CN222051549U - A plastic encapsulating machine for processing transformers - Google Patents
A plastic encapsulating machine for processing transformers Download PDFInfo
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- CN222051549U CN222051549U CN202420769334.4U CN202420769334U CN222051549U CN 222051549 U CN222051549 U CN 222051549U CN 202420769334 U CN202420769334 U CN 202420769334U CN 222051549 U CN222051549 U CN 222051549U
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Abstract
The utility model relates to the technical field of rubber coating machines, in particular to a rubber coating machine for processing a transformer, which comprises a first driving mechanism and a second driving mechanism, wherein the first driving mechanism comprises a driving cylinder and a rotatable rotating cylinder, the rotating cylinder is provided with a first positioning piece, the first positioning piece comprises a positioning seat, a first clamping block and a second clamping block, and the positioning seat is provided with an electric push rod; the second driving mechanism comprises a second positioning piece arranged beside the driving cylinder, the second positioning piece comprises a positioning column, and a rotatable positioning plate is arranged at the end part of the positioning column; when needing the rubber coating, be close to each other through the first clamp splice and the second clamp splice of first setting element with the transformer and realize the centre gripping under electric putter's drive, the second setting element work of second actuating mechanism afterwards, the locating plate of reference column tip is close to the transformer by the centre gripping, the locating plate supports the transformer and carries out the secondary location, the rotation section of thick bamboo of actuating cylinder carries out the rubber coating work, the transformer is difficult for dropping, guarantees the stability of rubber coating.
Description
Technical Field
The utility model relates to the technical field of rubber coating machines, in particular to a rubber coating machine for processing a transformer.
Background
The transformer, especially small-size transformer, need carry out operations such as send the pipe, send the line, poling when production, will flexible sleeve pipe cuts into target length to wear to establish the wire in cutting two sections sleeve pipes after cutting, twine the wire after poling on PIN foot and the skeleton of transformer respectively, the sleeve pipe is located between PIN foot and the skeleton this moment.
The continuous encapsulation refers to the fact that when the transformer is subjected to multi-layer encapsulation, the adhesive tape is required to be kept from being cut off in the continuous encapsulation process, and in order to ensure good encapsulation effect of the transformer connection encapsulation, the adhesive tape is required to be always kept at a certain matched tension in the continuous encapsulation process.
When the existing rubber coating machine is used for rubber coating a transformer, the transformer is usually clamped on a rotating tool to be positioned, and the rotating tool rotates after an adhesive tape is attached to the rubber coating position of the transformer; due to centrifugal force when the rotating tool rotates, the transformer is easily separated from the rotating tool, resulting in failure of encapsulation.
Disclosure of utility model
The utility model aims to provide an encapsulation machine for processing a transformer, which aims to overcome the defects in the prior art.
In order to achieve the above purpose, the technical scheme of the utility model is as follows:
The first driving mechanism comprises a driving cylinder and a rotating cylinder which can be rotatably arranged on the driving cylinder, wherein the rotating cylinder is provided with a first positioning piece for positioning the transformer, the first positioning piece comprises a positioning seat, a first clamping block and a second clamping block which are arranged on the positioning seat, and the positioning seat is provided with an electric push rod for driving the first clamping block to be close to or far away from the second clamping block; the second driving mechanism comprises a second positioning piece arranged beside the driving cylinder, the second positioning piece comprises a positioning column which can transversely stretch out and draw back, the positioning column is coaxially aligned with the positioning seat, and the end part of the positioning column is provided with a positioning plate which can rotatably prop against the transformer.
Further: the first driving mechanism further comprises a rotation driving piece for driving the rotary drum to rotate in the driving drum, and the rotation driving piece comprises a transmission gear arranged at one end of the rotation drum; the bottom of the driving cylinder is connected with a driving box, and the driving box is provided with a driving gear which can rotate and is meshed with the transmission gear for transmission.
Further: the rotating cylinder is provided with a driving block connected with the positioning seat.
Further: the driving cylinder is internally nested with a rolling bearing which is nested at the outer ring of the rotating cylinder.
Further: the positioning seat is formed with a sliding groove, the first clamping block is formed with a sliding block, the sliding block can slide along the length direction of the sliding groove, the positioning seat is further formed with a driving cavity communicated with the sliding groove, the electric push rod is installed in the driving cavity, and the driving end of the electric push rod is connected with the sliding block.
Further: the second driving mechanism further comprises a supporting seat, the supporting seat is provided with a column plate, the column plate is provided with a transverse sliding seat which can transversely stretch and retract to be close to or far away from the positioning seat, and the positioning column is arranged on the transverse sliding seat.
Further: the driving motor is installed to the stand board, and rotation gear is installed to driving end of driving motor, is provided with the driving medium between rotation gear and the horizontal sliding seat, and rotation gear passes through the driving medium and drives horizontal sliding seat lateral shifting.
Further: the transmission piece includes with the intermediate gear of rotation gear meshing transmission, the rack spare with intermediate gear meshing transmission is installed to the stand board, and the rack spare is along length direction shaping has the direction draw runner, and the stand board is provided with along length direction and supplies the slip track that the direction draw runner slided, and tooth condition top one end is connected with horizontal sliding seat.
Further: the column plate is also provided with a first top seat which is transversely arranged, the first top seat is provided with a guide rail which is parallel to the positioning column, and the top of the transverse sliding seat is provided with a guide groove which can slide along the guide rail.
Further: the second top seat is installed at the stand board top, and the second top seat extends to first actuating mechanism, and the top seat is installed at second top seat top, and lift cylinder is installed to the top seat, and the sword groove that is located the positioning seat top is seted up to the second top seat, and the sword groove is installed and is vertically gliding and cut out the cutter, and lift cylinder's drive end downwardly extending and be connected with the cutter.
The utility model has the beneficial effects that: when needing the rubber coating, be close to each other through the first clamp splice and the second clamp splice of first setting element with the transformer and realize the centre gripping under electric putter's drive, the second setting element work of second actuating mechanism afterwards, the locating plate of reference column tip is close to the transformer by the centre gripping, the locating plate supports the transformer and carries out the secondary location, the rotation section of thick bamboo of actuating cylinder carries out the rubber coating work, the transformer is difficult for dropping, guarantees the stability of rubber coating.
Drawings
FIG. 1 is a schematic diagram of a structure of an encapsulation machine.
Fig. 2 is a schematic structural view of the first driving mechanism.
Fig. 3 is a schematic structural view of the second driving mechanism.
The reference numerals include:
1-a first driving mechanism,
11-Driving cylinder, 12-rotating cylinder, 13-driving box, 14-driving gear, 15-driving gear,
16-Rolling bearing, 17-driving block,
2-A first positioning piece,
21-Positioning seat, 22-first clamping block, 23-second clamping block, 24-sliding groove, 25-sliding block,
A 3-second driving mechanism,
31-Supporting seat, 32-upright post plate, 33-driving motor, 34-rotating gear, 35-intermediate gear,
36-Tooth condition, 37-guide slide, 38-slide track,
4-A transverse sliding seat,
41-Positioning column, 42-plane bearing, 43-positioning plate, 44-first top seat, 45-guiding track,
46-Guiding groove, 47-second top seat, 48-top stand, 49-lifting cylinder, 50-knife groove,
51-Cutting knife.
Detailed Description
The present utility model will be described in detail below with reference to the accompanying drawings.
As shown in fig. 1-3, an encapsulation machine for processing a transformer, a first driving mechanism 1 and a second driving mechanism 3, wherein the first driving mechanism 1 comprises a driving cylinder 11 and a rotating cylinder 12 rotatably installed on the driving cylinder 11, the rotating cylinder 12 is provided with a first positioning piece 2 for positioning the transformer, the first positioning piece 2 comprises a positioning seat 21, a first clamping block 22 and a second clamping block 23 which are installed on the positioning seat 21, and the positioning seat 21 is provided with an electric push rod for driving the first clamping block 22 to be close to or far from the second clamping block 23; the second driving mechanism 3 comprises a second positioning piece arranged beside the driving cylinder 11, the second positioning piece comprises a positioning column 41 which can transversely stretch and retract, the positioning column 41 is coaxially aligned with the positioning seat 21, and the end part of the positioning column 41 is provided with a positioning plate 43 which can rotatably prop against the transformer.
When the encapsulation is needed, the transformer is clamped by being mutually close to each other through the first clamping block 22 and the second clamping block 23 of the first positioning piece 2 under the driving of the electric push rod, then the second positioning piece of the second driving mechanism 3 works, the positioning plate 43 at the end part of the positioning column 41 is close to the clamped transformer, the positioning plate 43 props against the transformer to carry out secondary positioning, the rotating cylinder 12 of the driving cylinder 11 carries out encapsulation, the transformer is not easy to drop, and the encapsulation stability is ensured.
Preferably, the method is used. The positioning column 41 is provided with a planar bearing 42 at the end, and the other end surface of the planar bearing 42 is connected with a positioning plate 43, so that the positioning plate 43 can rotate at the end of the positioning column 41.
The first driving mechanism 1 further comprises a rotation driving piece for driving the rotary drum to rotate in the driving drum 11, and the rotation driving piece comprises a transmission gear 15 arranged at one end of the rotation drum 12; the bottom of the driving cylinder 11 is connected with a driving box 13, the driving box 13 is provided with a driving gear 14 capable of rotating, the driving gear 14 is meshed with a transmission gear 15 for transmission, a servo motor is arranged in the driving box 13 and is meshed with the driving gear 14 for transmission, and the driving gear 14 is meshed with the transmission gear 15 for transmission gear 15 drives a rotating cylinder 12 arranged on the driving cylinder 11 to rotate, so that the first positioning piece 2 is rotated.
Further, the rotary cylinder 12 is provided with a driving block 17 connected to the positioning seat 21, the driving block 17 extends outward and is connected to the positioning seat 21, and when the rotary cylinder 12 rotates, the positioning seat 21 rotates correspondingly by the connection of the driving block 17.
Further, the rolling bearing 16 is nested in the driving barrel 11, the rolling bearing 16 is nested at the outer ring of the rotating barrel 12, the rotating barrel 12 is installed in the driving barrel 11 through the rolling bearing 16, when the rotating barrel 12 rotates, the driving barrel 11 cannot rotate, and the rotating barrel 12 can smoothly and stably rotate, so that the encapsulation stability is ensured.
The positioning seat 21 is formed with a sliding groove 24, the first clamping block 22 is formed with a sliding block 25, the sliding block 25 can slide along the length direction of the sliding groove 24, the positioning seat 21 is also formed with a driving cavity communicated with the sliding groove 24, an electric push rod is arranged in the driving cavity, the driving end of the electric push rod is connected with the sliding block 25, and the sliding block 25 of the first clamping block 22 slides along the sliding groove 24 under the driving of the electric push rod, so that the first clamping block 22 is close to or far away from the second clamping block 23, and the clamping and positioning of a transformer are realized.
The second driving mechanism 3 further comprises a supporting seat 31, the supporting seat 31 is provided with a stand column plate 32, the stand column plate 32 is provided with a transverse sliding seat 4 which can transversely stretch and retract to be close to or far away from the positioning seat 21, the positioning column 41 is arranged on the transverse sliding seat 4, the transverse sliding seat 4 transversely moves, the positioning plate 43 is coaxially aligned with the positioning seat 21 under the support of the supporting seat 31 and the stand column plate 32, after the first positioning piece 2 of the positioning seat 21 is clamped, the positioning plate 43 is simultaneously close to the positioning seat 21, and simultaneously clamps and positions two sides of a transformer, so that the falling probability of the transformer is greatly reduced.
The driving motor 33 is installed to the stand board 32, and the drive end of driving motor 33 installs the rotation gear 34, is provided with the driving medium between rotation gear 34 and the horizontal sliding seat 4, and rotation gear 34 passes through the driving medium and drives horizontal sliding seat 4 lateral shifting, and horizontal sliding seat 4 realizes that lateral shifting takes locating plate 43 to be close to or keep away from locating seat 21 under the drive of driving motor 33 cooperation driving medium.
Preferably, the transmission member comprises an intermediate gear 35 meshed with the rotary gear 34, a rack member 36 meshed with the intermediate gear 35 is mounted on the column plate 32, a guide slide bar 37 is formed on the rack member 36 along the length direction, a sliding track 38 for sliding the guide slide bar 37 is arranged on the column plate 32 along the length direction, one end of the top of the rack member 36 is connected with the transverse sliding seat 4, the intermediate gear 35 transversely moves under the driving of the driving gear 14, the guide slide bar 37 of the rack member 36 slides along the sliding track 38, so that the rack member 36 linearly moves to drive the transverse sliding seat 4 to linearly move, and coaxiality with the positioning seat 21 is ensured.
Preferably, the pillar board 32 is further provided with a first top seat 44 arranged transversely, the first top seat 44 is provided with a guide rail 45 parallel to the positioning column 41, a guide groove 46 capable of sliding along the guide rail 45 is formed at the top of the transverse sliding seat 4, and when the transverse sliding seat 4 slides linearly, the guide groove 46 formed at the top can slide linearly along the guide rail 45, so that the transverse sliding stability of the transverse sliding seat 4 is further improved.
The top of the column plate 32 is provided with a second top seat 47, the second top seat 47 extends towards the first driving mechanism 1, the top of the second top seat 47 is provided with a top vertical seat 48, the top vertical seat 48 is provided with a lifting cylinder 49, the second top seat 47 is provided with a cutter groove 50 positioned above the positioning seat 21, the cutter groove 50 is provided with a cutter 51 which longitudinally slides, and the driving end of the lifting cylinder 49 extends downwards and is connected with the cutter 51; after the encapsulation of the transformer is completed, the adhesive tape needs to be cut, and at this time, the cutting knife 51 above the positioning seat 21 is driven by the lifting cylinder 49 mounted on the top stand 48 to move longitudinally, and slide in the knife slot 50 in a guiding manner, so that the adhesive tape can be cut.
In view of the above, the present utility model has the above-mentioned excellent characteristics, so that it can be used to improve the performance and practicality of the prior art, and is a product with great practical value.
The foregoing is merely exemplary of the present utility model, and those skilled in the art should not be considered as limiting the utility model, since modifications may be made in the specific embodiments and application scope of the utility model in light of the teachings of the present utility model.
Claims (10)
1. A rubber coating machine for processing transformer, first actuating mechanism and second actuating mechanism, first actuating mechanism includes a drive section of thick bamboo and can install the rotary drum at the drive section of thick bamboo rotationally, its characterized in that: the rotating cylinder is provided with a first positioning piece for positioning the transformer, the first positioning piece comprises a positioning seat, a first clamping block and a second clamping block which are arranged on the positioning seat, and the positioning seat is provided with an electric push rod for driving the first clamping block to be close to or far from the second clamping block; the second driving mechanism comprises a second positioning piece arranged beside the driving cylinder, the second positioning piece comprises a positioning column which can transversely stretch out and draw back, the positioning column is coaxially aligned with the positioning seat, and the end part of the positioning column is provided with a positioning plate which can rotatably prop against the transformer.
2. The encapsulation machine for processing transformers according to claim 1, wherein: the first driving mechanism further comprises a rotation driving piece for driving the rotary drum to rotate in the driving drum, and the rotation driving piece comprises a transmission gear arranged at one end of the rotation drum; the bottom of the driving cylinder is connected with a driving box, and the driving box is provided with a driving gear which can rotate and is meshed with the transmission gear for transmission.
3. A glue machine for processing transformers according to claim 2, characterized in that: the rotating cylinder is provided with a driving block connected with the positioning seat.
4. A glue machine for processing transformers according to claim 3, characterized in that: the driving cylinder is internally nested with a rolling bearing, and the rolling bearing is nested at the outer ring of the rotating cylinder.
5. The encapsulation machine for processing transformers of claim 4, wherein: the positioning seat is formed with a sliding groove, the first clamping block is formed with a sliding block, the sliding block can slide along the length direction of the sliding groove, the positioning seat is further formed with a driving cavity communicated with the sliding groove, the electric push rod is installed in the driving cavity, and the driving end of the electric push rod is connected with the sliding block.
6. The encapsulation machine for processing transformers according to claim 1, wherein: the second driving mechanism further comprises a supporting seat, the supporting seat is provided with a column plate, the column plate is provided with a transverse sliding seat which can transversely stretch and retract to be close to or far from the positioning seat, and the positioning column is arranged on the transverse sliding seat.
7. The encapsulation machine for processing transformers of claim 6, wherein: the column plate is provided with a driving motor, the driving end of the driving motor is provided with a rotating gear, a transmission part is arranged between the rotating gear and the transverse sliding seat, and the rotating gear drives the transverse sliding seat to transversely move through the transmission part.
8. The encapsulation machine for processing transformers of claim 7, wherein: the transmission piece comprises an intermediate gear meshed with the rotary gear, the stand column plate is provided with a rack piece meshed with the intermediate gear, the rack piece is provided with a guide sliding strip along the length direction, the stand column plate is provided with a sliding track for the guide sliding strip to slide along the length direction, and one end of the tooth condition top is connected with the transverse sliding seat.
9. The encapsulation machine for processing transformers of claim 8, wherein: the column plate is further provided with a first top seat which is transversely arranged, the first top seat is provided with a guide rail which is parallel to the positioning column, and the top of the transverse sliding seat is provided with a guide groove which can slide along the guide rail.
10. The encapsulation machine for processing transformers according to claim 9, wherein: the second top seat is installed at the stand board top, and the second top seat extends to first actuating mechanism, and the top seat is installed at second top seat top, and the lift cylinder is installed to the top seat, and the sword groove that is located the positioning seat top is offered to the second top seat, and the sword groove installs vertical gliding cutting knife, and the drive end downwardly extending of lift cylinder is connected with the cutting knife.
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202420769334.4U CN222051549U (en) | 2024-04-15 | 2024-04-15 | A plastic encapsulating machine for processing transformers |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202420769334.4U CN222051549U (en) | 2024-04-15 | 2024-04-15 | A plastic encapsulating machine for processing transformers |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| CN222051549U true CN222051549U (en) | 2024-11-22 |
Family
ID=93499584
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| CN202420769334.4U Active CN222051549U (en) | 2024-04-15 | 2024-04-15 | A plastic encapsulating machine for processing transformers |
Country Status (1)
| Country | Link |
|---|---|
| CN (1) | CN222051549U (en) |
-
2024
- 2024-04-15 CN CN202420769334.4U patent/CN222051549U/en active Active
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