Storage device for activated carbon production
By setting a rotatable limit bottom plate and limit insertion rod on the bottom of the storage box of the activated carbon storage device, the problem of easy spilling and complicated operation of activated carbon during unloading of the activated carbon storage device is solved, and the safe, convenient discharge and labor-saving effect of activated carbon is achieved.
Patent Information
- Application Number
- CN202422024449.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-21
- Publication Date
- 2025-06-20
- Estimated Expiration
- 2034-08-21
AI Technical Summary
The existing activated carbon storage device can easily cause large-scale spills of activated carbon to fall off during unloading, and the operation is cumbersome and a lot of effort is consumed, resulting in waste of activated carbon.
A storage device for production of activated carbon is designed. The bottom of the activated carbon storage box is equipped with a rotatable limit bottom plate. By installing the limit insertion rod, the limit insertion rod can be fixed. When unloading, the limit insertion rod can be extracted to slowly rotate and open, achieving the smooth discharge of activated carbon.
Effectively prevent activated carbon from spilling on a large scale during the discharge process, reducing the labor intensity of operators, saving efforts, and avoiding the waste of activated carbon, improving the operation convenience of the storage device.
Smart Images

Figure CN223001997U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of activated carbon production, in particular to a storage device for activated carbon production. Background Art
[0002] Activated carbon is a black powdery, granular, pill-shaped or amorphous carbon with pores. The main component is carbon, and it also contains a small amount of oxygen, hydrogen, sulfur, nitrogen, and chlorine. It is mainly made from wood, fruit shells, coal, etc. through high-temperature activation.
[0003] After the production of activated carbon, it is often stored in a storage device. The drying storage boxes of some storage devices use activated carbon storage boxes to hold activated carbon. However, when some activated carbon storage boxes need to unload the filled activated carbon, the activated carbon storage box can only be slowly tilted to pour it out. However, during the falling process of the activated carbon, it is easy to cause a large area of the activated carbon to spill. In this way, part of the activated carbon will spill outside, and the operator needs to spend a lot of effort to slowly tilt the activated carbon storage box. This will not only cause waste of activated carbon but also consume a lot of effort. Content of the Utility Model
[0004] The purpose of the utility model is to solve the defects existing in the prior art, and to propose a storage device for activated carbon production.
[0005] In order to achieve the above purpose, the utility model adopts the following technical scheme:
[0006] A storage device for activated carbon production, including a drying storage box. A cavity is opened inside the drying storage box. A plurality of support frames are uniformly arranged along the vertical direction on the side walls of the cavity inside the drying storage box. An activated carbon storage box is horizontally placed between the upper surfaces of the support frames on the two side walls.
[0007] A storage cavity is opened on the upper surface of the activated carbon storage box. The bottom of the storage cavity of the activated carbon storage box is an opening. An installation groove is opened on the bottom surface of the activated carbon storage box. A rotating column is arranged in a groove on one side of the installation groove of the activated carbon storage box. A limiting bottom plate is rotatably arranged on the rotating column.
[0008] In addition, the preferred structure is that handlebars are symmetrically arranged on the surfaces of the two longer side walls of the activated carbon storage box. A fixing plate is arranged on the front side of the bottom surface of the other side of the activated carbon storage box far from the rotating column. A socket is arranged on the other side of the bottom surface of the other side of the activated carbon storage box far from the rotating column and far from the fixing plate.
[0009] In addition, a preferred structure is that through holes are formed in the fixed plate, a limiting insertion rod is inserted at the through hole of the fixed plate, jacks are formed in the socket, the aperture of the through hole of the fixed plate and the aperture of the jack of the socket are the same as the diameter of the rod body of the limiting insertion rod, and they are centered, and a limiting mechanism is arranged on the front surface of the activated carbon storage box at the front side of the fixed plate.
[0010] In addition, a preferred structure is that a rotating seat is arranged on one side edge of the upper surface of the limiting bottom plate, and the rotating seat is rotatably arranged on the rotating column.
[0011] In addition, a preferred structure is that limiting seats are symmetrically arranged on the bottom surface of the other side of the limiting bottom plate far from the rotating seat, through holes with an aperture the same as the diameter of the rod body of the limiting insertion rod are formed in the limiting seats, and the through holes of the limiting seats can be centered with the through holes of the fixed plate.
[0012] In addition, a preferred structure is that the limiting mechanism includes a rotating seat, the rotating seat is arranged on the front surface of the activated carbon storage box, and a limiting plate is rotatably arranged on the rotating seat.
[0013] In addition, a preferred structure is that closing doors are symmetrically arranged on the front surface of the drying storage box, visual windows are arranged on the surfaces of the closing doors, and a plurality of rollers are arranged at the bottom of the drying storage box.
[0014] The beneficial effects of the present utility model are as follows: By setting the bottom of the activated carbon storage box of the storage device as a rotatable limiting bottom plate, when placing activated carbon, the position of the limiting bottom plate can be fixed by installing a limiting insertion rod, and the limiting bottom plate can hold the activated carbon. When discharging, only need to pull out the limiting insertion rod, so that the limiting bottom plate slowly rotates and opens, and the activated carbon slowly discharges. Compared with the method of pouring out the activated carbon by tilting the activated carbon storage box, the activated carbon will not be spilled in a large area during such activated carbon feeding, and it is not necessary to always hold the activated carbon storage box tilted during the activated carbon feeding, which can effectively save effort. Such a storage device is more convenient for operators to operate and can also prevent waste during feeding. Description of the Drawings
[0015] Figure 1 It is a schematic structural diagram of the whole storage device;
[0016] Figure 2 It is a schematic structural diagram of the inside of the drying storage box;
[0017] Figure 3 It is a schematic structural diagram of the activated carbon storage box in the closed state;
[0018] Figure 4 It is a schematic diagram of a partial enlargement of the limiting mechanism;
[0019] Figure 5 It is a schematic structural diagram of the activated carbon storage box in the opened state;
[0020] Figure 6 It is a schematic structural diagram of the limit bottom plate;
[0021] Figure 7 It is a schematic structural diagram of the activated carbon storage box.
[0022] In the figure: 1 drying storage box, 11 support frames, 2 closing door, 21 visual window, 3 rollers, 4 activated carbon storage box, 41 opening, 42 handle, 43 installation groove, 44 fixing plate, 45 socket, 46 rotating column, 5 limit bottom plate, 51 rotating seat, 52 limit seat, 6 limit insertion rod, 7 limit mechanism, 71 rotating seat, 72 limit plate. Specific implementation mode
[0023] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with 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.
[0024] Refer to Figure 1-7 , a storage device for activated carbon production, including a drying storage box 1. A cavity is provided inside the drying storage box 1. A plurality of support frames 11 are arranged vertically and evenly on the side walls on both sides of the inner cavity of the drying storage box 1. An activated carbon storage box 4 is horizontally placed between the upper surfaces of the support frames 11 on the side walls on both sides. A storage cavity is provided on the upper surface of the activated carbon storage box 4. The bottom of the storage cavity of the activated carbon storage box 4 is provided as an opening 41. An installation groove 43 is provided on the bottom surface of the bottom end of the activated carbon storage box 4. A rotating column 46 is provided in the groove on one side of the installation groove 43 of the activated carbon storage box 4. A limit bottom plate 5 is rotatably arranged on the rotating column 46. The rotating column 46 facilitates the rotation and opening of the limit bottom plate 5.
[0025] Among them, handles 42 are symmetrically arranged on the surfaces of the two longer side walls of the activated carbon storage box 4. A fixing plate 44 is provided on the front side of the other bottom end surface of the activated carbon storage box 4 away from the rotating column 46. A socket 45 is provided on the other side of the other bottom end surface of the activated carbon storage box 4 away from the rotating column 46 and away from the fixing plate 44. A through hole is provided on the fixing plate 44. A limit insertion rod 6 is inserted through the through hole of the fixing plate 44. A jack is provided on the socket 45. The aperture of the through hole of the fixing plate 44 and the aperture of the jack of the socket 45 are the same as the diameter of the rod body of the limit insertion rod 6 and are centered. A limit mechanism 7 is provided on the front side surface of the activated carbon storage box 4 at the fixing plate 44. The socket 45 facilitates resisting the position where the limit insertion rod 6 is inserted.
[0026] In addition, a rotating seat 51 is provided on one side edge of the upper surface of the limit bottom plate 5. The rotating seat 51 is rotatably arranged on the rotating column 46. The limit bottom plate 5 can hold the activated carbon.
[0027] Moreover, at the bottom surface of the side of the other side of the limit bottom plate 5 away from the rotating seat 51, limit seats 52 are symmetrically arranged. Through holes with the same diameter as the rod body of the limit insertion rod 6 are formed in the limit seats 52. The through holes of the limit seats 52 can be aligned with the centers of the through holes of the fixed plate 44. After the limit insertion rod 6 passes through the limit seats 52, the position of the limit bottom plate 5 can be fixed.
[0028] Meanwhile, the limiting mechanism 7 includes a rotating seat 71. The rotating seat 71 is arranged on the front surface of the activated carbon storage box 4. A limiting plate 72 is rotatably arranged on the rotating seat 71. The limiting plate 72 can block the front side of the limit insertion rod 6, thereby preventing the limit insertion rod 6 from easily falling out.
[0029] In addition, sealing doors 2 are symmetrically arranged on the front surface of the drying storage box 1. A visual window 21 is arranged on the surface of the sealing doors 2. A plurality of rollers 3 are arranged at the bottom of the drying storage box 1. The rollers 3 facilitate the movement of the drying storage box 1 at any time.
[0030] In this embodiment, when activated carbon needs to be stored, the produced activated carbon can be poured into the activated carbon storage box 4. At this time, the limit bottom plate 5 rotates into the installation groove 43. The limit bottom plate 5 can drag out the activated carbon and then spread the activated carbon flat on the limit bottom plate 5. Then, the activated carbon storage box 4 can be lifted by pulling the handle 42 and then placed on the support frame 11. The activated carbon storage box 4 is stored by the drying storage box 1.
[0031] During unloading, after the operator removes the activated carbon storage box 4, first rotate the limiting plate 72 on the rotating seat 71 so that its state of originally blocking the limit insertion rod 6 changes to no longer blocking the limit insertion rod 6. Then, the limit insertion rod 6 can be pulled out at this time, so that the limit insertion rod 6 is pulled out from the socket 45, the limit seat 52, and the fixed plate 44. Then, after the limit seat 52 is no longer restricted by the limit insertion rod 6, the operator can drag out the limit bottom plate 5 and slowly lower it. Then, set up something to receive the material at its bottom. The activated carbon is discharged slowly as the limit bottom plate 5 with an inclined change.
[0032] When closing the limit bottom plate 5, rotate the limit bottom plate 5 into the installation groove 43, then pass the limit insertion rod 6 through the through hole of the fixed plate 44, then through the through hole of the limit seat 52, and finally into the jack of the socket 45, so that the limit insertion rod 6 can prevent the limit bottom plate 5 from rotating and fix its position, enabling the activated carbon storage box 4 to be loaded at this time. And rotate the limiting plate 72 to block the front side of the limit insertion rod 6 to prevent the limit insertion rod 6 from coming out.
[0033] In the present utility model, the bottom of the activated carbon storage box 4 of the storage device is provided with a rotatable limit bottom plate 5. When placing the activated carbon, by installing the limit insertion rod 6, the position of the limit bottom plate 5 can be fixed. The limit bottom plate 5 can hold the activated carbon. When discharging, only need to pull out the limit insertion rod 6, so that the limit bottom plate 5 slowly rotates and opens, and the activated carbon slowly discharges. Compared with the method of pouring out by tilting the activated carbon storage box 4, the activated carbon will not be spilled in a large area during the feeding process, and there is no need to always hold the activated carbon storage box 4 tilted when feeding the activated carbon, which can effectively save effort. Such a storage device is more convenient for operators to operate and can also prevent waste during feeding.
[0034] The above is only a preferred specific embodiment of the present utility model, but the protection scope of the present utility model is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present utility model, according to the technical solution and the inventive concept of the present utility model, makes equivalent substitutions or changes, should be covered within the protection scope of the present utility model.
Claims
1. A storage device for activated carbon production, comprising a dry storage box (1), characterized in that: The dry storage box (1) has a cavity inside, and a plurality of support frames (11) are evenly arranged in a vertical direction on the side walls on both sides of the cavity inside the dry storage box (1), and an activated carbon storage box (4) is horizontally placed between the upper surfaces of the support frames (11) on the side walls on both sides; The activated carbon storage box (4) has a material storage cavity on its upper surface, the bottom of the material storage cavity of the activated carbon storage box (4) has an opening (41), a mounting groove (43) is provided on the bottom surface of the activated carbon storage box (4), a rotating column (46) is provided in a groove on one side of the mounting groove (43), and a limiting bottom plate (5) is rotatably provided on the rotating column (46).
2. The storage device for activated carbon production according to claim 1, characterized in that: Handles (42) are symmetrically arranged on the longer side wall surfaces on both sides of the activated carbon storage box (4), a fixing plate (44) is arranged on the front side of the bottom end surface on the other side of the activated carbon storage box (4) away from the rotating column (46), and a socket (45) is arranged on the other side of the bottom end surface on the other side of the activated carbon storage box (4) away from the rotating column (46) and away from the fixing plate (44).
3. The storage device for activated carbon production according to claim 2, characterized in that: The fixing plate (44) is provided with a through hole, a limiting plug rod (6) is inserted into the through hole of the fixing plate (44), and a plug hole is provided on the socket (45). The diameter of the through hole of the fixing plate (44) is consistent with the diameter of the plug hole of the socket (45) and the diameter of the rod body of the limiting plug rod (6), and the centers are aligned. A limiting mechanism (7) is provided on the front surface of the fixing plate (44) on the activated carbon storage box (4).
4. The storage device for activated carbon production according to claim 1, characterized in that: A rotating seat (51) is arranged at a side edge of one side of the upper surface of the limiting bottom plate (5), and the rotating seat (51) is rotatably arranged on the rotating column (46).
5. The storage device for activated carbon production according to claim 4, characterized in that: A limiting seat (52) is symmetrically arranged at the bottom end surface of the side of the limiting base plate (5) away from the rotating seat (51), and a through hole with a hole diameter consistent with the rod body diameter of the limiting plug rod (6) is opened on the limiting seat (52), and the through hole of the limiting seat (52) can be aligned with the center of the through hole of the fixing plate (44).
6. The storage device for activated carbon production according to claim 3, characterized in that: The limiting mechanism (7) comprises a rotating seat (71), the rotating seat (71) being arranged on the front surface of the activated carbon storage box (4), and a limiting plate (72) being rotatably arranged on the rotating seat (71).
7. The storage device for activated carbon production according to claim 1, characterized in that: The front surface of the dry storage box (1) is symmetrically provided with a closed door (2), the surface of the closed door (2) is provided with a visible window (21), and the bottom of the dry storage box (1) is provided with a plurality of rollers (3).