A paging machine with an ordered measurement pushing structure
By designing a paging machine with an orderly measurement push structure, combining paging and coding units, anti-hopping entrainment, conveyor belts, infrared sensing elements and coding hosts, the problem that existing paging machines cannot paging and coding at the same time is solved, and efficient and accurate packaging bag paging and coding operations are achieved.
Patent Information
- Application Number
- CN202010868272.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2020-08-26
- Publication Date
- 2025-07-01
- Estimated Expiration
- 2040-08-26
AI Technical Summary
The existing paging machine cannot paging and coding the packaging bags at the same time, and needs to be operated in two times, resulting in many bad products generated during the production process, increasing the workload and usage time of employees, and the quality is at risk.
A paging machine with an orderly measurement and push structure is designed, including paging and coding unit, anti-hopping entrainment, conveyor belt, infrared sensing element and coding host. Through the coordinated work of these components, the paging, coding and counting functions of packaging bags are realized.
It realizes coding operations simultaneously during the paging process, which reduces the generation of bad products, reduces the workload and usage time of employees, improves production efficiency, and ensures the accuracy and consistency of printing codes.
Smart Images

Figure CN111942941B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of pagers, and specifically relates to a pager with an ordered measurement and pushing structure. Background Art
[0002] The pager can be used in conjunction with a coding machine or used independently. After use, it will greatly improve the working speed of workers, save working time, save labor, and greatly reduce production costs. It is used to automatically separate stacks of plastic bags, packaging bags or cards of various specifications into individual ones and convey them to the conveyor belt, facilitating the coding machine or laser machine to perform printing, engraving production dates, batch numbers, anti-counterfeiting marks, patterns, etc. Thereby reducing the cumbersome manual paging, giving full play to the advantages of high-speed printing of the coding machine and laser machine, and improving the printing work efficiency.
[0003] The existing pager can only separate packaging bags individually and cannot code on the packaging bags at the same time. It needs to be operated twice. In this way, many defective products will be produced during the production process, increasing the workload of employees and requiring double the working time to complete the work. There are also certain risks and potential hazards in terms of quality. Summary of the Invention
[0004] The purpose of the present invention is to provide a pager with an ordered measurement and pushing structure to solve the problem in the above background art that the existing pager can only separate packaging bags individually, cannot code on the packaging bags at the same time, needs to be operated twice, resulting in many defective products during the production process, increasing the workload of employees and requiring double the working time to complete the work.
[0005] To achieve the above purpose, the present invention provides the following technical solution: A pager with an ordered measurement and pushing structure, including a chassis workbench. Above the chassis workbench is provided a paging and coding unit, and the paging and coding unit is connected to the chassis workbench by screws. One end of the paging and coding unit is provided with a material receiving unit, and the other end of the paging and coding unit is provided with a control unit. The paging and coding unit includes anti-jump clamping belts, and there are four anti-jump clamping belts. One end of the anti-jump clamping belt is provided with a support roller, and the support roller is connected to the paging and coding unit through a card slot. Below the anti-jump clamping belt is provided a conveyor belt, and there are four conveyor belts. One end of the conveyor belt is provided with a second driving roller, and the second driving roller is rotationally connected to the paging and coding unit. Above the other end of the anti-jump clamping belt is provided a pressing roller, and the pressing roller is in close connection with the anti-jump clamping belt. The other ends of the anti-jump clamping belt and the conveyor belt are both provided with a first driving roller, and the first driving roller is rotationally connected to the paging and coding unit. Below the conveyor belt is provided a support cross plate, and the support cross plate is connected to the paging and coding unit by bolts. Infrared sensing elements are provided on both sides of the support cross plate, and the infrared sensing elements are connected to the support cross plate through brackets.
[0006] Preferably, a support frame is provided above the paging and coding unit, and the support frame is connected to the paging and coding unit by screws. A horizontal sliding rod is provided inside the support frame, and the horizontal sliding rod is connected to the support frame by bolts.
[0007] Preferably, a support suspension is provided on the outer surface of the horizontal sliding rod, and the support suspension is slidably connected to the horizontal sliding rod. A coding main machine is provided at the bottom of the support suspension, and the coding main machine is connected to the support suspension by screws.
[0008] Preferably, a working shaft box is provided at the bottom of the coding main machine, and the working shaft box is fixedly connected to the coding main machine. A number display screen is provided on the outer surface of the working shaft box, and the number display screen is electrically connected to an infrared sensing element.
[0009] Preferably, a coding roller is provided at the bottom of the working shaft box, and the coding roller is rotatably connected to the working shaft box. The coding roller is located above the infrared sensing elements.
[0010] Preferably, a control operation module is provided on one side of the control unit, a storage tank is provided above the control unit, and a rubber paging channel is provided at one end of the storage tank and extends above the conveyor belt.
[0011] Compared with the prior art, the beneficial effects of the present invention are:
[0012] 1. For the paging machine with an ordered measurement and pushing structure, a set of support frames are installed above the middle section of the conveyor belt. A coding main machine and a working shaft box are provided inside the support frame. A set of number display screens are provided on the outer surface of the working shaft box. The infrared sensing elements can transmit the detected number signal of the passing packaging bags to the number display screens, and then the number display screens display the total number of packaging bags passing through the coding structure. At the same time, a coding roller is provided at the bottom of the working shaft box. When the packaging bag passes through the coding roller, the coding roller can print the corresponding information on the surface of the packaging bag;
[0013] 2. For the paging machine with an ordered measurement and pushing structure of the present invention, when the packaging bag passes through the infrared sensing element on the input end side, the infrared sensing element at this place will record the time from contact to departure of the packaging bag. Then, after the packaging bag undergoes the coding operation, it will pass through the infrared sensing element on the output end side, and the infrared sensing element at this place will also record the time from contact to departure of the packaging bag. In this way, the conveying distance between adjacent packaging bags and the time for the packaging bag to pass through the coding mechanism can be calculated. After obtaining the data, the staff can set the corresponding programs according to the data to ensure the unity of the conveying distance and coding time of the packaging bags and avoid the situation of offset and dislocation of the printing code positions. BRIEF DESCRIPTION OF THE DRAWINGS
[0014] Figure 1 is the overall front view of the present invention;
[0015] Figure 2 is the schematic structural diagram of the pagination and coding unit of the present invention;
[0016] Figure 3 is the schematic structural diagram of the support frame of the present invention.
[0017] In the figure: 1, chassis workbench; 2, pagination and coding unit; 3, material receiving unit; 4, control unit; 5, control operation module; 6, storage tank; 7, rubber pagination channel; 8, support frame; 9, anti-jump clamping belt; 10, pressing roller; 11, first driving roller; 12, support roller; 13, second driving roller; 14, conveyor belt; 15, infrared sensing element; 16, support cross plate; 17, horizontal sliding rod; 18, coding host; 19, working shaft box; 20, coding roller; 21, quantity display screen; 22, support suspension. Detailed implementation manners
[0018] 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.
[0019] Please refer to Figures 1-3, an embodiment provided by the present invention: a paging machine with an ordered measurement and pushing structure, including a chassis workbench 1, above which a paging and coding unit 2 is arranged, and the paging and coding unit 2 is connected to the chassis workbench 1 by screws. A material receiving unit 3 is arranged at one end of the paging and coding unit 2 for collecting printed packaging bags, and a control unit 4 is arranged at the other end of the paging and coding unit 2. The paging and coding unit 2 includes anti-jumping clamping belts 9, and there are four anti-jumping clamping belts 9, which are located above the packaging bags. Cooperating with the conveyor belt 14 below, it can prevent the packaging bags from floating during transportation due to too fast moving speed. One end of the anti-jumping clamping belt 9 is provided with a support roller 12, and the support roller 12 is connected to the paging and coding unit 2 through a card slot. A conveyor belt 14 is arranged below the anti-jumping clamping belt 9, and there are four conveyor belts 14. Both the anti-jumping clamping belt 9 and the conveyor belt 14 have four groups, and the distance between the middle two groups is relatively large, which is convenient for the packaging bags to pass through. At this time, the coding mechanism above can perform printing operations on them to ensure sufficient printing space. One end of the conveyor belt 14 is provided with a second driving roller 13, and the second driving roller 13 is rotatably connected to the paging and coding unit 2. Above the other end of the anti-jumping clamping belt 9 is provided with a pressing roller 10, and the pressing roller 10 is in fit connection with the anti-jumping clamping belt 9. The main function of the pressing roller 10 is to press the anti-jumping clamping belt 9 to ensure the clamping force of the anti-jumping clamping belt 9 on the packaging bags. The other ends of both the anti-jumping clamping belt 9 and the conveyor belt 14 are provided with a first driving roller 11, and the first driving roller 11 is rotatably connected to the paging and coding unit 2. A support cross plate 16 is arranged below the conveyor belt 14, and the support cross plate 16 is connected to the paging and coding unit 2 by bolts. Infrared sensing elements 15 are arranged on both sides of the support cross plate 16, and the infrared sensing elements 15 are connected to the support cross plate 16 through brackets. The two groups of infrared sensing elements 15 are arranged according to the conveying direction of the packaging bags, and the infrared sensing elements 15 are located directly below the coding mechanism. When the packaging bag passes through the infrared sensing element 15 on the input end side, the infrared sensing element 15 at this place will record the time from when the packaging bag touches to when it leaves. Subsequently, after the packaging bag undergoes coding operations, it will pass through the infrared sensing element 15 on the output end side, and the infrared sensing element 15 at this place will also record the time from when the packaging bag touches to when it leaves. In this way, the conveying distance between adjacent packaging bags and the time for the packaging bag to pass through the coding mechanism can be calculated. After obtaining the data, the staff can set the corresponding programs according to the data to ensure the unity of the conveying distance and coding time of the packaging bags and avoid the situation of offset and misalignment of the printing code positions.
[0020] Further, a support frame 8 is arranged above the paging and coding unit 2, and the support frame 8 is connected to the paging and coding unit 2 by screws. A coding device or a counting device can be installed on the support frame 8 to realize functions such as paging, coding, and counting of the packaging bags. A horizontal sliding rod 17 is arranged inside the support frame 8, and the horizontal sliding rod 17 is connected to the support frame 8 by bolts.
[0021] Further, a support suspension 22 is provided on the outer surface of the horizontal slide bar 17, and the support suspension 22 is slidably connected to the horizontal slide bar 17, so that the position of the lower coding mechanism can be adjusted. A coding host 18 is provided at the bottom of the support suspension 22, and the coding host 18 is connected to the support suspension 22 by screws to ensure stability.
[0022] Further, a working shaft box 19 is provided at the bottom of the coding host 18, and the working shaft box 19 is fixedly connected to the coding host 18. A quantity display screen 21 is provided on the outer surface of the working shaft box 19, and the quantity display screen 21 is electrically connected to the infrared sensing element 15. The infrared sensing element 15 can transmit the detected signal of the number of passing packaging bags to the quantity display screen 21, and then the quantity display screen 21 displays the total number of packaging bags passing through the coding structure.
[0023] Further, a coding roller 20 is provided at the bottom of the working shaft box 19, and the coding roller 20 is rotatably connected to the working shaft box 19. When the packaging bag passes through the coding roller 20, the coding roller 20 can print the corresponding information on the surface of the packaging bag. The coding roller 20 is located above the infrared sensing elements 15. Before entering the coding roller 20 for coding, the packaging bag needs to pass through a group of infrared sensing elements 15, and after the coding operation is completed, the packaging bag also needs to pass through the infrared sensing elements 15 on the other side.
[0024] Further, a control operation module 5 is provided on one side of the control unit 4, a storage tank 6 is provided above the control unit 4, and a rubber page separation channel 7 is provided at one end of the storage tank 6, and the rubber page separation channel 7 extends above the conveyor belt 14. During processing, the packaging bag enters above the conveyor belt 14 along the rubber page separation channel 7.
[0025] Working principle: When in use, place the packaging bag into the rubber pagination chute 7. Subsequently, during processing, the packaging bag enters above the conveyor belt 14 along the rubber pagination chute 7. A set of support frames 8 is installed above the middle section of the conveyor belt 14. Inside the support frame 8, there are a coding mainframe 18 and a working axle box 19. On the outer surface of the working axle box 19, there is a set of quantity display screens 21. The infrared sensing element 15 can transmit the detected signal of the quantity of passing packaging bags to the quantity display screen 21, and then the quantity display screen 21 shows the total quantity of packaging bags passing through the coding structure. At the same time, a coding roller 20 is provided at the bottom of the working axle box 19. When the packaging bag passes through the coding roller 20, the coding roller 20 can print the corresponding information on the surface of the packaging bag. The coding roller 20 is located above the infrared sensing elements 15. The packaging bag needs to pass through a set of infrared sensing elements 15 before entering the coding by the coding roller 20. After completing the coding operation, the packaging bag also needs to pass through the infrared sensing elements 15 on the other side. When the packaging bag passes through the infrared sensing elements 15 on the input end side, the infrared sensing elements 15 at this place will record the time from contact to departure of the packaging bag. Subsequently, after the packaging bag undergoes the coding operation, it will pass through the infrared sensing elements 15 on the output end side, and the infrared sensing elements 15 at this place will also record the time from contact to departure of the packaging bag. In this way, the conveying distance between adjacent packaging bags and the time for the packaging bag to pass through the coding mechanism can be calculated. After obtaining the data, the staff can set the corresponding programs according to the data to ensure the unity of the conveying distance and coding time of the packaging bag and avoid the situation of offset and dislocation of the printing code position.
[0026] Finally, it should be noted that the above content is only used to illustrate the technical solution of the present invention, rather than limiting the protection scope of the present invention. Any simple modification or equivalent replacement of the technical solution of the present invention by those of ordinary skill in the art does not depart from the essence and scope of the technical solution of the present invention.
Claims
1. A paging machine with an ordered measurement and pushing structure, comprising a chassis workbench (1), characterized in that: Above the chassis workbench (1), there is a page separation and coding unit (2), and the page separation and coding unit (2) is connected to the chassis workbench (1) by screws. One end of the page separation and coding unit (2) is provided with a material receiving unit (3), and the other end of the page separation and coding unit (2) is provided with a control unit (4). The page separation and coding unit (2) includes anti-jump clamping belts (9), and there are four anti-jump clamping belts (9). One end of the anti-jump clamping belt (9) is provided with a support roller (12), and the support roller (12) is connected to the page separation and coding unit (2) through a card slot. Below the anti-jump clamping belt (9), there is a conveyor belt (14), and there are four conveyor belts (14). One end of the conveyor belt (14) is provided with a second driving roller (13), and the second driving roller (13) is rotatably connected to the page separation and coding unit (2). Above the other end of the anti-jump clamping belt (9), there is a pressing roller (10), and the pressing roller (10) is in close connection with the anti-jump clamping belt (9). The other ends of the anti-jump clamping belt (9) and the conveyor belt (14) are both provided with a first driving roller (11), and the first driving roller (11) is rotatably connected to the page separation and coding unit (2). Below the conveyor belt (14), there is a support cross plate (16), and the support cross plate (16) is connected to the page separation and coding unit (2) by bolts. On both sides of the support cross plate (16), there are infrared sensing elements (15), and the infrared sensing elements (15) are connected to the support cross plate (16) through brackets; Above the page separation and coding unit (2), there is a support frame (8), and the support frame (8) is connected to the page separation and coding unit (2) by screws. Inside the support frame (8), there is a horizontal sliding rod (17), and the horizontal sliding rod (17) is connected to the support frame (8) by bolts; On the outer surface of the horizontal sliding rod (17), there is a support suspension (22), and the support suspension (22) is slidably connected to the horizontal sliding rod (17). At the bottom of the support suspension (22), there is a coding main machine (18), and the coding main machine (18) is connected to the support suspension (22) by screws; At the bottom of the coding main machine (18), there is a working shaft box (19), and the working shaft box (19) is fixedly connected to the coding main machine (18). On the outer surface of the working shaft box (19), there is a quantity display screen (21), and the quantity display screen (21) is electrically connected to the infrared sensing element (15); At the bottom of the working shaft box (19), there is a coding roller (20), and the coding roller (20) is rotatably connected to the working shaft box (19). The coding roller (20) is located above the infrared sensing elements (15); On one side of the control unit (4), there is a control operation module (5). Above the control unit (4), there is a storage tank (6). One end of the storage tank (6) is provided with a rubber page separation channel (7), and the rubber page separation channel (7) extends above the conveyor belt (14).
Citation Information
Patent Citations
Paging machine with ordered measurement pushing structure
CN212315101U