Honeycomb activated carbon placing rack
By designing an assembleable and detachable honeycomb activated carbon storage rack, the problems of large space occupation and need for transportation of honeycomb activated carbon storage racks are solved, realizing flexible movement, airtight storage and moisture protection, and improving storage efficiency.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- 龙岩市华研活性炭科技有限公司
- Filing Date
- 2025-05-29
- Publication Date
- 2026-05-05
AI Technical Summary
The existing honeycomb activated carbon placement racks are fixed in place, which takes up a lot of space. Staff need to move the carbon to the designated placement area, resulting in wasted space and time-consuming and labor-intensive operation.
A placement rack consisting of a first frame and a second frame was designed. The second frame is slidably connected by a traction rod, has wheels at the bottom, and the uprights can be raised and lowered. The frame can be assembled and disassembled, has a sealing function, and is connected to a ventilation system via air ducts, enabling adjustable spacing between the frames and airtight storage.
It enables flexible movement and stacking of honeycomb activated carbon, reduces space occupation, provides moisture protection, ensures a dry storage environment, and improves storage efficiency and equipment compactness.
Smart Images

Figure CN224198161U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of activated carbon storage technology, specifically to a honeycomb activated carbon storage rack. Background Technology
[0002] Honeycomb activated carbon is a porous adsorbent material made by mixing activated carbon powder with binders (such as ceramics, resins, etc.), extruding it through a mold, and activating it at high temperature. It has a unique honeycomb structure and is widely used in environmental protection and industrial fields.
[0003] After mass production, honeycomb activated carbon is often stacked on racks for storage. However, most existing racks are fixed in one location, which means that workers often have to move the activated carbon to the rack before stacking it. This operation is time-consuming and labor-intensive, putting a great burden on the workers. In addition, in order to facilitate placement, a certain distance must be reserved between racks for workers to pass through, which results in a large space occupation and waste of space.
[0004] In summary, existing honeycomb activated carbon placement racks have several drawbacks: they require fixed placement points, occupy a large amount of space, and workers need to move the activated carbon to the rack before it can be stacked. Utility Model Content
[0005] The purpose of this utility model is to provide a honeycomb activated carbon placement rack to solve the technical problems of most existing honeycomb activated carbon placement racks being placed at fixed points, occupying a large space, and requiring staff to move the activated carbon to the placement rack before it can be stacked.
[0006] The technical problem to be solved by this utility model can be achieved through the following technical solution:
[0007] A honeycomb activated carbon storage rack
[0008] It includes a first frame and two second frames that are movably arranged in front of and behind the first frame. The first and second frames are equipped with a loading component for stacking honeycomb activated carbon.
[0009] The first frame and the second frame are slidably connected by a traction rod. The bottom of the second frame is symmetrically equipped with traveling wheels. The bottom of the first frame is symmetrically equipped with lifting columns, and the columns are detachably connected to the first frame by bolts. The lowest point of the column is flush with the bottom of the traveling wheels. The first frame has sealing grooves on both sides near the second frame. The second frame has matching edges on one side near the first frame. The other side of the second frame has a slidably installed sealing plate for sealing.
[0010] Preferably, the bottom end of the second frame near the first frame is provided with a storage groove for limiting and guiding the traction rod.
[0011] Preferably, the bottom of the first frame is symmetrically provided with lifting grooves for limiting and guiding the uprights.
[0012] Preferably, at least two sets of positioning grooves for installing bolts are provided at the bottom of both ends of the first frame, and the positioning grooves are distributed vertically along the axis of the column.
[0013] Preferably, an air duct is provided on the top of the first frame.
[0014] Preferably, the loading assembly includes several sets of equidistantly distributed placement plates movably disposed inside the first frame and the second frame, and several sets of ventilation holes formed on the placement plates.
[0015] Preferably, the bottom of the first frame and the second frame are movably provided with a receiving plate, and the receiving plate is V-shaped. The width of the receiving plate is greater than the width of the placement plate. The side walls of the first frame and the second frame are symmetrically provided with several sets of equidistant adjustment grooves.
[0016] Preferably, both ends of the placement plate and the receiving plate are provided with sliding grooves, and both ends of the placement plate and the receiving plate are provided with movable grooves that communicate with the sliding grooves. The movable grooves are movably provided with positioning pins that match the adjustment grooves, and the positioning pins are provided with pull rods that pass through the sliding grooves.
[0017] Preferably, one end of the second frame is provided with an insertion groove for installing the sealing plate, and the inner wall of the second frame is provided with a guide groove for limiting and guiding the sealing plate.
[0018] Preferably, a barrier plate is provided at one end of the sealing plate, and the barrier plate is located outside the insertion groove.
[0019] The beneficial effects of this utility model are:
[0020] 1. In this utility model, the first frame and the second frame can be assembled together. The three are supported by wheels, which makes it convenient for workers to move the three as a whole to the point where honeycomb activated carbon is transported. When stacking honeycomb activated carbon, the second frame is pulled apart to both sides to facilitate the stacking of honeycomb activated carbon. After stacking, it can be reassembled. The sliding connection structure between the first frame and the second frame makes the spacing between the frames adjustable, and the device is more flexible. While ensuring that honeycomb activated carbon can be stacked smoothly, the device is compact, meets the needs of large-scale storage, and further reduces the space required for the storage of the first and second frames.
[0021] 2. In this utility model, the first frame and the second frame can be assembled together. The fitting edge of the second frame is inserted into the sealing groove of the first frame, and the sealing plate can be inserted into the insertion groove. Thus, a sealed storage environment is formed between the first frame and the second frame, which can provide good moisture protection for the honeycomb activated carbon. The air duct is connected to the external ventilation system, which can dehumidify and dry the honeycomb activated carbon in the first frame and the second frame during storage, ensuring that the honeycomb activated carbon can always be in a dry environment and extending its storage period. Attached Figure Description
[0022] The present invention will be further described below with reference to the accompanying drawings.
[0023] Figure 1 This is a three-dimensional schematic diagram of the device in this utility model;
[0024] Figure 2 This is a three-dimensional schematic diagram of the column in this utility model;
[0025] Figure 3 This is a three-dimensional schematic diagram of the first frame in this utility model;
[0026] Figure 4 This is a schematic diagram of the positioning pin structure in this utility model.
[0027] In the diagram: 1. Frame No. 1; 2. Frame No. 2; 3. Traction rod; 4. Storage slot; 5. Traveling wheel; 6. Lifting slot; 7. Column; 8. Positioning slot; 9. Sealing slot; 10. Fitting edge; 11. Air duct; 12. Placement plate; 13. Ventilation hole; 14. Support plate; 15. Adjustment slot; 16. Sliding groove; 17. Movable groove; 18. Positioning pin; 19. Tie rod; 20. Sealing plate; 21. Insertion slot; 22. Guide slot; 23. Barrier plate. Detailed Implementation
[0028] The specific embodiments of this utility model are described in detail below, but it should be understood that the protection scope of this utility model is not limited to the specific embodiments.
[0029] like Figure 1-4 As shown, a honeycomb activated carbon storage rack,
[0030] It includes a set of frame 1 and two sets of frame 2 that are movably set in front of and behind frame 1. Both frame 1 and frame 2 are equipped with a loading component for stacking honeycomb activated carbon.
[0031] Frame 1 and Frame 2 are slidably connected by a traction rod 3. Frame 2 has a storage groove 4 at its bottom end on the side closest to Frame 1, which serves to limit and guide the traction rod 3. Frame 2 has symmetrically arranged wheels 5 at its bottom. Frame 1 has symmetrically arranged lifting columns 7 at its bottom, and these columns 7 are detachably connected to Frame 1 by bolts. The lowest point of each column 7 is flush with the bottom of the wheels 5. Frame 1 has sealing grooves 9 on both sides closest to Frame 2, and Frame 2 has matching fitting edges on the side closest to Frame 1. 10. On the other side of the second frame 2, a sealing plate 20 for sealing is slidably provided. The bottom of the first frame 1 is symmetrically provided with lifting grooves 6 for limiting and guiding the column 7. At least two sets of positioning grooves 8 for installing bolts are provided at the bottom of both ends of the first frame 1, and the positioning grooves 8 are vertically distributed along the axis of the column 7. One side of the second frame 2 is provided with a plug groove 21 for installing the sealing plate 20. The inner wall of the second frame 2 is provided with a guide groove 22 for limiting and guiding the sealing plate 20. One end of the sealing plate 20 is provided with a barrier plate 23, and the barrier plate 23 is located outside the plug groove 21.
[0032] Frame 1 serves as a fixed base, while Frame 2 is slidably connected to it via a traction rod 3. Initially, Frame 1 and Frame 2 are assembled together, with the fitting edge 10 of Frame 2 inserted into the sealing groove 9 of Frame 1. These three components form a continuous storage compartment. The sealing plate 20, located in the insertion groove 21, seals one side of Frame 2. At this time, the upright 7 is retracted into the lifting groove 6 and secured with bolts. Frame 1 and Frame 2 are supported by the traveling wheels 5, facilitating easy and quick movement of the three components to the designated location for handling honeycomb activated carbon. When stacking honeycomb activated carbon, the upright 7 can be lowered, providing stable support for Frame 1. The worker can then pull Frame 2 apart to the sides and remove the sealing plate 20. This facilitates the stacking of honeycomb activated carbon by staff. The vertically distributed positioning slots 8 allow for flexible fixation of the column 7 height, adapting to different ground conditions and enhancing the equipment's versatility. After stacking, the first frame 1 and the second frame 2 are assembled together, and the sealing plate 20 is reinserted into the insertion slot 21. This creates a sealed storage environment between the first frame 1 and the second frame 2, providing excellent moisture protection for the honeycomb activated carbon. Staff can then push the first frame 1 and the second frame 2 to the storage location. The sliding connection structure between the first frame 1 and the second frame 2 allows for adjustable spacing between the frames, increasing the device's flexibility. While ensuring smooth stacking of the honeycomb activated carbon, the device maintains its compactness, meeting the needs of large-scale storage and further reducing the space required for storing the first frame 1 and the second frame 2.
[0033] In this embodiment, specifically, the top of the first frame 1 is provided with an air duct 11. The loading assembly includes several sets of equidistantly distributed placement plates 12 movably disposed inside the first frame 1 and the second frame 2, and several sets of ventilation holes 13 opened on the placement plates 12. The bottom of the first frame 1 and the second frame 2 is movably provided with a support plate 14, which is V-shaped and has a width greater than the width of the placement plates 12. The side walls of the first frame 1 and the second frame 2 are all aligned with... The device is equipped with several sets of equidistantly distributed adjustment slots 15. Slide grooves 16 are provided on both sides of the placement plate 12 and the receiving plate 14. Movable slots 17, communicating with the slide grooves 16, are provided at both ends of the placement plate 12 and the receiving plate 14. Positioning pins 18, matching the adjustment slots 15, are movably installed inside the movable slots 17. Tie rods 19, penetrating the slide grooves 16, are provided on the outside of the positioning pins 18. The placement plate 12 provides support for the honeycomb activated carbon. Ventilation holes 13 optimize the connection between the first and second frame bodies. The airflow distribution within frame 2 is such that the V-shaped receiving plate 14 can catch the fragments of honeycomb activated carbon falling from the placement plate 12, facilitating subsequent unified recycling by staff. Its width is greater than that of the placement plate 12, ensuring that it can completely catch the falling coal slag. The sliding positioning pin 18 is inserted into the adjustment groove 15, fixing the placement plate 12 and the V-shaped receiving plate 14. Pulling the pull rod 19 allows it to be pulled out, making it easy to adjust the distance between the placement plates 12. Staff can flexibly adjust the placement plate 12 according to the size of the honeycomb activated carbon. The air duct 11 is connected to the external ventilation system, which can dehumidify and dry the honeycomb activated carbon in frame 1 and frame 2 during storage, ensuring that the honeycomb activated carbon can always be in a dry environment and extending its storage period. The ventilation holes 13 are evenly distributed on the placement plate 12, forming an airflow channel to facilitate the flow of air inside frame 1 and frame 2 during dehumidification and drying.
[0034] The contents not described in detail in this specification are existing technologies known to those skilled in the art.
[0035] The working principle of this utility model is as follows: Using the walking wheels 5, the staff can move the No. 1 frame 1 and the No. 2 frame 2 as a whole to the location of the honeycomb activated carbon. Then, the staff can lower the column 7 and pull the No. 2 frame 2 to both sides to remove the sealing plate 20. At this time, the staff can stack the honeycomb activated carbon. After stacking, the No. 1 frame 1 and the No. 2 frame 2 are assembled together, and then the sealing plate 20 is reinserted into the insertion slot 21. Thus, a sealed storage environment is formed between the No. 1 frame 1 and the No. 2 frame 2. Then, the staff can push the No. 1 frame 1 and the No. 2 frame 2 to the storage location.
[0036] The above-disclosed embodiments are only a few specific examples of the present utility model. However, the embodiments of the present utility model are not limited thereto. Any changes that can be conceived by those skilled in the art should fall within the protection scope of the present utility model.
Claims
1. A honeycomb activated carbon storage rack, characterized in that: It includes a first frame (1) and two second frames (2) that are movably arranged in front of and behind the first frame (1). The first frame (1) and the second frame (2) are both equipped with a loading component for stacking honeycomb activated carbon. The first frame (1) and the second frame (2) are slidably connected by a traction rod (3). The bottom of the second frame (2) is symmetrically provided with walking wheels (5). The bottom of the first frame (1) is symmetrically provided with lifting columns (7), and the columns (7) are detachably connected to the first frame (1) by bolts. The lowest end of the columns (7) is flush with the bottom of the walking wheels (5). The first frame (1) is provided with sealing grooves (9) on both sides near the second frame (2). The second frame (2) is provided with fitting edges (10) that match the sealing grooves (9) on one side near the first frame (1). The other side of the second frame (2) is slidably provided with sealing plates (20) for sealing.
2. The honeycomb activated carbon placement rack according to claim 1, characterized in that, The bottom end of the second frame (2) near the first frame (1) is provided with a storage groove (4) for limiting and guiding the traction rod (3).
3. The honeycomb activated carbon placement rack according to claim 1, characterized in that, The bottom of the first frame (1) is symmetrically provided with lifting grooves (6) for limiting and guiding the uprights (7).
4. The honeycomb activated carbon placement rack according to claim 1, characterized in that, At least two sets of positioning grooves (8) for installing bolts are provided at the bottom of both ends of the No. 1 frame (1), and the positioning grooves (8) are distributed vertically along the axis of the column (7).
5. A honeycomb activated carbon placement rack according to claim 1, characterized in that, The top of the No. 1 frame (1) is equipped with an air duct (11).
6. A honeycomb activated carbon placement rack according to claim 1, characterized in that, The loading assembly includes several sets of equidistantly distributed placement plates (12) movably disposed inside the first frame (1) and the second frame (2), and several sets of ventilation holes (13) opened on the placement plates (12).
7. A honeycomb activated carbon placement rack according to claim 6, characterized in that, The bottom of the first frame (1) and the second frame (2) are movably provided with a support plate (14), and the support plate (14) is V-shaped. The width of the support plate (14) is greater than the width of the placement plate (12). The side walls of the first frame (1) and the second frame (2) are symmetrically provided with several sets of equidistant adjustment slots (15).
8. A honeycomb activated carbon placement rack according to claim 7, characterized in that, The two ends of the placement plate (12) and the receiving plate (14) are provided with sliding grooves (16), and the two ends of the placement plate (12) and the receiving plate (14) are provided with movable grooves (17) that communicate with the sliding grooves (16). The movable groove (17) is movably provided with a positioning pin (18) that matches the adjustment groove (15), and the outside of the positioning pin (18) is provided with a pull rod (19) that passes through the sliding groove (16).
9. A honeycomb activated carbon placement rack according to claim 1, characterized in that, The second frame (2) has an insertion groove (21) for installing the sealing plate (20) on one side, and a guide groove (22) for limiting and guiding the sealing plate (20) is provided on the inner wall of the second frame (2).
10. A honeycomb activated carbon storage rack according to claim 9, characterized in that, One end of the sealing plate (20) is provided with a barrier plate (23), and the barrier plate (23) is located outside the insertion groove (21).