CN210176178U - Vertical automatic dish admission machine that trades of pull rod constructs - Google Patents
Vertical automatic dish admission machine that trades of pull rod constructs Download PDFInfo
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- CN210176178U CN210176178U CN201920668051.XU CN201920668051U CN210176178U CN 210176178 U CN210176178 U CN 210176178U CN 201920668051 U CN201920668051 U CN 201920668051U CN 210176178 U CN210176178 U CN 210176178U
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Abstract
The utility model discloses a vertical automatic set admission machine that trades of pull rod constructs, which comprises a frame, winding displacement mechanism, first drum, first acting guide rail, first pendulum rod leading wheel, first dish wheel that trades, first dish arm that trades, first acting wheel, first dish pendulum rod that trades, the second drum, second acting guide rail, second pendulum rod leading wheel, the second trades a set arm, second acting wheel and second trade a set pendulum rod, first dish arm that trades is articulated with first dish pendulum rod that trades, first acting wheel sets up at first dish pendulum rod that trades, first pendulum rod leading wheel and first acting guide rail roll connection, second trades a set arm and second and trades a set pendulum rod articulated, the setting of second acting wheel is at second dish pendulum rod that trades, second pendulum rod leading wheel and second acting guide rail roll connection. This vertical automatic change of pull rod coils admission machine constructs can be under the wire-wound circumstances of not stopping, realizes continuing to receive the line after coiling a line to another drum, and the precision is high, and efficiency is rapid, does not influence production.
Description
Technical Field
The utility model relates to a technical field of admission machine especially relates to a vertical automatic set admission machine that trades of pull rod constructs.
Background
The existing wire winding process is formed by manually winding a rotating wire coil, and has the disadvantages of low automation degree, low efficiency, serious influence on production and huge consumption of manpower and material resources.
SUMMERY OF THE UTILITY MODEL
The utility model discloses an aim at: the utility model provides a vertical automatic set admission machine that trades of pull rod constructs, this vertical automatic set admission machine that trades of pull rod constructs can be under the wire-wound circumstances of not stopping, realizes continuing to receive the line after coiling a line to another drum, and the precision is high, and efficiency is rapid, does not influence production.
To achieve the purpose, the utility model adopts the following technical proposal: a pull rod vertical type automatic disc changing and winding mechanism comprises a rack, a winding mechanism, a first wire disc, a first wire drawing guide rail, a first swing rod guide wheel, a first disc changing arm, a first wire drawing wheel, a first disc changing swing rod, a second wire disc, a second wire drawing guide rail, a second swing rod guide wheel, a second disc changing arm, a second wire drawing wheel and a second disc changing swing rod, wherein the winding mechanism is fixedly arranged on the rack, the first wire disc and the second wire disc are rotatably connected on the rack,
the first wire drawing guide rail is provided with one side of the first wire coil close to the second wire coil, the first wire coil changing wheel is installed on the first wire coil, one end of the first wire coil changing arm is connected with the first wire coil changing wheel, the other end of the first wire coil changing arm is hinged with the first wire coil changing swing rod, the first wire drawing wheel is arranged at one end of the first wire coil changing swing rod, the first swing rod guide wheel is arranged at the other end of the first wire coil changing swing rod, the first swing rod guide wheel is in rolling connection with the first wire drawing guide rail, the first wire drawing guide rail is arranged in an arc shape, one end of the first wire drawing guide rail is connected with the first wire coil, and a first wire catching notch is formed in the first wire coil,
the second wire drawing guide rail is provided with a second wire coil close to one side of the first wire coil, the second wire coil changing wheel is installed on the second wire coil, one end of a second wire coil changing arm is connected with the second wire coil changing wheel, the other end of the second wire coil changing arm is hinged to a second wire coil changing swing rod, the second wire drawing wheel is arranged at one end of the second wire coil changing swing rod, the second swing rod guide wheel is arranged at the other end of the second wire coil changing swing rod, the second swing rod guide wheel is in rolling connection with the second wire drawing guide rail, the second wire drawing guide rail is arranged in an arc shape, one end of the second wire drawing guide rail is connected with the second wire coil, and a second wire catching notch is formed in the second wire coil.
As a preferable technical scheme, a first disc changing motor and a second disc changing motor are further arranged on the rack, a driving end of the first disc changing motor is in transmission connection with the first disc changing wheel, and a driving end of the second disc changing motor is in transmission connection with the second disc changing wheel.
As an optimal technical scheme, a first wire winding motor and a second wire winding motor are arranged on the rack, the driving end of the first wire winding motor is in transmission connection with the first wire disc, and the driving end of the second wire winding motor is in transmission connection with the second wire disc.
As a preferable technical scheme, the winding displacement mechanism is provided with a tension swing rod, a tension guide wheel and a wire guide wheel, one end of the tension swing rod is connected in the winding displacement mechanism, the tension guide wheel is rotatably connected at the other end of the tension swing rod, the tension guide wheel is in transmission connection with the wire guide wheel, and the winding displacement mechanism is further provided with a winding displacement guide wheel for guiding.
As a preferred technical scheme, the first wire catching notch and the second wire catching notch are respectively provided with a wire catching device, each wire catching device comprises a wire catching clamp, a movable spring and a wire catching fixing block, one side of each wire catching fixing block is provided with a first inclined plane, a spring groove is formed in each first inclined plane, each movable spring is located in each spring groove, one end of each movable spring is connected with the corresponding wire catching clamp, and one end, far away from the corresponding movable spring, of each wire catching clamp is provided with a second inclined plane.
As an optimal technical scheme, the line catching device comprises a line catching limiting block, a mounting groove is formed in the middle of the line catching fixing block, the line catching limiting block is mounted in the mounting groove, and the line catching limiting block is connected with the middle of the line catching clamp.
As a preferable technical scheme, the first thread catching notch and the second thread catching notch are both provided with thread pressing rods.
The utility model has the advantages that: the utility model provides a vertical automatic set admission machine that trades of pull rod constructs, this vertical automatic set admission machine that trades of pull rod constructs can be under the wire-wound circumstances of not stopping, realizes continuing to receive the line after coiling a line to another drum, and the precision is high, and efficiency is rapid, does not influence production.
Drawings
The present invention will be described in further detail with reference to the accompanying drawings and examples.
FIG. 1 is a first overall top view (before wire replacement) of a pull rod vertical type automatic reel-changing take-up mechanism according to an embodiment;
FIG. 2 is a second overall plan view (in the pull wire) of the pull rod vertical type automatic reel changing take-up mechanism according to the embodiment;
FIG. 3 is a third overall plan view (during line cutting) of the pull rod vertical type automatic reel changing take-up mechanism according to the embodiment;
FIG. 4 is a schematic side view of the vertical automatic reel changing and rewinding mechanism according to the embodiment;
FIG. 5 is a schematic front view of a vertical automatic reel-changing and take-up mechanism according to an embodiment of the present invention;
FIG. 6 is a schematic top view of a first wire coil according to an embodiment;
FIG. 7 is a schematic diagram of a side view of a first wire coil according to an embodiment;
FIG. 8 is a schematic diagram of a side view of a wire trap in accordance with an embodiment;
fig. 9 is a schematic top view of an exemplary wire trap;
FIG. 10 is a first weld view of the pull wire guide and the slide rail mount according to the embodiment;
FIG. 11 is a second weld view of the wire guide and the shoe according to the embodiment.
In fig. 1 to 11:
1. a frame; 2. a first wire coil; 3. a second wire coil; 4. a first pull wire guide rail; 5. a second pull wire guide rail; 6. a first disc changing wheel; 7. a second reel changing wheel; 8. a first tray changing arm; 9. a second disc changing arm; 10. a first wire pulling wheel; 11. a second wire pulling wheel; 12. a first disc-changing swing rod; 13. a second disc-changing swing rod; 14. a first wire catching notch; 15. a second wire catching notch; 16. a first disc changer motor; 17. a second disc changer motor; 18. a first take-up motor; 19. a second take-up motor; 20. a wire arranging mechanism; 21. a tension swing rod; 22. a tension guide wheel; 23. a wire guide wheel; 24. a wire grabbing clamp; 25. a movable spring; 26. a wire grabbing fixing block; 27. a first inclined surface; 28. a second inclined surface; 29. a line grabbing limiting block; 30. a wire pressing rod; 31. a metal wire; 32. a first swing rod guide wheel; 33. a second swing rod guide wheel; 34. a wire arranging guide wheel; 35. a slide rail seat.
Detailed Description
The technical solution of the present invention is further explained by the following embodiments with reference to the accompanying drawings.
As shown in fig. 1 to 11, in this embodiment, a pull rod vertical type automatic reel changing and winding mechanism includes a rack 1, a winding displacement mechanism 20, a first reel 2, a first pull guide rail 4, a first swing link guide wheel 32, a first reel changing wheel 6, a first reel changing arm 8, a first pull wheel 10, a first reel changing swing link 12, a second reel 3, a second pull guide rail 5, a second swing link guide wheel 33, a second reel changing wheel 7, a second reel changing arm 9, a second pull wheel 11, and a second reel changing swing link 13, wherein the winding displacement mechanism 20 is fixedly mounted on the rack 1, the first reel 2 and the second reel 3 are rotatably connected to the rack 1,
the first wire drawing guide rail 4 is provided with one side of the first wire coil close to the second wire coil, the first wire coil changing wheel 6 is installed on the first wire coil 2, one end of the first wire coil changing arm 8 is connected with the first wire coil changing wheel 6, the other end of the first wire coil changing arm 8 is hinged with the first wire coil changing swing rod 12, the first wire drawing wheel 10 is arranged at one end of the first wire coil changing swing rod 12, the first swing rod guide wheel 32 is arranged at the other end of the first wire coil changing swing rod 12, the first swing rod guide wheel 32 is in rolling connection with the first wire drawing guide rail 4, the first wire drawing guide rail 4 is arranged in an arc shape, one end of the first wire drawing guide rail 4 is connected with the first wire coil 2, and the first wire drawing notch 14 is arranged on the first wire coil 2,
the second stay wire guide rail 5 is provided with one side of the second wire coil close to the first wire coil, the second reel changing wheel 7 is installed on the second wire coil 3, one end of the second reel changing arm 9 is connected with the second reel changing wheel 7, the other end of the second reel changing arm 9 is hinged to the second reel changing swing rod 13, the second stay wire wheel 11 is arranged at one end of the second reel changing swing rod 13, the second swing rod guide wheel 33 is arranged at the other end of the second reel changing swing rod 13, the second swing rod guide wheel 33 is in rolling connection with the second stay wire guide rail 5, the second stay wire guide rail 5 is arranged in an arc shape, one end of the second stay wire guide rail 5 is connected with the second wire coil 3 in a connecting mode, and a second stay wire notch 15 is formed in the second wire coil 3.
When the wire winding mechanism works, a metal wire 31 coming out of the wire winding mechanism 20 is wound on the first wire coil 2, the first wire coil 2 winds the metal wire 31 through continuous rotation, after the wire is wound on the first wire coil 2, the second wire coil changing wheel 7 rotates to control the second wire coil changing arm 9 to rotate for a certain angle, the second swing rod guide wheel 33 enters the second wire drawing guide rail 5, the second swing rod guide wheel 33 is guided by the second wire drawing guide rail 5 to approach the second wire coil 3, under the relative hinging action between the second wire coil changing swing rod 13 and the second wire coil changing arm 9, the second wire drawing wheel 11 approaches the first wire coil 2, the wire end on the first wire coil 2 is pulled out by the second wire drawing wheel 11, and then the second swing rod guide wheel 33 returns along the original path of the second wire drawing guide rail 5, the second wire drawing wheel 11 draws a metal wire 31 onto the second wire coil 3, when the second wire coil 3 rotates to work, the metal wire 31 is taken up, the metal wire 31 drawn from the first wire coil 2 by the second wire drawing wheel 11 enters the second wire catching notch 15 on the second wire coil 3 to be cut off, and wire changing work is completed; the same is true for the exchange of the wire from the second wire coil 3 to the first wire coil 2.
Specifically, a sliding rail seat 35 is arranged on the frame 1, and the first wire pulling guide rail 4 and the second wire pulling guide rail 5 are both welded on the sliding rail seat 35.
In this embodiment, the rack 1 is further provided with a first disc-changing motor 16 and a second disc-changing motor 17, a driving end of the first disc-changing motor 16 is in transmission connection with the first disc-changing wheel 6, and a driving end of the second disc-changing motor 17 is in transmission connection with the second disc-changing wheel 7.
The first disc changing motor 16 drives the first disc changing wheel 6 to rotate, so that the first disc changing wheel 6 can be controlled to rotate, and the components connected with the first disc changing arm 8 are further controlled to perform line changing work; the second disc changing motor 17 drives the second disc changing wheel 7 to rotate, so that the second disc changing wheel 7 can be controlled to rotate, and further, the components connected with the second disc changing arm 9 are controlled to perform line changing work.
In this embodiment, a first wire winding motor 18 and a second wire winding motor 19 are arranged on the frame 1, a driving end of the first wire winding motor 18 is in transmission connection with the first wire disc 2, and a driving end of the second wire winding motor 19 is in transmission connection with the second wire disc 3.
The first wire take-up motor 18 controls the working rotation of the first wire reel 2, and the second wire take-up motor 19 controls the working rotation of the second wire reel 3.
In this embodiment, the winding displacement mechanism 20 is provided with a tension swing rod 21, a tension guide wheel 22 and a wire guide wheel 23, one end of the tension swing rod 21 is connected in the winding displacement mechanism 20, the tension guide wheel 22 is rotatably connected to the other end of the tension swing rod 21, the tension guide wheel 22 is in transmission connection with the wire guide wheel 23, and the winding displacement mechanism 20 is further provided with a winding displacement guide wheel 34 for guiding.
The wire arranging mechanism 20 controls the swinging of the tension swing rod 21, the tension swing rod 21 controls the vertical height of the tension guide wheel 22, the wire passing guide wheel 23 connected with the tension guide wheel 22 can tighten the tension of the metal wire 31, and the wire arranging guide wheel 34 sequentially guides the metal wire to a wire coil.
In this embodiment, each of the first wire catching notch 14 and the second wire catching notch 15 is provided with a wire catching device, the wire catching device includes a wire catching clip 24, a movable spring 25 and a wire catching fixing block 26, one side of the wire catching fixing block 26 is provided with a first inclined surface 27, the first inclined surface 27 is provided with a spring groove, the movable spring 25 is located in the spring groove, one end of the movable spring 25 is connected with the wire catching clip 24, and one end of the wire catching clip 24 away from the movable spring 25 is provided with a second inclined surface 28.
After the metal wire 31 needing to be cut enters the wire catcher, the metal wire 31 is caught by the wire catching clamp 24 after passing through the second inclined surface 28, the movable spring 25 is compressed, the wire catching clamp 24 is tilted, then the metal wire 31 is cut, and then the movable spring 25 extends out to force the wire catching clamp 24 to reset to wait for the next metal wire 31 to enter and be cut off.
In this embodiment, the line catching device comprises a line catching limiting block 29, a mounting groove is formed in the middle of the line catching fixing block 26, the line catching limiting block 29 is mounted in the mounting groove, and the line catching limiting block 29 is connected with the middle of the line catching clamp 24.
The wire-grasping stopper 29 effectively limits the tilting angle of the wire-grasping clamp 24, and when the wire-grasping clamp 24 reaches the extreme position, the wire 31 will be cut off.
In this embodiment, the first thread catching notch 14 and the second thread catching notch 15 are both provided with the thread pressing rod 30.
The wire 31 pulled by the wire pulling wheel is pressed by the wire pressing rod 30, and the wire 31 is forced into the wire catching notch to be cut off.
It should be noted that the above embodiments are only preferred embodiments of the present invention and the technical principles applied, and any changes or substitutions which can be easily conceived by those skilled in the art within the technical scope of the present invention are covered by the protection scope of the present invention.
Claims (7)
1. A pull rod vertical type automatic disc changing and wire rewinding mechanism is characterized by comprising a rack, a wire arranging mechanism, a first wire disc, a first wire drawing guide rail, a first swing rod guide wheel, a first disc changing arm, a first wire drawing wheel, a first disc changing swing rod, a second wire disc, a second wire drawing guide rail, a second swing rod guide wheel, a second disc changing arm, a second wire drawing wheel and a second disc changing swing rod, wherein the wire arranging mechanism is fixedly arranged on the rack, the first wire disc and the second wire disc are rotatably connected to the rack,
the first wire drawing guide rail is provided with one side of the first wire coil close to the second wire coil, the first wire coil changing wheel is installed on the first wire coil, one end of the first wire coil changing arm is connected with the first wire coil changing wheel, the other end of the first wire coil changing arm is hinged with the first wire coil changing swing rod, the first wire drawing wheel is arranged at one end of the first wire coil changing swing rod, the first swing rod guide wheel is arranged at the other end of the first wire coil changing swing rod, the first swing rod guide wheel is in rolling connection with the first wire drawing guide rail, the first wire drawing guide rail is arranged in an arc shape, one end of the first wire drawing guide rail is connected with the first wire coil, and a first wire catching notch is formed in the first wire coil,
the second wire drawing guide rail is provided with a second wire coil close to one side of the first wire coil, the second wire coil changing wheel is installed on the second wire coil, one end of a second wire coil changing arm is connected with the second wire coil changing wheel, the other end of the second wire coil changing arm is hinged to a second wire coil changing swing rod, the second wire drawing wheel is arranged at one end of the second wire coil changing swing rod, the second swing rod guide wheel is arranged at the other end of the second wire coil changing swing rod, the second swing rod guide wheel is in rolling connection with the second wire drawing guide rail, the second wire drawing guide rail is arranged in an arc shape, one end of the second wire drawing guide rail is connected with the second wire coil, and a second wire catching notch is formed in the second wire coil.
2. The pull rod vertical type automatic disc-changing take-up mechanism is characterized in that a first disc-changing motor and a second disc-changing motor are further arranged on the rack, the driving end of the first disc-changing motor is in transmission connection with the first disc-changing wheel, and the driving end of the second disc-changing motor is in transmission connection with the second disc-changing wheel.
3. The pull rod vertical type automatic disc-changing take-up mechanism is characterized in that a first take-up motor and a second take-up motor are arranged on the rack, the driving end of the first take-up motor is in transmission connection with the first reel, and the driving end of the second take-up motor is in transmission connection with the second reel.
4. The pull rod vertical type automatic reel changing and winding mechanism as claimed in claim 1, wherein the winding mechanism is provided with a tension swing rod, a tension guide wheel and a wire passing guide wheel, one end of the tension swing rod is connected in the winding mechanism, the tension guide wheel is rotatably connected to the other end of the tension swing rod, the tension guide wheel is in transmission connection with the wire passing guide wheel, and the winding mechanism is further provided with a winding guide wheel for guiding.
5. The pull rod vertical type automatic reel changing and winding mechanism is characterized in that a wire catching device is arranged in each of the first wire catching notch and the second wire catching notch, each wire catching device comprises a wire catching clamp, a movable spring and a wire catching fixing block, a first inclined surface is arranged on one side of each wire catching fixing block, a spring groove is formed in each first inclined surface, each movable spring is located in each spring groove, one end of each movable spring is connected with each wire catching clamp, and a second inclined surface is arranged on one end, away from each movable spring, of each wire catching clamp.
6. The pull rod vertical type automatic reel changing and winding mechanism is characterized in that the wire catching device comprises a wire catching limiting block, a mounting groove is formed in the middle of the wire catching fixing block, the wire catching limiting block is mounted in the mounting groove, and the wire catching limiting block is connected with the middle of the wire catching clamp.
7. The pull rod vertical type automatic reel changing and winding mechanism is characterized in that the first wire catching notch and the second wire catching notch are respectively provided with a wire pressing rod.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201920668051.XU CN210176178U (en) | 2019-05-10 | 2019-05-10 | Vertical automatic dish admission machine that trades of pull rod constructs |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN201920668051.XU CN210176178U (en) | 2019-05-10 | 2019-05-10 | Vertical automatic dish admission machine that trades of pull rod constructs |
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CN210176178U true CN210176178U (en) | 2020-03-24 |
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CN201920668051.XU Active CN210176178U (en) | 2019-05-10 | 2019-05-10 | Vertical automatic dish admission machine that trades of pull rod constructs |
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Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN111483882A (en) * | 2020-05-11 | 2020-08-04 | 温州职业技术学院 | Full-automatic plastic wire drawing constant-tension wire winding device |
CN113634619A (en) * | 2021-10-12 | 2021-11-12 | 江苏鑫平金属制品有限公司 | A online concentrator for steel wire production |
CN117923246A (en) * | 2024-03-21 | 2024-04-26 | 佛山市顺德区盛永机械有限公司 | Vertical wire winding machine of enamelling machine |
-
2019
- 2019-05-10 CN CN201920668051.XU patent/CN210176178U/en active Active
Cited By (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN111483882A (en) * | 2020-05-11 | 2020-08-04 | 温州职业技术学院 | Full-automatic plastic wire drawing constant-tension wire winding device |
CN113634619A (en) * | 2021-10-12 | 2021-11-12 | 江苏鑫平金属制品有限公司 | A online concentrator for steel wire production |
CN113634619B (en) * | 2021-10-12 | 2021-12-21 | 江苏鑫平金属制品有限公司 | A online concentrator for steel wire production |
CN117923246A (en) * | 2024-03-21 | 2024-04-26 | 佛山市顺德区盛永机械有限公司 | Vertical wire winding machine of enamelling machine |
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