Double-track feeding packaging machine

Through the combined structure of the feeding device and the cutting device and the design of the motor-driven fabric tray, the problem of manual delivery of parts is solved, automatic delivery and precise control are achieved, blockage is prevented, and production efficiency and packaging quality are improved.

CN223302977UActive Publication Date: 2025-09-05BI-LINK (NANNING) CO LTD
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Patent Information

Application Number
CN202422231105.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-11
Publication Date
2025-09-05
Estimated Expiration
2034-09-11

AI Technical Summary

Technical Problem

The existing dual-track feed packaging machine requires manual and manual placement of parts on the dual-track conveyor belt, resulting in high operating frequency, low degree of automation, and easy to cause muscle strain and occupational diseases.

Method used

The combined structure of the feeding device and the feeding device is adopted, and the cloth plate is driven by a motor to achieve automatic placement and precise control of the parts. At the same time, the blockage is prevented through the reciprocating movement of the tapping block, ensuring smooth feeding.

Benefits of technology

It realizes automatic placement and precise control of parts, improves production efficiency and packaging quality, reduces manual intervention, prevents blockage, and improves the degree of automation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of packaging equipment, and provides a double-track feeding packaging machine which comprises a packaging machine body, a feeding device is fixedly installed on the rear side of the top of the packaging machine body, a feeding pipeline is fixedly installed on the top side in the feeding device, a splitter plate is fixedly installed on the inner wall, close to the top side, of the feeding device, and the splitter plate is fixedly installed on the inner wall of the feeding device. The packaging machine comprises a feeding device, the two sides of the inner wall of the feeding device are each fixedly provided with two drainage plates, and the two sides of the bottom of the feeding device are each fixedly provided with a discharging device. When the packaging machine is used, through the structures such as the feeding device and the discharging devices, parts can automatically enter the packaging machine body from the feeding device and are finally conveyed to the packaging machine body; compared with the prior art, the requirement for manual intervention is reduced, the production efficiency is improved, meanwhile, the motor drives the material distribution disc to rotate, accurate feeding of the parts is achieved, the feeding time and number of the parts can be accurately controlled, and the packaging quality and efficiency can be improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of packaging equipment, in particular to a double-track feeding packaging machine. Background Art

[0002] Packaging is a necessary condition for products to enter the circulation field, and the main means to achieve packaging is the use of packaging machinery. With the development of the times and the advancement of technology, packaging machinery is playing an increasingly important role in the packaging field.

[0003] However, the existing dual-track feeding packaging machine does have certain operational limitations when packaging parts. This is mainly reflected in the need for manual participation to place the parts on the dual-track conveyor belt. During the packaging process, workers need to manually place the parts one by one on the dual-track conveyor belt, which not only increases the frequency of manual operation, but also makes the degree of automation of the entire packaging process low. Long-term manual placement work will cause operators to feel fatigue, especially on production lines that require fast and continuous operations. This high-intensity repetitive labor can easily cause muscle strain and occupational diseases. Utility Model Content

[0004] The purpose of the utility model is to solve the problem in the prior art that parts need to be manually placed one by one on the double-track conveyor belt, which not only increases the frequency of manual operation but also makes the degree of automation of the entire packaging process low.

[0005] In order to achieve the above-mentioned purpose, the utility model adopts the following technical solutions: a dual-track feeding packaging machine, including a packaging machine body, a feeding device is fixedly installed on the top rear side of the packaging machine body, a feeding pipe is fixedly installed on the internal top side of the feeding device, a diverter plate is fixedly installed on the inner wall of the feeding device near the top side, two guide plates are fixedly installed on both sides of the inner wall of the feeding device, and a feeding device is fixedly installed on both sides of the bottom of the feeding device, a feeding slot is opened at the top center of the two feeding devices, a first rotating rod is movably embedded in the interior of the two feeding devices, and a feeding disk is fixedly sleeved on the outer surfaces of both sides of the first rotating rod and located inside the feeding device, a plurality of feeding slots are opened inside the two feeding disks, and a motor is fixedly installed on the right side of the first rotating rod.

[0006] As a preferred embodiment, a discharge slot is opened at the bottom center of the two discharge devices, a discharge pipe is fixedly installed on the bottom side of the outer surface of the two discharge devices, and a partition is fixedly installed on the front side of the two discharge pipes.

[0007] The technical effect of adopting the above further solution is that the parts can enter the interior of the discharge pipe through the discharge notch.

[0008] As a preferred embodiment, a double-track conveyor belt is provided at the bottom of the two discharge pipes, the double-track conveyor belt is provided on the top of the packaging machine body, and a connecting plate is fixedly installed on the rear side of the two discharge devices.

[0009] The technical effect of adopting the above further solution is that the parts can be transported through the unloading pipe to the top of the double-track conveyor belt.

[0010] As a preferred embodiment, a second rotating rod is movably embedded in the interior of the connecting plate, and a first bevel gear is fixedly sleeved on the outer surface of the first rotating rod.

[0011] The technical effect of adopting the above further solution is that the transmission can be transmitted to the first bevel gear through the first rotating rod.

[0012] As a preferred embodiment, a second bevel gear is fixedly sleeved on the front outer surface of the second rotating rod, the second bevel gear is meshed with the adjacent first bevel gear, and a rotating disk is fixedly installed on the rear side of the second rotating rod.

[0013] The technical effect of adopting the above further solution is that the transmission can be transmitted to the second bevel gear through the first bevel gear.

[0014] As a preferred embodiment, a movable rod is fixedly installed on the rear side of the rotating disk near the top, and a connecting piece is movably embedded in the interior of the connecting plate.

[0015] The technical effect of adopting the above further solution is that the transmission to the second rotating rod can be carried out through the second bevel gear.

[0016] As a preferred embodiment, a slide rail is provided inside the connecting member, and the movable rod is movably embedded in the inner surface of the slide rail.

[0017] The technical effect of adopting the above further solution is that the movable rod can slide inside the slide rail.

[0018] As a preferred embodiment, a connecting column is fixedly installed on the top of the connecting member, and knocking blocks are fixedly installed on both sides of the connecting column.

[0019] The technical effect of adopting the above further solution is that the striking block on the right can be driven to move synchronously to the left through the connecting column.

[0020] Compared with the prior art, the advantages and positive effects of the present invention are:

[0021] 1. When in use, the present invention uses structures such as a feeding device and a discharging device to not only enable parts to automatically enter the feeding device and be ultimately conveyed to the packaging machine body, thereby reducing the need for manual intervention and improving production efficiency, but also realizes accurate delivery of parts by driving the distribution plate to rotate through a motor, and can accurately control the delivery timing and quantity of parts, thereby helping to improve packaging quality and efficiency. This solves the problem in the prior art of manually placing parts one by one onto a double-track conveyor belt, which not only increases the frequency of manual operation but also reduces the degree of automation of the entire packaging process.

[0022] 2. When the utility model is in use, the connecting plate, the rotating disk and other structures enable the knocking block to knock the feeding device back and forth, causing it to vibrate, effectively preventing parts from being blocked during the unloading process, and ensuring unimpeded feeding. BRIEF DESCRIPTION OF THE DRAWINGS

[0023] Figure 1 This is a rear perspective structural diagram of a dual-track feeding packaging machine provided by the utility model;

[0024] Figure 2 This is a left-side perspective structural diagram of a dual-track feeding packaging machine provided by the present invention;

[0025] Figure 3 A schematic diagram of the partial three-dimensional structure of a dual-track feeding packaging machine provided by the utility model Figure 1 ;

[0026] Figure 4 A schematic diagram of the cross-sectional structure of a feeding device of a dual-track feeding packaging machine provided by the utility model Figure 1 ;

[0027] Figure 5 A schematic diagram of the cross-sectional structure of a feeding device of a dual-track feeding packaging machine provided by the utility model Figure 2 ;

[0028] Figure 6 A schematic diagram of the partial three-dimensional structure of a dual-track feeding packaging machine provided by the utility model Figure 2 ;

[0029] Figure 7 A schematic diagram of the partial three-dimensional structure of a dual-track feeding packaging machine provided by the utility model Figure 3 .

[0030] Legend:

[0031] 1. Packaging machine body; 101. Feeding device; 102. Feeding pipe; 103. Diverter plate; 104. Drain plate; 105. Discharging device; 106. Feeding slot; 107. Distribution plate; 108. First rotating rod; 109. Motor; 110. Distribution slot; 111. Discharging slot; 112. Discharging pipe; 113. Partition; 114. Double-track conveyor belt; 2. First bevel gear; 201. Connecting plate; 202. Second rotating rod; 203. Second bevel gear; 204. Rotating plate; 205. Movable rod; 206. Connecting piece; 207. Slide rail; 208. Connecting column; 209. Knocking block. DETAILED DESCRIPTION

[0032] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0033] Example 1, please refer to Figures 1 to 7 The utility model provides a technical solution: a dual-track feeding packaging machine, including a packaging machine body 1, a feeding device 101 is fixedly installed on the top rear side of the packaging machine body 1, a feeding pipe 102 is fixedly installed on the top side of the inner wall of the feeding device 101, a diverter plate 103 is fixedly installed near the top side, two guide plates 104 are fixedly installed on both sides of the inner wall of the feeding device 101, and a discharge device 105 is fixedly installed on both sides of the bottom of the feeding device 101. A feeding slot 106 is opened at the top center of the two discharge devices 105, and a first rotating rod 108 is movably embedded in the interior of the two discharge devices 105. The two ends of the first rotating rod 108 are fixedly mounted on the bottom of the feeding device 101. A feeding disc 107 is fixedly mounted on the outer side surface and inside the unloading device 105, and a plurality of feeding grooves 110 are provided inside the two feeding discs 107. A motor 109 is fixedly installed on the right side of the first rotating rod 108. A feeding groove opening 111 is provided at the bottom center of the two unloading devices 105. Unloading pipes 112 are fixedly mounted on the bottom side of the outer surface of the two unloading devices 105, and partitions 113 are fixedly mounted on the front sides of the two unloading pipes 112. A double-track conveyor belt 114 is provided at the bottom of the two unloading pipes 112, and the double-track conveyor belt 114 is arranged on the top of the packaging machine body 1. A connecting plate 201 is fixedly mounted on the rear side of the two unloading devices 105.

[0034] In this embodiment, personnel can first put parts into the feeding device 101 through the feeding pipe 102. After the parts enter the feeding device 101, they will be diverted by the diverter plate 103, so that the parts are divided into two groups and fall into the top of the guide plates 104 on both sides. Then, the external power switch of the motor 109 is turned on, and the motor 109 is started to drive the first rotating rod 108 to rotate through the output shaft, and then the first rotating rod 108 drives the distribution plate 107 inside the unloading device 105 to rotate synchronously, so that one of the distribution troughs 110 is located at the bottom of the feeding trough 106, and then the guide plate 104 is used for drainage, so that the parts pass through the feeding trough 106 into one of the distribution troughs 110, and the distribution plate 107 is driven to rotate continuously by the motor 109, so that the other distribution trough 110 is located at the top of the unloading trough 111, and then The parts inside the feeding trough 110 fall down by their own weight, so that they can enter the inside of the feeding pipe 112 through the feeding trough opening 111, and are transported to the top of the double-track conveyor belt 114 through the feeding pipe 112, and then are transported by the double-track conveyor belt 114, so that the parts pass through the partition 113 and enter the inside of the packaging machine body 1 for packaging. The parts can then be prevented from piling up by setting the partition 113. Moreover, through the structures such as the feeding device 101 and the feeding device 105, not only can the parts automatically enter from the feeding device 101 and be finally transported to the packaging machine body 1, the need for manual intervention is reduced, and production efficiency is improved. At the same time, the rotation of the feeding disc 107 is driven by the motor 109, so that the precise delivery of the parts is achieved, and the timing and quantity of the delivery of the parts can be accurately controlled, which helps to improve the packaging quality and efficiency.

[0035] Example 2, as Figures 1 to 7 As shown, a second rotating rod 202 is movably embedded in the interior of the connecting plate 201, a first bevel gear 2 is fixedly sleeved on the outer surface of the first rotating rod 108, a second bevel gear 203 is fixedly sleeved on the front outer surface of the second rotating rod 202, the second bevel gear 203 is meshed with the adjacent first bevel gear 2, a rotating disk 204 is fixedly installed on the rear side of the second rotating rod 202, a movable rod 205 is fixedly installed on the rear side of the rotating disk 204 near the top, a connecting piece 206 is movably embedded in the interior of the connecting plate 201, a slide rail 207 is provided inside the connecting piece 206, the movable rod 205 is movably embedded in the inner surface of the slide rail 207, a connecting column 208 is fixedly installed on the top of the connecting piece 206, and knocking blocks 209 are fixedly installed on both sides of the connecting column 208.

[0036] In this embodiment, the first rotating rod 108 can be used to transmit the power to the first bevel gear 2, and then the first bevel gear 2 can be used to transmit the power to the second bevel gear 203, and then the second rotating rod 202 can be used to transmit the power to the second bevel gear 203, so that when the second rotating rod 202 rotates, it can drive the movable rod 205 to rotate in a circle through the rotating disk 204. When the movable rod 205 rotates in a circle to the left, it will slide inside the slide rail 207 and pull the connecting member 206 to slide to the left through the connecting plate 201. When the connecting member 206 moves to the left, it drives the knocking block 209 on the right to move to the left synchronously through the connecting column 208, so that the knocking block 209 can knock the right side of the feeding device 101. When the circle rotates to the right, it will pull the connecting piece 206 to slide to the right through the connecting plate 201, so that when the connecting piece 206 moves to the left, it drives the knocking block 209 on the left to move synchronously to the right through the connecting column 208, so that the knocking block 209 can knock the left side of the feeding device 101. The movable rod 205 can be rotated back and forth around the circle to drive the knocking block 209 to knock the feeding device 101 back and forth, causing it to vibrate and prevent it from being blocked during the unloading process. Moreover, through the structures such as the connecting plate 201 and the rotating disk 204, the knocking block 209 can knock the feeding device 101 back and forth, causing it to vibrate, effectively preventing the parts from being blocked during the unloading process and ensuring unimpeded feeding.

[0037] Working principle: When in use, personnel can first put parts into the feeding device 101 through the feeding pipe 102. After the parts enter the feeding device 101, they will be diverted by the diverter plate 103, so that the parts are divided into two groups and fall into the top of the guide plates 104 on both sides. Then, the external power switch of the motor 109 is turned on, and the motor 109 is started to drive the first rotating rod 108 to rotate through the output shaft, and then the first rotating rod 108 drives the distribution plate 107 inside the unloading device 105 to rotate synchronously, so that one of the distribution troughs 110 is located at the bottom of the feeding trough 106, and then the guide plate 104 is used for drainage, so that the parts pass through the feeding trough 106 into one of the distribution troughs 110, and the distribution plate 107 is driven by the motor 109 to rotate continuously, so that the other distribution trough 110 is located at the top of the unloading trough 111. Then, the parts inside the feeding trough 110 fall down by their own weight, so that they can enter the inside of the feeding pipe 112 through the feeding trough opening 111, and be transported to the top of the double-track conveyor belt 114 through the feeding pipe 112, and then the double-track conveyor belt 114 transports the parts so that the parts pass through the partition 113 and enter the inside of the packaging machine body 1 for packaging. The parts can then be prevented from piling up by setting the partition 113. Moreover, through the structures such as the feeding device 101 and the feeding device 105, not only can the parts automatically enter from the feeding device 101 and be finally transported to the packaging machine body 1, the need for manual intervention is reduced and production efficiency is improved, but at the same time, the distribution plate 107 is driven by the motor 109 to rotate, so as to realize the precise delivery of parts, and the timing and quantity of the delivery of parts can be accurately controlled, which helps to improve the packaging quality and efficiency.When in use, the first rotating rod 108 can be used to transmit the power to the first bevel gear 2, and then the first bevel gear 2 can be used to transmit the power to the second bevel gear 203, and then the second rotating rod 202 can be used to transmit the power to the second bevel gear 203, so that when the second rotating rod 202 rotates, it can drive the movable rod 205 to rotate in a circle through the rotating disk 204. When the movable rod 205 rotates in a circle to the left, it will slide inside the slide rail 207 and pull the connecting piece 206 to slide to the left through the connecting plate 201. When the connecting piece 206 moves to the left, it drives the knocking block 209 on the right to move to the left synchronously through the connecting column 208, so that the knocking block 209 can knock the right side of the feeding device 101. When it rotates to the right, the connecting piece 206 will be pulled to slide to the right through the connecting plate 201, so that when the connecting piece 206 moves to the left, it drives the knocking block 209 on the left to move synchronously to the right through the connecting column 208, so that the knocking block 209 can knock the left side of the feeding device 101. The reciprocating circular rotation of the movable rod 205 can drive the knocking block 209 to knock the feeding device 101 back and forth, causing it to vibrate and prevent it from being blocked during the unloading process. Moreover, through the structures such as the connecting plate 201 and the rotating disk 204, the knocking block 209 can knock the feeding device 101 back and forth, causing it to vibrate, effectively preventing the parts from being blocked during the unloading process and ensuring unimpeded feeding.

[0038] The above description is only a preferred embodiment of the present invention and does not limit the present invention in any other form. Any technician familiar with the profession may use the technical content disclosed above to change or modify it into an equivalent embodiment with equivalent changes for application in other fields. However, any simple modification, equivalent change and modification of the above embodiment made according to the technical essence of the present invention without departing from the content of the technical solution of the present invention shall still fall within the scope of protection of the technical solution of the present invention.

Claims

1. A dual-track feeding packaging machine, comprising a packaging machine body (1), characterized in that: A feeding device (101) is fixedly installed on the top rear side of the packaging machine body (1), a feeding pipe (102) is fixedly installed on the inner top side of the feeding device (101), a diverter plate (103) is fixedly installed on the inner wall of the feeding device (101) near the top side, two guide plates (104) are fixedly installed on both sides of the inner wall of the feeding device (101), and a discharge device (105) is fixedly installed on both sides of the bottom of the feeding device (101). The two discharge devices (105) are fixedly installed on the inner wall of the feeding device (101). A feeding notch (106) is provided at the top center of each device (105); a first rotating rod (108) is movably embedded inside the two unloading devices (105); a material distribution disc (107) is fixedly sleeved on the outer surfaces of both sides of the first rotating rod (108) and located inside the unloading device (105); a plurality of material distribution grooves (110) are provided inside the two material distribution discs (107); and a motor (109) is fixedly installed on the right side of the first rotating rod (108).

2. The dual-track feeding packaging machine according to claim 1, characterized in that: A material discharge slot (111) is provided at the bottom center of the two material discharge devices (105), a material discharge pipe (112) is fixedly installed on the bottom side of the outer surface of the two material discharge devices (105), and a partition (113) is fixedly installed on the front side of the two material discharge pipes (112).

3. The dual-track feeding packaging machine according to claim 2, characterized in that: A double-track conveyor belt (114) is provided at the bottom of the two unloading pipes (112), and the double-track conveyor belt (114) is provided on the top of the packaging machine body (1). A connecting plate (201) is fixedly installed on the rear side of the two unloading devices (105).

4. The dual-track feeding packaging machine according to claim 3, characterized in that: A second rotating rod (202) is movably embedded in the interior of the connecting plate (201), and a first bevel gear (2) is fixedly sleeved on the outer surface of the first rotating rod (108).

5. The dual-track feeding packaging machine according to claim 4, characterized in that: A second bevel gear (203) is fixedly sleeved on the front outer surface of the second rotating rod (202), and the second bevel gear (203) is meshed with the adjacent first bevel gear (2). A rotating disk (204) is fixedly mounted on the rear side of the second rotating rod (202).

6. The dual-track feeding packaging machine according to claim 5, characterized in that: A movable rod (205) is fixedly installed on the rear side of the rotating disk (204) near the top, and a connecting piece (206) is movably embedded inside the connecting plate (201).

7. The dual-track feeding packaging machine according to claim 6, characterized in that: A slide rail (207) is provided inside the connecting member (206), and the movable rod (205) is movably embedded in the inner surface of the slide rail (207).

8. The dual-track feeding packaging machine according to claim 7, characterized in that: A connecting column (208) is fixedly mounted on the top of the connecting member (206), and knocking blocks (209) are fixedly mounted on both sides of the connecting column (208).