Cosmetic packaging box bottle ink jet numbering machine
Technical Field
The utility model relates to the technical field of ink jet printers, in particular to a cosmetic packaging box bottle ink jet printer.
Background
The code spraying machine is a device which is controlled by software and performs identification on products in a non-contact mode. Generally refers to a continuous ink-jet technology, a certain difficulty exists in the barcode coding process of a plurality of products, and particularly, a barcode system with variable data is more difficult to a certain extent, so that the application of the barcode technology is blocked to a certain extent. In recent years, along with the technical breakthrough of the Hewlett packard printing giant in a bar code jet printing system, breakthrough development is brought to the coding of a plurality of products, the breakthrough solves the bar code coding difficulty of a plurality of products, the quick application is realized in a plurality of industries, and a code spraying machine is also needed in the production of cosmetic packaging boxes.
The existing code spraying machine generally places a packing box into the code spraying machine through a worker, the packing box cannot be continuously sprayed with codes in the code spraying machine, the efficiency of the device is low, and time and labor are also consumed during manual operation.
Disclosure of utility model
The utility model aims to provide a cosmetic packaging box bottle code spraying machine to solve the problem that the existing code spraying machine provided in the background art generally places a packaging box into the code spraying machine through staff, and the packaging box cannot continuously spray codes in the code spraying machine, so that the device efficiency is low.
In order to achieve the above purpose, the present utility model provides the following technical solutions: the utility model provides a cosmetic packaging box bottle ink jet numbering machine, includes frame, support frame, X axle module and conveyer, the central point of frame top puts and is fixed with the conveyer, the both sides at conveyer top are fixed with the baffle, the inside both sides activity of conveyer is provided with the driving roller, the winding has the conveyer belt on the driving roller, the outside one side of conveyer is through the bolt fastening has fourth rotary driving spare, the output of fourth rotary driving spare and the epaxial interconnect of driving roller.
Preferably, the support frame is welded on two sides of the top of the frame, an X-axis module is fixed on the top of the support frame through bolts, and a sliding plate is arranged on the X-axis module in a sliding mode.
Preferably, the first lead screw is movably arranged in the X-axis module through a bearing, a first rotary driving piece is fixed on one side of the outer part of the X-axis module through a bolt, the output end of the first rotary driving piece is connected with one end of the first lead screw, and the first lead screw plays a role in transmission.
Preferably, the first screw rod is connected with the bottom of the sliding plate through a connecting piece, a Y-axis module is fixed outside the sliding plate through a bolt, and a Z-axis module is arranged on the Y-axis module in a sliding mode.
Preferably, the inside activity of Y axle module is provided with the second lead screw, the outside one side of Y axle module is through the bolt fastening second rotary driving piece, the output and the second lead screw interconnect of second rotary driving piece, through connecting piece and the back interconnect of Z axle module on the second lead screw, the second lead screw has played the driven effect.
Preferably, the front part of the Z-axis module is fixedly provided with a sliding rail through a bolt, the sliding rail is provided with a fixing piece in a sliding manner, and a spraying port is fixed in the fixing piece.
Preferably, a spray head is fixed at the center of the bottom of the spraying wharf, and a pipeline interface is fixed at the center of the top of the spraying wharf.
Preferably, the top of the Z-axis module is fixed with a top plate, a third screw rod is movably arranged in the Z-axis module through a bearing seat, the third screw rod is connected with the back of the fixing piece through connection, the top of the third screw rod is fixed with a second belt wheel, one side of the bottom of the top plate is fixedly provided with a third rotary driving piece through a bolt, the output end of the third rotary driving piece is connected with a first belt wheel, a belt is coiled between the first belt wheel and the second belt wheel, and the third screw rod plays a role in transmission.
Compared with the prior art, the utility model has the beneficial effects that: this cosmetic packaging box bottle ink jet numbering machine is rational in infrastructure, has following advantage:
(1) In order to enable the code spraying machine to work continuously, a conveyor is arranged in the code spraying machine, a worker places the packing box in the conveyor belt, then a fourth rotary driving piece is started to enable a driving roller to rotate, the driving roller enables the conveyor belt to rotate, the packing box is enabled to move through rotation of the conveyor belt, and accordingly the packing box continuously enters the code spraying machine to work, and code spraying efficiency is improved.
(2) In order to adapt the device to packing boxes with different heights, the third rotary driving piece is started, the first belt wheel is enabled to rotate by the third rotary driving piece, the belt is enabled to rotate by the first belt wheel, the second belt wheel is enabled to rotate by the belt, the third lead screw is enabled to rotate by the second belt wheel, the fixing piece is enabled to move up and down by the third lead screw, so that the height of the spraying wharf is adjusted according to the height of the packing boxes, and the height of the spraying wharf is adjusted so as to pack and spray codes.
Drawings
FIG. 1 is a schematic front perspective view of the present utility model;
FIG. 2 is a schematic rear perspective view of the present utility model;
FIG. 3 is a schematic elevational view of the present utility model;
FIG. 4 is a schematic top view of the present utility model;
fig. 5 is a schematic top perspective view of the present utility model.
In the figure: 1. a frame; 2. a support frame; 3. an X-axis module; 4. a first rotary drive member; 5. a first lead screw; 6. a sliding plate; 7. a Y-axis module; 8. a second rotary driving member; 9. a second lead screw; 10. a top plate; 11. a third rotary driving member; 12. a first pulley; 13. a second pulley; 14. a belt; 15. a Z-axis module; 16. a slide rail; 17. spraying wharf; 18. a fixing member; 19. a baffle; 20. a conveyor belt; 21. a fourth rotary driving member; 22. a conveyor; 23. a spray head; 24. a pipe interface; 25. a driving roller; 26. and a third screw.
Detailed Description
The technical solutions of the embodiments of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present utility model, and all other embodiments obtained by those skilled in the art without making any inventive effort based on the embodiments of the present utility model are within the scope of protection of the present utility model.
Referring to fig. 1-5, an embodiment of the present utility model is provided: the cosmetic packaging box bottle ink jet numbering machine comprises a frame 1, a support frame 2, an X-axis module 3 and a conveyor 22, wherein the conveyor 22 is fixed in the center of the top of the frame 1, baffles 19 are fixed on two sides of the top of the conveyor 22, driving rollers 25 are movably arranged on two sides of the inside of the conveyor 22, a conveying belt 20 is wound on the driving rollers 25, a fourth rotary driving piece 21 is fixed on one side of the outside of the conveyor 22 through bolts, and the output end of the fourth rotary driving piece 21 is connected with a shaft on the driving rollers 25;
The staff puts the packing box into the conveyer belt 20, then through starting the fourth rotary driving piece 21, the fourth rotary driving piece 21 makes the driving roller 25 rotate, the driving roller 25 will make the conveyer belt 20 rotate, thus the rotation of the conveyer belt 20 makes the packing box move, thus make the packing box enter the code spraying machine continuously to work, and then improve the code spraying efficiency;
The X-axis module is characterized in that the two sides of the top of the frame 1 are welded with the support frame 2, the top of the support frame 2 is fixedly provided with the X-axis module 3 through bolts, the X-axis module 3 is provided with the sliding plate 6 in a sliding manner, the first lead screw 5 is movably arranged in the X-axis module 3 through a bearing, one side of the outer part of the X-axis module 3 is fixedly provided with the first rotary driving piece 4 through bolts, the output end of the first rotary driving piece 4 is mutually connected with one end of the first lead screw 5, the first lead screw 5 is mutually connected with the bottom of the sliding plate 6 through a connecting piece, the Y-axis module 7 is fixedly arranged outside the sliding plate 6 through bolts, and the Y-axis module 7 is provided with the Z-axis module 15 in a sliding manner:
By activating the first rotary driving element 4, the first rotary driving element 4 rotates the first screw 5, and the first screw 5 moves the slide plate 6 left and right;
The Y-axis module 7 is internally and movably provided with a second lead screw 9, one side of the outer part of the Y-axis module 7 is fixedly provided with a second rotary driving piece 8 through a bolt, the output end of the second rotary driving piece 8 is connected with the second lead screw 9, and the second lead screw 9 is connected with the back of the Z-axis module 15 through a connecting piece;
By starting the second rotary driving member 8, the second rotary driving member 8 rotates the second screw 9, and the second screw 9 moves the Z-axis module 15 back and forth;
The front part of the Z-axis module 15 is fixedly provided with a sliding rail 16 through a bolt, the sliding rail 16 is provided with a fixing piece 18 in a sliding way, a spraying port 17 is fixed in the fixing piece 18, a spray head 23 is fixed at the central position of the bottom of the spraying port 17, and a pipeline interface 24 is fixed at the central position of the top of the spraying port 17;
A top plate 10 is fixed at the top of the Z-axis module 15, a third lead screw 26 is movably arranged in the Z-axis module 15 through a bearing seat, the third lead screw 26 is connected with the back of a fixing piece 18 through a connection, a second belt pulley 13 is fixed at the top of the third lead screw 26, a third rotary driving piece 11 is fixed at one side of the bottom of the top plate 10 through a bolt, a first belt pulley 12 is connected at the output end of the third rotary driving piece 11, and a belt 14 is coiled between the first belt pulley 12 and the second belt pulley 13;
By activating the third rotary driving member 11, the third rotary driving member 11 rotates the first pulley 12, the first pulley 12 rotates the belt 14, the belt 14 rotates the second pulley 13, the second pulley 13 rotates the third screw rod 26, the third screw rod 26 moves the fixing member 18 up and down, and the height of the spraying terminal 17 is adjusted, so that the spraying terminal 17 adjusts the height of the spraying terminal 17 according to the height of the packing box, and packing and code spraying are performed.
When the embodiment of the application is used, the sliding rail 16 is connected with the ink box through the pipeline, the packing box is placed into the conveying belt 20, then the fourth rotary driving piece 21 is started, the fourth rotary driving piece 21 enables the driving roller 25 to rotate, the driving roller 25 enables the conveying belt 20 to rotate, the packing box is enabled to move through rotation of the conveying belt 20, the packing box continuously enters the ink jet machine to work, then the first rotary driving piece 4 is started, the first lead screw 5 is enabled to rotate, the first lead screw 5 enables the sliding plate 6 to move left and right, then the second rotary driving piece 8 is enabled to rotate, the second lead screw 9 is enabled to rotate through the second rotary driving piece 8, the second lead screw 9 enables the Z-axis module 15 to move back and forth, then the third rotary driving piece 11 enables the first belt wheel 12 to rotate, the first belt wheel 12 enables the belt 14 to rotate, the second belt wheel 13 is enabled to rotate, the second belt wheel 13 enables the third lead screw 26 to rotate, the third belt wheel 26 is enabled to move up and down, the fixing piece 18 is enabled to move up and down, and the ink jet head is enabled to move close to the packing box to the ink jet head 23, and the ink jet head is enabled to achieve ink jet height.