CN209375399U - A kind of rotary compression machine rotor riveting production line - Google Patents
A kind of rotary compression machine rotor riveting production line Download PDFInfo
- Publication number
- CN209375399U CN209375399U CN201821945870.6U CN201821945870U CN209375399U CN 209375399 U CN209375399 U CN 209375399U CN 201821945870 U CN201821945870 U CN 201821945870U CN 209375399 U CN209375399 U CN 209375399U
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- Prior art keywords
- rotor
- axis
- riveted
- production line
- rotary compression
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Abstract
A kind of rotary compression machine rotor riveting production line, it is characterised in that: it includes entering axis machine and rotor squeeze riveter by the rotor of wire body conveying band connection;Wherein the rotor squeeze riveter includes squeeze riveter rack and the mold pressure riveting device above squeeze riveter rack, mold pressure riveting device is pushed mold pressure riveting device by being provided thereon the telescopic rod at end down, is pressed to the rotor to be riveted being located in mold pressure riveting device;The mold pressure riveting device include set on upper end seaming chuck and set several red pins in the inner, set on lower end lower die positioning disk and set several undershoot needles in the inner, rotor to be riveted is between seaming chuck and lower die positioning disk, when seaming chuck moves down, red pin presses simultaneously to the rivet being set in rotor to be riveted, and overhead is in undershoot needle.The beneficial effects of the utility model are: disposably crimp multiple rivets, after crimping after rotor be not in that part is scattered, ensure that the stability of rotor.
Description
Technical field
The utility model relates to a kind of rotary compressor, specifically a kind of rotary compression machine rotor riveting production line.
Background technique
Rotary compressor is a kind of new type compressor, and motor is not necessarily to convert the past of piston for the rotary motion of rotor
Multiple movement, but directly rotary-piston is driven to rotate to complete the compression to refrigerant vapour.Such air compressor machine is suitble to
It is especially very widely used in domestic air conditioner for packaged air-conditioner.And as wherein important components rotor, life
The technique of production, cost, efficiency etc. all restrict the use of air compressor machine.The rotor component of rotary compressor direct current is mainly adopted at present
The mode connect with rotation riveting, main process be by man-made assembly improve son part after be placed in secured core on mould, then
It is positioned by being manually placed into special plane equipment, then formed punch rotates same with the rivet contact back punching head in rotor
When, oil pressure moves down so that rivet opening is circumferentially extending and flange compresses;If being provided with 2 or more rivetings on rotor
Nail, then need to rivet 2 times or more.The method suffers from the drawback that packaging efficiency is very slow, and the part after assembling is easy to dissipate
It falls, needs secondary assembling;The number of riveting needs depending on number of rivets, and number of rivets is more, and efficiency cost etc. is at multiple
Increase;Riveting equipment required precision is high, and cost of manufacture is high, and the country, which cannot produce, to be made by import.More than solving
Drawback, urgent need propose a kind of rotary compression machine rotor riveting production line.
Utility model content
The purpose of this utility model is to overcome prior art there are the shortcomings that, it is simple to provide a kind of structure, after assembling
Be not in that part is scattered, effectively improve production efficiency, production capacity, a kind of rotary compression machine rotor of low manufacture cost rivets life
Producing line.
The utility model aim is realized with the following methods: a kind of rotary compression machine rotor riveting production line, special
Sign is: it includes entering axis machine and rotor squeeze riveter by the rotor of wire body conveying band connection;
Wherein the rotor squeeze riveter includes squeeze riveter rack and the mold pressure riveting device above squeeze riveter rack,
Mold pressure riveting device is pushed mold pressure riveting device by being provided thereon the telescopic rod at end down, in mold pressure riveting device
Rotor to be riveted press;The mold pressure riveting device include set on upper end seaming chuck and set in the inner several
Red pin, set on lower end lower die positioning disk and set several undershoot needles in the inner, rotor to be riveted is located at seaming chuck and lower die
Between positioning disk, when seaming chuck moves down, red pin presses simultaneously to the rivet being set in rotor to be riveted, and overhead
In in undershoot needle;
The rotor enters the shaft press device that axis machine includes axis machine rack and is set to above axis machine rack, shaft press
Device is pushed shaft press device by being provided thereon the telescopic rod at end down, is entered to the rotor being set in shaft press device
Axis and move back axis operation;The shaft press device includes entering axis upper die and press on axis set on moving back for its two sides set on upper end
Mould, entering axis pedestal and move back axis pedestal set on its two sides set on lower end move back axis rotor and are placed in and move back in axis pedestal, enter axis rotor
It is placed in axis pedestal, when entering axis upper die and move back axis upper die and move down, the pressure hole entered in axis upper die will enter axis
Mandrel in rotor is pushed down into axis, and the mandrel moved back in axis rotor release is moved back axis by the top pillar moved back in axis upper die.
The red pin and undershoot needle quantity and position distribution are set to corresponding with the rivet in rotor to be riveted.
At least three reset springs are provided between the lower die positioning disk and lower die positioning plate, reset spring generates thrust
Always lower die positioning disk is released.
The seaming chuck is provided with location hole, and lower die positioning disk is provided with lower Positioning holes, the mandrel of rotor to be riveted
It is interspersed in upper and lower positioning hole installation.
The shaft press device and entering and be equipped with rewinding disk between axis machine rack, rewinding disk is located at shaft press device underface,
Receive the mandrel for moving back the release of axis rotor.
The telescopic rod is hydraulic telescopic rod.
The rotor enters axis machine side and is provided with weighing monitor station.
The beneficial effects of the utility model are: 1) structure is simple, low manufacture cost improves the market competitiveness.2) disposable
Crimp multiple rivets, after crimping after rotor be not in that part is scattered, ensure that the stability of rotor.3) life is effectively increased
Efficiency is produced, production capacity is increased.4) relatively low to equipment precision requirement, home equipment can meet requirement, reduce equipment
Manufacture production cost.
Detailed description of the invention
Fig. 1 is the utility model general assembly effect picture.
Fig. 2 is the utility model general assembly top view.
Fig. 3 is rotor squeeze riveter structural representation in the utility model.
Fig. 4 is mold pressure riveting device and rotor squeeze riveter assembly structure figure in the utility model.
Fig. 5 is mold pressure riveting device structural schematic diagram in the utility model.
Fig. 6 is mold pressure riveting device and rotor assembly structure figure in the utility model.
Fig. 7 is mold pressure riveting device cross-sectional view in the utility model.
Fig. 8 is enlarged drawing at the A of Fig. 7 in the utility model.
Fig. 9 is rotor structure schematic diagram in the utility model.
Figure 10 is the utility model transfer subassembly structure chart.
Figure 11 enters axis machine for rotor in the utility model and waits for working state figure.
Figure 12 is that rotor enters axis machine working state figure in the utility model.
Figure 13 is shaft press structure drawing of device in the utility model.
Figure 14 is shaft press device and rotor assembly structure figure in the utility model.
Figure 15 is shaft press structure drawing of device in the utility model.
Specific embodiment
Specific further instruction is made to the utility model with reference to the accompanying drawing.A kind of rotary compression machine rotor riveting life
Producing line, it is characterised in that: it includes entering axis machine and rotor squeeze riveter by the rotor that wire body conveyer belt 1 connects;
Wherein the rotor squeeze riveter includes squeeze riveter rack 8 and the mold above squeeze riveter rack 8 presses dress
3 are set, mold pressure riveting device 3 pushes mold pressure riveting device 3 by being provided thereon the telescopic rod 5 at end down, to positioned at mold pressure
The rotor to be riveted 6 set in 3 is riveted to press;The mold pressure riveting device 3 includes being set to the seaming chuck 31 of upper end and setting
Several red pins 32 in the inner, set on lower end lower die positioning disk 33 and set several undershoot needles 34 in the inner, it is to be riveted
Rotor 6 is between seaming chuck 31 and lower die positioning disk 33, and when seaming chuck 31 moves down, red pin 32 is to set on to be riveted turn
Rivet 7 in son 6 presses simultaneously, and overhead is in undershoot needle 34;
It includes into axis machine rack 9 and being set to the shaft press device 4 into 9 top of axis machine rack that the rotor, which enters axis machine, pressure
Axis machine device 4 is pushed shaft press device 4 by being provided thereon the telescopic rod 5 at end down, is turned to being set in shaft press device 4
Son carries out into axis and moves back axis operation;The shaft press device 4 includes entering axis upper die 41 and set on its two sides set on upper end
Move back axis upper die 42, entering axis pedestal 43 and move back axis pedestal 44 set on its two sides set on lower end, move back axis rotor 10 and be placed in
It moves back in axis pedestal 44, enters axis rotor 11 and be placed in axis pedestal 43, transported down when entering axis upper die 41 and moving back axis upper die 42
When dynamic, the mandrel 15 entered in axis rotor 11 is pushed down into axis by the pressure hole 12 entered in axis upper die 41, moves back the top in axis upper die 42
The mandrel 15 moved back in axis rotor 10 release is moved back axis by column 13.
The red pin 32 and 34 quantity of undershoot needle and position distribution are set to opposite with the rivet 7 in rotor 6 to be riveted
It answers.
At least three reset springs 17, reset spring 17 are provided between the lower die positioning disk 33 and lower die positioning plate 16
Thrust is generated always to release lower die positioning disk 33.
The seaming chuck 31 is provided with location hole 19, and lower die positioning disk 33 is provided with lower Positioning holes 20, and to be riveted turn
The mandrel 15 of son 6 is interspersed in installation in upper and lower location hole 19,20.
The shaft press device 4 and enter and be equipped with rewinding disk 18 between axis machine rack 9, rewinding disk 18 is located at shaft press device 4
Underface receives the mandrel 15 for moving back the release of axis rotor 10.
The telescopic rod 5 is hydraulic telescopic rod.
The rotor enters axis machine side and is provided with weighing monitor station 2.
Working principle: in this case, when rotor to be riveted is put into mold pressure riveting device, mold pressure riveting device upper end is stretched
The starting of contracting bar pushes mold pressure riveting device down, the seaming chuck of mold pressure riveting device upper end and sets several upper punchings in the inner
Needle is directed at the rivet of rotor to be riveted, and when vertically moving down, red pin simultaneously presses to the rivet in rotor to be riveted,
And rotor to be riveted is crimped and is formed in undershoot needle by overhead.Compared with traditional rotation riveting, the utility model is used and is once pressed
Just by rotor riveting molding, compared to the rotation riveting that needs are suppressed at least twice or above, efficiency improves at least twice or more, simultaneously
The requirement to equipment precision is greatly reduced, the cost of production is reduced, increases substantially the efficiency and production capacity of production.
After pressing, rotor needs to release mandrel back into axis at this time.It is placed in by will manually move back axis rotor and is moved back
In axis pedestal, enter axis rotor and be placed in axis pedestal, is located at press mold two sides on axis due to moving back press mold on axis, is pressed on axis when entering
Film and when moving back that press mold moves down on axis, the mandrel entered in axis rotor is pushed down into axis by the pressure hole entered in axis upper die, is moved back simultaneously
The mandrel moved back in axis rotor release is moved back axis by top pillar in axis upper die, and by the mandrel of release fall shaft press device just under
In the rewinding disk of side, the process that has been completed at the same time axis and has moved back axis.The time of installation dismounting is not only substantially reduced, it is even more synchronous
The operation of axis is completed into axis and moves back, it is convenient, simple.
The basic principles and main features of the present invention and the advantages of the present invention have been shown and described above.Current row
The technical staff of industry is described in above embodiments and description it should be appreciated that the present utility model is not limited to the above embodiments
Only illustrate the principles of the present invention, on the premise of not departing from the spirit and scope of the utility model, the utility model is also
It will have various changes and improvements, these various changes and improvements fall within the scope of the claimed invention.
Claims (7)
1. a kind of rotary compression machine rotor riveting production line, it is characterised in that: it includes being turned by wire body conveyer belt (1) connection
Son enters axis machine and rotor squeeze riveter;
Wherein the rotor squeeze riveter includes squeeze riveter rack (8) and the mold being set to above squeeze riveter rack (8) presses dress
It sets (3), mold pressure riveting device (3) is pushed mold pressure riveting device (3) by being provided thereon the telescopic rod (5) at end down, contraposition
It presses in the rotor to be riveted (6) in mold pressure riveting device (3);The mold pressure riveting device (3) includes being set to upper end
Seaming chuck (31) and set several red pins (32) in the inner, set on lower end lower die positioning disk (33) and set in the inner
Several undershoot needles (34), rotor (6) to be riveted are located between seaming chuck (31) and lower die positioning disk (33), when seaming chuck (31) down
When movement, red pin (32) presses simultaneously to the rivet (7) being set in rotor to be riveted (6), and overhead is in undershoot needle
(34) on;
It includes axis machine rack (9) and the shaft press device (4) being set to above axis machine rack (9) that the rotor, which enters axis machine,
Shaft press device (4) is pushed shaft press device (4) by being provided thereon the telescopic rod (5) at end down, is filled to shaft press is set to
The rotor in (4) is set to carry out into axis and move back axis operation;The shaft press device (4) includes entering axis upper die set on upper end
(41) axis upper die (42), entering axis pedestal (43) and move back axis pedestal set on its two sides set on lower end are moved back and set on its two sides
(44), it moves back axis rotor (10) and is placed in and move back in axis pedestal (44), enter axis rotor (11) and be placed in into axis pedestal (43), when entering axis
Upper die (41) and when moving back axis upper die (42) and moving down, the pressure hole (12) entered in axis upper die (41) will enter axis rotor (11)
Interior mandrel (15) is pushed down into axis, and the mandrel (15) that moving back the top pillar (13) in axis upper die (42) will move back in axis rotor (10) is released
Move back axis.
2. a kind of rotary compression machine rotor riveting production line according to claim 1, it is characterised in that: the upper punching
Needle (32) and undershoot needle (34) quantity and position distribution are set to corresponding with rivet (7) in rotor to be riveted (6).
3. a kind of rotary compression machine rotor riveting production line according to claim 1, it is characterised in that: the lower die
It is provided between positioning disk (33) and lower die positioning plate (16) at least three reset springs (17), reset spring (17), which generates thrust, to be begun
Lower die positioning disk (33) is released at last.
4. a kind of rotary compression machine rotor riveting production line according to claim 1, it is characterised in that: the upper pressure
Head (31) is provided with location hole (19), and lower die positioning disk (33) is provided with lower Positioning holes (20), the mandrel of rotor (6) to be riveted
(15) it is interspersed in installation in upper and lower location hole (19,20).
5. a kind of rotary compression machine rotor riveting production line according to claim 1, it is characterised in that: the last item
Machine device (4) and enter and be equipped with rewinding disk (18) between axis machine rack (9), rewinding disk (18) is located at shaft press device (4) underface, connects
Receipts move back the mandrel (15) of axis rotor (10) release.
6. a kind of rotary compression machine rotor riveting production line according to claim 1, it is characterised in that: described is flexible
Bar (5) is hydraulic telescopic rod.
7. a kind of rotary compression machine rotor riveting production line according to claim 1, it is characterised in that: the rotor
Enter axis machine side and is provided with weighing monitor station (2).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201821945870.6U CN209375399U (en) | 2018-11-25 | 2018-11-25 | A kind of rotary compression machine rotor riveting production line |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201821945870.6U CN209375399U (en) | 2018-11-25 | 2018-11-25 | A kind of rotary compression machine rotor riveting production line |
Publications (1)
Publication Number | Publication Date |
---|---|
CN209375399U true CN209375399U (en) | 2019-09-10 |
Family
ID=67833809
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
CN201821945870.6U Expired - Fee Related CN209375399U (en) | 2018-11-25 | 2018-11-25 | A kind of rotary compression machine rotor riveting production line |
Country Status (1)
Country | Link |
---|---|
CN (1) | CN209375399U (en) |
-
2018
- 2018-11-25 CN CN201821945870.6U patent/CN209375399U/en not_active Expired - Fee Related
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Legal Events
Date | Code | Title | Description |
---|---|---|---|
GR01 | Patent grant | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20190910 Termination date: 20191125 |