Mining hole sealing material batching, packaging and stacking production system

By designing the production system for mining sealing materials, packaging and palletizing, automated production is realized, solving the problem of more manual participation in the existing technology and improving production efficiency.

CN223086316UActive Publication Date: 2025-07-11HEFEI KEZHENG AUTOMATION ENG
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Patent Information

Application Number
CN202421297097.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-06-07
Publication Date
2025-07-11
Estimated Expiration
2034-06-07

AI Technical Summary

Technical Problem

In the prior art, the production system of mining sealing materials has low degree of automation and more manual participation, resulting in low production efficiency.

Method used

A mining sealing material batching, packaging and palletizing production system is designed, including main material tanks, screw conveyors, hoists, mixers, packaging machines, palletizing robots and other equipment to realize the automation of automatic batching, mixing, packaging, sewing, shaping and palletizing processes, and reduce manual participation.

Benefits of technology

It improves the degree of automation of the production system, reduces the labor intensity of workers, and improves production efficiency.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model discloses a batching, packaging and stacking production system for mining hole sealing materials. The production system comprises a main material tank A, a main material tank B, a main material screw conveyor A, a main material screw conveyor B, a main material supply elevator A, a main material supply elevator B, a batching system, a manual feeding station A, a manual feeding station B, a batching gathering elevator, a distributor, a mixing machine A, a mixing machine B and a mixing gathering screw conveyor which are sequentially distributed according to the production steps of the mining hole sealing material, the system comprises a mixing and gathering elevator, a double-station semi-automatic packaging machine, a bag sewing machine, a bag reversing machine, a shaping machine, a temporary storage conveyor, a stacking waiting machine, a stacking robot, a tray supply machine, a stacking conveyor, a stack discharging conveyor, a dust remover and an electric control cabinet. According to the production system, the automation degree is high, automation is adopted through the procedures of automatic batching and metering, automatic stirring, packaging and bagging, automatic bag sewing, automatic bag pouring, automatic shaping, automatic stacking and the like, and manual participation is greatly reduced.
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Description

Technical Field

[0001] The utility model relates to the technical field of production equipment for mine sealing materials, in particular to a production system for batching, packaging, and palletizing mine sealing materials. Background Art

[0002] The new mine sealing material is a material with extremely high tensile strength and compressive strength, which can effectively prevent problems such as mine water inrush and collapse. This material is usually mixed from materials such as cement and fly ash, has good waterproof and anti-seepage properties, and has excellent self-leveling property and short curing time.

[0003] It is applicable to various types of mine engineering. For example, in tunnel engineering, the mine sealing material can be used to block cracks and holes in the tunnel, improving the safety and durability of the tunnel. In underground mines, the mine sealing material can be used to handle problems such as mine water inrush and collapse, maintaining the normal production of the mine. Content of the Utility Model

[0004] The purpose of the utility model is to propose a production system for batching, packaging, and palletizing mine sealing materials in order to solve the above problems.

[0005] In order to achieve the above purpose, the utility model adopts the following technical scheme: A production system for batching, packaging, and palletizing mine sealing materials, the production system includes the following distributed in sequence according to the production steps of mine sealing materials: main material tank A, main material tank B, main material screw conveyor A, main material screw conveyor B, main material feeding elevator A, main material feeding elevator B, batching system, manual feeding station A, manual feeding station B, auxiliary material feeding elevator A, auxiliary material feeding elevator B, batching summary elevator, distributor, mixer A, mixer B, mixing summary screw conveyor, screw conveyor, mixing summary elevator, double-station semi-automatic packaging machine, sewing machine, bag tipping machine, shaping machine, buffer conveyor, waiting-for-palletizing machine, palletizing robot, pallet supply machine, palletizing conveyor, out-pallet conveyor, dust collector, and electrical control cabinet;

[0006] The discharge port of the main material tank A is docked with the feed inlet of the main material screw conveyor A, the discharge port of the main material tank B is docked with the feed inlet of the main material screw conveyor B, the discharge port of the main material screw conveyor A is docked with the feed inlet of the main material feeding elevator A, the discharge port of the main material screw conveyor B is docked with the feed inlet of the main material feeding elevator B, the discharge port of the main material feeding elevator A is docked with the feed inlet of the batching system, and the discharge port of the main material feeding elevator B is docked with the feed inlet of the batching system;

[0007] The discharge port of the manual feeding station A is docked with the feeding port of the auxiliary material feeding elevator A, the discharge port of the manual feeding station B is docked with the feeding port of the auxiliary material feeding elevator B, the discharge port of the auxiliary material feeding elevator A is docked with the feeding port of the batching system, the discharge port of the auxiliary material feeding elevator B is docked with the feeding port of the batching system, the discharge port of the batching system is docked with the feeding port of the batching summary elevator, and the discharge port of the batching summary elevator is docked with the feeding port of the distributor;

[0008] The discharge port of the distributor is docked with the feeding ports of mixers A and B. The discharge ports of mixers A and B are docked with the feeding port of the mixing summary screw conveyor. The mixing summary screw conveyor is docked with the feeding port of the screw conveyor. The discharge port of the screw conveyor is docked with the feeding port of the mixing summary elevator. The discharge port of the mixing summary elevator is docked with the feeding port of the double-station semi-automatic packaging machine;

[0009] The double-station semi-automatic packaging machine is coordinated with the sleeving of the packaging bag. The position where the packaging bag is filled with materials is coordinated with the docking of the sewing machine. The rear end of the sewing machine is docked with the front end of the bag tipping machine. The rear end of the bag tipping machine is docked with the front end of the shaping machine. The rear end of the shaping machine is docked with the front end of the buffer conveyor. The rear end of the buffer conveyor is docked with the front end of the stacking machine. The palletizing robot grabs the materials on the stacking machine through the robotic arm. The rear end of the pallet supply machine is docked with the front end of the palletizing conveyor. The rear end of the palletizing conveyor is docked with the front end of the out-pallet conveyor.

[0010] Preferably, the batching system includes a frame connected to the ground, a batching main material buffer bin A, a batching main material A metering screw, a main material metering bin, a batching main material B metering screw, a batching main material buffer bin B, a batching auxiliary material screw conveyor, a batching auxiliary material buffer bin A, an auxiliary material A metering bin, a batching auxiliary material buffer bin B, an auxiliary material B metering bin, and a batching auxiliary material buffer bin B installed on the frame;

[0011] The inlet of the main ingredient buffer bin A for batching is docked with the outlet of the main ingredient feeding elevator A. The inlet of the main ingredient buffer bin B for batching is docked with the outlet of the main ingredient feeding elevator B. The inlet of the auxiliary ingredient buffer bin A for batching is docked with the outlet of the auxiliary ingredient feeding elevator A. The inlet of the auxiliary ingredient buffer bin B for batching is docked with the outlet of the auxiliary ingredient screw conveyor for batching. The inlet of the auxiliary ingredient screw conveyor for batching is docked with the outlet of the auxiliary ingredient feeding elevator B. The outlet of the main ingredient buffer bin A for batching is docked with the inlet of the main ingredient A metering screw. The outlet of the main ingredient buffer bin B for batching is docked with the inlet of the main ingredient B metering screw. The outlet of the auxiliary ingredient buffer bin A for batching is docked with the inlet of the auxiliary ingredient A metering screw. The outlet of the auxiliary ingredient buffer bin B for batching is docked with the inlet of the auxiliary ingredient B metering screw. The inlet of the main ingredient metering bin is docked with the outlets of the main ingredient A screw metering screw and the main ingredient B screw metering screw. The inlet of the main ingredient metering bin is docked with the outlets of the main ingredient A metering screw and the main ingredient B metering screw. The inlet of the batching metering bin is docked with the outlets of the auxiliary ingredient A metering screw and the main ingredient B metering screw. The outlets of the main ingredient metering bin and the auxiliary ingredient metering bin are docked with the inlet of the batching summary screw.

[0012] Preferably, the electrical components and motors involved in the production system adopt dust explosion protection.

[0013] Preferably, a dust removal system is also provided in the production system for use with the double-station semi-automatic packaging machine.

[0014] Preferably, an exhaust duct for sucking away the dust during the packaging material process is provided above the double-station semi-automatic packaging machine, and the exhaust duct is connected to the dust removal system.

[0015] Preferably, an air source system connected to the packaging machine is also provided in the production system.

[0016] In summary, due to the adoption of the above technical solutions, the beneficial effects of the present utility model are as follows:

[0017] 1. In this application, the production system of the present utility model has a high degree of automation. Through automation of processes such as automatic batching and metering, automatic mixing, packaging and bagging, automatic sewing, automatic bag tipping, automatic shaping, and automatic palletizing, the manual participation is greatly reduced.

[0018] 2. In this application, the above actions do not require manual participation, greatly reducing the labor intensity of workers. Thus, the production efficiency is improved. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] Figure 1 Shows a distribution schematic diagram of the production system provided according to an embodiment of the present utility model;

[0020] Figure 2Shows a distribution schematic diagram of a batching system provided according to an embodiment of the present utility model;

[0021] Figure 3 Shows a structural schematic diagram of a mixer provided according to an embodiment of the present utility model;

[0022] Figure 4 Shows a structural schematic diagram of an elevator provided according to an embodiment of the present utility model;

[0023] Figure 5 Shows a structural schematic diagram of a double-station semi-automatic packaging machine provided according to an embodiment of the present utility model;

[0024] Figure 6 Shows a structural schematic diagram of a bag sealer provided according to an embodiment of the present utility model;

[0025] Figure 7 Shows a structural schematic diagram of a shaping machine provided according to an embodiment of the present utility model;

[0026] Figure 8 Shows a structural schematic diagram of a waiting-for-coding machine provided according to an embodiment of the present utility model;

[0027] Figure 9 Shows a structural schematic of a robot provided according to an embodiment of the present utility model.

[0028] Legend Explanation:

[0029] 1. Main material tank B; 2. Main material tank A; 3. Main material screw conveyor B; 4. Main material feeding elevator B; 5. Main material screw conveyor A; 6. Main material feeding elevator A; 7. Batching system; 8. Manual feeding station A; 9. Auxiliary material feeding elevator A; 10. Manual feeding station B; 11. Auxiliary material feeding elevator B; 12. Batching summary elevator; 13. Distributor; 14. Mixer A; 15. Mixer B; 16. Mixing summary screw conveyor; 17. Screw conveyor; 18. Mixing summary elevator; 19. Double-station semi-automatic packaging machine; 20. Sewing machine; 21. Inverting machine; 22. Shaping machine; 23. Buffer conveyor; 24. Waiting-for-coding machine; 25. Palletizing robot; 26. Pallet feeder; 27. Palletizing conveyor; 28. Out-pallet conveyor; 29. Frame; 30. Batching main material buffer bin A; 31. Batching main material A metering screw; 32. Main material metering bin; 33. Batching main material B metering screw; 34. Batching main material buffer bin B; 35. Batching auxiliary material screw conveyor; 36. Batching auxiliary material buffer bin A; 37. Auxiliary material A metering bin; 38. Batching auxiliary material buffer bin B; 39. Auxiliary material B metering bin. Detailed Implementation Manner

[0030] Next, in combination with the accompanying drawings in the embodiments of the present invention, the technical solutions in the embodiments of the present invention will be clearly and completely described. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts belong to the scope of protection of the present invention.

[0031] Please refer to Figures 1-9 , the present invention provides a technical solution: a production system for batching, packaging, and palletizing of mine sealing materials. The production system includes the following components distributed in sequence according to the production steps of mine sealing materials: main material tank A2, main material tank B1, main material screw conveyor A5, main material screw conveyor B3, main material feeding elevator A6, main material feeding elevator B4, batching system 7, manual feeding station A8, manual feeding station B10, auxiliary material feeding elevator A9, auxiliary material feeding elevator B11, batching summary elevator 12, distributor 13, mixer A14, mixer B15, mixing summary screw conveyor 16, screw conveyor 17, mixing summary elevator 18, double-station semi-automatic packaging machine 19, sewing machine 20, bag tipping machine 21, shaping machine 22, buffer conveyor 23, machine to be palletized 24, palletizing robot 25, pallet supply machine 26, palletizing conveyor 27, and out-pallet conveyor 28;

[0032] The discharge port of the main material tank A2 is docked with the feed port of the main material screw conveyor A5, and the discharge port of the main material tank B1 is docked with the feed port of the main material screw conveyor B3 for the conveying operation of the main material B.

[0033] The discharge port of the main material screw conveyor A5 is docked with the feed port of the main material feeding elevator A6 for the conveying operation of the main material A.

[0034] The discharge port of the main material screw conveyor B3 is docked with the feed port of the main material feeding elevator B4, the discharge port of the main material feeding elevator A6 is docked with the feed port of the batching system 7, and the discharge port of the main material feeding elevator B4 is docked with the feed port of the batching system 7 to complete the weighing operation of the material ratio.

[0035] The discharge port of the manual feeding station A8 is docked with the feed port of the auxiliary material feeding elevator A9, the discharge port of the manual feeding station B10 is docked with the feed port of the auxiliary material feeding elevator B11, the discharge port of the auxiliary material feeding elevator A9 is docked with the feed port of the batching system 7, the discharge port of the auxiliary material feeding elevator B11 is docked with the feed port of the batching system 7, the discharge port of the batching system 7 is docked with the feed port of the batching summary elevator 12, and the discharge port of the batching summary elevator 12 is docked with the feed port of the distributor 13; used for mixing the proportioned materials.

[0036] The discharge port of the material distributor 13 is docked with the feed inlets of mixer A 14 and mixer B 15. The discharge ports of mixer A 14 and mixer B 15 are docked with the feed inlet of the mixing and aggregating screw conveyor 16. The mixing and aggregating screw conveyor 16 is docked with the feed inlet of the screw conveyor 17. The discharge port of the screw conveyor 17 is docked with the feed inlet of the mixing and aggregating elevator 18. The discharge port of the mixing and aggregating elevator 18 is docked with the feed inlet of the double-station semi-automatic packaging machine 19, and the materials are transported to the packaging machine for packaging.

[0037] The double-station semi-automatic packaging machine 19 is coordinated with the sleeving of the packaging bags. The position where the packaging bags wrap the materials is coordinated with the docking of the sewing machine 20. The rear end of the sewing machine 20 is docked with the front end of the bag tipping machine 21, and the materials sewn at the rear end of the sewing machine 20 are docked with the front end of the bag tipping machine 21.

[0038] The rear end of the bag tipping machine 21 is docked with the front end of the shaping machine 22 for completing the shaping work of the packaging bags.

[0039] The rear end of the shaping machine 22 is docked with the front end of the buffer conveyor 23 for conveying operations.

[0040] The rear end of the buffer conveyor 23 is docked with the front end of the waiting-for-palletizing machine 24 for conveying operations.

[0041] The palletizing robot 25 grabs the materials on the waiting-for-palletizing machine 24 through a robotic arm. The rear end of the pallet supply machine 26 is docked with the front end of the palletizing conveyor 27. The palletizing robot 25 is used for palletizing goods on the palletizing conveyor 27, and the pallet supply machine 26 is used for conveying and supplying pallets.

[0042] The rear end of the palletizing conveyor 27 is docked with the front end of the out-pallet conveyor 28 for the forklift to pick up.

[0043] The pump truck fills the main material tanks B1 and A2 with raw materials. For the B material, the main material screw conveyor B3 conveys the B material to the main material feeding elevator B4. The main material feeding elevator B4 conveys the material to the batching system 7. For the A material, the main material screw conveyor A5 conveys the A material to the main material feeding elevator A6. The main material feeding elevator A6 conveys the material to the batching system 7. The auxiliary material A is put into the batching system 7 through the manual feeding station A8, and then the auxiliary material feeding elevator A9 conveys the material to the batching system 7. The auxiliary material B is put into the material through the manual feeding station B10, and then the auxiliary material feeding elevator B11 conveys the material to the batching system 7. The batching main material buffer bins A30, batching main material buffer bin B34, batching auxiliary material buffer bin A36, and batching auxiliary material buffer bin A36 receive the four kinds of materials respectively. Among them, the batching auxiliary material screw conveyor 35 is for conveying the B auxiliary material. Four buffer bins are equipped with batching main A metering screws, batching main B metering screws, auxiliary material A metering screws, and auxiliary material B metering screws to meter and supply the materials. The main material metering screws A and B are conveyed to the main material metering bin 32, and the auxiliary material metering screws A and B are conveyed to the auxiliary material metering bin. The proportioned materials are output through the summary screw. The whole process is the batching system 7. The materials prepared by the batching system 7 are conveyed to the mixer A14 and mixer B15 through the batching summary elevator 12 and the diverter 13. The mixed materials are sent into the screw conveyor 17 through the mixed summary screw conveyor 16. The materials conveyed by the screw conveyor 17 are then conveyed to the double-station semi-automatic packaging machine 19 through the mixed summary elevator 18. After manual bagging, the double-station semi-automatic packaging machine 19 starts packaging. The packaged materials are sewn at the bag mouth by the sewing machine 20. The sewn materials are conveyed to the shaping machine 22 through the bag turning machine 21. After shaping, the bags are flattened. They are conveyed to the buffer conveyor 23. Then it is prepared for palletizing through the palletizing machine 24. The palletizing robot 25 grabs the materials with the gripper and places them on the pallet, and works repeatedly until the stack is formed.

[0044] Manually use a forklift to place a stack of empty pallets on the pallet feeder 26. At the beginning, the pallet feeder 26 distributes the empty pallets to the palletizing conveyor 27. After the empty pallets reach the designated position, the palletizing robot 25 is equipped with a manipulator. Under the action of the manipulator, the bagged materials are transferred from the palletizing machine 24 to the empty pallets for stacking. Under the action of the control program, the bagged materials are stacked neatly; on the neatly stacked pallets, they are conveyed to the out-stack conveyor 28, and the entire pallet is transported to the warehouse for storage by a forklift.

[0045] Specifically, such as Figure 1 and Figure 2As shown, the batching system 7 includes a frame 29 connected to the ground, a main batching buffer bin A 30 mounted on the frame 29, a main batching A metering screw 31, a main material metering bin 32, a main batching B metering screw 33, a main batching buffer bin B 34, an auxiliary batching screw conveyor 35, an auxiliary batching buffer bin A 36, an auxiliary A metering bin 37, an auxiliary batching buffer bin A 36, an auxiliary B metering bin 39, an auxiliary batching buffer bin B 38, an auxiliary A metering screw, an auxiliary B metering screw, an auxiliary material metering bin, a batching summary screw, and a batching metering bin;

[0046] The feed inlet of the main batching buffer bin A 30 is docked with the discharge outlet of the main material feeding elevator A 6, the feed inlet of the main batching buffer bin B 34 is docked with the discharge outlet of the main material feeding elevator B 4, the feed inlet of the auxiliary batching buffer bin A 36 is docked with the discharge outlet of the auxiliary material feeding elevator A 9, the feed inlet of the auxiliary batching buffer bin B 38 is docked with the discharge outlet of the auxiliary batching screw conveyor 35, the feed inlet of the auxiliary batching screw conveyor 35 is docked with the discharge outlet of the auxiliary material feeding elevator B 11, the discharge outlet of the main batching buffer bin A 30 is docked with the feed inlet of the main batching A metering screw 31, the discharge outlet of the main batching buffer bin B 34 is docked with the feed inlet of the main batching B metering screw 33, the discharge outlet of the auxiliary batching buffer bin A 36 is docked with the feed inlet of the auxiliary A metering screw, the discharge outlet of the auxiliary batching buffer bin B 38 is docked with the feed inlet of the auxiliary B metering screw, the feed inlet of the main material metering bin 32 is docked with the discharge outlets of the main batching A metering screw 31 and the main batching B metering screw 33, the feed inlet of the main material metering bin 32 is docked with the discharge outlets of the main batching A metering screw 31 and the main batching B metering screw 33, the feed inlet of the batching metering bin is docked with the discharge outlets of the auxiliary A metering screw and the main batching B metering screw 33, and the discharge outlets of the main material metering bin 32 and the auxiliary material metering bin are docked with the feed inlet of the batching summary screw.

[0047] Specifically, as Figure 1 and Figure 2 shown, the electrical components and motors involved in the production system adopt dust explosion-proof;

[0048] A dust removal system is also provided in the production system for use with the double-station semi-automatic packaging machine 19; An exhaust duct for sucking away the dust during the packaging material process is provided above the double-station semi-automatic packaging machine 19, and the exhaust duct is connected to the dust removal system. A gas source system connected to the double-station semi-automatic packaging machine 19 is also provided in the production system.

[0049] The above description of the embodiments enables those skilled in the art to implement or use the present utility model. Various modifications to these embodiments will be apparent to those skilled in the art, and the general principles defined herein can be implemented in other embodiments without departing from the spirit or scope of the present utility model. Therefore, the present utility model will not be limited to the embodiments shown herein, but rather to the broadest scope consistent with the principles and novel features disclosed herein.

Claims

1. A production system for batching, packaging, and palletizing a mine sealing material, characterized in that, The production system includes the following components distributed in sequence according to the production steps of mine sealing materials: main material tank A, main material tank B, main material screw conveyor A, main material screw conveyor B, main material feeding elevator A, main material feeding elevator B, batching system, manual feeding station A, manual feeding station B, auxiliary material feeding elevator A, auxiliary material feeding elevator B, batching summary elevator, distributor, mixer A, mixer B, mixing summary screw conveyor, screw conveyor, mixing summary elevator, double-station semi-automatic packaging machine, sewing machine, bag tipping machine, shaping machine, buffer conveyor, palletizing machine, palletizing robot, pallet feeder, palletizing conveyor, out-pallet conveyor, dust collector, and electrical control cabinet; The discharge port of the main material tank A is connected to the feed inlet of the main material screw conveyor A, the discharge port of the main material tank B is connected to the feed inlet of the main material screw conveyor B, the discharge port of the main material screw conveyor A is connected to the feed inlet of the main material feeding elevator A, the discharge port of the main material screw conveyor B is connected to the feed inlet of the main material feeding elevator B, the discharge port of the main material feeding elevator A is connected to the feed inlet of the batching system, and the discharge port of the main material feeding elevator B is connected to the feed inlet of the batching system; The discharge port of the manual feeding station A is connected to the feed inlet of the auxiliary material feeding elevator A, the discharge port of the manual feeding station B is connected to the feed inlet of the auxiliary material feeding elevator B, the discharge port of the auxiliary material feeding elevator A is connected to the feed inlet of the batching system, the discharge port of the auxiliary material feeding elevator B is connected to the feed inlet of the batching system, the discharge port of the batching system is connected to the feed inlet of the batching summary elevator, and the discharge port of the batching summary elevator is connected to the feed inlet of the distributor; The discharge port of the distributor is connected to the feed inlets of the mixers A and B, the discharge ports of the mixers A and B are connected to the feed inlet of the mixing summary screw conveyor, the mixing summary screw conveyor is connected to the feed inlet of the screw conveyor, the discharge port of the screw conveyor is connected to the feed inlet of the mixing summary elevator, and the discharge port of the mixing summary elevator is connected to the feed inlet of the double-station semi-automatic packaging machine; The double-station semi-automatic packaging machine is coordinated with the sleeving of the packaging bag, the position where the packaging bag is filled with materials is coordinated with the docking of the sewing machine, the rear end of the sewing machine is docked with the front end of the bag tipping machine, the rear end of the bag tipping machine is docked with the front end of the shaping machine, the rear end of the shaping machine is docked with the front end of the buffer conveyor, the rear end of the buffer conveyor is docked with the front end of the palletizing machine, the palletizing robot grabs the materials on the palletizing machine through a robotic arm, the rear end of the pallet feeder is docked with the front end of the palletizing conveyor, and the rear end of the palletizing conveyor is docked with the front end of the out-pallet conveyor.

2. The batching, packaging, and palletizing production system for mine sealing materials according to claim 1, characterized in that, The batching system includes a frame connected to the ground, a batching main material buffer bin A, a batching main material A metering screw, a main material metering bin, a batching main material B metering screw, a batching main material buffer bin B, a batching auxiliary material screw conveyor, a batching auxiliary material buffer bin A, an auxiliary material A metering bin, a batching auxiliary material buffer bin B, an auxiliary material B metering bin, and a batching auxiliary material buffer bin B installed on the frame; The inlet of the main ingredient buffer bin A for batching is docked with the outlet of the main ingredient feeding and lifting A, the inlet of the main ingredient buffer bin B for batching is docked with the outlet of the main ingredient feeding and lifting B, the inlet of the auxiliary ingredient buffer bin A for batching is docked with the outlet of the auxiliary ingredient feeding hoist A, the inlet of the auxiliary ingredient buffer bin B for batching is docked with the outlet of the auxiliary ingredient screw conveyor for batching, the inlet of the auxiliary ingredient screw conveyor for batching is docked with the outlet of the auxiliary ingredient feeding hoist B, the outlet of the main ingredient buffer bin A for batching is docked with the inlet of the main ingredient A metering screw, the outlet of the main ingredient buffer bin B for batching is docked with the inlet of the main ingredient B metering screw, the outlet of the auxiliary ingredient buffer bin A for batching is docked with the inlet of the auxiliary ingredient A metering screw, the outlet of the auxiliary ingredient buffer bin B for batching is docked with the inlet of the auxiliary ingredient B metering screw, the inlet of the main ingredient metering bin is docked with the outlets of the main ingredient A screw metering screw and the main ingredient B screw metering screw, the inlet of the main ingredient metering bin is docked with the outlets of the main ingredient A metering screw and the main ingredient B metering screw, the inlet of the batching metering bin is docked with the outlets of the auxiliary ingredient A metering screw and the main ingredient B metering screw, and the outlets of the main ingredient metering bin and the auxiliary ingredient metering bin are docked with the inlet of the batching summary screw.

3. A batching, packaging and palletizing production system for a mine sealing material, characterized in that, The electrical components and motors involved in the production system are dust explosion-proof.

4. A batching, packaging, and palletizing production system for mine sealing materials according to claim 1, characterized in that, A dust removal system for use in conjunction with the double-station semi-automatic packaging machine is also provided in the production system.

5. The batching, packaging and palletizing production system for mine sealing materials according to claim 4, characterized in that, Above the double-station semi-automatic packaging machine, there is an exhaust duct for sucking away the dust during the packaging material process, and the exhaust duct is connected to the dust removal system.

6. The batching, packaging and palletizing production system for mine sealing materials according to claim 1, wherein A gas source system connected to the packaging machine is also provided in the production system.