CN222795773U - An automatic lifting device for nickel mesh production - Google Patents
An automatic lifting device for nickel mesh production Download PDFInfo
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- CN222795773U CN222795773U CN202421514183.4U CN202421514183U CN222795773U CN 222795773 U CN222795773 U CN 222795773U CN 202421514183 U CN202421514183 U CN 202421514183U CN 222795773 U CN222795773 U CN 222795773U
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- pressing rod
- screen
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Abstract
The utility model relates to the technical field of printing nickel screen equipment, in particular to an automatic lifting device for nickel screen production, which comprises a tank body, arc-shaped grooves respectively arranged in the middle parts of two ends of the tank body, a cathode tube positioned above the tank body, a conductive copper rod arranged at one end of the cathode tube, a driving device arranged at one end of the conductive copper rod, a screen pressing rod positioned between the cathode tube and the tank body, and a flat lifting device arranged at one side of the tank body, wherein the flat lifting device comprises a mounting cabinet arranged at one side of the tank body, a hydraulic cylinder arranged on the inner bottom wall of the mounting cabinet, guide rails respectively arranged at two sides of the inner wall of the mounting cabinet, and two sliding blocks in sliding fit in the guide rails, and the four sliding blocks are connected with the outer wall of the driving device, so that the automatic lifting of the screen pressing rod is convenient, and convenience is provided for workers to sleeve and take down nickel screens on the cathode tube and the screen pressing rod.
Description
Technical Field
The utility model relates to the technical field of printing nickel screen equipment, in particular to an automatic lifting device for nickel screen production.
Background
An improved printed nickel screen electric nickel tank disclosed in China patent No. CN206736387U, when a nickel screen is sleeved into a cathode tube or a nickel screen is removed after secondary nickel plating of the nickel screen is completed, one end of the cathode tube can be tilted or put down by a toggle switch, and the nickel screen can be sleeved into the cathode tube or the nickel screen can be finished into a product.
However, in the above process, when the cathode tube is lifted, the cathode tube is lifted at one end, and one end of the cathode tube is lifted or put down, so that crease is easily generated on the nickel screen in the screen removing process, and the product quality of the nickel screen is affected.
Disclosure of utility model
The utility model aims to provide an automatic lifting device for nickel screen production, which is used for solving the problem that the nickel screen is easy to crease in the screen removing process in the mode that one end of a cathode tube is tilted or put down by the existing equipment.
The automatic lifting device comprises a groove body, arc-shaped grooves respectively arranged in the middle of two ends of the groove body, a cathode tube arranged above the groove body, a conductive copper rod arranged at one end of the cathode tube, a driving device arranged at one end of the conductive copper rod, a net pressing rod arranged between the cathode tube and the groove body, and a lifting device arranged at one side of the groove body, wherein the lifting device is connected with the driving device and drives the cathode tube to lift and fall on the groove body, the lifting device comprises a mounting cabinet arranged at one side of the groove body, a hydraulic cylinder arranged on the inner bottom wall of the mounting cabinet, guide rails respectively arranged at two sides of the inner wall of the mounting cabinet, and two sliding blocks in the guide rails in a sliding fit mode, an output shaft of the hydraulic cylinder is connected with the lower side of the driving device, and the four sliding blocks are connected with the outer walls of the driving device.
Further, an automatic adjusting mechanism is arranged between the net pressing rod and the cathode tube, and the automatic adjusting mechanism is connected with one side of the driving device.
Further, the automatic regulating mechanism comprises a connecting frame arranged on one side of the driving device, a vertical plate arranged on the lower side of the connecting frame, an installation shell connected with one side of the vertical plate, a shell connected with one side of the installation shell, two perforations arranged on the lower side of the shell, a motor arranged in the installation shell, a rotating shaft connected in the shell in a rotating mode, two take-up wheels arranged in the rotating shaft at intervals, and a connecting rope wound on the take-up wheels, wherein the output end of the motor is connected with one end of the rotating shaft, one end of the connecting rope penetrates through the perforations and is connected with the net pressing rod, and the conductive copper rod is positioned in the connecting frame.
Further, a second groove matched with the shell is arranged on the lower side of one arc-shaped groove.
Compared with the prior art, the utility model has the following beneficial effects:
The utility model has the following beneficial effects:
In the nickel screen processing process, a hydraulic oil cylinder is controlled to be started through a controller, the hydraulic oil cylinder drives a driving device to lift or descend, a sliding block is positioned in a guide rail to slide in the lifting process, and then a cathode tube is driven to lift and descend steadily;
When the nickel screen is sleeved on the cathode tube and the screen pressing rod, the controller controls the motor to be started, the motor drives the rotating shaft to rotate forward, the two take-up wheels on the rotating shaft are driven to wind the connecting rope, the screen pressing rod is driven to ascend, then the nickel screen is sleeved on the cathode tube and the screen pressing rod, after the nickel screen is finished, the controller controls the motor to rotate reversely, the motor drives the rotating shaft to rotate reversely, the two connecting ropes drive the screen pressing rod to descend, and therefore the automatic driving of the screen pressing rod to ascend and descend is facilitated, and convenience is provided for workers to sleeve and take down the nickel screen on the cathode tube and the screen pressing rod.
Drawings
FIG. 1 is a schematic cross-sectional view of an automatic lifting device for nickel screen production according to the present utility model;
FIG. 2 is an enlarged schematic view of FIG. 1A according to the present utility model;
FIG. 3 is a schematic cross-sectional view of the mounting cabinet of the present utility model;
FIG. 4 is a schematic diagram of a side view of a tank according to the present utility model;
FIG. 5 is a schematic diagram of a side view of a tank according to the present utility model;
FIG. 6 is a schematic diagram of a side view of a connection frame according to the present utility model;
fig. 7 is a system control block diagram of the present utility model.
In the figure, 1, a groove body; 2, an installation cabinet, 3, a cathode tube, 4, an arc-shaped groove, 5, a second groove, 6, a hydraulic cylinder, 7, a driving device, 8, a guide rail, 9, a sliding block, 10, a net pressing rod, 11, an automatic adjusting mechanism, 12, an installation shell, 13, a motor, 14, a shell, 15, a rotating shaft, 16, a perforation, 17, a wire winding wheel, 18, a connecting rope, 19, a conductive copper rod, 20, a connecting frame, 21 and a vertical plate.
Detailed Description
Referring to fig. 1-7, an automatic lifting device for nickel screen production comprises a tank body 1, arc-shaped grooves 4 respectively arranged in the middle of two ends of the tank body 1, a cathode tube 3 positioned above the tank body 1, a conductive copper rod 19 arranged at one end of the cathode tube 3, a driving device 7 arranged at one end of the conductive copper rod 19, a screen pressing rod 10 positioned between the cathode tube 3 and the tank body 1, wherein the cathode tube 3 can be placed in the two arc-shaped grooves 4, and a horizontal lifting device arranged at one side of the tank body 1; the leveling device comprises a mounting cabinet 2 arranged on one side of a groove body 1, a hydraulic cylinder 6 arranged on the inner bottom wall of the mounting cabinet 2, guide rails 8 respectively arranged on two sides of the inner wall of the mounting cabinet 2, two sliding blocks 9 in the guide rails 8 in a sliding fit manner, wherein an output shaft of the hydraulic cylinder 6 is connected with the lower side of the driving device 7, four sliding blocks 9 are connected with the outer wall of the driving device 7, the driving device 7 comprises a driving box connected with one end of the hydraulic cylinder 6, a motor arranged on one side of the driving box, an output shaft of the motor is rotatably connected with one side of the inner wall of the driving box, a rotating shaft connected with one end of a conductive copper rod 19 is rotatably connected with one side of the inner wall of the driving box, and a rotating shaft connected with one end of the conductive copper rod 19 is in transmission fit with a chain wheel through the chain, during the nickel screen processing, the hydraulic cylinder 6 is controlled to be started through a controller, the hydraulic cylinder 6 drives the driving device 7 to lift or descend, the sliding blocks 9 are positioned in the guide rails 8 to slide, further drive the cathode tube 3 to stably descend, the nickel screen is sleeved on the cathode tube 3, the cathode tube 3 is stably and stably descends through the leveling device, and the cathode tube 3 is started to smoothly in the two cathode tubes 4 in the arc-shaped cathode tube 3 are started, solves the problem that the nickel screen generates crease when being put into the groove.
An automatic adjusting mechanism 11 is arranged between a screen pressing rod 10 and a cathode tube 3, the automatic adjusting mechanism 11 is connected with one side of a driving device 7, the automatic adjusting mechanism 11 comprises a connecting frame 20 arranged on one side of the driving device 7, a vertical plate 21 arranged on the lower side of the connecting frame 20, a mounting shell 12 connected with one side of the vertical plate 21, a shell 14 connected with one side of the mounting shell 12, two through holes 16 arranged on the lower side of the shell 14, a motor 13 arranged in the mounting shell 12, a rotating shaft 15 connected in the shell 14 in a rotating manner, two take-up wheels 17 arranged on the rotating shaft 15 at intervals, a connecting rope 18 wound on the take-up wheels 17, one end of the connecting rope 18 penetrates through the through holes 16 and is connected with the screen pressing rod 10, a conductive copper rod 19 is positioned in the connecting frame 20, when a nickel screen is sleeved on the cathode tube 3 and the screen pressing rod 10, the motor 13 is controlled to be started, the motor 13 is driven to rotate forwards by the motor 15, the two take-up wheels 17 on the rotating shaft 15 wind the connecting rope 18, the screen pressing rod 10 is driven to be pressed onto the cathode tube 10, the two take-up wheels 10 are driven to be pressed onto the cathode tube 10, and then the screen pressing rod 10 is driven to be pressed by a worker to rotate reversely, and the screen pressing rod 10 is conveniently, and the screen pressing rod 10 is driven by a worker is driven to take-up and a person to press the screen pressing rod 10 to be pressed by the screen pressing rod 10.
The lower side of one arc-shaped groove 4 is provided with a second groove 5 matched with the outer shell 14, when the cathode tube 3 descends into the arc-shaped groove 4, the outer shell 14 enters into the second groove 5, and the outer shell 14 is prevented from blocking the overlapping of the cathode tube 3 into the arc-shaped groove 4.
The working principle is that in the nickel screen processing process, the hydraulic oil cylinder 6 is controlled to be started through the controller, the hydraulic oil cylinder 6 drives the driving device 7 to rise or descend, in the lifting process, the sliding block 9 is positioned in the guide rail 8 to slide, and then the cathode tube 3 is driven to rise and descend steadily, the nickel screen is sleeved on the cathode tube 3, the screen pressing rod 10 is enabled to descend, the cathode tube 3 is driven to descend steadily through the flat lifting device and is lapped in the two arc-shaped grooves 4, the motor of the cathode tube 3 is started to start working, and the problem of crease generated when the nickel screen is in the lower groove is solved through the flat lifting of the cathode tube 3;
When the nickel screen is sleeved on the cathode tube 3 and the screen pressing rod 10, the controller controls the motor 13 to be started, the motor 13 drives the rotating shaft 15 to rotate forwards, the two take-up pulleys 17 on the rotating shaft 15 are driven to wind the connecting ropes 18, the screen pressing rod 10 is driven to ascend, then the nickel screen is sleeved on the cathode tube 3 and the screen pressing rod 10, after the nickel screen is sleeved on the cathode tube 3 and the screen pressing rod 10, the controller controls the motor 13 to rotate reversely, the motor 13 drives the rotating shaft 15 to rotate reversely, the two connecting ropes 18 drive the screen pressing rod 10 to descend, and therefore the automatic driving of the screen pressing rod 10 to ascend and descend is facilitated, and convenience is provided for workers to sleeve and take down the nickel screen on the cathode tube 3 and the screen pressing rod 10.
The foregoing description of the preferred embodiments of the utility model is not intended to be limiting, but rather is intended to cover all modifications, equivalents, and alternatives falling within the spirit and principles of the utility model.
Claims (4)
1. The utility model provides an automatic lifting device of nickel screen production, includes cell body (1), establishes arc recess (4) at cell body (1) both ends middle part respectively, is located cathode tube (3) of cell body (1) top, establishes electrically conductive bar copper (19) in cathode tube (3) one end, establishes drive arrangement (7) in electrically conductive bar copper (19) one end, is located net pressing pole (10) between cathode tube (3) and cell body (1), cathode tube (3) can put up in two arc recess (4), its characterized in that still includes the flat device that rises of establishing in cell body (1) one side, flat device that rises includes and establishes installing cabinet (2) in cell body (1) one side, establishes hydraulic cylinder (6) on the inner bottom wall of installing cabinet (2), establishes respectively in guide rail (8) of installing cabinet (2) inner wall both sides, two slider (9) of sliding fit in guide rail (8), the output shaft and the drive arrangement (7) downside of hydraulic cylinder (6) is connected with the drive arrangement's of four slider (9).
2. An automatic lifting device for nickel screen production according to claim 1, characterized in that an automatic adjusting mechanism (11) is arranged between the screen pressing rod (10) and the cathode tube (3), and the automatic adjusting mechanism (11) is connected with one side of the driving device (7).
3. An automatic lifting device for nickel screen production according to claim 2, wherein the automatic adjusting mechanism (11) comprises a connecting frame (20) arranged on one side of the driving device (7), a vertical plate (21) arranged on the lower side of the connecting frame (20), a mounting shell (12) connected with one side of the vertical plate (21), a shell (14) connected with one side of the mounting shell (12), two through holes (16) arranged on the lower side of the shell (14), a motor (13) arranged in the mounting shell (12), a rotating shaft (15) rotatably connected in the shell (14), two winding wheels (17) arranged on the rotating shaft (15) at intervals, and a connecting rope (18) wound on the winding wheels (17), wherein the output end of the motor (13) is connected with one end of the rotating shaft (15), one end of the connecting rope (18) penetrates through the through holes (16) and is connected with a screen pressing rod (10), and the conductive copper rod (19) is arranged in the connecting frame (20).
4. An automatic lifting device for nickel screen production according to claim 3, characterized in that the underside of one of the arc-shaped grooves (4) is provided with a second groove (5) cooperating with the housing (14).
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202421514183.4U CN222795773U (en) | 2024-06-28 | 2024-06-28 | An automatic lifting device for nickel mesh production |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202421514183.4U CN222795773U (en) | 2024-06-28 | 2024-06-28 | An automatic lifting device for nickel mesh production |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| CN222795773U true CN222795773U (en) | 2025-04-25 |
Family
ID=95407672
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| CN202421514183.4U Active CN222795773U (en) | 2024-06-28 | 2024-06-28 | An automatic lifting device for nickel mesh production |
Country Status (1)
| Country | Link |
|---|---|
| CN (1) | CN222795773U (en) |
-
2024
- 2024-06-28 CN CN202421514183.4U patent/CN222795773U/en active Active
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Legal Events
| Date | Code | Title | Description |
|---|---|---|---|
| GR01 | Patent grant | ||
| GR01 | Patent grant | ||
| PE01 | Entry into force of the registration of the contract for pledge of patent right |
Denomination of utility model: An automatic lifting device for nickel mesh production Granted publication date: 20250425 Pledgee: Bank of China Limited Jinchang Branch Pledgor: JINCHANG YUHENG NICKEL SCREEN CO.,LTD. Registration number: Y2025980033340 |