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Segmented motor installation method

An installation method and a splitting technology are applied in the field of splitting motor installation, which can solve the problems of difficult process and complicated process.

Pending Publication Date: 2021-06-04
BEIJING GOLDWIND SCI & CREATION WINDPOWER EQUIP CO LTD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

As we all know, compared with ordinary wind power motors, the whole process of split motors from parts production to complete machine to hoisting is more complicated and the process is more difficult.

Method used

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  • Segmented motor installation method

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0037] See figure 1 The diagram shows the flow map of the diaphragm mounting method of the present embodiment.

[0038] Based on the structural characteristics of the franc motor, the transition assembly process mainly includes assembly of non-electromagnetic components and disposal flaps, franked non-electromagnetic member section transitions, assembly of electric machines, fed-flap, fed-flap motor segment transition, and motor Steps such as installation. Such settings can be fully utilized to operate the tool to operate, and can meet the entire process of the fed-flap motor to satisfy the operating tools in the basis of the resolved motor autologous structure.

[0039] Step S1. Assembly and dispatching flap of the non-electromagnetic member.

[0040] In the first field, the non-electromagnetic member of the plurality of split is assembled to form a complete non-electromagnetic member assembly, and then the francs form a fed-flavored non-electromagnetic member section; thus, the ...

Embodiment 2

[0059] The difference between the present scheme and the embodiment is in that the non-electromagnetic member of each split is assembled into each complete non-electromagnetic member in the process of transitioning the non-electromagnetic member transition to the second site. The non-electromagnetic member is respectively transported to the second field; for example, but is not limited to, a split rotor bracket, a split stator bracket, a split rotor end cap, and the splitter tool are respectively assembled into a complete rotor bracket, complete stator bracket, complete The rotor end cap and the complete tooling form a form that satisfies the transition transport; that is, after the processing of the fed-flap motor structure is completed, the stent form is not limited to the first embodiment in the structural manufacturer (first place). The structural form of the in-cell non-electromagnetic member section is satisfied with the range of the transportation restriction requirements i...

no. 1 example

[0060] Compared to the first embodiment, in this aspect step S2, there is no need to assemble the electric machine bracket of the fed-flavin to form an assembly of an electromagnetic member, and then split the assembly of the electromagnetic member into a complete rotor bracket, complete stator bracket, complete rotor. The operation of the end cap and the complete tooling is further optimized.

[0061] Other process flows are the same as the embodiment, so don't repeat it here.

[0062] According to the diaphragm mounting method of the present embodiment, the full modular mounting method of most of the motor is realized, and the manufacturing production of large diameter motors can break through large-sized limitations, and the production accuracy of the fed-flavor motor is higher, mounting The difficulty is smaller, the assembly process is simpler, and the security is higher. It should be noted that the above-described fed-flavor motor mounting method provided in this embodiment ...

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PUM

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Abstract

The invention discloses a sectioning motor mounting method, and the method comprises the following steps: assembling and sectioning non-electromagnetic components: assembling various split non-electromagnetic components to form sectioning non-electromagnetic component sections on a first site, or assembling to form a complete non-electromagnetic component assembly and then sectioning to form sectioning non-electromagnetic component sections; transferring the sectioned non-electromagnetic component sections: transporting the sectioned non-electromagnetic component sections to a second site respectively; performing assembling and sectioning of a motor: assembling the electromagnetic component in a second site to form a complete motor, and sectioning the complete motor to form sectioned motor sections; transferring the sectioned motor sections: transporting the sectioned motor sections to a third site respectively; and performing motor installation: after the sectioned motor sections are assembled to form a complete motor on a third site, motor installation is carried out. By applying the scheme, the whole production process of the split motor is more reliable, and a technical guarantee is provided for wide application of the high-power split motor.

Description

Technical field [0001] The present invention relates to the technical field of manufacturing a wind motor, and more particularly to a fed-flavor motor mounting method. Background technique [0002] With the increase in motor power level, the diameter of the direct drive permanent magnet motor is getting larger. Based on this, the motor of the filled structure has become a development direction of high power motors. It is well known that the franc motor is produced from the components to the whole machine than the ordinary wind motor, and the entire process experienced by the hoisting is more complex and the process is more difficult. [0003] In view of this, it is urgent to optimize the assembly process of existing felt motors, and effectively improve assembly process and installation based on ensuring production accuracy. Inventive content [0004] In order to solve the above technical problems, the present invention provides a transition assembly process for felt the valve mo...

Claims

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Application Information

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IPC IPC(8): H02K15/00H02K15/14H02K15/02B23P19/04
CPCH02K15/00H02K15/14H02K15/02B23P19/04
Inventor 刘立坤李延慧
Owner BEIJING GOLDWIND SCI & CREATION WINDPOWER EQUIP CO LTD
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