CN218100966U - Full-automatic pneumatic winding device for transformer - Google Patents
Full-automatic pneumatic winding device for transformer Download PDFInfo
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- CN218100966U CN218100966U CN202221958491.7U CN202221958491U CN218100966U CN 218100966 U CN218100966 U CN 218100966U CN 202221958491 U CN202221958491 U CN 202221958491U CN 218100966 U CN218100966 U CN 218100966U
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Abstract
The utility model discloses a transformer is with full-automatic pneumatic crimping device, this crimping device aim at solving prior art and descend crimping device can't carry out the effect that elasticity chucking transported to the transformer line, also lack the technical problem of direction regulation flattening effect simultaneously. The wire pressing device comprises a wire pressing connecting plate, a control box module arranged on the wire pressing connecting plate and a wire inlet module which is connected to the wire pressing connecting plate and used for a transformer wire to pass through; the line ball connecting plate outside is provided with the cooperation direction module that is used for removing the direction, and the line ball connecting plate outside is provided with the rotation flattening module that is used for adjusting the flattening to the transformer line, and the line ball connecting plate outside is provided with and is used for carrying out the pneumatics of pneumatic regulation compressing tightly to the transformer line and presses the module. The line pressing device can achieve the effect of elastic clamping of the incoming line through the incoming line module, and can achieve the effect of guiding, adjusting and leveling of the transformer line through matching of the guiding module and rotation of the leveling module.
Description
Technical Field
The utility model belongs to the technical field of cord grip, concretely relates to full-automatic pneumatic cord grip for transformer.
Background
Nowadays, the cord grip function that the transformer used on the market is comparatively single, when using, can't carry out the effect of elasticity chucking transportation to the transformer line to lead to its can not be stable carry out the rolling wire winding, cord grip inside also lacks certain direction simultaneously and adjusts the flattening effect, has further reduced cord grip's availability factor.
At present, the utility model patent of patent number CN201920011594.4 discloses a transformer line ball mechanism, include support, line ball group and rotatably install the support piece on the support, support piece can load the transformer, but the relative support oscilaltion of line ball group removes about and, line ball group is located support piece's top or one side. This support piece of crimping mechanism can load the transformer, can drive the rotatory wire winding of transformer, treat the wire winding and accomplish the back, the line ball group removes to one side of support piece, compress tightly the end of a thread after cutting off and conclude into the hanging wire inslot, prevent that loose and the perk's condition from appearing in the end of a thread, make things convenient for follow-up end of a thread to twine the operation of terminal, but this cord grip is when using, can't carry out the effect of elasticity chucking transportation to the transformer line, thereby lead to its can not be stable rolling wire winding that carries on, the inside certain direction regulation flattening effect that also lacks of cord grip simultaneously, the availability factor of cord grip has further been reduced.
Therefore, to the effect that above-mentioned cord grip can't carry out elasticity chucking transportation to the transformer line, also lack the problem of direction regulation flattening effect simultaneously, need solve urgently to improve cord grip's use scene.
SUMMERY OF THE UTILITY MODEL
(1) Technical problem to be solved
To prior art's not enough, the utility model aims to provide a transformer is with full-automatic pneumatic crimping device, this crimping device aims at solving prior art and puts the unable effect that carries out the transportation of elasticity chucking to the transformer line down, also lacks the technical problem of direction regulation flattening effect simultaneously.
(2) Technical scheme
In order to solve the technical problem, the utility model provides a full-automatic pneumatic wire pressing device for a transformer, which comprises a wire pressing connecting plate, a control box module arranged on the wire pressing connecting plate, and a wire inlet module connected with the wire pressing connecting plate and used for a transformer wire to pass through; the transformer wire pressing device is characterized in that a matched guide module for moving and guiding is arranged on the outer side of the wire pressing connecting plate, a rotating leveling module for adjusting and leveling the transformer wire is arranged on the outer side of the wire pressing connecting plate, a pneumatic pressing module for performing pneumatic adjustment and compression on the transformer wire is arranged on the outer side of the wire pressing connecting plate, and a vertical pneumatic adjusting cylinder is arranged inside the pneumatic pressing module.
When the wire pressing device adopting the technical scheme is used, the effect of elastic clamping incoming wires can be achieved through the incoming wire module, the matching guide module arranged on the outer side of the wire pressing connecting plate and used for moving the guide and the rotating leveling module arranged on the outer side of the wire pressing connecting plate and used for adjusting the leveling of the transformer wire can play a role in guiding and adjusting the leveling of the transformer wire, and meanwhile, the pneumatic pressing module arranged on the outer side of the wire pressing connecting plate and used for pneumatically adjusting and compressing the transformer wire can play a role in adjusting the pressing wire.
Preferably, the inlet wire module is internally provided with a reinforcing support rod, an inlet wire groove plate is arranged on the outer side of the reinforcing support rod, and an inlet wire cavity is formed in the inlet wire groove plate. Through the setting of consolidating the bracing piece, can play the effect of joint support, and through the setting of inlet wire frid and inlet wire cavity, can be convenient for the transformer line carry out the inlet wire.
Furthermore, an arc-shaped through groove is formed in the inner side of the inlet wire cavity, and an elastic adjusting block used for adjusting and compressing is arranged on the inner side of the arc-shaped through groove. The arc-shaped through groove can play a role in positioning and passing, and the elastic adjusting block can play a role in elastic adjustment and compression.
Still further, the inboard cardboard in the arc that is used for cooperating the chucking that is provided with of elasticity regulating block, the inside hydraulic lifting rod that is used for adjusting from top to bottom that is included of control box module. Through the setting of cardboard in the arc, can play the inside effect of adjusting the chucking, and through the setting of hydraulic lifting rod, can play the effect that the removal was adjusted in the cooperation from top to bottom.
Still further, hydraulic lifting rod upside is provided with the removal connecting plate, the inside guide sleeve who is used for being connected the use with the removal connecting plate that is used for of cooperation guide module, the guide sleeve inboard is provided with the soft layer of abrasionproof loss. Through the setting of removing the connecting plate, can play the linkage effect, and through the setting of guide sleeve and the soft layer of abrasionproof loss, can play the effect of adjusting the direction.
Preferably, the rotary leveling module comprises a side mounting plate inside, a rotary driving motor is arranged on the outer side of the side mounting plate, a rotary connecting shaft is arranged at the output end of the rotary driving motor, and a guide roller is arranged on the outer side of the rotary connecting shaft. Through the setting of rotary driving motor, can drive and rotate the connecting axle and rotate to it rotates to drive guide cylinder, thereby plays the effect of cooperation flattening.
Preferably, the lower plate is placed including pressing inside the wire pressing connecting plate, the support column is included inside the pneumatic pressing module, the support column outside is provided with the protection roof that is used for cooperating the pneumatic adjusting cylinder to connect and use, the pneumatic adjusting cylinder downside is provided with the spacing lasso that is used for carrying on spacing connection removal, spacing lasso downside is provided with the removal and presses the upper plate, press and place the lower plate and remove and press the upper plate inside and seted up the wire casing. Through the setting of pneumatic control cylinder, can drive the removal and press the upper plate and reciprocate, and through pressing the setting of placing the hypoplastron, can play the effect that the line ball was adjusted in the cooperation.
(3) Advantageous effects
Compared with the prior art, the beneficial effects of the utility model reside in that: the utility model discloses a cord grip utilizes the inlet wire module can play the effect of elasticity chucking inlet wire, and the rotation flattening module that sets up in the cooperation guide module that sets up through the cord connection board outside and the cord connection board outside can play the effect that the flattening was adjusted to the direction to the transformer line, utilizes the pneumatic pressing module that the cord connection board outside set up to play the effect of adjusting the line ball simultaneously.
Drawings
FIG. 1 is a schematic structural diagram of a specific embodiment of the wire pressing device of the present invention;
FIG. 2 is a cross-sectional view of one embodiment of the wire pressing device of the present invention;
FIG. 3 is a schematic structural view of a movable pressing upper plate in an embodiment of the wire pressing device of the present invention;
fig. 4 is a side view and a cross-sectional view of the wire-feeding groove plate in one embodiment of the wire pressing device of the present invention.
The labels in the figures are: 1. pressing line connecting plates; 2. a control box module; 3. an incoming line module; 4. a mating guide module; 5. rotating the leveling module; 6. a pneumatic pressing module; 7. a pneumatic adjusting cylinder; 8. reinforcing the support rod; 9. a wire inlet groove plate; 10. a wire inlet cavity; 11. the arc passes through the slot; 12. an elastic adjusting block; 13. an arc-shaped inner clamping plate; 14. a hydraulic lifting rod; 15. moving the connecting plate; 16. a guide sleeve; 17. an abrasion-resistant soft layer; 18. a side mounting plate; 19. a rotary drive motor; 20. rotating the connecting shaft; 21. a guide roller; 22. pressing and placing the lower plate; 23. a support pillar; 24. a protective roof; 25. a limiting ferrule; 26. moving the pressing upper plate; 27. and a wire passing groove.
Detailed Description
The specific embodiment is a full-automatic pneumatic wire pressing device for a transformer, the structural schematic diagram of which is shown in fig. 1, and the sectional view of which is shown in fig. 2, the wire pressing device comprises a wire pressing connection plate 1, a control box module 2 installed on the wire pressing connection plate 1, and a wire inlet module 3 connected to the wire pressing connection plate 1 and used for a transformer wire to pass through; the outside of the wire pressing connecting plate 1 is provided with a matched guide module 4 for moving and guiding, the outside of the wire pressing connecting plate 1 is provided with a rotating leveling module 5 for adjusting the leveling of the transformer wire, the outside of the wire pressing connecting plate 1 is provided with a pneumatic pressing module 6 for pneumatically adjusting and pressing the transformer wire, and a vertical pneumatic adjusting cylinder 7 is arranged inside the pneumatic pressing module 6.
For the present embodiment, the number of units of the pneumatic adjusting cylinder 7 can be increased or decreased according to the design requirement.
Wherein, the inside reinforcing support rod 8 that is provided with of inlet wire module 3, the reinforcing support rod 8 outside is provided with inlet wire frid 9, inlet wire cavity 10 has been seted up to inlet wire frid 9 inside, inlet wire cavity 10 inboard is provided with the arc and passes groove 11, the arc passes groove 11 inboard and is provided with the elastic adjusting block 12 that is used for adjusting to compress tightly, elastic adjusting block 12 inboard is provided with cardboard 13 in the arc that is used for cooperating the chucking, control box module 2 is inside including the hydraulic lifting rod 14 that is used for adjusting from top to bottom. The number of the elastic adjusting blocks 12 can be adjusted according to the use requirement.
In addition, a movable connecting plate 15 is arranged on the upper side of the hydraulic lifting rod 14, a guide sleeve 16 used for being connected with the movable connecting plate 15 for use is arranged inside the matched guide module 4, an anti-abrasion soft layer 17 is arranged on the inner side of the guide sleeve 16, a side mounting plate 18 is arranged inside the rotary leveling module 5, a rotary driving motor 19 is arranged outside the side mounting plate 18, a rotary connecting shaft 20 is arranged at the output end of the rotary driving motor 19, a guide roller 21 is arranged outside the rotary connecting shaft 20, a lower plate 22 is arranged inside the wire pressing connecting plate 1 and pressed, a support column 23 is arranged inside the pneumatic pressing module 6, a protective top plate 24 used for being connected with the pneumatic adjusting cylinder 7 for use is arranged outside the support column 23, a limiting ring 25 used for limiting connection and movement is arranged on the lower side of the pneumatic adjusting cylinder 7, a movable pressing upper plate 26 is arranged on the lower side of the limiting ring 25, and a wire passing groove 27 is formed inside the pressed lower plate 22 and the movable pressing upper plate 26.
The structure of the movable pressing upper plate in the line pressing device is schematically shown in figure 3, wherein the side sectional view of the line feeding groove plate is shown in figure 4.
It should be noted that the number of the guide sleeves 16 may be increased or decreased according to actual needs.
When the wire pressing device of the technical scheme is used, firstly, the effect of connection support can be played through the reinforcing support rod 8, the transformer wire can be conveniently led in through the wire inlet groove plate 9 and the wire inlet cavity 10, then the effect of positioning and passing can be played through the arc-shaped through the groove 11, the effect of elastic adjustment and compression can be played through the elastic adjusting block 12, meanwhile, the effect of internal adjustment clamping can be played through the clamping plate 13 in the arc-shaped, the effect of vertical cooperation adjustment and movement can be played through the hydraulic lifting rod 14, then the linkage effect can be played through the movable connecting plate 15, the effect of adjustment and guiding can be played through the guide sleeve 16 and the anti-abrasion soft layer 17, meanwhile, the rotary driving motor 19 can be driven to rotate the rotary driving roller 20, the connecting shaft can be driven to rotate, the connecting shaft can be matched and leveled, finally, the movable upper plate 26 can be driven to move up and down through the pneumatic adjusting cylinder 7, and the effect of matching and adjustment of wire pressing the lower plate 22 can be played.
Claims (7)
1. The wire pressing device comprises a wire pressing connecting plate, a control box module arranged on the wire pressing connecting plate, and a wire inlet module connected to the wire pressing connecting plate and used for a transformer wire to pass through; the pneumatic pressing device is characterized in that a matched guide module used for moving and guiding is arranged on the outer side of the pressing line connecting plate, a rotating leveling module used for adjusting and leveling transformer wires is arranged on the outer side of the pressing line connecting plate, a pneumatic pressing module used for carrying out pneumatic adjustment and pressing on the transformer wires is arranged on the outer side of the pressing line connecting plate, and a vertical pneumatic adjusting cylinder is arranged inside the pneumatic pressing module.
2. The full-automatic pneumatic wire pressing device for the transformer as claimed in claim 1, wherein a reinforcing support rod is included inside the wire inlet module, a wire inlet groove plate is arranged outside the reinforcing support rod, and a wire inlet cavity is formed inside the wire inlet groove plate.
3. The full-automatic pneumatic wire pressing device for the transformer as claimed in claim 2, wherein an arc-shaped through groove is formed inside the wire inlet cavity, and an elastic adjusting block for adjusting and pressing is arranged inside the arc-shaped through groove.
4. The full-automatic pneumatic coil pressing device for the transformer according to claim 3, wherein an arc-shaped inner clamping plate for matching and clamping is arranged on the inner side of the elastic adjusting block, and a hydraulic lifting rod for up-and-down adjustment is arranged in the control box module.
5. The full-automatic pneumatic wire pressing device for the transformer according to claim 4, wherein a movable connecting plate is arranged on the upper side of the hydraulic lifting rod, a guide sleeve used for being connected with the movable connecting plate is arranged inside the matching guide module, and an anti-abrasion soft layer is arranged on the inner side of the guide sleeve.
6. The full-automatic pneumatic wire pressing device for the transformer according to claim 1, wherein the rotary leveling module comprises a side mounting plate inside, a rotary driving motor is arranged outside the side mounting plate, a rotary connecting shaft is arranged at an output end of the rotary driving motor, and a guide roller is arranged outside the rotary connecting shaft.
7. The full-automatic pneumatic wire pressing device for the transformer according to claim 1, wherein the wire pressing connection plate comprises a pressing placement lower plate inside, the pneumatic pressing module comprises a support column inside, a protective top plate used for being connected and used with a pneumatic adjusting cylinder is arranged outside the support column, a limiting ferrule used for limiting, connecting and moving is arranged on the lower side of the pneumatic adjusting cylinder, a movable pressing upper plate is arranged on the lower side of the limiting ferrule, and wire passing grooves are formed in the pressing placement lower plate and the movable pressing upper plate.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202221958491.7U CN218100966U (en) | 2022-07-27 | 2022-07-27 | Full-automatic pneumatic winding device for transformer |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202221958491.7U CN218100966U (en) | 2022-07-27 | 2022-07-27 | Full-automatic pneumatic winding device for transformer |
Publications (1)
Publication Number | Publication Date |
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CN218100966U true CN218100966U (en) | 2022-12-20 |
Family
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Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN202221958491.7U Active CN218100966U (en) | 2022-07-27 | 2022-07-27 | Full-automatic pneumatic winding device for transformer |
Country Status (1)
Country | Link |
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CN (1) | CN218100966U (en) |
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2022
- 2022-07-27 CN CN202221958491.7U patent/CN218100966U/en active Active
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