Quantitative material conveying device
By setting up a stacking counting component and a pushing component, combined with multiple conveyor belts and silo groups, quantitative stacking and multi-row synchronous pushing of materials are achieved, solving the problem of unstable material transportation in existing devices and improving packaging efficiency and stability.
Patent Information
- Application Number
- CN202521779070.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-21
- Publication Date
- 2025-10-17
- Estimated Expiration
- 2035-08-21
AI Technical Summary
Existing material conveying devices have difficulty in achieving material stacking and multi-group synchronous pushing, resulting in insufficient efficiency and stability during the packaging process.
The structure includes a first conveyor belt, a stacking counting component, a second and a third conveyor belt, a silo group, a guide seat, a pushing component, etc., which realizes the counting and stacking of materials, multi-row synchronous conveying and automatic pushing.
It realizes quantitative stacking of materials and multi-row synchronous pushing, improving the efficiency and stability of the packaging process.
Smart Images

Figure CN223443907U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to packing equipment, concretely relates to a material ration conveying device. BACKGROUND
[0002] The packing machine is a kind of special equipment for packing processing to material. The material conveying device is the important part of packing machine, and it is mainly used for conveying the material to be packed. At present, the material conveying device on the market generally adopts single conveying belt structure, and the conveying device with the structure can only realize the transfer of single material, but in actual packaging process, it may be needed to stack and synchronously push multiple groups of materials, and the above structure is difficult to realize the function. SUMMARY
[0003] In view of the deficiencies of the background art, the technical problem to be solved by the utility model is to provide a material ration conveying device for solving the above problems.
[0004] Therefore, the utility model is realized by adopting the following scheme:
[0005] A material ration conveying device, characterized by comprising a first conveying belt, a material stacking counting assembly is arranged at the material outlet end of the first conveying belt, a second conveying belt is arranged below the material stacking counting assembly, a third conveying belt is connected at the material outlet end of the second conveying belt, a plurality of material bin groups are arranged on the third conveying belt, the material bin group is composed of a plurality of arranged material bins, a guide seat is arranged on one side of the third conveying belt, a guide groove corresponding to the material bin group is arranged on the guide seat, and a material pushing assembly is further included, the material pushing assembly can push the material in the material bin group through the guide groove and send it out.
[0006] The second conveying belt is arranged with a partition plate at intervals, and two adjacent partition plates enclose a material placing space.
[0007] The material stacking counting assembly comprises a counting inductor, a first rotating shaft and a second rotating shaft, the first rotating shaft and the second rotating shaft are drivingly connected with a driving motor, a first material supporting plate is arranged on the first rotating shaft, a second material supporting plate is arranged on the second rotating shaft, and the first material supporting plate and the second material supporting plate can cooperate to realize the stacking of the material sent out from the first conveying belt.
[0008] Each guide groove is arranged in a trumpet-shaped necking manner from the material inlet end to the material outlet end.
[0009] The material pushing assembly comprises a material pushing plate, the material pushing plate is connected with a movable driving assembly, and drives the material pushing plate to ascend and descend and horizontally move.
[0010] Two sides corresponding to the third conveying belt conveying path are provided with material aligning push rods, the material aligning push rods are arranged higher than the stock bin, the length of the material aligning push rods corresponds to the length of the stock bin group, and the material aligning push rods are connected with the moving driving assembly.
[0011] The material quantitative conveying device has the advantages that the material quantitative conveying device can count and stack the fed material through the arrangement of the material stacking counting assembly, the material is transferred through the second and third conveying belts, the stock bin group is arranged on the third conveying belt, the multi-row synchronous conveying of the material is realized, the material is pushed out through the pushing assembly, the multi-row synchronous pushing of the stacked material is realized, and the process is fully automated, so that the efficiency and stability of the material conveying are effectively realized. BRIEF DESCRIPTION OF DRAWINGS
[0012] The utility model discloses the following drawings:
[0013] Figure 1 It is the structure schematic drawing of the utility model;
[0014] Figure 2 It is Figure 1 It is the local enlarged view of A direction in the middle;
[0015] Figure 3 It is Figure 1 It is the local enlarged view of B direction in the middle;
[0016] Figure 4 It is the structure drawing of the utility model's guide seat and pushing assembly. DETAILED DESCRIPTION
[0017] As shown in the drawing, the utility model discloses a kind of material quantitative conveying device, including first conveying belt 1, material stacking counting assembly is arranged in the discharge end of first conveying belt 1, second conveying belt 2 is arranged below material stacking counting assembly, third conveying belt 5 is connected in the discharge end of second conveying belt 2, and third conveying belt 5 is provided with multiple stock bin groups, and the stock bin group is composed of multiple arranged stock bins 6, guide seat 16 is provided in the side corresponding to third conveying belt 5, guide groove 8 corresponding to stock bin group is arranged on guide seat 16, and further including pushing assembly, and pushing assembly can push the material in stock bin group through guide groove 8 and send out.
[0018] Further, second conveying belt 2 is arranged with baffle 3 at intervals, and the adjacent two baffle 3 enclose discharge space. And support platform 4 is provided corresponding to second conveying belt 2, and baffle 3 is upwards and out of support platform 4. Using the above structure, it can be ensured that the position of stacked material does not deviate when conveying on second conveying belt 2, and the stability of material conveying is improved.
[0019] Further, the material stacking counting assembly comprises a counting sensor, a first rotating shaft 11 and a second rotating shaft 13, the first and second rotating shafts are in transmission connection with the driving motor, the first rotating shaft 11 is provided with a first material supporting plate 10, the second rotating shaft 13 is provided with a second material supporting plate 12, and the first and second material supporting plates can cooperate to support and stack the material sent out from the first conveying belt 1.
[0020] Further, each guide groove 8 is provided in a trumpet-shaped manner from the feeding end to the discharging end. The concentrated and merged material can be sent out, which is convenient for subsequent packaging operation.
[0021] Further, the material pushing assembly comprises a pushing plate 9, the pushing plate 9 is connected with a movable driving assembly, the pushing plate 9 is driven to ascend and move horizontally, specifically, the movable driving assembly comprises a first cylinder 17, the piston rod of the first cylinder 17 is connected with the pushing plate 9, the cylinder body of the first cylinder 17 is arranged on the sliding block 18 of the linear motor 19, the pushing plate 9 can be driven to ascend by controlling the first cylinder 17, and the pushing plate 9 can be driven to move horizontally by controlling the linear motor 19. It should be noted that the material in the material bin 6 is higher than the material bin 6, therefore, the flat pushing plate 9 is in contact with the position of the material higher than the material bin 6 to push, so that the material can be pushed out from the material bin 6.
[0022] Further, the material aligning push rod 14 is arranged on the two sides of the conveying path of the third conveying belt 5, the material aligning push rod 14 is higher than the material bin 6, the length of the material aligning push rod 14 corresponds to the length of the material bin group, the material aligning push rod 14 is connected with a moving driving assembly, specifically, the moving driving assembly comprises a second cylinder 15, the piston rod of the second cylinder 15 is connected with the material aligning push rod 14, by controlling the second cylinder 15 to drive the material aligning push rod 14 to move, the material in the material bin group can be aligned front and back, so that the stability and precision of subsequent material pushing operation can be ensured.
[0023] The working principle of the utility model is as follows: the material is first placed on the first conveyor belt 1 for conveying. After the material is sent out from the first conveyor belt 1, it will fall on the first and second supporting plates. At the same time, the sensor will count the stacked materials on the first and second supporting plates. When the stacking number fed back to the control by the sensor reaches the set value, the controller will control the first and second rotating shafts to rotate, so that the first and second supporting plates are separated from the material, so that the stacked material falls onto the supporting platform 4. Then the second conveyor belt 2 drives the partition 3 to move, pushing the stacked material towards The third conveyor belt 5 is used for transportation. At this time, the empty silo 6 above the third conveyor belt 5 is aligned with the material pushed by the partition 3, so that the partition 3 can push the stacked material into the silo 6. Then the third conveyor belt moves the distance of one silo, so that the next empty silo 6 moves and aligns with the material pushed by the partition 3, until a group of silo groups are all filled with stacked materials. Then the third conveyor belt 5 drives a group of silo groups to move to the guide seat 16, and the push plate 9 moves to push the material in the silo into the guide groove 8 on the guide seat 16 and pushes it outward.
[0024] The structure of the present invention can count and quantitatively stack the materials fed in by setting a stacking counting component, and then set the second and third conveyor belts to transfer the materials, and set a silo group on the third conveyor belt to realize multi-row synchronous transportation of materials, and then push the materials out through the pushing component, realizing multi-row synchronous pushing of stacked materials, and the above process is fully automated, effectively realizing the efficiency and stability of material transportation.
Claims
1. A material quantitative conveying device, characterized in that: The invention comprises a first conveyor belt (1), a stacking counting assembly is provided at the discharge end of the first conveyor belt (1), a second conveyor belt (2) is provided below the stacking counting assembly, a third conveyor belt (5) is connected to the discharge end of the second conveyor belt (2), a plurality of silo groups are provided on the third conveyor belt (5), the silo groups are composed of a plurality of arranged silos (6), a guide seat (16) is provided on one side corresponding to the third conveyor belt (5), a guide groove (8) corresponding to the silo (6) group is provided on the guide seat (16), each guide groove (8) is configured to be trumpet-shaped and narrowed from its feed end to the discharge end, and a pushing assembly is further provided, the pushing assembly can push the material in the silo group through the guide groove (8) and deliver it out.
2. A material quantitative conveying device according to claim 1, characterized in that: Partitions (3) are arranged at intervals on the second conveyor belt (2), and two adjacent partitions (3) enclose a material discharge space.
3. A material quantitative conveying device according to claim 1, characterized in that: The stacking counting assembly comprises a counting sensor, a first rotating shaft (11) and a second rotating shaft (13); the first and second rotating shafts are connected to a driving motor in a transmission manner; a first supporting plate (10) is provided on the first rotating shaft (11); a second supporting plate (12) is provided on the second rotating shaft (13); the first and second supporting plates can cooperate to support and stack materials sent out from the first conveyor belt (1).
4. A material quantitative conveying device according to claim 1, characterized in that: The pushing assembly comprises a pushing plate (9), and the pushing plate (9) is connected to a movable driving assembly to drive the pushing plate (9) to move up and down and horizontally.
5. The material quantitative conveying device according to claim 1, characterized in that: A material-leveling push rod (14) is provided on both sides of the conveying path corresponding to the third conveyor belt (5), the material-leveling push rod (14) is provided higher than the silo (6), the length of the material-leveling push rod (14) corresponds to the length of the silo group, and the material-leveling push rod (14) is connected to the mobile drive assembly.