CN215611899U - Multistage crushing type crusher for preparing carbon - Google Patents

Multistage crushing type crusher for preparing carbon Download PDF

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Publication number
CN215611899U
CN215611899U CN202121586030.7U CN202121586030U CN215611899U CN 215611899 U CN215611899 U CN 215611899U CN 202121586030 U CN202121586030 U CN 202121586030U CN 215611899 U CN215611899 U CN 215611899U
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groove
crushing
main body
sliding
close
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CN202121586030.7U
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Chinese (zh)
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吴霄
吴志平
肖东辉
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Hunan Zhensheng Carbon Industrial Co ltd
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Hunan Zhensheng Carbon Industrial Co ltd
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Abstract

The utility model discloses a multistage crushing type crusher for preparing carbon, which comprises a main body and a discharge chute, wherein the top of the main body is connected with a feed hopper, a primary crushing chute is formed in the main body, a first driving mechanism is arranged on the side surface of the main body, a crushing roller is connected between the main body close to the primary crushing chute and the first driving mechanism, and a secondary crushing chute is formed in the main body close to the primary crushing chute. This prepare multistage broken formula breaker of carbon element, it can drive the crushing dish and rotate to be provided with second actuating mechanism during operation, can smash carbon element when crushing dish rotates, can drop the bottom in second grade crushing groove after the carbon element is smashed, can drive the push plate when crushing dish pivoted and rotate, can drive the brush when the push plate rotates and rotate, can promote carbon element when push plate and brush pivoted, can drop when carbon element propelling movement arrives the blown down tank inside and collect the incasement, make things convenient for carbon element to arrange the material fast after smashing.

Description

Multistage crushing type crusher for preparing carbon
Technical Field
The utility model relates to the technical field of carbon preparation equipment, in particular to a multistage crushing type crusher for preparing carbon.
Background
Carbon and graphite materials are non-metallic solid materials based on elemental carbon, wherein the carbon material consists essentially of non-graphitic carbon and the graphite material consists essentially of graphitic carbon. Not only graphite but also carbon-containing materials including diamond, fullerene and carbene are called carbon materials. The carbon needs to be crushed in the preparation process, and the carbon needs to be crushed by a multi-stage crushing crusher in the crushing process.
The multistage crushing crusher for preparing carbon in the market at present has many defects, the carbon is inconvenient to collect, and the carbon is inconvenient to discharge, so that the technology for improving the structure of the multistage crushing crusher for preparing carbon is urgently needed in the market to perfect the equipment.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide a multistage crushing crusher for preparing carbon, which aims to solve the problems that the multistage crushing crusher for preparing carbon in the market at present has many defects, carbon is inconvenient to collect, and carbon is inconvenient to discharge.
In order to achieve the purpose, the utility model provides the following technical scheme: a multistage crushing crusher for preparing carbon comprises a main body and a discharge chute, wherein the top of the main body is connected with a feed hopper,
a primary crushing groove is formed in the main body, a first driving mechanism is installed on the side face of the main body, a crushing roller is connected between the main body close to the primary crushing groove and the first driving mechanism, a secondary crushing groove is formed in the main body close to the primary crushing groove, a second driving mechanism is installed at the bottom of the main body, a crushing disc is connected between the main body close to the secondary crushing groove and the second driving mechanism, the bottom of the crushing disc is connected with a push plate, a hairbrush is connected to the side face of the push plate, a placement groove is formed in the bottom of the main body, and a guide groove is formed in the placement groove;
the sliding groove has been seted up to the standing groove both sides, the spread groove has been seted up to the inside spread groove, the extrusion groove has been seted up to the spread groove side, the inside through connection of spread groove has the block pole, is close to the extrusion groove the block pole side is connected with the stripper plate, be connected with the spring between stripper plate and the extrusion groove, the inside gomphosis of standing groove has the collecting box, is close to the guide way the collecting box bottom is connected with the pulley, is close to the slide groove the collecting box side is connected with the sliding block, is close to the block pole the block groove has been seted up to the side of sliding block, is close to the push plate the discharge chute is seted up in the bottom of main part.
Preferably, four groups of pushing plates and four groups of brushes are arranged on the side surface of the crushing disc in an annular array mode.
Preferably, the guide grooves are arranged in two groups relative to the center of the placing groove, and the guide grooves are in sliding connection with the pulleys.
Preferably, the sliding groove and the sliding block are provided with two groups about the center of the placing groove, and the sliding groove and the sliding block are in sliding connection.
Preferably, the extrusion groove is in sliding connection with the extrusion plate, and the extrusion groove and the extrusion plate form a telescopic structure through a spring.
Preferably, an engaging structure is formed between the engaging rod and the engaging groove, and the engaging rod and the connecting groove are in sliding connection.
Compared with the prior art, the utility model has the beneficial effects that: the multistage crushing crusher for preparing carbon comprises:
1. the pulley is arranged and can be used for pushing the collecting box and the guide groove to be in butt joint sliding, so that the collecting box can drive the sliding block and the sliding groove to be in butt joint sliding when the pulley slides into the guide groove, the sliding block can extrude an inclined plane of the clamping rod when the sliding block slides to the end part of the sliding groove, the clamping rod can slide through the connecting groove when being extruded, the clamping rod can drive the extrusion plate to extrude the spring while sliding, the sliding block can drive the clamping groove to move to the bottom of the clamping rod when the clamping rod is extruded into the connecting groove, the clamping rod can reset through the self elasticity of the spring, the collecting box can be fixed after the clamping rod resets, and the crushed carbon can be conveniently collected;
2. be provided with second actuating mechanism during operation and can drive the crushing dish and rotate, can smash carbon element when crushing dish rotates, can drop the bottom in second grade crushing groove after carbon element is smashed, can drive the kickboard when crushing dish pivoted and rotate, can drive the brush when the kickboard rotates, can promote carbon element when kickboard and brush pivoted, can drop when carbon element propelling movement arrives the blown down tank inside and collect the incasement, make things convenient for carbon element to carry out quick row material after smashing.
Drawings
FIG. 1 is a schematic cross-sectional front view of the present invention;
FIG. 2 is a schematic top view of the cross-sectional structure of the present invention;
FIG. 3 is a schematic side view of the cross-sectional structure of the present invention;
FIG. 4 is an enlarged view of part A of the present invention.
In the figure: 1. a main body; 2. a feed hopper; 3. a primary crushing tank; 4. a first drive mechanism; 5. a crushing roller; 6. a secondary crushing tank; 7. a second drive mechanism; 8. a crushing disc; 9. a push plate; 10. a brush; 11. a placement groove; 12. a guide groove; 13. a sliding groove; 14. connecting grooves; 15. extruding a groove; 16. a clamping rod; 17. a pressing plate; 18. a spring; 19. a collection box; 20. a pulley; 21. a slider; 22. a clamping groove; 23. a discharge chute.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
Referring to fig. 1-4, the present invention provides a technical solution: a multistage crushing crusher for preparing carbon comprises a main body 1, a feed hopper 2, a primary crushing groove 3, a first driving mechanism 4, a crushing roller 5, a secondary crushing groove 6, a second driving mechanism 7, a crushing disc 8, a pushing plate 9, a brush 10, a placing groove 11, a guide groove 12, a sliding groove 13, a connecting groove 14, an extrusion groove 15, a clamping rod 16, an extrusion plate 17, a spring 18, a collecting box 19, a pulley 20, a sliding block 21, a clamping groove 22 and a discharge groove 23, wherein the top of the main body 1 is connected with the feed hopper 2,
the one-level crushing groove 3 is formed in the main body 1, the first driving mechanism 4 is installed on the side face of the main body 1, the crushing roller 5 is connected between the main body 1 and the first driving mechanism 4 close to the one-level crushing groove 3, the second-level crushing groove 6 is formed in the main body 1 close to the one-level crushing groove 3, the second driving mechanism 7 is installed at the bottom of the main body 1, the crushing disc 8 is connected between the main body 1 and the second driving mechanism 7 close to the second-level crushing groove 6, the push plate 9 is connected to the bottom of the crushing disc 8, four groups of the push plates 9 and the brushes 10 are arranged on the side face of the crushing disc 8 in an annular array mode, the push plates 9 can be driven to rotate when the crushing disc 8 rotates, the brushes 10 can be driven to rotate when the push plates 9 rotate, and the carbon can be pushed when the push plates 9 and the brushes 10 rotate, the side surface of the pushing plate 9 is connected with a brush 10, the bottom of the main body 1 is provided with a placing groove 11, guide grooves 12 are formed in the placing groove 11, two groups of guide grooves 12 are arranged in the center of the placing groove 11, the guide grooves 12 are in sliding connection with the pulleys 20, and the collection box 19 is pushed to drive the pulleys 20 and the guide grooves 12 to be in butt joint sliding;
two sets of sliding grooves 13 are formed on two sides of the placing groove 11, two sets of sliding grooves 13 and two sets of sliding blocks 21 are arranged on the center of the placing groove 11, the sliding grooves 13 are connected with the sliding blocks 21 in a sliding manner, the collecting box 19 can drive the sliding blocks 21 and the sliding grooves 13 to slide in a butt-joint manner when the pulleys 20 slide into the guide groove 12, the sliding blocks 21 can extrude the inclined surface of the clamping rod 16 when the sliding blocks 21 slide to the end part of the sliding grooves 13, the connecting groove 14 is formed in the sliding grooves 13, the extruding groove 15 is formed on the side surface of the connecting groove 14, the extruding groove 15 is connected with the extruding plate 17 in a sliding manner, the extruding groove 15 and the extruding plate 17 form a telescopic structure through the spring 18, the clamping rod 16 can drive the extruding plate 17 to extrude the spring 18 while sliding, and the sliding blocks 21 can drive the clamping grooves 22 to move to the bottom of the clamping rod 16 when the clamping rod 16 is extruded into the connecting groove 14, the clamping rod 16 can be reset through the self-elastic force of a spring 18, the clamping rod 16 is connected in the connecting groove 14 in a penetrating manner, a clamping structure is formed between the clamping rod 16 and a clamping groove 22, the clamping rod 16 is connected with the connecting groove 14 in a sliding manner, the clamping rod 16 can slide through the connecting groove 14 when being extruded, the clamping groove 22 moves to the bottom of the clamping rod 16, the clamping rod 16 can be reset through the self-elastic force of the spring 18, the collecting box 19 can be fixed after the clamping rod 16 is reset, a squeezing plate 17 is connected to the side surface of the clamping rod 16 close to the squeezing groove 15, the spring 18 is connected between the squeezing plate 17 and the squeezing groove 15, the collecting box 19 is embedded in the placing groove 11, the bottom of the collecting box 19 close to the guide groove 12 is connected with a pulley 20, the side surface of the collecting box 19 close to the sliding groove 13 is connected with a sliding block 21, and the side surface of the sliding block 21 close to the clamping rod 16 is provided with the clamping groove 22, the discharge chute 23 close to the push plate 9 is opened at the bottom of the body 1.
The working principle is as follows: when the multistage crushing crusher for preparing carbon is used, firstly, the multistage crushing crusher for preparing carbon needs to be simply known, when the multistage crushing crusher is used, the collection box 19 is pushed to drive the pulley 20 to be in butt joint with the guide groove 12 for sliding, when the pulley 20 slides into the guide groove 12, the collection box 19 can drive the sliding block 21 to be in butt joint with the sliding groove 13 for sliding, when the sliding block 21 slides to the end part of the sliding groove 13, the sliding block 21 can extrude the inclined plane of the clamping rod 16, when the clamping rod 16 is extruded, the sliding block can slide through the connecting groove 14, when the clamping rod 16 slides, the extrusion plate 17 can be driven to extrude the spring 18, when the clamping rod 16 is extruded into the connecting groove 14, the sliding block 21 can drive the clamping groove 22 to move to the bottom of the clamping rod 16, the clamping rod 16 can reset through the self elasticity of the spring 18, and after the clamping rod 16 resets, the collection box 19 can be fixed, the fixed back 7 during operation of second actuating mechanism of accomplishing of collecting box 19 can drive crushing disc 8 and rotate, can smash carbon element when crushing disc 8 rotates, can drop the bottom of second grade crushing groove 6 after the carbon element is smashed, can drive push plate 9 and rotate when crushing disc 8 rotates, can drive brush 10 and rotate when push plate 9 rotates, can promote carbon element when push plate 9 and brush 10 rotate, can drop when carbon element propelling movement reaches blown down tank 23 inside and collect in the case 19, the content of not making detailed description in this description belongs to the prior art that technical personnel in this field know.
Although the present invention has been described in detail with reference to the foregoing embodiments, it will be apparent to those skilled in the art that various changes in the embodiments and/or modifications of the utility model can be made, and equivalents and modifications of some features of the utility model can be made without departing from the spirit and scope of the utility model.

Claims (6)

1. The utility model provides a multistage broken formula breaker of preparation carbon, includes main part (1) and blown down tank (23), its characterized in that: the top of the main body (1) is connected with a feed hopper (2), wherein,
a primary crushing groove (3) is formed in the main body (1), a first driving mechanism (4) is installed on the side face of the main body (1), a crushing roller (5) is connected between the main body (1) and the first driving mechanism (4) close to the primary crushing groove (3), a secondary crushing groove (6) is formed in the main body (1) close to the primary crushing groove (3), a second driving mechanism (7) is installed at the bottom of the main body (1), a crushing disc (8) is connected between the main body (1) and the second driving mechanism (7) close to the secondary crushing groove (6), the bottom of the crushing disc (8) is connected with a push plate (9), a brush (10) is connected to the side face of the push plate (9), a placing groove (11) is formed in the bottom of the main body (1), and a guide groove (12) is formed in the placing groove (11);
two sides of the placing groove (11) are provided with sliding grooves (13), the inside of each sliding groove (13) is provided with a connecting groove (14), an extrusion groove (15) is formed in the side face of the connecting groove (14), a clamping rod (16) penetrates through the connecting groove (14), an extrusion plate (17) is connected to the side face of the clamping rod (16) close to the extrusion groove (15), a spring (18) is connected between the extrusion plate (17) and the extrusion groove (15), the inner part of the placing groove (11) is embedded with a collecting box (19), the bottom of the collecting box (19) close to the guide groove (12) is connected with a pulley (20), the side surface of the collecting box (19) close to the sliding groove (13) is connected with a sliding block (21), the side surface of the sliding block (21) close to the clamping rod (16) is provided with a clamping groove (22), and the discharging groove (23) close to the pushing plate (9) is arranged at the bottom of the main body (1).
2. The multistage pulverizing type crusher for producing carbon according to claim 1, wherein: four groups of pushing plates (9) and brushes (10) are arranged, and the four groups of pushing plates (9) and brushes (10) are distributed on the side surface of the crushing disc (8) in an annular array mode.
3. The multistage pulverizing type crusher for producing carbon according to claim 1, wherein: the guide grooves (12) are arranged in two groups relative to the center of the placing groove (11), and the guide grooves (12) are in sliding connection with the pulleys (20).
4. The multistage pulverizing type crusher for producing carbon according to claim 1, wherein: the sliding grooves (13) and the sliding blocks (21) are arranged in two groups about the center of the placing groove (11), and the sliding grooves (13) are in sliding connection with the sliding blocks (21).
5. The multistage pulverizing type crusher for producing carbon according to claim 1, wherein: the extrusion groove (15) is in sliding connection with the extrusion plate (17), and the extrusion groove (15) and the extrusion plate (17) form a telescopic structure through a spring (18).
6. The multistage pulverizing type crusher for producing carbon according to claim 1, wherein: an engagement structure is formed between the engagement rod (16) and the engagement groove (22), and the engagement rod (16) is in sliding connection with the connection groove (14).
CN202121586030.7U 2021-07-13 2021-07-13 Multistage crushing type crusher for preparing carbon Active CN215611899U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202121586030.7U CN215611899U (en) 2021-07-13 2021-07-13 Multistage crushing type crusher for preparing carbon

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202121586030.7U CN215611899U (en) 2021-07-13 2021-07-13 Multistage crushing type crusher for preparing carbon

Publications (1)

Publication Number Publication Date
CN215611899U true CN215611899U (en) 2022-01-25

Family

ID=79889944

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202121586030.7U Active CN215611899U (en) 2021-07-13 2021-07-13 Multistage crushing type crusher for preparing carbon

Country Status (1)

Country Link
CN (1) CN215611899U (en)

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