Columnar activated carbon cutting and forming device

By using double-barrel shaping and compression plates to compact the carbon powder in the columnar activated carbon cutting and forming device, the problems of unevenness and poor stability of the columnar activated carbon product in the prior art are solved, and the order and stability of the finished product are achieved.

CN222920859UActive Publication Date: 2025-05-30TIANJIN SHANGSHUI ENVIRONMENTAL PROTECTION TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202421554372.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-03
Publication Date
2025-05-30
Estimated Expiration
2034-07-03

AI Technical Summary

Technical Problem

The existing columnar activated carbon is formed by natural fracture, resulting in uneven lengths of finished products, uneven cross-sections, loose structure, many internal pores, and poor stability.

Method used

A columnar activated carbon cutting and forming device is adopted that works simultaneously with two compression plates. The compression plate slides up and down in the forming drum to compact the carbon powder, with a tight structure and few internal pores, ensuring the stability of the finished product.

Benefits of technology

The cutting sections and uniform lengths of columnar activated carbon products are achieved, which improves the stability and working efficiency of the finished products, saving time and effort.

✦ Generated by Eureka AI based on patent content.

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Abstract

A columnar activated carbon cutting and forming device comprises a box, a compression mechanism, a positioning and forming plate and a cutting mechanism, two feeding barrels are symmetrically arranged on the outer side of the box, the compression mechanism is connected to the inner side of the box, an auxiliary vertical plate is arranged on the inner side of the box, the compression mechanism is connected to the lower portion of the auxiliary vertical plate, and the positioning and forming plate is connected to the lower portion of the compression mechanism. The outer side of the positioning forming plate is connected with the box body, the lower portion of the positioning forming plate is connected with the cutting mechanism, carbon powder is extruded by the compression plates, the structure is compact, internal air holes are few, the stability of finished products is improved, double-barrel shaping and the two compression plates work at the same time, double-hole discharging is achieved, the working efficiency is improved, and time and labor are saved. The problems that existing columnar activated carbon is formed by means of natural fracture, and a columnar activated carbon finished product is neat in cutting section and consistent in length are solved.
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Description

Technical Field

[0001] The utility model relates to the technical field of activated carbon production, in particular to a columnar activated carbon cutting and forming device. Background Art

[0002] The existing patent (publication number: CN100548606C) proposes a columnar activated carbon cutting and forming device, which solves the problems that the existing columnar activated carbon is formed by natural fracture, resulting in uneven length and uneven cross-section of the finished product; and the cross-section strength is relatively low. The device includes a bushing, a disc and a rotating shaft passing through the bushing. The rotating shaft is installed in the bushing through a rolling bearing. A tool rest sleeve is movably sleeved on the upper end of the rotating shaft. Tool rests are respectively fixed on both sides of the tool rest sleeve. Blades are horizontally fixed on the tool rests. The tool rest sleeve and the rotating shaft are connected by a key. When the columnar activated carbon is formed by the above device, it is not extruded, the structure is loose and there are many pores inside, and the structure needs to be improved. Summary of the Invention

[0003] In view of the above deficiencies in the prior art, the utility model provides a columnar activated carbon cutting and forming device in which carbon powder is extruded by a compression plate, the structure is compact, there are fewer pores inside, the stability of the finished product is improved, double-barrel shaping and two compression plates work simultaneously, and double-hole discharging is carried out, improving the working efficiency, saving time and effort, and solving the problems that the existing columnar activated carbon is formed by natural fracture, the cutting cross-section of the columnar activated carbon finished product is neat and the length is consistent.

[0004] The purpose of the utility model is achieved through the following technical solutions:

[0005] A columnar activated carbon cutting and forming device includes a box body, a compression mechanism, a positioning and forming plate, and a cutting mechanism. There are two feeding barrels on the outer side of the box body, which are symmetrically arranged. The inner side of the box body is connected with the compression mechanism. There is an auxiliary vertical plate inside the box body, and the lower part of the auxiliary vertical plate is connected with the compression mechanism. The lower part of the compression mechanism is connected with the positioning and forming plate. The outer side of the positioning and forming plate is connected with the box body. The lower part of the positioning and forming plate is connected with the cutting mechanism. The lower part of the box body is connected with a collection barrel, and the collection barrel slides inside the box body. The compression mechanism includes an auxiliary roller shaft, a fixed connecting plate and a fixed connecting frame. Two fixed connecting frames are connected to the outer side of the auxiliary roller shaft, which are symmetrically arranged. The fixed connecting frames swing on the auxiliary roller shaft. One end of the auxiliary roller shaft is connected with the auxiliary vertical plate, and the auxiliary roller shaft rotates inside the auxiliary vertical plate. The other end of the auxiliary roller shaft is connected with the box body, and the auxiliary roller shaft rotates inside the box body. Two fixed connecting plates are connected to the outer side of the fixed connecting frame, which are symmetrically arranged.

[0006] On the outer side of the fixed connection plate of the present utility model, there are positioning columns. An auxiliary swing plate is connected to the outer side of the positioning columns. The auxiliary swing plate swings on the positioning columns. At the lower part of the adjusting rotating shaft, there is a first connecting ear. The upper part of the auxiliary swing plate is connected to the first connecting ear through the rotating shaft. The auxiliary swing plate rotates on the rotating shaft. The top of the adjusting rotating shaft passes through the box body and is connected to the motor shaft of the first motor. The fixed seat of the first motor is connected to the box body.

[0007] At both ends of the fixed connection frame of the present utility model, it is connected to the auxiliary connection frame through a rotating shaft. The auxiliary connection frame rotates on the rotating shaft. At the upper part of the compression plate, there is a second connecting ear. The lower part of the auxiliary connection frame is connected to the second connecting ear through the rotating shaft. The auxiliary connection frame rotates on the rotating shaft. The outer side of the compression plate is connected to a plastic sleeve. The outer side of the plastic sleeve is connected to the positioning and forming plate.

[0008] On the upper part of the positioning and forming plate of the present utility model, there are two forming barrels. The forming barrels are symmetrically arranged. The inner side of the forming barrels is connected to the compression plate. The compression plate slides inside the forming barrels. The outer side of the plastic sleeve is connected to the forming barrels. The plastic sleeve slides inside the forming barrels. At the bottom of the forming barrels, there are discharge holes. On the outer side of the forming barrels, there are feed ports. The outer side of the feed ports is connected to the box body. The feed ports correspond to the discharge ports of the feed barrels. On the upper part of the positioning and forming plate, there is a fixed bracket. The lower part of the fixed bracket is connected to a cutting mechanism. The cutting mechanism includes a second motor, a cutting tool connecting disk, and cutting tools. The lower fixed seat of the second motor is connected to the fixed bracket. The motor shaft of the second motor passes through the fixed bracket and is connected to the cutting tool connecting disk. There are multiple cutting tools on the outer side of the cutting tool connecting disk. The cutting tools are evenly distributed on the outer side of the cutting tool connecting disk. The upper part of the cutting tools is connected to the positioning and forming plate. The cutting tools slide at the bottom end of the positioning and forming plate. Beneficial effects

[0009] In the present utility model, the compression plate slides up and down inside the forming barrels to compact the carbon powder inside the forming barrels. After being extruded by the compression plate, the carbon powder has a compact structure and fewer internal pores, improving the stability of the finished product.

[0010] On the upper part of the positioning and forming plate of the present utility model, there are two forming barrels. Double-barrel shaping and two compression plates work simultaneously, with double-hole discharging, improving work efficiency and saving time and effort.

[0011] The present utility model solves the problem that the existing columnar activated carbon is formed by relying on natural fracture, and the cutting section of the finished columnar activated carbon is neat and the length is consistent. Description of the drawings

[0012] Figure 1 It is a schematic structural diagram of a columnar activated carbon cutting and forming device described in the present utility model.

[0013] Figure 2 It is a schematic structural diagram of a compression mechanism of a columnar activated carbon cutting and forming device described in the present utility model.

[0014] Figure 3Schematic diagram of the combined structure of the first motor, adjusting rotating shaft, and auxiliary swing plate of a columnar activated carbon cutting and forming device according to the present utility model.

[0015] Figure 4 Schematic diagram of the combined structure of the auxiliary roller shaft, fixed connection plate, and fixed connection frame of a columnar activated carbon cutting and forming device according to the present utility model.

[0016] Figure 5 Schematic diagram of the structure of the fixed connection plate 23 of a columnar activated carbon cutting and forming device according to the present utility model.

[0017] Figure 6 Schematic diagram of the combined structure of the auxiliary roller shaft and fixed connection frame of a columnar activated carbon cutting and forming device according to the present utility model.

[0018] Figure 7 Schematic diagram of the combined structure of the auxiliary connection frame and compression plate of a columnar activated carbon cutting and forming device according to the present utility model.

[0019] Figure 8 Schematic diagram of the structure of the positioning and forming plate of a columnar activated carbon cutting and forming device according to the present utility model.

[0020] Figure 9 Bottom view of the structure of the positioning and forming plate of a columnar activated carbon cutting and forming device according to the present utility model.

[0021] Figure 10 Schematic diagram of the structure of the cutting mechanism of a columnar activated carbon cutting and forming device according to the present utility model. Detailed implementation method

[0022] The following further elaborates on the present utility model based on the accompanying drawings and embodiments:

[0023] Embodiment 1:

[0024] A columnar activated carbon cutting and forming device, comprising a box body 01, a compression mechanism 02, a positioning and forming plate 03, and a cutting mechanism 04. There are two feeding barrels 05 on the outer side of the box body 01, and the feeding barrels 05 are symmetrically arranged. The inner side of the box body 01 is connected to the compression mechanism 02. There is an auxiliary vertical plate 07 inside the box body 01, and the lower part of the auxiliary vertical plate 07 is connected to the compression mechanism 02. The lower part of the compression mechanism 02 is connected to the positioning and forming plate 03. The outer side of the positioning and forming plate 03 is connected to the box body 01. The lower part of the positioning and forming plate 03 is connected to the cutting mechanism 04. The lower part of the box body 01 is connected to a collection barrel 10, and the collection barrel 10 slides inside the box body 01. The compression mechanism 02 includes an auxiliary roller shaft 08, a fixed connection plate 23, and a fixed connection frame 24. Two fixed connection frames 24 are connected to the outer side of the auxiliary roller shaft 08, and the fixed connection frames 24 are symmetrically arranged. The fixed connection frames 24 swing on the auxiliary roller shaft 08. One end of the auxiliary roller shaft 08 is connected to the auxiliary vertical plate 07, and the auxiliary roller shaft 08 rotates inside the auxiliary vertical plate 07. The other end of the auxiliary roller shaft 08 is connected to the box body 01, and the auxiliary roller shaft 08 rotates inside the box body 01. Two fixed connection plates 23 are connected to the outer side of the fixed connection frame 24, and the fixed connection plates 23 are symmetrically arranged.

[0025] Embodiment 2:

[0026] On the outer side of the fixed connection plate 23 of the present utility model, there is a positioning column 29. An auxiliary swing plate 22 is connected to the outer side of the positioning column 29. The auxiliary swing plate 22 swings on the positioning column 29. There is a first connection ear 27 at the lower part of the adjusting rotating shaft 21. The upper part of the auxiliary swing plate 22 is connected to the first connection ear 27 through a rotating shaft. The auxiliary swing plate 22 rotates on the rotating shaft. The top of the adjusting rotating shaft 21 passes through the box body 01 and is connected to the motor shaft of a first motor 20. The fixed seat of the first motor 20 is connected to the box body 01.

[0027] Embodiment 3:

[0028] Both ends of the fixed connection frame 24 of the present utility model are connected to an auxiliary connection frame 25 through a rotating shaft. The auxiliary connection frame 25 rotates on the rotating shaft. There is a second connection ear 28 on the upper part of the compression plate 26. The lower part of the auxiliary connection frame 25 is connected to the second connection ear 28 through a rotating shaft. The auxiliary connection frame 25 rotates on the rotating shaft. A plastic sleeve 09 is connected to the outer side of the compression plate 26. The plastic sleeve 09 is connected to the positioning and forming plate 03 on the outer side.

[0029] Embodiment 4:

[0030] The upper part of the positioning and forming plate 03 of the present utility model has two forming barrels 31, which are symmetrically arranged. The inner side of the forming barrel 31 is connected to a compression plate 26, and the compression plate 26 slides within the forming barrel 31. The outer side of the plastic sleeve 09 is connected to the forming barrel 31, and the plastic sleeve 09 slides within the forming barrel 31. The bottom of the forming barrel 31 has a discharge hole 34, and the outer side of the forming barrel 31 has a feed inlet 32. The outer side of the feed inlet 32 is connected to the box body 01, and the feed inlet 32 corresponds to the discharge port of the feed barrel 05. The upper part of the positioning and forming plate 03 has a fixed bracket 33, and the lower part of the fixed bracket 33 is connected to a cutting mechanism 04. The cutting mechanism 04 includes a second motor 40, a cutting tool connection disk 41, and a cutting tool 42. The lower fixed seat of the second motor 40 is connected to the fixed bracket 33, the motor shaft of the second motor 40 passes through the fixed bracket 33 and is connected to the cutting tool connection disk 41. The outer side of the cutting tool connection disk 41 has a plurality of cutting tools 42, which are evenly distributed on the outer side of the cutting tool connection disk 41. The upper part of the cutting tool 42 is connected to the positioning and forming plate 03, and the cutting tool 42 slides at the bottom end of the positioning and forming plate 03. After the carbon powder is extruded by the compression plate 26, its structure is compact and there are fewer internal pores, improving the stability of the finished product. Double-barrel shaping and two compression plates 26 work simultaneously, with double-hole discharging, improving work efficiency, saving time and effort, and solving the problem that the existing columnar activated carbon is formed by natural fracture, and the cutting section of the columnar activated carbon finished product is neat and the length is consistent.

[0031] Example 5:

[0032] Installation steps: When in use, the carbon powder enters the forming barrel 31 along the feed barrel 05, and then the first motor 20 starts to work. The motor shaft of the first motor 20 drives the adjusting rotating shaft 21 to rotate. During the rotation of the adjusting rotating shaft 21, it drives the auxiliary swing plate 22 to swing back and forth. While the auxiliary swing plate 22 is swinging, the fixed connection frame 24 simultaneously swings up and down with the auxiliary roller shaft 08 as the axis, and drives the compression plate 26 to slide up and down within the forming barrel 31 to compact the carbon powder in the forming barrel 31. After the carbon powder is extruded by the compression plate 26, its structure is compact and there are fewer internal pores, improving the stability of the finished product. Double-barrel shaping and two compression plates 26 work simultaneously, with double-hole discharging, improving work efficiency, saving time and effort. At the same time, the compacted carbon powder is extruded in a columnar shape along the discharge hole 34 at the bottom of the forming barrel 31, and then the second motor 40 starts to work to drive the cutting tool connection disk 41 and the cutting tool 42 to rotate together, and the cutting tool 42 cuts the columnar activated carbon extruded from the discharge hole 34, solving the problem that the existing columnar activated carbon is formed by natural fracture, and the cutting section of the columnar activated carbon finished product is neat and the length is consistent.

[0033] The above are only the preferred embodiments of the present utility model and are not intended to limit the present utility model. It should be noted that for those of ordinary skill in the art, without departing from the technical principle of the present utility model, several improvements and modifications can be made, and these improvements and modifications should also be regarded as the protection scope of the present utility model.

Claims

1. A columnar activated carbon cutting and molding device, characterized in that : comprising a box body (01), a compression mechanism (02), a positioning and forming plate (03), and a cutting mechanism (04); the box body (01) is provided with two feeding barrels (05) on the outside, the feeding barrels (05) are symmetrically arranged, the inside of the box body (01) is connected to the compression mechanism (02), the inside of the box body (01) is provided with an auxiliary vertical plate (07), the lower part of the auxiliary vertical plate (07) is connected to the compression mechanism (02), the lower part of the compression mechanism (02) is connected to the positioning and forming plate (03), the outer side of the positioning and forming plate (03) is connected to the box body (01), the lower part of the positioning and forming plate (03) is connected to the cutting mechanism (04), the lower part of the box body (01) is connected to the collecting barrel (10), and the collecting barrel (10) is connected to the box body (01). 1) internal sliding, the compression mechanism (02) comprises an auxiliary roller shaft (08), a fixed connection plate (23), and a fixed connection frame (24), the outer side of the auxiliary roller shaft (08) is connected to two fixed connection frames (24), the fixed connection frames (24) are symmetrically arranged, the fixed connection frame (24) swings on the auxiliary roller shaft (08), one end of the auxiliary roller shaft (08) is connected to the auxiliary vertical plate (07), the auxiliary roller shaft (08) rotates in the auxiliary vertical plate (07), the other end of the auxiliary roller shaft (08) is connected to the box body (01), the auxiliary roller shaft (08) rotates in the box body (01), the outer side of the fixed connection frame (24) is connected to two fixed connection plates (23), and the fixed connection plates (23) are symmetrically arranged.

2. A columnar activated carbon cutting and forming device according to claim 1, characterized in that The fixed connecting plate (23) has a positioning column (29) on the outside, the positioning column (29) is connected to the auxiliary swing plate (22) on the outside, the auxiliary swing plate (22) swings on the positioning column (29), the lower part of the adjusting shaft (21) has a No. 1 connecting ear (27), the upper part of the auxiliary swing plate (22) is connected to the No. 1 connecting ear (27) through the shaft, the auxiliary swing plate (22) rotates on the shaft, the top of the adjusting shaft (21) passes through the box (01) and is connected to the motor shaft of the No. 1 motor (20), and the fixing seat of the No. 1 motor (20) is connected to the box (01).

3. A columnar activated carbon cutting and forming device according to claim 2, characterized in that The two ends of the fixed connection frame (24) are connected to the auxiliary connection frame (25) via a rotating shaft, the auxiliary connection frame (25) rotates on the rotating shaft, the upper part of the compression plate (26) has a second connection ear (28), the lower part of the auxiliary connection frame (25) is connected to the second connection ear (28) via a rotating shaft, the auxiliary connection frame (25) rotates on the rotating shaft, the outer side of the compression plate (26) is connected to the plastic sleeve (09), and the outer side of the plastic sleeve (09) is connected to the positioning molding plate (03).

4. A columnar activated carbon cutting and forming device according to claim 3, characterized in that The positioning molding plate (03) has two molding barrels (31) on the upper part, the molding barrels (31) are symmetrically arranged, the inner side of the molding barrel (31) is connected to the compression plate (26), the compression plate (26) slides in the molding barrel (31), the outer side of the plastic sleeve (09) is connected to the molding barrel (31), the plastic sleeve (09) slides in the molding barrel (31), the bottom of the molding barrel (31) has a discharge hole (34), the outer side of the molding barrel (31) has a feed port (32), the outer side of the feed port (32) is connected to the box body (01), the feed port (32) corresponds to the discharge port of the feed barrel (05), the upper part of the positioning molding plate (03) has a fixed bracket (34) 3), the lower part of the fixed bracket (33) is connected to the cutting mechanism (04), the cutting mechanism (04) comprises a No. 2 motor (40), a cutting knife connecting plate (41), and a cutting knife (42), the lower fixed seat of the No. 2 motor (40) is connected to the fixed bracket (33), the motor shaft of the No. 2 motor (40) passes through the fixed bracket (33) and is connected to the cutting knife connecting plate (41), a plurality of cutting knives (42) are arranged on the outer side of the cutting knife connecting plate (41), the cutting knives (42) are evenly distributed on the outer side of the cutting knife connecting plate (41), the upper part of the cutting knife (42) is connected to the positioning forming plate (03), and the cutting knife (42) slides on the bottom end of the positioning forming plate (03).

Citation Information

Patent Citations

  • Column shape active carbon cutting shaper

    CN100548606C