Raw material crushing device for honeycomb activated carbon processing

By designing a small-sized raw material crushing device for honeycomb activated carbon processing, and using the rotation of the crushing box and the crushing knife to crush the raw materials, the existing device has solved the problems of complex structure, large volume and limited application scope, and achieved better crushing effect and a wider scope of application.

CN222918780UActive Publication Date: 2025-05-30TIANJIN SHANGSHUI ENVIRONMENTAL PROTECTION TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202421700929.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-18
Publication Date
2025-05-30
Estimated Expiration
2034-07-18

AI Technical Summary

Technical Problem

The existing raw material crushing device for honeycomb activated carbon processing has a complex structure, large size, strict usage site requirements, and limited scope of application.

Method used

A small-sized raw material crushing device for processing honeycomb activated carbon was designed, which used the rotation of the crushing box to drive the raw material to roll, and crush the raw material through a crushing knife on the periphery of the crushing shaft to achieve a better crushing effect.

Benefits of technology

It achieves a crushing effect with a simple structure, small size and wide application range. It does not require special requirements for the use site during use, and the crushing effect is better.

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Abstract

A raw material crushing device for honeycomb activated carbon processing comprises a crushing box, a feeding door and a discharging door, a feeding port is formed in the upper portion of the crushing box, two first sliding grooves are formed in the inner side of the feeding port and are symmetrically arranged, the feeding door is connected to the inner side of the feeding port and slides in the feeding port, first protrusions are arranged at the two ends of the feeding door and are symmetrically arranged, and the discharging door is connected with the feeding port. The structure is simple, the size is small, no special requirement is needed for a use site during use, the size of the site does not need to be too large, the application range is wide, the crushing box rotates to drive raw materials for honeycomb activated carbon processing in the crushing box to roll over, the crushing shaft rotates in the crushing box, and the crushing effect is good. The honeycomb activated carbon is crushed by the crushing cutters on the periphery of the crushing shaft while the raw materials for processing the honeycomb activated carbon roll, so that the crushing effect is better.
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Description

Technical Field

[0001] The utility model relates to the field of activated carbon processing, in particular to a raw material crushing device for honeycomb activated carbon processing. Background Art

[0002] The existing patent (Publication No.: CN 216499032 U) proposes a production and manufacturing device for a honeycomb activated carbon filter screen, which relates to the technical field of activated carbon filter screen production. It includes a crushing box and a crushing device. The bottom of the crushing box is communicated with a material leakage box. The side wall of the material leakage box is communicated with a connecting pipe. The end of the connecting pipe away from the material leakage box is communicated with a stirring box. A second sealing plate is slidably connected to the side wall of the stirring box at a position relative to the connecting pipe. The bottom end of the material leakage box is communicated with a discharge pipe. A blower is fixedly installed on the side wall of the material leakage box away from the connecting pipe. A crushing device is arranged inside the crushing box. The above device has a complex structure and a large volume, has requirements for the use site when in use, and the structure needs to be improved. Summary of the Invention

[0003] In view of the above deficiencies of the prior art, the utility model provides a raw material crushing device for honeycomb activated carbon processing, which has a smaller volume, does not require special requirements for the use site when in use, and does not require too large a site size, has a wide application range. The crushing box rotates self to drive the raw materials for honeycomb activated carbon processing inside the crushing box to roll. And the crushing shaft rotates inside the crushing box. While the raw materials for honeycomb activated carbon processing are rolling, the crushing knives outside the crushing shaft simultaneously crush the honeycomb activated carbon, and the crushing effect is better.

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

[0005] A raw material crushing device for honeycomb activated carbon processing includes a crushing box, a feed door, and a discharge door. The upper part of the crushing box has a feed port. There are two first chutes inside the feed port, and the first chutes are symmetrically arranged. The inside of the feed port is connected to the feed door, and the feed door slides inside the feed port. There are first protrusions at both ends of the feed door, and the first protrusions are symmetrically arranged. The first protrusions are adapted to the first chutes. The outside of the first protrusions is connected to the first chutes, and the first protrusions slide inside the first chutes. The bottom of the crushing box has a discharge port. The inside of the discharge port is connected to the discharge door, and the discharge door slides inside the discharge port. There are two second chutes inside the discharge port, and the second chutes are symmetrically arranged. There are second protrusions at both ends of the discharge door, and the second protrusions are symmetrically arranged. The second protrusions are adapted to the second chutes. The outside of the second protrusions is connected to the second chutes, and the second protrusions slide inside the second chutes.

[0006] The two ends of the crushing box of the present utility model are provided with auxiliary rotating shafts, which are symmetrically arranged. The two ends of the crushing box are provided with positioning connection holes, which are symmetrically arranged. The positioning connection holes are located directly below the auxiliary rotating shafts. One side of the crushing box is connected to a first fixed support frame. The upper part of the first fixed support frame is provided with a first gear. The inner side of the first gear is provided with a first auxiliary connection hole, which is adapted to the auxiliary rotating shaft. The inner side of the first auxiliary connection hole is connected to the auxiliary rotating shaft, and the auxiliary rotating shaft rotates in the first auxiliary connection hole.

[0007] The auxiliary rotating shaft of the present utility model passes through the first auxiliary connection hole and is connected to a third gear. The lower part of the first fixed support frame is provided with a motor fixing seat. The other side of the crushing box is connected to a second fixed support frame. The upper part of the second fixed support frame is provided with a fifth gear. The inner side of the fifth gear is provided with a second auxiliary connection hole, which is adapted to the auxiliary rotating shaft. The inner side of the second auxiliary connection hole is connected to the auxiliary rotating shaft, and the auxiliary rotating shaft rotates in the second auxiliary connection hole. The fifth gear corresponds to the first gear. The inner side of the crushing box is connected to a crushing shaft, and the crushing shaft rotates in the crushing box. Beneficial effects

[0008] The structure of the present utility model is simple and has a small volume. When in use, there are no special requirements for the use site, and the site size does not need to be too large, so it has a wide application range.

[0009] When the crushing box of the present utility model rotates, it drives the raw materials for honeycomb activated carbon processing inside the crushing box to tumble. While the raw materials for honeycomb activated carbon processing are tumbling, the crushing knives around the crushing shaft simultaneously crush the honeycomb activated carbon, and the crushing effect is better. Description of the drawings

[0010] Figure 1 It is a schematic structural diagram of a raw material crushing device for honeycomb activated carbon processing according to the present utility model.

[0011] Figure 2 It is a schematic structural diagram of the crushing box of a raw material crushing device for honeycomb activated carbon processing according to the present utility model.

[0012] Figure 3 It is a cross-sectional view of the crushing box of a raw material crushing device for honeycomb activated carbon processing according to the present utility model.

[0013] Figure 4 It is a schematic structural diagram of the first fixed support frame and the second fixed support frame of a raw material crushing device for honeycomb activated carbon processing according to the present utility model.

[0014] Figure 5 It is a schematic structural diagram of the crushing shaft of a raw material crushing device for honeycomb activated carbon processing according to the present utility model. Specific embodiments

[0015] The present utility model will be further described in detail below with reference to the accompanying drawings and embodiments:

[0016] Embodiment 1:

[0017] A raw material crushing device for processing honeycomb activated carbon, comprising a crushing box 01, a feeding door 07, and a discharging door 15. The upper part of the crushing box 01 has a feeding port 16. Inside the feeding port 16, there are two first chutes 08, which are symmetrically arranged. The inside of the feeding port 16 is connected to the feeding door 07. The feeding door 07 slides within the feeding port 16. Both ends of the feeding door 07 have first protrusions 20, which are symmetrically arranged. The first protrusions 20 are adapted to the first chutes 08. The outside of the first protrusions 20 is connected to the first chutes 08, and the first protrusions 20 slide within the first chutes 08. The bottom of the crushing box 01 has a discharging port 17. The inside of the discharging port 17 is connected to the discharging door 15. The discharging door 15 slides within the discharging port 17. Inside the discharging port 17, there are two second chutes 21, which are symmetrically arranged. Both ends of the discharging door 15 have second protrusions 22, which are symmetrically arranged. The second protrusions 22 are adapted to the second chutes 21. The outside of the second protrusions 22 is connected to the second chutes 21, and the second protrusions 22 slide within the second chutes 21.

[0018] Embodiment 2:

[0019] Both ends of the crushing box 01 of the present utility model have auxiliary rotating shafts 14, which are symmetrically arranged. Both ends of the crushing box 01 have positioning connection holes 19, which are symmetrically arranged. The positioning connection holes 19 are located directly below the auxiliary rotating shafts 14. One side of the crushing box 01 is connected to a first fixed support frame 02. The upper part of the first fixed support frame 02 has a first gear 06. Inside the first gear 06, there is a first auxiliary connection hole 23, which is adapted to the auxiliary rotating shaft 14. The inside of the first auxiliary connection hole 23 is connected to the auxiliary rotating shaft 14, and the auxiliary rotating shaft 14 rotates within the first auxiliary connection hole 23.

[0020] Embodiment 3:

[0021] The auxiliary rotating shaft 14 of the present utility model passes through the first auxiliary connection hole 23 and is connected to a third gear 10. The lower part of the first fixed support frame 02 has a motor fixing seat 12. The other side of the crushing box 01 is connected to a second fixed support frame 03. The upper part of the second fixed support frame 03 has a fifth gear 18. Inside the fifth gear 18, there is a second auxiliary connection hole 24, which is adapted to the auxiliary rotating shaft 14. The inside of the second auxiliary connection hole 24 is connected to the auxiliary rotating shaft 14, and the auxiliary rotating shaft 14 rotates within the second auxiliary connection hole 24. The fifth gear 18 corresponds to the first gear 06. The inside of the crushing box 01 is connected to a crushing shaft 04, and the crushing shaft 04 rotates within the crushing box 01.

[0022] Embodiment 4:

[0023] The periphery of the crushing shaft 04 of the present utility model is provided with a plurality of crushing knives 13, which are evenly distributed around the crushing shaft 04. Both ends of the crushing shaft 04 are connected with positioning connection holes 19, and the crushing shaft 04 is adapted to the positioning connection holes 19. The crushing shaft 04 rotates within the positioning connection holes 19. Both ends of the crushing shaft 04 pass through the positioning connection holes 19 and are connected to the second gears 09. The second gears 09 are symmetrically arranged. The outside of the first gear 06 is connected to the second gears 09, and the first gear 06 meshes with the second gears 09. The outside of the third gear 10 is connected to the fourth gear 11 through a hinge, and the inside of the fourth gear 11 is connected to the motor shaft of the motor 05. The bottom of the motor 05 is connected to the motor fixing seat 12. While rotating, the crushing box 01 drives the raw materials for honeycomb activated carbon processing inside the crushing box 01 to roll. While the raw materials for honeycomb activated carbon processing are rolling, the crushing knives 13 around the crushing shaft 04 simultaneously crush the honeycomb activated carbon, with better crushing effect, simple structure, small volume, no special requirements for the use site during use, and the site size does not need to be too large, and it has a wide range of applications.

[0024] Example 5:

[0025] Installation steps: When in use, open the feed door 07, pour the raw materials for honeycomb activated carbon processing into the crushing box 01, then close the feed door 07, turn on the motor 05, and the motor 05 starts to work. The motor 05 drives the fourth gear 11 to rotate. The fourth gear 11 drives the third gear 10 to rotate through a hinge. When the third gear 10 rotates, it drives the auxiliary rotating shaft 14 to rotate together. When the auxiliary rotating shaft 14 rotates, the crushing box 01 rotates simultaneously. When the crushing box 01 rotates, it drives the second gear 09 to rotate around the first gear 06. While the second gear 09 rotates, it drives the crushing shaft 04 to rotate inside the crushing box 01. The crushing knives 13 around the crushing shaft 04 crush the raw materials for honeycomb activated carbon processing inside the crushing box 01. It has a simple structure, small volume, no special requirements for the use site during use, and the site size does not need to be too large, and it has a wide range of applications. While the crushing box 01 rotates, it drives the raw materials for honeycomb activated carbon processing inside the crushing box 01 to roll. While the raw materials for honeycomb activated carbon processing are rolling, the crushing knives 13 around the crushing shaft 04 simultaneously crush the honeycomb activated carbon, with better crushing effect.

[0026] The above are only the preferred embodiments of the present utility model and are not used to limit the present utility model. It should be noted that for those of ordinary skill in the art in this technical field, without departing from the technical principle of the present utility model, several improvements and modifications can still be made, and these improvements and modifications should also be regarded as the protection scope of the present utility model.

Claims

1. A raw material crushing device for processing honeycomb activated carbon, characterized in that The crushing box (01) comprises a crushing box (01), a feed door (07), and a discharge door (15). The crushing box (01) has a feed port (16) on the upper part. The feed port (16) has two No. 1 slide grooves (08) on the inner side. The No. 1 slide grooves (08) are symmetrically arranged. The inner side of the feed port (16) is connected to the feed door (07). The feed door (07) slides in the feed port (16). Both ends of the feed door (07) have No. 1 protrusions. (20), the first protrusion (20) is symmetrically arranged, the first protrusion (20) is adapted to the first slide groove (08), the outer side of the first protrusion (20) is connected to the first slide groove (08), the first protrusion (20) slides in the first slide groove (08), the bottom of the crushing box (01) has a discharge port (17), the inner side of the discharge port (17) is connected to the discharge door (15), and the discharge door (15) slides in the discharge port (17). The discharge port (17) has two No. 2 slide grooves (21) on the inner side, and the No. 2 slide grooves (21) are symmetrically arranged. The discharge door (15) has No. 2 protrusions (22) at both ends, and the No. 2 protrusions (22) are symmetrically arranged. The No. 2 protrusions (22) are adapted to the No. 2 slide grooves (21). The No. 2 protrusions (22) are connected to the No. 2 slide grooves (21) on the outer side, and the No. 2 protrusions (22) slide in the No. 2 slide grooves (21). The crushing box (01) has auxiliary shafts (14) at both ends, and the auxiliary shafts (14) are symmetrically arranged. The crushing box (01) has positioning connection holes (19) at both ends, and the positioning connection holes (19) are symmetrically arranged. The positioning connection holes (19) are located directly below the auxiliary shaft (14). One side of the crushing box (01) is connected to a No. 1 fixed support frame (02), and the No. 1 fixed support frame (02) has a No. 1 gear (06) on the upper part.

2. A raw material crushing device for processing honeycomb activated carbon according to claim 1, characterized in that The first gear (06) has a first auxiliary connecting hole (23) on its inner side, the first auxiliary connecting hole (23) is adapted to the auxiliary rotating shaft (14), the inner side of the first auxiliary connecting hole (23) is connected to the auxiliary rotating shaft (14), and the auxiliary rotating shaft (14) rotates in the first auxiliary connecting hole (23).

3. A raw material crushing device for processing honeycomb activated carbon according to claim 2, characterized in that The auxiliary rotating shaft (14) passes through the No. 1 auxiliary connecting hole (23) and is connected to the No. 3 gear (10). The No. 1 fixed support frame (02) has a motor fixing seat (12) at the bottom. The other side of the crushing box (01) is connected to the No. 2 fixed support frame (03). The No. 2 fixed support frame (03) has a No. 5 gear (18) at the top. The No. 5 gear (18) has a No. 2 auxiliary connecting hole (24) inside. The No. 2 auxiliary connecting hole (24) is adapted to the auxiliary rotating shaft (14). The No. 2 auxiliary connecting hole (24) is connected to the auxiliary rotating shaft (14). The auxiliary rotating shaft (14) rotates in the No. 2 auxiliary connecting hole (24). The No. 5 gear (18) corresponds to the No. 1 gear (06). The crushing box (01) is connected to the crushing shaft (04) inside. The crushing shaft (04) rotates in the crushing box (01).

4. A raw material crushing device for processing honeycomb activated carbon according to claim 3, characterized in that The outer periphery of the crushing shaft (04) is provided with a plurality of crushing knives (13), and the crushing knives (13) are evenly distributed on the outer periphery of the crushing shaft (04). The two ends of the crushing shaft (04) are connected to the positioning connection holes (19), and the crushing shaft (04) is adapted to the positioning connection holes (19). The crushing shaft (04) rotates in the positioning connection holes (19). The two ends of the crushing shaft (04) pass through the positioning connection holes (19) to connect to the second gear (09), and the second gear (09) is symmetrically arranged. The outer side of the first gear (06) is connected to the second gear (09), and the first gear (06) is meshed with the second gear (09). The outer side of the third gear (10) is connected to the fourth gear (11) through a hinge, and the inner side of the fourth gear (11) is connected to the motor shaft of the motor (05), and the bottom of the motor (05) is connected to the motor fixing seat (12).

Citation Information

Patent Citations

  • Honeycomb-shaped activated carbon filter screen production and manufacturing equipment

    CN216499032U