Non-stop automatic material receiving and collecting table

By designing an automatic material collection platform that does not require stopping the machine, and utilizing the cooperation of conveyor belts and baffles, the automatic and neat stacking of plastic bags in bag making machine production is realized. This solves the problems of uneven stacking and low efficiency in existing technologies, improves work efficiency, and reduces labor intensity.

CN223494015UActive Publication Date: 2025-10-31XINXIN PLASTICS PACKING MACHINERY
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Patent Information

Application Number
CN202522006515.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-18
Publication Date
2025-10-31
Estimated Expiration
2035-09-18

AI Technical Summary

Technical Problem

The individual plastic bags produced by the existing bag-making machine are not stacked neatly, and manual removal is inefficient and labor-intensive.

Method used

The system employs a non-stop automatic material receiving and collecting platform. It utilizes an intermittently driven conveyor belt, baffles, and receiving forks to automatically sort and stack plastic bags through the tapping of the baffles and the replacement of the receiving forks. The structure is simple and reliable.

Benefits of technology

It enables the automatic and neat stacking and delivery of plastic bags without stopping the machine, improving work efficiency and reducing labor intensity.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a non-stop automatic material receiving and collecting table which is characterized by comprising a conveying belt intermittently driven by a main motor during working, a front baffle, a rear baffle, a left baffle and a right baffle are arranged at the material receiving end of the conveying belt, the front baffle is fixedly installed, the left baffle is arranged in a left-right moving mode and connected with a first driving piece, and the right baffle is arranged in a right-left moving mode and connected with a second driving piece. The right baffle moves left and right to be connected with the second driving part, the rear baffle moves up and down to be connected with the third driving part, vertical fence holes are formed in the surface of the rear baffle, a material receiving fork is arranged on the rear side of the rear baffle and moves front and back to be connected with the fourth driving part, and the head of the material receiving fork can freely enter and exit from the vertical fence holes when the material receiving fork moves forwards. The discharging device is used for discharging produced plastic bags of the bag making machine, single plastic bags produced by the bag making machine can be tidied and then automatically stacked and discharged under the non-stop working condition, and the discharging device is simple in structure and reliable in action.
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Description

Technical Field

[0001] This utility model relates to a bag making machine, specifically to a receiving and collecting platform for the material delivered by the bag making machine. Background Technology

[0002] Currently, individual plastic bags produced by bag-making machines are typically manually removed after being stacked in a fixed quantity. The disadvantages are that the stacking is not neat, manual removal is required frequently, resulting in low work efficiency and high labor intensity for workers. Utility Model Content

[0003] In view of the shortcomings of the existing technology, the purpose of this utility model is to provide an automatic material receiving and collecting platform for bag making machine production, which can automatically stack and feed out individual plastic bags produced by the bag making machine without stopping the machine. The platform has a simple structure and reliable operation.

[0004] This utility model is implemented through the following technical solution:

[0005] An automatic material receiving and collecting platform that operates without stopping is characterized by: a conveyor belt intermittently driven by a main motor during operation; the conveyor belt is provided with a front baffle, a rear baffle, a left baffle, and a right baffle at the receiving end; the front baffle is fixedly installed; the left baffle is movable left and right and connected to a first driving component; the right baffle is movable left and right and connected to a second driving component; the rear baffle is movable up and down and connected to a third driving component; vertical grid holes are opened on the surface of the rear baffle; a receiving fork is provided on the rear side of the rear baffle; the receiving fork is movable forward and backward and connected to a fourth driving component; when the receiving fork moves forward, its head can freely enter and exit the vertical grid holes.

[0006] The first driving component is the left balancing cylinder, the second driving component is the right balancing cylinder, and the third driving component is the fence cylinder.

[0007] The fourth driving component is a linear module, which is driven by a receiving fork motor.

[0008] By adopting the above technical solution, this utility model can automatically stack and send out individual plastic bags produced by the bag-making machine without stopping the machine. The specific operation process is as follows: After the plastic bags are produced by the bag-making machine, they fall one by one onto the receiving end of the conveyor belt in sequence. During the falling process, the front and rear baffles make the front and back of the plastic bags neat. At the same time, when each plastic bag falls, the left baffle moves to the right to pat the left side of the plastic bag, while the right baffle moves to the left to pat the right side of the plastic bag, so that the plastic bags falling onto the conveyor belt are also neat from side to side. Thus, the plastic bags can be neatly stacked on the conveyor belt. When a certain number of plastic bags are stacked, the receiving fork will extend forward, and the fork head passes through the vertical of the rear baffle. The receiving fork catches the plastic bags produced by the bag-making machine through the fence hole, replacing the conveyor belt. This prevents subsequent plastic bags from falling onto the conveyor belt temporarily. Simultaneously, the rear baffle moves upward a certain distance (slightly higher than the height of the stacked plastic bags on the conveyor belt). Then, the conveyor belt moves backward, automatically feeding the stacked plastic bags outward. After completing these actions, the conveyor belt stops, the rear baffle moves downward back to its original position, and the receiving fork retracts back to its original position. At this point, the plastic bags previously caught by the receiving fork fall onto the conveyor belt. After a certain number are stacked, the above actions are repeated. This allows for the automatic stacking and feeding of individual plastic bags produced by the bag-making machine without stopping the machine. The structure is simple and the operation is reliable. Attached Figure Description

[0009] The present invention includes the following figures:

[0010] Figure 1 This is a schematic diagram of the structure of the present invention. Figure 1 ,

[0011] Figure 2 This is a schematic diagram of the structure of the present invention. Figure 2 .

[0012] In the diagram: 1. Conveyor belt; 2. Front baffle; 3. Left baffle; 4. Left straightening cylinder; 5. Right baffle; 6. Right straightening cylinder; 7. Rear baffle; 7. Vertical fence hole; 8. Fence cylinder; 9. Receiving fork; 10. Receiving fork motor; 11. Linear module; 12. Frame. Detailed Implementation

[0013] As shown in the figure, the non-stop automatic material receiving and collecting platform of this utility model includes a conveyor belt 1 that is intermittently driven by a main motor during operation. The conveyor belt 1 has a front baffle 2, a rear baffle 7, a left baffle 3, and a right baffle 5 at the receiving end. The front baffle 2 is fixedly mounted on the frame 12. The left baffle 3 is movably connected to a left-right adjusting cylinder 4. During operation, the left baffle 3 is pushed by the left adjusting cylinder 4 to perform a left-right slapping action. The right baffle 5 is movably connected to a right adjusting cylinder 6. During operation, the right baffle 5 is pushed by the right adjusting cylinder 6. 6. Push to perform left and right slapping action. The rear baffle 7 is set to move up and down and is connected to the fence cylinder 8. During operation, the rear baffle 7 is pushed up and down by the fence cylinder 8. The surface of the rear baffle 7 has multiple rows of horizontally arranged vertical fence holes 71. The rear side of the rear baffle 7 is provided with a receiving fork 9. The receiving fork 9 is set to move back and forth and is connected to the fourth driving component. The fourth driving component is a linear module 11. The linear module 11 is driven by the receiving fork motor 10. When the receiving fork 9 moves forward, its head can freely enter and exit the vertical fence holes 71.

[0014] The operation process of this utility model is as follows: After the plastic bags are produced by the bag making machine, they fall one by one onto the receiving end of the conveyor belt 1 in sequence. During the falling process, the front baffle 2 and the rear baffle 7 keep the front and back of the plastic bags neat. At the same time, when each plastic bag falls, under the combined action of the left straightening cylinder 4 and the right straightening cylinder 6, the left baffle 3 moves to the right to pat the left side of the plastic bag, while the right baffle 5 moves to the left to pat the right side of the plastic bag, so that the plastic bags falling onto the conveyor belt 1 are also neatly stacked on the conveyor belt 1. When a certain number of plastic bags are stacked, the receiving fork 9 extends forward. The fork head of the receiving fork 9 extends outward through the vertical grid hole 71 of the rear baffle 7, replacing the conveyor belt 1 to receive the bags produced by the bag making machine. Since the plastic bags are stacked on conveyor belt 1, they will not fall onto the conveyor belt 1 immediately. At the same time, the rear baffle 7 moves upward a certain distance (slightly higher than the height of the plastic bags stacked on conveyor belt 1). Then, conveyor belt 1 moves backward, automatically feeding the plastic bags stacked at the receiving end outward. After the above actions are completed, conveyor belt 1 stops conveying, the rear baffle 7 moves downward back to its original position, and the receiving fork 9 also retracts back to its original position. At this time, the plastic bags that were originally caught by the receiving fork 9 will fall onto conveyor belt 1, and subsequent plastic bags will also fall onto conveyor belt 1. After a certain number of plastic bags are stacked at the receiving end of conveyor belt 1, the above actions are repeated. This allows for the automatic stacking and feeding of individual plastic bags produced by the bag making machine without stopping the machine. The structure is simple and the operation is reliable.

Claims

1. An automatic material receiving and collecting platform that operates without stopping the machine, characterized in that: It includes a conveyor belt that is intermittently driven by a main motor during operation. The conveyor belt is equipped with a front baffle, a rear baffle, a left baffle, and a right baffle at the receiving end. The front baffle is fixedly installed. The left baffle is movable left and right and connected to the first driving component. The right baffle is movable left and right and connected to the second driving component. The rear baffle is movable up and down and connected to the third driving component. The surface of the rear baffle has vertical grid holes. The rear side of the rear baffle is equipped with a receiving fork. The receiving fork is movable forward and backward and connected to the fourth driving component. When the receiving fork moves forward, its head can freely enter and exit the vertical grid holes.

2. The automatic material receiving and collecting platform without stopping the machine as described in claim 1, characterized in that: The first driving component is the left balancing cylinder, the second driving component is the right balancing cylinder, and the third driving component is the fence cylinder.

3. The non-stop automatic material receiving and collecting platform as described in claim 1 or 2, characterized in that: The fourth driving component is a linear module, which is driven by a receiving fork motor.