problems of low positioning accuracy and low assembly efficiency during assembly; especially when the assembly accuracy is poor and the tolerance is large, it is impossible to adjust the fit clearance manually during assembly. Precise adjustment will lead to large matching errors of motor coaxiality and cylindricity, resulting in large motor power loss, high noise and other long-standing disadvantages that are difficult to elimina...

Claims

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Application Information

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IPC IPC(8): H02K15/02B25B11/02
Inventor 严小斌薛振江张鑫
Owner SUZHOU INDAL PARK TAIGE ELECTRONICS SCI &TECH