Lever line machine for producing cartons
By designing a lever machine structure with stable positioning and movement adjustment, the problems of cardboard boxes are solved in the process of leverage, and efficient carton processing and convenient loading and unloading operations are achieved.
Patent Information
- Application Number
- CN202422391635.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-30
- Publication Date
- 2025-07-11
- Estimated Expiration
- 2034-09-30
AI Technical Summary
The carton is easily deviated during the bar line, resulting in poor bar line effect and is easily damaged after long-term molding on the movable conveyor belt, which affects the service life and is inconvenient to load and unload.
A bar line machine including a frame, feeding assembly, moving assembly, bar line assembly, unloading assembly, collection box and pressing table was designed. The stable positioning and position adjustment of the carton is achieved through suction cups and hydraulic rods, and the precise bar line is combined with detachable bar line blocks and clamping cylinders. The carton is moved and adjusted by using electric linear slide rails and hydraulic rods, and combined with the power transmission structure to improve loading and unloading efficiency.
It realizes the stable positioning and precise leverage of the carton, improves processing efficiency, extends the service life of the equipment, and enhances the adaptability and convenience of loading and unloading.
Smart Images

Figure CN223085500U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of bar line machines, and particularly relates to a bar line machine for producing cartons. Background Technique
[0002] When the bar line machine for producing cartons performs bar lining, the cartons are prone to shift, affecting the bar lining effect. Long-term die pressing directly on the movable conveyor belt is likely to cause damage and affect the overall service life. However, when bar lining on the pressing table, it is inconvenient for loading and unloading cartons.
[0003] Therefore, it is necessary to design a bar line machine for producing cartons to solve the problems in the above background technique. Content of the Utility Model
[0004] The purpose of the utility model is to solve the problems in the prior art, and a bar line machine for producing cartons is proposed.
[0005] To achieve the above purpose, the utility model provides the following technical solutions:
[0006] A bar line machine for producing cartons includes a frame, a feeding component, a moving component, a bar lining component, a blanking component, a collection box and a pressing table. The upper end of the frame is connected with first electric linear sliding rails near the front and the back. The upper end of the first electric linear sliding rail is connected with a moving component. The upper part of the frame is connected with a bar lining component near the middle of the front and the back. A pressing table is arranged in the middle of the upper end of the frame. A feeding component and a blanking component are connected to both sides of the upper end of the frame near the pressing table. A collection box is arranged on one side of the lower part of the frame near the blanking component.
[0007] A diversion plate is arranged above the collection box on the frame.
[0008] The moving component is composed of a first mounting frame, an air pump interface, a suction cup, a moving seat, a first hydraulic rod and a connecting seat. Connecting seats are connected to both sides of the front and the back of the first mounting frame. The lower end of the connecting seat is connected with a first hydraulic rod. The lower end of the first hydraulic rod is connected with a moving seat. Multiple groups of suction cups are connected to the first mounting frame. An air pump interface is arranged above the suction cup.
[0009] The bar lining component is composed of a second hydraulic rod, a second mounting frame and a bar lining mechanism. Second hydraulic rods are connected to near the four corners of the lower end of the second mounting frame. Multiple groups of bar lining mechanisms are connected to the lower end of the second mounting frame.
[0010] The bar lining mechanism is composed of a clamping cylinder, a bar lining block, a second electric linear sliding rail and a mounting plate. Multiple groups of second electric linear sliding rails are connected to the lower end of the mounting plate. The lower end of the second electric linear sliding rail is connected with a clamping cylinder. A bar lining block is clamped below the clamping cylinder.
[0011] The feeding component and the blanking component are both composed of a conveyor belt, a driving gear disc, a driven gear disc, a driving roller, a double-shaft motor, a mounting sleeve, a connecting plate, a third mounting frame, and a driven roller. Both sides inside the third mounting frame are connected with the driving roller and the driven roller. The driving roller and the driven roller are externally connected with a conveyor belt. Both ends of the driving roller are connected with the driven gear disc. One side of the driven gear disc is connected with the driving gear disc. A double-shaft motor is connected between the two groups of driving gear discs. Multiple mounting sleeves are externally connected to the double-shaft motor. One side of the mounting sleeve is connected with the connecting plate.
[0012] As a preferred solution of the present utility model, the first electric linear slide rail and the frame are connected by bolts. The first hydraulic rod is connected to the first electric linear slide rail through a moving seat. The first hydraulic rod is connected to the moving seat and the connecting seat by bolts. The connecting seat and the first mounting frame are connected by socketing and limited and locked by bolts.
[0013] As a preferred solution of the present utility model, the suction cup and the first mounting frame are connected by socketing and limited and locked by bolts. The suction cup is connected to an external air pump through an air pump interface.
[0014] As a preferred solution of the present utility model, the second hydraulic rod is connected to the second mounting frame and the frame by bolts.
[0015] As a preferred solution of the present utility model, the mounting plate is connected to the second mounting frame and the second electric linear slide rail by bolts. The second electric linear slide rail is connected to the clamping cylinder through a moving seat. The clamping claws at the lower part of the clamping cylinder are connected to the bar wire block by clamping.
[0016] As a preferred solution of the present utility model, the third mounting frame and the frame are connected by bolts. The driving gear disc and the driven gear disc are connected by meshing. The conveyor belt is sleeved outside the driving roller and the driven roller. The double-shaft motor and the driving gear disc are connected by a coupling. The driven roller, the driving gear disc, the driven gear disc and the third mounting frame are all connected by bearings. The double-shaft motor and the mounting sleeve are connected by socketing and limited and locked by bolts. The mounting sleeve, the third mounting frame and the connecting plate are all connected by bolts.
[0017] In summary, the technical effects and advantages of the present utility model are as follows: When using the score line machine for producing cartons, place the carton to be scored above the feeding component, then send the carton to the upper end of the pressing table through the feeding component, and then adsorb various parts of the carton edge through multiple groups of suction cups, and move left and right along the length direction of the first electric linear slide rail according to requirements, so as to complete the fine adjustment of the carton position and make the carton correspond to the score line component. When adjusted to the required position, the suction cup is pressed down under the drive of the first hydraulic rod, and the carton is pressed on the pressing table to keep the carton stable, which is convenient for the score line component to accurately score the line. After the processing is completed, the first hydraulic rod moves upward, then moves above the discharging component along the length direction of the first electric linear slide rail, and then releases the negative pressure adsorption of the suction cup, forming a carton moving structure integrating movement, adjustment and positioning, improving the processing efficiency. When the carton is placed under the score line component, the whole score line block is pressed down by the second hydraulic rod, so as to complete the scoring of various parts of the carton, and the score line block is a detachable structure, which is convenient to replace score line blocks of different sizes according to the scoring requirements. The score line block can be clamped by a single group or multiple groups of clamping cylinders, and the position of the score line block can be adjusted according to requirements and can move back and forth along the second electric linear slide rail, improving the overall scoring range and the overall adaptability. When in use, the driving gear disc on the double-shaft motor drives the driven gear disc on the driving roller to rotate, so as to drive the conveyor belt to rotate, thus forming the power structure of the feeding component and the discharging component. When in use, feeding is carried out through the feeding component, and after the processing is completed, discharging can be carried out through the discharging component, and then enter the collection box along the diversion plate, which is convenient for collection and transportation. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Figure 1 is the overall structure diagram of the present utility model;
[0019] Figure 2 is the split structure diagram of the discharging component of the present utility model;
[0020] Figure 3 is the structure diagram of the score line component of the present utility model;
[0021] Figure 4 is the structure diagram of the moving component of the present utility model;
[0022] Figure 5 is the structure diagram of the score line mechanism of the present utility model.
[0023] In the figure: 1. Frame; 101. Deflector; 2. Feeding assembly; 3. First electric linear slide rail; 4. Moving assembly; 401. First mounting bracket; 402. Air pump interface; 403. Suction cup; 404. Moving seat; 405. First hydraulic rod; 406. Connecting seat; 5. Bar wire assembly; 501. Second hydraulic rod; 502. Second mounting bracket; 503. Bar wire mechanism; 5031. Clamping cylinder; 5032. Bar wire block; 5033. Second electric linear slide rail; 5034. Mounting plate; 6. Material discharging assembly; 601. Conveyor belt; 602. Driving gear disc; 603. Driven gear disc; 604. Driving roller; 605. Biaxial motor; 606. Mounting sleeve; 607. Connecting plate; 608. Third mounting bracket; 609. Driven roller; 7. Collection box; 8. Pressing table. Detailed implementation manners
[0024] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments.
[0025] Refer to Figures 1-5, A score line machine for producing cartons, comprising a frame 1, a feeding component 2, a moving component 4, a score line component 5, a blanking component 6, a collection box 7 and a pressing table 8. At the upper end of the frame 1, near the front and back, a first electric linear slide rail 3 is connected. At the upper end of the first electric linear slide rail 3, a moving component 4 is connected. Near the middle of the front and back of the upper part of the frame 1, a score line component 5 is connected; in the middle of the upper end of the frame 1, there is a pressing table 8. Near both sides of the pressing table 8 at the upper end of the frame 1, a feeding component 2 and a blanking component 6 are connected. On one side of the lower part of the frame 1 near the blanking component 6, there is a collection box 7; above the collection box 7 on the frame 1, there is a guide plate 101; the moving component 4 consists of a first mounting frame 401, an air pump interface 402, a suction cup 403, a moving seat 404, a first hydraulic rod 405 and a connecting seat 406. And at both sides of the front and back of the first mounting frame 401, connecting seats 406 are connected. At the lower end of the connecting seat 406, a first hydraulic rod 405 is connected. At the lower end of the first hydraulic rod 405, a moving seat 404 is connected. On the first mounting frame 401, multiple groups of suction cups 403 are connected. Above the suction cup 403, there is an air pump interface 402; the score line component 5 consists of a second hydraulic rod 501, a second mounting frame 502 and a score line mechanism 503. And at the lower end of the second mounting frame 502 near the four corners, second hydraulic rods 501 are connected. At the lower end of the second mounting frame 502, multiple groups of score line mechanisms 503 are connected; the score line mechanism 503 consists of a clamping cylinder 5031, a score line block 5032, a second electric linear slide rail 5033 and a mounting plate 5034. And at the lower end of the mounting plate 5034, multiple groups of second electric linear slide rails 5033 are connected. At the lower end of the second electric linear slide rail 5033, a clamping cylinder 5031 is connected. Below the clamping cylinder 5031, a score line block 5032 is clamped; both the feeding component 2 and the blanking component 6 consist of a conveyor belt 601, a driving gear disc 602, a driven gear disc 603, a driving roller 604, a double-shaft motor 605, a mounting sleeve 606, a connecting plate 607, a third mounting frame 608 and a driven roller 609. And at both sides inside the third mounting frame 608, a driving roller 604 and a driven roller 609 are connected. Outside the driving roller 604 and the driven roller 609, a conveyor belt 601 is connected. At both ends of the driving roller 604, driven gear discs 603 are connected. On one side of the driven gear disc 603, a driving gear disc 602 is connected. Between the two groups of driving gear discs 602, a double-shaft motor 605 is connected. Outside the double-shaft motor 605, multiple groups of mounting sleeves 606 are connected. On one side of the mounting sleeve 606, a connecting plate 607 is connected.
[0026] Referring to Figure 1 and Figure 4, when the scoring machine for producing cartons is scoring, the carton is prone to shift, affecting the scoring effect. Scoring directly on the movable conveyor belt for a long time under die pressing is likely to cause damage and affect the overall service life. However, when scoring on the pressing table, it is inconvenient to load and unload the carton. The first electric linear slide rail 3 and the frame 1 are connected by bolts. The first hydraulic rod 405 is connected to the first electric linear slide rail 3 through the moving seat 404. The first hydraulic rod 405 is connected to the moving seat 404 and the connecting seat 406 by bolts. The connecting seat 406 and the first mounting bracket 401 are connected by socketing and locked in position by bolts. The suction cup 403 and the first mounting bracket 401 are connected by socketing and locked in position by bolts. The suction cup 403 is connected to an external air pump through the air pump interface 402. During use, place the carton to be scored above the feeding assembly 2, then send the carton to the upper end of the pressing table 8 through the feeding assembly 2, and then adsorb various parts of the carton edge by multiple suction cups 403. Move left and right along the length direction of the first electric linear slide rail 3 according to requirements, so as to complete the fine adjustment of the carton position and make the carton correspond to the scoring assembly 5. When adjusted to the required position, the suction cup 403 is pressed down by the drive of the first hydraulic rod 405 to press the carton on the pressing table 8, so that the carton is kept stable, facilitating the scoring assembly 5 to score accurately. When the processing is completed, the first hydraulic rod 405 moves upward, then moves to the upper part of the blanking assembly 6 along the length direction of the first electric linear slide rail 3, and then releases the negative pressure adsorption of the suction cup 403, forming a carton moving structure integrating movement, adjustment and positioning, which improves the processing efficiency.
[0027] Refer to Figure 1 , Figure 3 and Figure 5 , the second hydraulic rod 501 is connected to the second mounting bracket 502 and the frame 1 by bolts. The mounting plate 5034 is connected to the second mounting bracket 502 and the second electric linear slide rail 5033 by bolts. The second electric linear slide rail 5033 and the clamping cylinder 5031 are connected through a moving seat. The clamping claws at the lower part of the clamping cylinder 5031 and the scoring block 5032 are connected by clamping. When the carton is placed below the scoring assembly 5, the overall scoring block 5032 is pressed down by the drive of the second hydraulic rod 501, so as to complete the scoring of various parts of the carton. And the scoring block 5032 is a detachable structure, which is convenient to replace scoring blocks 5032 of different sizes according to scoring requirements. The scoring block 5032 can be clamped by a single group or multiple groups of clamping cylinders 5031, and the position of the scoring block 5032 can be adjusted according to requirements and can move back and forth along the second electric linear slide rail 5033, which improves the overall scoring range and the overall adaptability.
[0028] Refer to Figure 1 and Figure 2, the third mounting bracket 608 is bolted to the frame 1, the driving gear disc 602 and the driven gear disc 603 are connected by meshing, the conveyor belt 601 is sleeved outside the driving roller 604 and the driven roller 609, the double-shaft motor 605 and the driving gear disc 602 are connected by a coupling, and the driven roller 609, the driving gear disc 602, the driven gear disc 603 and the third mounting bracket 608 are all connected by bearings. The double-shaft motor 605 and the mounting sleeve 606 are connected by sleeving and are limited and locked by bolts. The mounting sleeve 606, the third mounting bracket 608 and the connecting plate 607 are all bolted together. During use, the driving gear disc 602 on the double-shaft motor 605 drives the driven gear disc 603 on the driving roller 604 to rotate, thereby driving the conveyor belt 601 to rotate, thus forming the power structure of the feeding assembly 2 and the blanking assembly 6. During use, feeding is performed through the feeding assembly 2. After processing, blanking can be performed through the blanking assembly 6, and then it enters the collection box 7 along the diversion plate 101, which is convenient for collection and transfer.
[0029] Working principle: The first electric linear slide rail 3 of the carton scoring machine is connected to the frame 1 by bolts. The first hydraulic rod 405 is connected to the first electric linear slide rail 3 through the moving seat 404. The first hydraulic rod 405 is connected to the moving seat 404 and the connecting seat 406 by bolts. The connecting seat 406 and the first mounting bracket 401 are connected by socketing and locked in position by bolts. The suction cup 403 and the first mounting bracket 401 are connected by socketing and locked in position by bolts. The suction cup 403 is connected to an external air pump through the air pump interface 402. During use, place the carton to be scored above the feeding assembly 2, then send the carton to the upper end of the pressing table 8 through the feeding assembly 2, and then adsorb various parts of the carton edge with multiple suction cups 403, and move left and right along the length direction of the first electric linear slide rail 3 according to requirements, so as to complete the fine adjustment of the carton position and make the carton correspond to the scoring assembly 5. When adjusted to the required position, the suction cup 403 is pressed down under the drive of the first hydraulic rod 405 to press the carton on the pressing table 8 to keep the carton stable, which is convenient for the scoring assembly 5 to accurately score. When the processing is completed, the first hydraulic rod 405 moves up, then moves to the upper part of the blanking assembly 6 along the length direction of the first electric linear slide rail 3, and then releases the negative pressure adsorption of the suction cup 403, forming a carton moving structure integrating movement, adjustment and positioning, improving the processing efficiency. The second hydraulic rod 501 is connected to the second mounting bracket 502 and the frame 1 by bolts. The mounting plate 5034 is connected to the second mounting bracket 502 and the second electric linear slide rail 5033 by bolts. The second electric linear slide rail 5033 is connected to the clamping cylinder 5031 through the moving seat. The clamping claws at the lower part of the clamping cylinder 5031 are connected to the scoring block 5032 by clamping. When the carton is placed under the scoring assembly 5, the overall scoring block 5032 is pressed down by the second hydraulic rod 501 to complete the scoring of various parts of the carton. And the scoring block 5032 is a detachable structure, which is convenient to replace scoring blocks 5032 of different sizes according to scoring requirements. The scoring block 5032 can be clamped by a single group or multiple groups of clamping cylinders 5031, and the position of the scoring block 5032 can be adjusted according to requirements and can move back and forth along the second electric linear slide rail 5033, improving the overall scoring range and the overall adaptability. The third mounting bracket 608 is connected to the frame 1 by bolts. The driving gear disk 602 and the driven gear disk 603 are connected by meshing. The conveyor belt 601 is sleeved outside the driving roller 604 and the driven roller 609. The double-shaft motor 605 is connected to the driving gear disk 602 by a coupling. The driven roller 609, the driving gear disk 602, the driven gear disk 603 and the third mounting bracket 608 are all connected by bearings. The double-shaft motor 605 is connected to the mounting sleeve 606 by socketing and locked in position by bolts. The mounting sleeve 606, the third mounting bracket 608 and the connecting plate 607 are all connected by bolts. During use,The driving gear disc 602 on the biaxial motor 605 drives the driven gear disc 603 on the driving roller 604 to rotate, thereby driving the conveyor belt 601 to rotate, thus forming the power structure of the feeding component 2 and the blanking component 6. During use, feeding is performed through the feeding component 2. After processing, blanking can be performed through the blanking component 6, and then it enters the collection box 7 along the diversion plate 101, which is convenient for collection and transportation.
[0030] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principles and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A scoring machine for producing cartons, comprising a frame (1), a feeding assembly (2), a moving assembly (4), a scoring assembly (5), a blanking assembly (6), a collection box (7) and a pressing table (8), characterized in that: At the upper end of the frame (1), a first electric linear slide rail (3) is connected near the front and the back. The upper end of the first electric linear slide rail (3) is connected with a moving component (4). At the middle of the upper part of the frame (1) near the front and the back, a bar wire component (5) is connected. At the middle of the upper end of the frame (1), a pressing table (8) is provided. On both sides of the pressing table (8) at the upper end of the frame (1), a feeding component (2) and a blanking component (6) are connected. On one side of the lower part of the frame (1) near the blanking component (6), a collection box (7) is provided. A flow guiding plate (101) is provided above the collection box (7) of the frame (1). The moving component (4) consists of a first mounting frame (401), an air pump interface (402), a suction cup (403), a moving seat (404), a first hydraulic rod (405) and a connecting seat (406). Connecting seats (406) are connected to both sides of the front and the back of the first mounting frame (401). The lower end of the connecting seat (406) is connected with a first hydraulic rod (405). The lower end of the first hydraulic rod (405) is connected with a moving seat (404). Multiple groups of suction cups (403) are connected to the first mounting frame (401). An air pump interface (402) is provided above the suction cup (403). The bar wire component (5) consists of a second hydraulic rod (501), a second mounting frame (502) and a bar wire mechanism (503). Second hydraulic rods (501) are connected near the four corners at the lower end of the second mounting frame (502). Multiple groups of bar wire mechanisms (503) are connected to the lower end of the second mounting frame (502). The bar wire mechanism (503) consists of a clamping cylinder (5031), a bar wire block (5032), a second electric linear slide rail (5033) and a mounting plate (5034). Multiple groups of second electric linear slide rails (5033) are connected to the lower end of the mounting plate (5034). The lower end of the second electric linear slide rail (5033) is connected with a clamping cylinder (5031). A bar wire block (5032) is clamped under the clamping cylinder (5031). Both the feeding component (2) and the blanking component (6) consist of a conveyor belt (601), a driving gear disc (602), a driven gear disc (603), a driving roller (604), a double-shaft motor (605), a mounting sleeve (606), a connecting plate (607), a third mounting frame (608) and a driven roller (609). A driving roller (604) and a driven roller (609) are connected to both sides inside the third mounting frame (608). A conveyor belt (601) is connected to the outside of the driving roller (604) and the driven roller (609). Driven gear discs (603) are connected to both ends of the driving roller (604). A driving gear disc (602) is connected to one side of the driven gear disc (603). A double-shaft motor (605) is connected between the two groups of driving gear discs (602). Multiple groups of mounting sleeves (606) are connected to the outside of the double-shaft motor (605). A connecting plate (607) is connected to one side of the mounting sleeve (606).
2. The bar line machine for producing cartons according to claim 1, characterized in that: The first electric linear slide rail (3) is connected to the frame (1) by bolts. The first hydraulic rod (405) is connected to the first electric linear slide rail (3) through the moving seat (404). The first hydraulic rod (405) is connected to the moving seat (404) and the connecting seat (406) by bolts. The connecting seat (406) is connected to the first mounting bracket (401) by socket connection and is limited and locked by bolts.
3. A scoring machine for producing cartons according to claim 1, characterized in that: The suction cup (403) is connected to the first mounting bracket (401) by socket connection and is limited and locked by bolts. The suction cup (403) is connected to an external air pump through the air pump interface (402).
4. A scoring machine for producing cardboard boxes according to claim 1, characterized in that: The second hydraulic rod (501) is connected to the second mounting bracket (502) and the frame (1) by bolts.
5. A scoring machine for producing cartons according to claim 1, characterized in that: The mounting plate (5034) is connected to the second mounting bracket (502) and the second electric linear slide rail (5033) by bolts. The second electric linear slide rail (5033) is connected to the clamping cylinder (5031) through the moving seat. The clamping claws at the lower part of the clamping cylinder (5031) are connected to the bar wire block (5032) by clamping.
6. A scoring machine for producing cardboard boxes according to claim 1, characterized in that: The third mounting bracket (608) is connected to the frame (1) by bolts. The driving gear disc (602) is connected to the driven gear disc (603) by meshing. The conveyor belt (601) is sleeved outside the driving roller (604) and the driven roller (609). The double-shaft motor (605) is connected to the driving gear disc (602) by a coupling. The driven roller (609), the driving gear disc (602), the driven gear disc (603) and the third mounting bracket (608) are all connected by bearings. The double-shaft motor (605) is connected to the mounting sleeve (606) by socket connection and is limited and locked by bolts. The mounting sleeve (606), the third mounting bracket (608) and the connecting plate (607) are all connected by bolts.