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Motor test spacer-bush-type coupling and dismounting method thereof

A technology of motor test, disassembly and assembly method, applied in the direction of coupling, rigid shaft coupling, mechanical equipment, etc., can solve the problems of low safety factor, large damage to motor shaft extension, large damage to parts, etc., and achieve a simple product structure , the effect of reducing production costs and improving production efficiency

Inactive Publication Date: 2012-01-25
DONGFANG ELECTRIC CORPLESHAN NEW ENERGY EQUIP
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0002] The "coupling" test device is designed according to the shaft extension structure of the wind turbine generator, but the shaft extension of the wind turbine generator is different from other products. The type of shaft coupling can directly use the taper or keyway on the shaft extension of the generator, so that the test coupling can be reliably connected with the shaft extension of the steam generator, that is, the keyway is used to transmit the torque, so as to achieve the "coupling" test. However, the shaft extension of the wind turbine has no taper and no keyway. If the previous type of test coupling is used, it is impossible to ensure its connection with the shaft extension of the wind turbine, let alone the realization of torque transmission. The purpose of the "coupling" test
In the conventional design scheme, the coupling used in the test adopts the method of heat sleeve, and the inner diameter of the coupling used in the test and the shaft extension of the wind turbine adopt an interference fit to transmit torque. A reasonable amount of interference is calculated, and the After the coupling is heated to a certain temperature, it is placed on the shaft extension of the wind turbine. After the test is completed, the coupling is heated and taken out. However, since the wind turbine is a product with a large demand, the test efficiency is too low. It cannot meet the production needs, and because the shaft extension of the wind turbine is thin and long, repeated heating and cooling will affect the mechanical properties of the shaft extension and have a negative impact on the product
The traditional coupling disassembly method has a low safety factor during disassembly, time-consuming and labor-intensive disassembly, great damage to the motor shaft extension after disassembly, and large damage to most of the fastening parts after disassembly, which cannot be reused, etc. shortcoming

Method used

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  • Motor test spacer-bush-type coupling and dismounting method thereof
  • Motor test spacer-bush-type coupling and dismounting method thereof

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Embodiment Construction

[0014] The present invention will be further described below in conjunction with accompanying drawing:

[0015] Such as figure 1 As shown, the motor test spacer coupling, which includes an inner spacer 1 and a pressure ring 6 set outside the generator shaft 7, and an outer shaft sleeve 2 with an inner tapered surface fitted outside the inner spacer 1 , and six M20 bolts 3, the outer circle of the big head of the inner spacer 1 is connected with the inner stop of the pressure ring 6, and the bolts are connected with the bolt holes on the spring washer 4, the flat washer 5 and the pressure ring 6 The outer shaft sleeve 2 and the generator rotating shaft 7 are connected; the inner spacer sleeve 1 is provided with equally divided narrow grooves 8, which is an elastic steel sleeve with a thin wall and an outer tapered surface.

[0016] The disassembly and assembly method of the motor test spacer coupling includes the installation of the motor test spacer coupling and the disassemb...

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PUM

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Abstract

The invention discloses a motor test spacer-bush-type coupling and a dismounting method thereof, wherein the coupling comprises an inner spacer bush (1) sleeved on a motor rotary shaft (7), a pressing ring (6), an outer shaft sleeve (2) sleeved on the inner spacer bush (1) and at least six M20 bolts (3); the excircle at the larger end of the inner spacer bush (1) is connected with a female end of the pressing ring (6); and each bolt is connected with the outer shaft sleeve (2) and the motor rotary shaft (7) through a spring washer (4), a flat washer (5) and bolt holes on the pressing ring (6). The dismounting method of the coupling comprises the mounting of the motor test spacer-bush-type coupling and the dismounting of the dismounting of the motor test spacer-bush-type coupling. The coupling provided by the invention has the advantages of simple structure, low cost, short time of dismounting, high production efficiency, and is safe and reliable in use; and after the coupling is used, the motor shaft extension and the inner spacer bush of the coupling can not cause the problems of dimension deformation and surface damage and the like, the motor shaft extension is not damaged, the service life of the inner spacer bush is prolonged, and the motor dynamic balance is not influenced and the like.

Description

technical field [0001] The invention relates to a motor test spacer type shaft coupling and a disassembly method thereof. Background technique [0002] The "coupling" test device is designed according to the shaft extension structure of the wind turbine generator, but the shaft extension of the wind turbine generator is different from other products. The type of shaft coupling can directly use the taper or keyway on the shaft extension of the generator, so that the test coupling can be reliably connected with the shaft extension of the steam generator, that is, the keyway is used to transmit the torque, so as to achieve the "coupling" test. However, the shaft extension of the wind turbine has no taper and no keyway. If the previous type of test coupling is used, it is impossible to ensure its connection with the shaft extension of the wind turbine, let alone the realization of torque transmission. Coupling" test purpose. In the conventional design scheme, the coupling used...

Claims

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Application Information

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IPC IPC(8): B25B13/48F16D1/076F16D1/095
Inventor 陈友东王明川艾玉国罗小兵
Owner DONGFANG ELECTRIC CORPLESHAN NEW ENERGY EQUIP
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