Bag stacking and feeding work station for ammonium perchlorate processing and production
By designing a feeding mechanism including a fixed box, a connecting shell and a driving component, the problem of uneven material falls in ammonium perchlorate production is solved, and the uniform feeding of the material is achieved.
Patent Information
- Application Number
- CN202510525977.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-25
- Publication Date
- 2025-05-27
- Estimated Expiration
- 2045-04-25
AI Technical Summary
During the production process of ammonium perchlorate, the material falls vertically through the material bag to the feeding tank, resulting in uneven material falling into the material and easily accumulate in the local area, resulting in uneven material feeding.
A bag feeding workstation is designed, including feeding tanks and feeding mechanisms. The feeding mechanism consists of a fixed box, a connecting shell, a hook and a driving component. Through the cooperation of the wire rope and pulley, the material bag can be moved upward and rotated, so that the material falls evenly into the feeding tank.
Through this device, the material in the material bag can evenly fall into the feeding tank, avoiding the accumulation of materials in the local area, and achieving uniform feeding.
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Figure CN120039491A_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the technical field of pallet bag feeding, and relates to a pallet bag feeding workstation for the processing and production of ammonium perchlorate. Background Art
[0002] Ammonium perchlorate is an inorganic compound, which is a white crystalline powder and has deliquescence. Ammonium perchlorate is a strong oxidizer, and it will explode when mixed with reducing agents, organic substances, flammable substances such as sulfur, phosphorus or metal powders, etc. It is commonly used in the manufacture of explosives, fireworks, and as an analytical reagent, etc.
[0003] During the production process of ammonium perchlorate, when putting the bagged materials, the material bags are usually transported above the feeding tank. By opening the bottom of the material bag, the materials fall into the feeding tank under the action of gravity. Since the materials fall vertically, and the opening at the bottom of the material bag is generally smaller than the inner diameter of the feeding tank, the materials cannot fall evenly into the feeding tank, and the materials are prone to accumulate in one place, resulting in uneven feeding.
[0004] To solve the above problems, the present invention proposes a pallet bag feeding workstation for the processing and production of ammonium perchlorate. Summary of the Invention
[0005] To solve the problems existing in the background art, the present invention proposes a pallet bag feeding workstation for the processing and production of ammonium perchlorate.
[0006] To achieve the above object, the technical solution adopted by the present invention is as follows: A pallet bag feeding workstation for the processing and production of ammonium perchlorate, including 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, and a second driving component for driving the fixed box to move is arranged 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 arranged in the connecting shell, a steel wire rope is wound around the winding wheel, and one end of the steel wire rope passes around the pulley and is fixedly connected to the fixed box; the hook is installed at the lower end of the connecting shell; a first driving component for moving the steel wire ropes on both sides of the pulley is arranged on the fixed box; under the action of the first driving component, the moving direction of the steel wire rope is parallel to the axis 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] Further, the first driving assembly includes a third slider and a second fixed post; two first sliding grooves are symmetrically formed in the bottom of the fixed box, and a third slider is slidably disposed in each first sliding groove in a limited manner. 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; a second fixed post cooperating with the steel wire rope is disposed on each third slider; when the third slider moves, the second fixed post pushes the steel wire rope on the corresponding side to move.
[0008] Further, a second sliding groove is formed in the third slider, a second slider is slidably disposed in the second sliding groove, one end of the second fixed post slidably extends 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 post and the end wall of the second sliding groove; under the action of the spring, the second fixed post extends out of the third slider; a trigger member for moving the second fixed post into the third slider is disposed on the fixed box.
[0009] Further, the trigger member includes an inclined panel, the inclined panel is fixed on the inner wall of the fixed box, the second slider is fixedly connected with a first fixed post, a through hole communicating with the second sliding groove is formed in the third slider, the first fixed post passes through the through hole and extends out of the third slider, and the first fixed post cooperates with the inclined panel; as the third slider moves, when the first fixed post contacts the inclined panel, under the action of the inclined panel, the first fixed post drives the second fixed post to move into the third slider, so that the steel wire rope is separated from the second fixed post.
[0010] Further, each third slider is fixedly connected with a rack, a gear is rotatably mounted on the fixed box, the two racks are respectively arranged on two sides of the gear and are both engaged with the gear; a second motor for driving the gear to rotate is mounted on the fixed box.
[0011] Further, the second driving assembly includes a first electric slide rail and a slide bar. The feeding tank is disposed on the workbench, a fixing frame is mounted on the workbench, the first electric slide rail is mounted on the fixing frame, the slide bar is slidably disposed on the fixing frame, the slide bar is drivingly connected with the first electric slide rail, a second electric slide rail is disposed on the slide bar, the fixed box is connected with a slide table on the second electric slide rail, and the second electric slide rail is perpendicular to the first electric slide rail.
[0012] Further, a bag stacking table for stacking material bags is disposed on one side of the feeding tank.
[0013] Further, one side of the upper end of the feeding tank is connected with a collecting seat, and a cutting wheel is disposed on the collecting seat.
[0014] Further, a first fixed seat is fixedly arranged on the collection seat, the cutting wheel is rotatably installed on the first fixed seat, and a first motor for driving the cutting wheel to rotate is installed on the first fixed seat.
[0015] Further, a connecting seat is installed at the lower end of the connecting shell, the lifting hook is installed on the connecting seat, and there are four lifting hooks.
[0016] Compared with the prior art, the present invention has the following beneficial effects: The second motor rotates in the positive and negative directions, thereby enabling the third slider to reciprocate, and the moving directions of the two third sliders are opposite. The third slider drives the steel wires on both sides of the pulley to move through the second fixed column, and the moving directions of the steel wires on both sides of the pulley are opposite, thereby causing the connecting shell to gradually move upward and rotate, and the materials in the material bag are thrown outwards, which is beneficial to evenly drop the materials in the material bag into the feeding tank and avoid the materials from accumulating in a local area of the feeding tank.
[0017] When the steel wire is separated from the second fixed column, under the action of gravity, the connecting shell quickly moves downward and rotates, which is beneficial to evenly drop the materials into the feeding tank. And it shakes the material bag, which is beneficial to quickly drop the materials in the material bag and is beneficial to evenly drop the materials into the feeding tank. Description of the Drawings
[0018] Figure 1 is the overall structural schematic diagram of the present invention; Figure 2 is the structural schematic diagram of the feeding tank in the present invention; Figure 3 is the structural schematic diagram of the feeding mechanism in the present invention; Figure 4 is the cross-sectional view of the connecting shell in the present invention; Figure 5 is the internal structural schematic diagram of the fixed box in the present invention; Figure 6 is the cross-sectional view of the fixed box in the present invention; Figure 7 is the structural schematic diagram of the second fixed column in the present invention.
[0019] In the figure: 1, workbench; 2, stack bag platform; 3, material bag; 4, feeding tank; 5, collection seat; 6, support rod; 7, first fixed seat; 8, first motor; 9, cutting wheel; 10, fixed frame; 11, first electric slide rail; 12, slide bar; 13, second electric slide rail; 14, first slider; 15, fixed box; 16, second motor; 17, gear; 18, first chute; 19, first rack; 20, first inclined panel; 21, second inclined panel; 22, second rack; 23, second chute; 24, perforation; 25, second slider; 26, spring; 27, first fixed column; 28, second fixed column; 29, third slider; 30, steel wire rope; 301, left steel wire rope; 302, right steel wire rope; 31, connection shell; 32, pulley; 33, rotating shaft; 34, installation groove; 35, connection seat; 36, hook; 37, third motor; 38, second fixed seat; 39, winding wheel; 40, threading hole. Detailed implementation mode
[0020] The following will clearly and completely describe the technical solutions in the embodiments of the present invention with reference to the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.
[0021] As Figures 1-7 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.
[0022] The feeding tank 4 is arranged on the workbench 1. A stack bag platform 2 for stacking material bags 3 is arranged on the workbench 1, and the stack bag platform 2 is arranged on one side of the feeding tank 4.
[0023] A collection seat 5 is connected to the upper end of the feeding tank 4. The collection seat 5 is fixedly connected with a support rod 6, and the support rod 6 is fixedly arranged on the workbench 1. The support rod 6 supports the collection seat 5 to keep the collection seat 5 stable.
[0024] A first fixed seat 7 is fixedly installed on the collection seat 5, and a cutting wheel 9 is rotatably installed on the first fixed seat 7. A first motor 8 is fixedly installed on the first fixed seat 7, and the output shaft of the first motor 8 is fixedly connected with the cutting wheel 9. The first motor 8 drives the cutting wheel 9 to rotate. The cutting wheel 9 is used to cut open the material bag 3, so that the material in the material bag 3 flows out. The material falling onto the collection seat 5 slides along the collection seat 5 into the feeding tank 4.
[0025] The feeding mechanism includes a fixed box 15, a connecting shell 31 and a lifting hook 36. The fixed box 15 is movably arranged above the feeding tank 4, and a second driving component for driving the fixed box 15 to move is arranged on the workbench 1.
[0026] The second driving component includes a first electric slide rail 11 and a slide bar 12. A fixing frame 10 is fixedly installed on the workbench 1, and the first electric slide rail 11 is fixedly installed on the fixing frame 10. The slide bar 12 is slidably arranged on the fixing frame 10. The end of the slide bar 12 is connected to a slide table matching the first electric slide rail 11. The first electric slide rail 11 is perpendicular to the slide bar 12.
[0027] A second electric slide rail 13 is installed on the slide bar 12, and the second electric slide rail 13 is perpendicular to the first electric slide rail 11. A first slider 14 is fixedly connected to the slide table matching the second electric slide rail 13, and the fixed box 15 is connected to the first slider 14.
[0028] A winding wheel 39 rotates inside the fixed box 15. Specifically, a second fixing seat 38 is fixedly installed on the top wall of the fixed box 15, and the winding wheel 39 is rotatably installed on the second fixing seat 38. A third motor 37 is fixedly installed on the second fixing seat 38, and the output shaft of the third motor 37 is fixedly connected to the winding wheel 39.
[0029] An installation groove 34 is formed inside the connecting shell 31, and a pulley 32 is rotatably installed inside the installation groove 34. Specifically, a rotating shaft 33 is rotatably installed inside the rotating groove, and the pulley 32 is sleeved on the rotating shaft 33.
[0030] A connecting seat 35 is installed at the lower end of the connecting shell 31, and the lifting hook 36 is installed on the connecting seat 35. There are four lifting hooks 36. When loading the material bag 3 onto the connecting shell 31, the four corners of the material bag 3 are respectively hung on the four lifting hooks 36.
[0031] A steel wire rope 30 is wound around the winding wheel 39. One end of the steel wire rope 30 slides downward through the bottom wall of the fixed box 15 and then extends into the installation groove 34 and bypasses from the lower side of the pulley 32. The end of the steel wire rope 30 bypasses the pulley 32 and then slides upward through the fixed box 15 and is fixedly connected to the top wall of the fixed box 15. A wire passing hole 40 matching the steel wire rope 30 is formed on the bottom wall of the fixed box 15. The steel wire ropes 30 on both sides of the pulley 32 are arranged in parallel.
[0032] For the convenience of description, the steel wire ropes 30 on both sides of the pulley 32 are respectively defined as the left steel wire rope 301 and the right steel wire rope 302.
[0033] A first driving assembly for moving the left steel wire rope 301 and the right steel wire rope 302 is provided on the fixed box 15. Under the action of the first driving assembly, the moving directions of the left steel wire rope 301 and the right steel wire rope 302 are both parallel to the axis direction of the winding wheel 39, and the moving directions of the left steel wire rope 301 and the right steel wire rope 302 are opposite, thereby causing the pulley 32 to move up and down and rotate.
[0034] The first driving assembly includes a third slider 29 and a second fixing column 28. Two first sliding grooves 18 are symmetrically formed at the bottom of the fixed box 15, and a third slider 29 is slidably disposed in each first sliding groove 18. The moving direction of the third slider 29 is parallel to the axis direction of the winding wheel 39, and the moving directions of the two third sliders 29 are opposite.
[0035] Specifically, each third slider 29 is fixedly connected with a rack, and the two racks are respectively defined as a first rack 19 and a second rack 22. A gear 17 is rotatably installed at the bottom of the fixed box 15, and a second motor 16 drivingly connected to the gear 17 is fixedly installed on the fixed box 15. The first rack 19 and the second rack 22 are respectively disposed on both sides of the gear 17 and are both engaged with the gear 17. The second motor 16 drives the gear 17 to rotate, thereby making the moving directions of the first rack 19 and the second rack 22 opposite, and the moving directions of the two third sliders 29 are opposite.
[0036] A second fixing column 28 cooperating with the steel wire rope 30 is elastically and slidably disposed on each third slider 29. A second sliding groove 23 is formed in the third slider 29, a second slider 25 is slidably and limitably disposed in the second sliding groove 23, and one end of the second fixing column 28 slidably extends into the second sliding groove 23 and is fixedly connected with the second slider 25. One end of the second slider 25 away from the second fixing column 28 is fixedly connected with a spring 26, and the end wall of the second sliding groove 23 is fixedly connected with the end of the spring 26 away from the second slider 25.
[0037] Under the action of the spring 26, the second fixing column 28 extends out of 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 column 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, and the connecting shell 31 rotates during the upward movement. During the process of the connecting shell 31 driving the material bag 3 to move upward, the material bag 3 rotates, so that the material in the material bag 3 moves outward during the process of falling downward, expanding the material dropping area, and enabling the material in the material bag 3 to uniformly fall into the feeding tank 4.
[0038] A trigger member for moving the second fixing column 28 into the third slider 29 is provided on the fixed box 15.
[0039] A perforation 24 communicating with the second chute 23 is formed in the third slider 29. The second slider 25 is fixedly connected with a first fixing column 27, and the upper end of the first fixing column 27 passes through the perforation 24 and extends outside the third slider 29. The triggering member includes an inclined panel. An inclined panel is arranged at both ends of each first chute 18, and the inclined panel is fixed on the inner wall of the fixed box 15. In this embodiment, for the convenience of description, the inclined panels at both ends of one of the first chutes 18 are defined as the second inclined panel 21, and the inclined panels at both ends of the other first chute 18 are defined as the first inclined panel 20. The first fixing column 27 cooperates with the inclined panel on the same side.
[0040] When the first fixing column 27 contacts the inclined panel, under the action of the inclined panel, the second fixing column 28 moves into the third slider 29, and then the steel wire rope 30 is separated from the second fixing column 28. After losing the limit of the second fixing column 28, the connecting shell 31 quickly drops and rotates during the dropping process, so that the materials in the material bag 3 are thrown out under the action of centrifugal force, which is beneficial to making the materials in the material bag 3 evenly fall into the feeding tank 4 and avoiding uneven feeding caused by the vertical falling of the materials in the material bag 3.
[0041] Working principle: During use, the feeding mechanism is moved above the bag piling platform 2 through the first electric slide rail 11 and the second electric slide rail 13.
[0042] Then, the third motor 37 is started to rotate the winding wheel 39, pay out the steel wire rope 30, and move the connecting shell 31 down to a suitable position. After that, the third motor 37 is stopped, and the staff hangs the four corners of the material bag 3 on the four hooks 36 respectively.
[0043] Then, the third motor 37 is started again to take in the steel wire rope 30, and move the connecting shell 31 and the material bag 3 on the connecting shell 31 upward.
[0044] After that, the position of the feeding mechanism is adjusted through the first electric slide rail 11 and the second electric slide rail 13. As Figure 1 shown, the feeding mechanism is moved 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 above the feeding tank 4.
[0045] When the material bag 3 on the connecting shell 31 is directly above the feeding tank 4, the fixed box 15 is stopped from moving. When the material bag 3 moves upward above the feeding tank 4 after being cut, the materials in the material bag 3 fall onto the collecting seat 5 and fall into the feeding tank 4 along the collecting seat 5.
[0046] 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 moving directions of the first rack 19 and the second rack 22 are opposite. This causes the two third sliders 29 to move and the moving directions of the two third sliders 29 are opposite. The third slider 29 pushes the steel wire ropes 30 on both sides of the pulley 32 to move through the second fixed column 28. As Figure 6 shown, the left steel wire rope 301 moves to the left, and the right steel wire rope 302 moves to the right. This causes the connecting shell 31 and the material bag 3 on the connecting shell 31 to gradually move upward, and causes the connecting shell 31 to rotate. The connecting shell 31 drives the material bag 3 to rotate. The material in the material bag 3 is thrown outwards under the action of centrifugal force. Since the material bag 3 gradually moves upward, the material in the material bag 3 gradually falls from the middle to the surroundings into the feeding tank 4, which is beneficial to evenly falling the material in the material bag 3 into the feeding tank 4 and avoiding uneven feeding caused by the vertical falling of the material in the material bag 3.
[0047] As the third slider 29 moves, when the first fixed column 27 contacts the corresponding inclined panel, under the action of the inclined panel, the first fixed column 27 drives the second fixed column 28 to move into the second chute 23 through the second slider 25, and then the steel wire rope 30 is separated from the second fixed column 28, and the left steel wire rope 301 and the right steel wire rope 302 are simultaneously separated from the corresponding second fixed column 28. After the steel wire rope 30 is separated from the second fixed column 28, the connecting shell 31 quickly moves downward under the action of gravity and causes the connecting shell 31 to rotate. This causes the material in the material bag 3 to be thrown outwards, which is beneficial to evenly falling the material in the material bag 3 into the feeding tank 4 and avoiding uneven feeding caused by the vertical falling of the material in the material bag 3.
[0048] Moreover, after the material bag 3 quickly moves downward, it will shake, which is beneficial to quickly flowing out the material and is beneficial to evenly falling the material into the feeding tank 4.
[0049] After the steel wire rope 30 is separated from the second fixed column 28, the gear 17 rotates in the reverse direction, and then the third slider 29 corresponding to the left steel wire rope 301 moves to the right, and the third slider 29 corresponding to the right steel wire rope 302 moves to the left. When the second fixed column 28 contacts the steel wire rope 30, as the third slider 29 moves, the left steel wire rope 301 moves to the right, and the right steel wire rope 302 moves to the left, causing the connecting shell 31 to gradually move upward and rotate at the same time, so that the material in the material bag 3 evenly falls into the feeding tank 4. Until the first fixed column 27 contacts the inclined panel again, causing the second fixed column 28 to move into the third slider 29 and be separated from the steel wire rope 30. After losing the limit of the second fixed column 28, the connecting shell 31 quickly moves downward and rotates, causing the material in the material bag 3 to evenly fall into the feeding tank 4.
[0050] Accordingly, with the forward and reverse rotation of the second motor 16, the third slider 29 reciprocates, 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 beneficial to evenly dropping the material in the material bag 3 into the feeding tank 4.
[0051] Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments, or perform equivalent replacements on some of the technical features. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included in the protection scope of the present invention.
Claims
1. A stack bag feeding workstation for ammonium perchlorate processing and production, comprising a feeding tank (4), characterized in that: A feeding mechanism is arranged 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 arranged above the feeding tank (4), and a second driving assembly for driving the fixed box (15) to move is arranged above the feeding tank (4); a winding wheel (39) is rotatably mounted on the fixed box (15), and a third motor (37) for driving the winding wheel (39) to rotate is mounted on the fixed box (15); the connecting shell (31) is arranged below the fixed box (15), and a pulley is rotatably arranged inside the connecting shell (31) (32), a steel wire rope (30) is wound around the winding wheel (39), 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); a first driving component is provided on the fixed box (15) for moving the steel wire rope (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 rope (30) on both sides of the pulley (32) are opposite, so that the pulley (32) moves up and down and rotates.
2. The stack bag feeding workstation for ammonium perchlorate processing and production according to claim 1, characterized in that: The first driving assembly comprises a third slider (29) and a second fixed column (28); two first slide grooves (18) are symmetrically provided at the bottom of the fixed box (15); a third slider (29) is provided in each of the first slide grooves (18) for limited sliding movement; 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) for cooperating with the steel wire rope (30); when the third slider (29) moves, the second fixed column (28) pushes the steel wire rope (30) on the corresponding side to move.
3. The stack bag feeding workstation for ammonium perchlorate processing and production according to claim 2, characterized in that: The third slider (29) is provided with a second slide groove (23), a second slider (25) is slidably arranged 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 a side of the second slider (25) away from the second fixed column (28) and an 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 arranged on the fixed box (15).
4. The stack bag feeding workstation for ammonium perchlorate processing and production according to claim 3, characterized in that: The trigger member comprises an inclined plate, which is fixed on the inner wall of the fixed box (15); the second slider (25) is fixedly connected to the first fixing column (27); the third slider (29) is provided with a through hole (24) connected to the second slide groove (23); the first fixing column (27) passes through the through hole (24) and extends to the outside of the third slider (29); the first fixing column (27) cooperates with the inclined plate; as the third slider (29) moves, when the first fixing column (27) contacts the inclined plate, under the action of the inclined plate, the first fixing column (27) drives the second fixing column (28) to move into the third slider (29), thereby causing the steel wire rope (30) to be separated from the second fixing column (28).
5. The stack bag feeding workstation for ammonium perchlorate processing and production according to claim 2, characterized in that: Each of the third sliding blocks (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) for driving the gear (17) to rotate is mounted on the fixed box (15).
6. The stack bag feeding workstation for ammonium perchlorate processing and production according to claim 1, characterized in that: The second driving assembly comprises 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 table on the second electric slide rail (13); and the second electric slide rail (13) is arranged perpendicular to the first electric slide rail (11).
7. The stack bag feeding workstation for ammonium perchlorate processing and production according to claim 1, characterized in that: A bag-stomping platform (2) for stacking material bags (3) is provided on one side of the feeding tank (4).
8. 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).
9. The stack bag feeding workstation for ammonium perchlorate processing and production according to claim 8, characterized in that: A first fixing seat (7) is fixedly arranged 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).
10. 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 hanging hooks (36) are installed on the connecting seat (35). There are four hanging hooks (36).
Citation Information
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