Stack bag feeding workstation for ammonium perchlorate processing and production

By designing the pulley and slider in the feeding mechanism, the connecting shell is moved up and down by using motor drive, the problem of uneven material falls in ammonium perchlorate production is solved, and the uniform material placement is achieved.

CN120039491BActive Publication Date: 2025-08-19DALIAN GAOJIA CHEM
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Patent Information

Application Number
CN202510525977.3
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-04-25
Publication Date
2025-08-19
Estimated Expiration
2045-04-25

AI Technical Summary

Technical Problem

During the production process of ammonium perchlorate, the opening at the bottom of the material bag is smaller than the inner diameter of the feeding tank, resulting in uneven material falling into it and easily piled up, resulting in uneven material feeding.

Method used

The feeding mechanism including a fixed box, a connecting shell and a hook is adopted. Through the cooperation of the wire rope and pulley, the motor drives the meshing of the slider and the gear, so that the connecting shell moves up and down, and the material in the material bag falls evenly into the feeding tank under the action of centrifugal force.

Benefits of technology

The uniform fall of materials in the material bag is achieved, local accumulation is avoided, and the uniformity and efficiency of feeding are improved.

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Abstract

The present invention belongs to the technical field of stack bag feeding, and relates to a stack bag feeding workstation for ammonium perchlorate processing and production. The present invention includes a feeding tank, a feeding mechanism is arranged above the feeding tank, and the feeding mechanism includes a fixed box, a connecting shell and a hook; the fixed box is movably arranged above the feeding tank, a winding wheel is rotatably mounted on the fixed box, and a third motor for driving the winding wheel to rotate is installed on the fixed box; the connecting shell is arranged below the fixed box, a pulley is rotatably arranged inside the connecting shell, a steel wire rope is wound around the winding wheel, and one end of the steel wire rope is fixedly connected to the fixed box after passing around the pulley. The third slider drives the steel wire ropes on both sides of the pulley to move through the second fixed column, thereby gradually moving the connecting shell upward and rotating the connecting shell, and the material in the material bag is thrown out, which is conducive to making the material in the material bag fall evenly into the feeding tank and avoiding the accumulation of material in a part of the feeding tank.
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Description

Technical Field

[0001] The invention belongs to the technical field of stack bag feeding, and relates to a stack bag feeding workstation for ammonium perchlorate processing and production. Background Art

[0002] Ammonium perchlorate is an inorganic compound that appears as a deliquescent white crystalline powder. It is a strong oxidizing agent and can explode when mixed with reducing agents, organic matter, flammable materials such as sulfur, phosphorus, or metal powders. It is commonly used in the manufacture of explosives and fireworks, and as an analytical reagent.

[0003] During the ammonium perchlorate production process, when bagged materials are added, the material bags are usually transported to the top of the feeding tank. Through the opening at the bottom of the material bag, the material falls into the feeding tank under the action of gravity. Since the material falls vertically and the opening at the bottom of the material bag is generally smaller than the inner diameter of the feeding tank, the material cannot fall evenly into the feeding tank. The material tends to accumulate in one place, resulting in uneven feeding.

[0004] In order to solve the above problems, the present invention proposes a bag feeding workstation for processing and producing ammonium perchlorate. Summary of the Invention

[0005] In order to solve the problems existing in the background technology, the present invention proposes a stack bag feeding workstation for the processing and production of ammonium perchlorate.

[0006] In order to achieve the above-mentioned purpose, the technical solution adopted by the present invention is as follows: a stack bag feeding workstation for ammonium perchlorate processing and production includes a feeding tank, a feeding mechanism is provided above the feeding tank, and the feeding mechanism includes a fixed box, a connecting shell and a hook; the fixed box is movably arranged above the feeding tank, and a second driving assembly for driving the fixed box to move is provided above the feeding tank; a winding wheel is rotatably installed on the fixed box, and a third motor for driving the winding wheel to rotate is installed on the fixed box; the connecting shell is arranged below the fixed box, a pulley is rotatably provided in the connecting shell, a steel wire rope is wound around the winding wheel, and one end of the steel wire rope is fixedly connected to the fixed box after passing around the pulley; the hook is installed at the lower end of the connecting shell; the fixed box is provided with a first driving assembly for moving the steel wire ropes on both sides of the pulley; under the action of the first driving assembly, the moving direction of the steel wire rope is parallel to the axial direction of the winding wheel, and the moving directions of the steel wire ropes on both sides of the pulley are opposite, so that the pulley moves up and down and rotates.

[0007] Furthermore, the first driving component includes a third slider and a second fixed column; two first sliding grooves are symmetrically opened at the bottom of the fixed box, and a third slider is provided in each of the first sliding grooves for limited sliding, and the moving direction of the third slider is parallel to the axial direction of the winding wheel; the moving directions of the two third sliders are opposite; each of the third sliders is provided with a second fixed column that cooperates with the wire rope; when the third slider moves, the second fixed column pushes the wire rope on the corresponding side to move.

[0008] Furthermore, a second sliding groove is provided on the third slider, a second slider is slidably provided in the second sliding groove, one end of the second fixed column slides into the second sliding groove and is fixedly connected to the second slider, and a spring is fixedly connected between the side of the second slider away from the second fixed column and the end wall of the second sliding groove; under the action of the spring, the second fixed column extends to the outside of the third slider; a trigger member is provided on the fixed box to move the second fixed column toward the third slider.

[0009] Furthermore, the trigger member includes an inclined plate, which is fixed to the inner wall of the fixed box, the second slider is fixedly connected to the first fixing post, the third slider is provided with a through hole connected to the second slide groove, the first fixing post extends through the through hole to the outside of the third slider, and the first fixing post cooperates with the inclined plate; as the third slider moves, when the first fixing post contacts the inclined plate, under the action of the inclined plate, the first fixing post drives the second fixing post to move into the third slider, thereby causing the wire rope to disengage from the second fixing post.

[0010] Furthermore, each of the third sliders is fixedly connected to a rack, a gear is rotatably mounted on the fixed box, two racks are arranged on both sides of the gear and are engaged with the gear; a second motor is mounted on the fixed box to drive the gear to rotate.

[0011] Furthermore, the second driving assembly includes a first electric slide rail and a slide rod, the feeding tank is arranged on a workbench, a fixed frame is installed on the workbench, the first electric slide rail is installed on the fixed frame, the slide rod is slidably arranged on the fixed frame, the slide rod is drive-connected to the first electric slide rail, a second electric slide rail is arranged on the slide rod, the fixed box is connected to the slide on the second electric slide rail, and the second electric slide rail is arranged perpendicular to the first electric slide rail.

[0012] Furthermore, a bag-stacking platform for stacking material bags is provided on one side of the feeding tank.

[0013] Furthermore, one side of the upper end of the feeding tank is connected to a collecting seat, and a cutting wheel is provided on the collecting seat.

[0014] Furthermore, a first fixing seat is fixedly provided on the collecting seat, the cutting wheel is rotatably mounted on the first fixing seat, and a first motor for driving the cutting wheel to rotate is mounted on the first fixing seat.

[0015] Furthermore, a connecting seat is installed at the lower end of the connecting shell, and the hooks are installed on the connecting seat, and there are four hooks.

[0016] Compared with the prior art, the present invention has the following beneficial effects: the second motor rotates in forward and reverse directions, thereby causing the third slider to move back and forth, and the movement directions of the two third sliders are opposite. The third slider drives the steel wire ropes on both sides of the pulley through the second fixed column, and the movement directions of the steel wire ropes on both sides of the pulley are opposite, thereby causing the connecting shell to gradually move up and rotate, and the material in the material bag is thrown out, which is conducive to making the material in the material bag fall evenly into the feeding tank, avoiding the accumulation of material in a part of the feeding tank.

[0017] When the wire rope is separated from the second fixing column, the connecting shell moves downward and rotates rapidly under the action of gravity, which helps the material to fall evenly into the feeding tank. The material bag is shaken, which helps the material in the bag to fall quickly and evenly into the feeding tank. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 It is a schematic diagram of the overall structure of the present invention;

[0019] Figure 2 It is a structural schematic diagram of the feeding tank in the present invention;

[0020] Figure 3 It is a structural diagram of the feeding mechanism in the present invention;

[0021] Figure 4 is a cross-sectional view of the connecting shell in the present invention;

[0022] Figure 5 It is a schematic diagram of the internal structure of the fixed box in the present invention;

[0023] Figure 6 is a cross-sectional view of the fixed box of the present invention;

[0024] Figure 7 It is a structural schematic diagram of the second fixing column in the present invention.

[0025] In the figure: 1. Workbench; 2. Bag-stamping table; 3. Material bag; 4. Feeding tank; 5. Collecting seat; 6. Support rod; 7. First fixed seat; 8. First motor; 9. Cutting wheel; 10. Fixed frame; 11. First electric slide; 12. Slide rod; 13. Second electric slide; 14. First slide; 15. Fixed box; 16. Second motor; 17. Gear; 18. First slide; 19. First rack; 20. First inclined plate; 21. Second inclined plate; 2 2. Second rack; 23. Second slide; 24. Through hole; 25. Second slider; 26. Spring; 27. First fixed column; 28. Second fixed column; 29. Third slider; 30. Wire rope; 301. Left wire rope; 302. Right wire rope; 31. Connecting shell; 32. Pulley; 33. Rotating shaft; 34. Mounting slot; 35. Connecting seat; 36. Hook; 37. Third motor; 38. Second fixed seat; 39. Winding wheel; 40. Threading hole. DETAILED DESCRIPTION

[0026] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments 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.

[0027] like Figure 1-Figure 7 As shown, the technical solution adopted by the present invention is as follows: the stack bag feeding workstation for the processing and production of ammonium perchlorate includes a workbench 1, a feeding tank 4 and a feeding mechanism.

[0028] The feeding tank 4 is arranged on the workbench 1. The bag-stamping platform 2 for stacking material bags 3 is arranged on the workbench 1, and the bag-stamping platform 2 is arranged on one side of the feeding tank 4.

[0029] The upper end of the feeding tank 4 is connected to a collecting seat 5 , and the collecting seat 5 is fixedly connected to a support rod 6 , which is fixedly set on the workbench 1 . The support rod 6 supports the collecting seat 5 to keep the collecting seat 5 stable.

[0030] A first fixing seat 7 is fixedly mounted on the collecting seat 5, and a cutting wheel 9 is rotatably mounted on the first fixing seat 7. A first motor 8 is fixedly mounted on the first fixing seat 7, and the output shaft of the first motor 8 is fixedly connected to the cutting wheel 9. The first motor 8 drives the cutting wheel 9 to rotate, which cuts the material bag 3, thereby allowing the material inside the material bag 3 to flow out. The material that falls onto the collecting seat 5 slides along the collecting seat 5 and into the feeding tank 4.

[0031] The feeding mechanism comprises a fixed box 15, a connecting shell 31 and a hook 36. The fixed box 15 is movably arranged above the feeding tank 4, and a second driving assembly for driving the fixed box 15 to move is provided on the workbench 1.

[0032] The second drive assembly includes a first electric slide rail 11 and a slide rod 12. A fixed frame 10 is fixedly mounted on the workbench 1, and the first electric slide rail 11 is fixedly mounted on the fixed frame 10. The slide rod 12 is slidably mounted on the fixed frame 10. The end of the slide rod 12 is connected to a slide table mounted on the first electric slide rail 11. The first electric slide rail 11 is arranged perpendicular to the slide rod 12.

[0033] A second electric slide rail 13 is mounted on the slide bar 12 and is perpendicular to the first electric slide rail 11. A first slider 14 is fixedly connected to the slide platform of the second electric slide rail 13, and a fixing box 15 is connected to the first slider 14.

[0034] A reel 39 rotates within the fixed box 15. Specifically, a second fixed base 38 is fixedly mounted on the top wall of the fixed box 15, and the reel 39 is rotatably mounted on the second fixed base 38. A third motor 37 is fixedly mounted on the second fixed base 38, and the output shaft of the third motor 37 is fixedly connected to the reel 39.

[0035] A mounting groove 34 is provided in the connecting shell 31, and a pulley 32 is rotatably mounted in the mounting groove 34. Specifically, a rotating shaft 33 is rotatably mounted in the rotating groove, and the pulley 32 is sleeved on the rotating shaft 33.

[0036] The lower end of the connecting shell 31 is provided with a connecting seat 35, and a hook 36 is provided on the connecting seat 35. There are four hooks 36. When the material bag 3 is mounted on the connecting shell 31, the four corners of the material bag 3 are hung on the four hooks 36 respectively.

[0037] A wire rope 30 is wound around the reel 39. One end of the wire rope 30 slides downward through the bottom wall of the fixed box 15, then extends into the mounting slot 34 and passes under the pulley 32. After passing over the pulley 32, the end of the wire rope 30 slides upward through the fixed box 15 and is fixedly connected to the top wall of the fixed box 15. The bottom wall of the fixed box 15 is provided with a threading hole 40 for the wire rope 30. The wire ropes 30 are arranged parallel to each other on both sides of the pulley 32.

[0038] For the convenience of description, the steel wire ropes 30 on both sides of the pulley 32 are defined as a left steel wire rope 301 and a right steel wire rope 302 respectively.

[0039] The fixed box 15 is provided with a first drive assembly that moves the left and right wire ropes 301, 302. Under the action of the first drive assembly, the left and right wire ropes 301, 302 move in directions parallel to the axis of the winding wheel 39 and in opposite directions, thereby causing the pulley 32 to move up and down and rotate.

[0040] The first drive assembly includes a third slider 29 and a second fixed column 28. Two first chute slots 18 are symmetrically defined at the bottom of the fixed housing 15, each of which slides a third slider 29 within it. The third sliders 29 move parallel to the axis of the take-up wheel 39, and the two third sliders 29 move in opposite directions.

[0041] Specifically, each third slider 29 is fixedly connected to a rack, defined as a first rack 19 and a second rack 22. A gear 17 is rotatably mounted on the bottom of the stationary box 15, and a second motor 16, which is drive-connected to the gear 17, is fixedly mounted on the stationary box 15. The first rack 19 and the second rack 22 are positioned on either side of the gear 17 and mesh with the gear 17. The second motor 16 drives the gear 17 to rotate, causing the first rack 19 and the second rack 22 to move in opposite directions, resulting in the two third sliders 29 moving in opposite directions.

[0042] Each third slider 29 is elastically and slidably mounted with a second fixing post 28 that engages with the wire rope 30. Each third slider 29 defines a second chute 23, within which a second slider 25 is positioned for limited sliding movement. One end of the second fixing post 28 slides into the second chute 23 and is fixedly connected to the second slider 25. A spring 26 is fixedly connected to the end of the second slider 25 that is distal to the second fixing post 28. The end of the spring 26 that is distal to the second slider 25 is fixedly connected to the end wall of the second chute 23.

[0043] Under the action of the spring 26, the second fixing post 28 extends outside the third slider 29 and cooperates with the steel wire rope 30. When the third slider 29 moves, the third slider 29 pushes the steel wire rope 30 to move through the second fixing post 28, and the left steel wire rope 301 and the right steel wire rope 302 move away from each other, thereby causing the connecting shell 31 to move upward. The connecting shell 31 rotates during the upward movement, and the connecting shell 31 drives the material bag 3 to rotate during the upward movement. The rotation of the material bag 3 causes the material in the material bag 3 to move outward during the downward drop, thereby expanding the drop area and allowing the material in the material bag 3 to fall evenly into the feeding tank 4.

[0044] The fixing box 15 is provided with a triggering member for moving the second fixing column 28 into the third sliding block 29 .

[0045] The third slider 29 has a through-hole 24 that connects to the second chute 23. The second slider 25 is fixedly connected to a first fixing post 27, the upper end of which extends through the through-hole 24 and out of the third slider 29. The triggering member comprises a beveled plate, one at each end of each first chute 18. The beveled plates are fixed to the inner wall of the fixed box 15. In this embodiment, for ease of description, the beveled plates at the ends of one first chute 18 are referred to as the second beveled plate 21, and the beveled plates at the ends of the other first chute 18 are referred to as the first beveled plate 20. The first fixing post 27 engages with the beveled plate on the same side.

[0046] When the first fixing post 27 contacts the inclined plate, the inclined plate causes the second fixing post 28 to move into the third slider 29, thereby freeing the steel wire rope 30 from the second fixing post 28. After the second fixing post 28 stops restraining the connection, the connecting shell 31 rapidly descends and rotates during the descent, causing the material in the material bag 3 to be ejected under the action of centrifugal force. This helps ensure that the material in the material bag 3 falls evenly into the feeding tank 4, avoiding uneven feeding caused by the vertical fall of the material in the material bag 3.

[0047] Working principle: When in use, the feeding mechanism is moved to the top of the bag stamping platform 2 through the first electric slide rail 11 and the second electric slide rail 13.

[0048] Then start the third motor 37 to rotate the reel 39 and pay out the wire rope 30 so that the connecting shell 31 is moved down to a suitable position. Afterwards, stop the third motor 37 and the staff hangs the four corners of the material bag 3 onto the four hooks 36 respectively.

[0049] Then, the third motor 37 is started again to reel in the steel wire rope 30 , so that the connecting shell 31 and the material bag 3 on the connecting shell 31 move upward.

[0050] Then the position of the feeding mechanism is adjusted by the first electric slide rail 11 and the second electric slide rail 13. Figure 1 As shown, the feeding mechanism is moved to above the collecting seat 5, and the cutting wheel 9 cuts the material bag 3 on the connecting shell 31. Then the feeding mechanism is moved to the right to just above the feeding tank 4.

[0051] When the material bag 3 on the connecting shell 31 is directly above the feeding tank 4, the fixing box 15 stops moving. When the material bag 3 is cut and moves above the feeding tank 4, the material in the material bag 3 falls onto the collecting seat 5 and falls into the feeding tank 4 along the collecting seat 5.

[0052] Start the second motor 16, and the gear 17 rotates. The gear 17 drives the first rack 19 and the second rack 22 to move, and the movement directions of the first rack 19 and the second rack 22 are opposite. This causes the two third sliders 29 to move, and the movement directions of the two third sliders 29 are opposite. The third sliders 29 push the wire ropes 30 on both sides of the pulley 32 through the second fixed column 28. Figure 6 As shown, the left wire rope 301 moves to the left, and the right wire rope 302 moves to the right. This causes the connecting shell 31 and the material bag 3 on it to gradually move upward, causing the connecting shell 31 to rotate, which in turn drives the material bag 3 to rotate. The material within the material bag 3 is flung outward under the action of centrifugal force. As the material bag 3 gradually moves upward, the material within the material bag 3 gradually falls from the center to the periphery and into the feeding tank 4. This helps ensure that the material within the material bag 3 falls evenly into the feeding tank 4, avoiding uneven feeding caused by the material within the material bag 3 falling vertically.

[0053] As the third slider 29 moves, when the first fixing post 27 contacts the corresponding inclined plate, the inclined plate causes the first fixing post 27 to move the second fixing post 28 into the second chute 23 via the second slider 25, thereby disengaging the wire rope 30 from the second fixing post 28. The left wire rope 301 and the right wire rope 302 simultaneously disengage from the corresponding second fixing post 28. After the wire rope 30 disengages from the second fixing post 28, the connecting shell 31 rapidly moves downward under the action of gravity, causing the connecting shell 31 to rotate. This causes the material in the material bag 3 to be thrown outward, which helps ensure that the material in the material bag 3 falls evenly into the feeding tank 4 and prevents uneven feeding caused by the material in the material bag 3 falling vertically.

[0054] Moreover, after the material bag 3 moves downward rapidly, it will shake, which is beneficial for the material to flow out quickly and to fall into the feeding tank 4 evenly.

[0055] When the wire rope 30 disengages from the second fixed post 28, the gear 17 rotates in the opposite direction, causing the third slider 29 corresponding to the left wire rope 301 to move rightward and the third slider 29 corresponding to the right wire rope 302 to move leftward. When the second fixed post 28 contacts the wire rope 30, as the third slider 29 moves, the left wire rope 301 moves rightward and the right wire rope 302 moves leftward, causing the connecting shell 31 to gradually move upward and rotate simultaneously, allowing the material in the material bag 3 to fall evenly into the feeding tank 4. This continues until the first fixed post 27 contacts the inclined plate again, causing the second fixed post 28 to move into the third slider 29 and disengage from the wire rope 30. After losing the restraint of the second fixed post 28, the connecting shell 31 quickly moves downward and rotates, allowing the material in the material bag 3 to fall evenly into the feeding tank 4.

[0056] Accordingly, as the second motor 16 rotates forward and reverse, the third slider 29 moves back and forth, thereby causing the connecting shell 31 and the material bag 3 on the connecting shell 31 to move up and down and rotate, which is conducive to making the material in the material bag 3 fall evenly into the feeding tank 4.

[0057] Although the present invention has been described in detail with reference to the aforementioned embodiments, it is still possible for those skilled in the art to modify the technical solutions described in the aforementioned embodiments, or to make equivalent substitutions for some of the technical features therein. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.

Claims

1. A stack bag feeding station for ammonium perchlorate processing and production, comprising a feeding tank (4), characterized in that: A feeding mechanism is provided above the feeding tank (4), and the feeding mechanism comprises a fixed box (15), a connecting shell (31) and a hook (36); the fixed box (15) is movably provided above the feeding tank (4), and a second driving assembly for driving the fixed box (15) to move is provided above the feeding tank (4); a reel (39) is rotatably provided on the fixed box (15), and a third motor (37) for driving the reel (39) to rotate is provided on the fixed box (15); the connecting shell (31) is provided below the fixed box (15), and a pulley is rotatably provided in the connecting shell (31) (32), a steel wire rope (30) is wound around the winding wheel (39), and one end of the steel wire rope (30) is fixedly connected to the fixed box (15) after passing through the pulley (32); the hook (36) is installed at the lower end of the connecting shell (31); the fixed box (15) is provided with a first driving component for moving the steel wire ropes (30) on both sides of the pulley (32); under the action of the first driving component, the moving direction of the steel wire rope (30) is parallel to the axial direction of the winding wheel (39), and the moving directions of the steel wire ropes (30) on both sides of the pulley (32) are opposite, so that the pulley (32) moves up and down and rotates; The first driving assembly includes a third slider (29) and a second fixed column (28); two first sliding grooves (18) are symmetrically opened at the bottom of the fixed box (15), and a third slider (29) is provided in each of the first sliding grooves (18) for limited sliding. The moving direction of the third slider (29) is parallel to the axial direction of the winding wheel (39); the moving directions of the two third sliders (29) are opposite; each of the third sliders (29) is provided with a second fixed column (28) that cooperates with the wire rope (30); when the third slider (29) moves, the second fixed column (28) pushes the wire rope (30) on the corresponding side to move.

2. The stack bag feeding workstation for ammonium perchlorate processing and production according to claim 1, wherein: The third slider (29) is provided with a second slide groove (23), a second slider (25) is slidably provided in the second slide groove (23), one end of the second fixed column (28) slides into the second slide groove (23) and is fixedly connected to the second slider (25), a spring (26) is fixedly connected between the side of the second slider (25) away from the second fixed column (28) and the end wall of the second slide groove (23); under the action of the spring (26), the second fixed column (28) extends to the outside of the third slider (29); a trigger member for moving the second fixed column (28) into the third slider (29) is provided on the fixed box (15).

3. The stack bag feeding workstation for ammonium perchlorate processing and production according to claim 2, wherein: The trigger member includes an inclined plate, which is fixed to the inner wall of the fixed box (15); the second slider (25) is fixedly connected to the first fixed column (27); the third slider (29) is provided with a through hole (24) connected to the second slide groove (23); the first fixed column (27) passes through the through hole (24) and extends to the outside of the third slider (29); the first fixed column (27) cooperates with the inclined plate; as the third slider (29) moves, when the first fixed column (27) contacts the inclined plate, under the action of the inclined plate, the first fixed column (27) drives the second fixed column (28) to move into the third slider (29), thereby causing the wire rope (30) to be separated from the second fixed column (28).

4. The stack bag feeding workstation for ammonium perchlorate processing and production according to claim 1, wherein: Each of the third sliders (29) is fixedly connected to a rack, a gear (17) is rotatably mounted on the fixed box (15), two racks are arranged on both sides of the gear (17) and are meshed with the gear (17); a second motor (16) is mounted on the fixed box (15) to drive the gear (17) to rotate.

5. The stack bag feeding workstation for ammonium perchlorate processing and production according to claim 1, characterized in that: The second driving assembly includes a first electric slide rail (11) and a slide bar (12); the feeding tank (4) is arranged on a workbench (1); a fixed frame (10) is installed on the workbench (1); the first electric slide rail (11) is installed on the fixed frame (10); the slide bar (12) is slidably arranged on the fixed frame (10); the slide bar (12) is drivingly connected to the first electric slide rail (11); a second electric slide rail (13) is arranged on the slide bar (12); the fixed box (15) is connected to the slide on the second electric slide rail (13); and the second electric slide rail (13) is arranged perpendicular to the first electric slide rail (11).

6. The stack bag feeding workstation for ammonium perchlorate processing and production according to claim 1, characterized in that: A bag-stacking platform (2) for stacking material bags (3) is provided on one side of the feeding tank (4).

7. The stack bag feeding workstation for ammonium perchlorate processing and production according to claim 1, characterized in that: One side of the upper end of the feeding tank (4) is connected to a collecting seat (5), and a cutting wheel (9) is provided on the collecting seat (5).

8. The stack bag feeding workstation for ammonium perchlorate processing and production according to claim 7, characterized in that: A first fixing seat (7) is fixedly provided on the collecting seat (5), the cutting wheel (9) is rotatably mounted on the first fixing seat (7), and a first motor (8) for driving the cutting wheel (9) to rotate is mounted on the first fixing seat (7).

9. The stack bag feeding workstation for ammonium perchlorate processing and production according to claim 1, characterized in that: A connecting seat (35) is installed at the lower end of the connecting shell (31), and the hooks (36) are installed on the connecting seat (35). There are four hooks (36).

Citation Information

Patent Citations

  • Cement bag breaking device for breaking cement bags in batches

    CN112224573A

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    CN217263381U