CN219886003U - Smokeless charcoal processing equipment - Google Patents

Smokeless charcoal processing equipment Download PDF

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Publication number
CN219886003U
CN219886003U CN202320860682.8U CN202320860682U CN219886003U CN 219886003 U CN219886003 U CN 219886003U CN 202320860682 U CN202320860682 U CN 202320860682U CN 219886003 U CN219886003 U CN 219886003U
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China
Prior art keywords
fixed mounting
fixedly arranged
frame
pipe
extrusion die
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Active
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CN202320860682.8U
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Chinese (zh)
Inventor
李伟
吴晓峰
鲍文发
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Zhejiang Sosha New Energy Technology Co ltd
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Zhejiang Sosha New Energy Technology Co ltd
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Priority to CN202320860682.8U priority Critical patent/CN219886003U/en
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Abstract

The utility model relates to the technical field of smokeless carbon production, in particular to smokeless carbon processing equipment, which comprises a mixing tank, wherein a stirring mechanism is arranged in the mixing tank, a discharging pipe is fixedly arranged at the bottom of the mixing tank, a conveying pipe is fixedly arranged at the bottom of the discharging pipe, an extrusion die is fixedly arranged on the front surface of the conveying pipe, a conveying frame is fixedly arranged on the front surface of the extrusion die, a cutting frame is fixedly arranged at one end, close to the extrusion die, of the top of the conveying frame, and a drying cover is fixedly arranged on the front surface of the cutting frame.

Description

Smokeless charcoal processing equipment
Technical Field
The utility model relates to the technical field of smokeless carbon production, in particular to smokeless carbon processing equipment.
Background
The machine-made charcoal (smokeless charcoal) is an artificial charcoal which is prepared by crushing, drying, extruding, carbonizing at high temperature and firing raw materials such as branches, sawn timber (wood shavings), grain shells, plant straws and the like to replace natural raw charcoal.
The existing smokeless carbon is characterized in that waste wood dust, straw, branches and other carbonized raw materials are crushed through a crushing device in the processing process, the crushed carbonized raw materials are added into a carbonization furnace for carbonization treatment, finally, for convenience of subsequent use and sales, the carbonized raw materials are crushed into carbon powder, the carbon powder is added with water and an adhesive and extruded into a strip shape through a die, and finally, the strip-shaped carbon column is dried or dried, so that the whole production process of the smokeless carbon is completed, but because the procedures are more, the feeding and discharging among all devices are completed manually, the labor force is improved, the production efficiency is reduced, a large amount of carbon powder dust can float during the production of the smokeless carbon, and excessive carbon powder dust is easily inhaled by long-time manual work to endanger the health;
therefore, it is important to design a smokeless carbon processing apparatus to solve the above-mentioned drawbacks.
Disclosure of Invention
Aiming at the defects of the prior art, the utility model designs a smokeless carbon processing device which aims at solving the technical problems of low production efficiency and harm to physical health of the smokeless carbon in the prior art.
In order to achieve the above purpose, the present utility model provides the following technical solutions:
the utility model provides a smokeless charcoal processing equipment, includes the compounding jar, compounding jar internally mounted has rabbling mechanism, the bottom fixed mounting of compounding jar has row material pipe, the bottom fixed mounting of row material pipe has the conveyer pipe, the front fixed mounting of conveyer pipe has extrusion die, extrusion die's front fixed mounting has the carriage, the carriage top is close to extrusion die's one end fixed mounting and cuts the frame, the top of carriage just is located the front fixed mounting who cuts the frame has the stoving cover.
As the preferable scheme of the utility model, the top of the mixing tank is fixedly provided with a feed hopper and a liquid adding pipe respectively, and the top of the liquid adding pipe is in threaded connection with a sealing cover.
As the preferable scheme of the utility model, the stirring mechanism comprises a first driving motor, a rotating frame, stirring rods and scraping plates, wherein the first driving motor is fixedly arranged at the top of the mixing tank, the rotating frame is fixedly arranged at the driving end of the first driving motor in the mixing tank, the stirring rods are fixedly arranged in the middle of the bottom of the rotating frame, and the scraping plates are fixedly arranged at the left side and the right side of the rotating frame.
As a preferable scheme of the utility model, a valve is fixedly arranged in the discharge pipe, an auger is rotatably connected in the conveying pipe, a second driving motor is fixedly arranged at one end of the auger, which is positioned at the back of the conveying pipe, and a plurality of groups of hexagonal extrusion holes are formed in the front of the extrusion die.
As a preferable scheme of the utility model, the top of the cutting frame is fixedly provided with the telescopic cylinder, the driving end of the telescopic cylinder is positioned below the cutting frame and is fixedly provided with the cutting blade, the bottom of the cutting blade is fixedly provided with the cutting blade, and the left end and the right end of the cutting blade are both in sliding connection with the cutting frame through the sliding rod.
As a preferable scheme of the utility model, a conveying belt is fixedly arranged in the conveying frame, a material guiding frame is fixedly arranged at the front end of the conveying frame, a plurality of groups of heating pipes are fixedly arranged at the left side and the right side of the inside of the drying cover, and exhaust fans are fixedly arranged at the front side and the rear side of the top of the drying cover.
Compared with the prior art, the utility model has the beneficial effects that:
according to the utility model, through the matching design of the mixing tank, the stirring mechanism, the conveying pipe, the extrusion die, the conveying frame, the cutting frame and the drying cover, when smokeless carbon is produced and processed, only carbon powder crushed by smokeless carbon carbonized raw materials is poured into the mixing tank, water and adhesive are poured into the mixing tank in proportion, then the stirring mechanism in the mixing tank is utilized to stir and mix the carbon powder, the water and the adhesive, so that the carbon powder is convenient for extrusion molding, then the stirred mixture enters the conveying pipe, the mixture is conveyed into the extrusion die by utilizing the auger in the conveying pipe, the mixture is continuously conveyed into the extrusion die along with continuous conveying of the mixture, the extruded carbon strip is extruded to form a strip shape through the hexagonal extrusion hole in the front of the extrusion die and is conveyed on the conveying frame, and the carbon strip cut by the cutting knife below the cutting frame is cut into a section of carbon strip, so that the subsequent use and boxing sales are facilitated, meanwhile, the carbon strip enters the drying cover and is matched with the exhaust fan by utilizing the heating pipe in the drying cover after being cut, the carbon strip is automatically discharged, the carbon strip is automatically dried, the manual harm is greatly reduced, and the manual health of the carbon container is greatly reduced, and the production and the manual health and the human health is greatly improved.
Drawings
FIG. 1 is a schematic diagram of the overall structure of the present utility model;
FIG. 2 is a schematic diagram of the stirring mechanism of the present utility model;
FIG. 3 is a schematic view of a part of the structure of the present utility model.
In the figure: 1. a mixing tank; 2. a stirring mechanism; 3. a discharge pipe; 4. a delivery tube; 5. an extrusion die; 6. a carriage; 7. a cutting frame; 8. a drying cover; 9. a feed hopper; 10. a liquid adding tube; 11. a first driving motor; 12. a rotating frame; 13. a stirring rod; 14. a scraper; 15. a telescopic cylinder; 16. a cutting knife; 17. a conveyor belt; 18. a material guiding frame; 19. heating pipes; 20. and a fan.
Detailed Description
The technical solutions of the embodiments of the present utility model will be clearly and completely described below in conjunction with the embodiments of the present utility model, and it is apparent that the described embodiments are only some embodiments of the present utility model, but not all embodiments, and all other embodiments obtained by those skilled in the art without making any inventive effort based on the embodiments of the present utility model are within the scope of protection of the present utility model.
Examples
The embodiment provides a smokeless carbon processing equipment, and this equipment can play automated production's effect when smokeless carbon production, has reduced artifical work simultaneously, has improved the whole production efficiency of equipment.
Referring to fig. 1-3, the present utility model provides a technical solution:
the utility model provides a smokeless charcoal processing equipment, including compounding jar 1, compounding jar 1 internally mounted has rabbling mechanism 2, and the bottom fixed mounting of compounding jar 1 has row material pipe 3, and the bottom fixed mounting of row material pipe 3 has conveyer pipe 4, and the front fixed mounting of conveyer pipe 4 has extrusion die 5, and the front fixed mounting of extrusion die 5 has carriage 6, and the one end fixed mounting that the carriage 6 top is close to extrusion die 5 has cuts frame 7, and the top of carriage 6 just is located the front fixed mounting who cuts frame 7 has stoving cover 8.
In this embodiment, the implementation scenario specifically includes: during smokeless carbon production and processing, only need pour the carbon dust that smokeless carbon carbomorphism raw materials smashed into mixing tank 1, simultaneously pour water and adhesive in proportion again, then utilize rabbling mechanism 2 in mixing tank 1 to stir carbon dust, water and adhesive, make the extrusion of being convenient for of carbon dust, the mixed material after the stirring enters into conveyer pipe 4 afterwards, utilize auger in conveyer pipe 4 to carry the mixed material into extrusion mould 5, along with continuous transport into extrusion mould 5 with the mixed material, make the mixed material extrude from extrusion mould 5 positive hexagon extrusion hole and be the strip carbon bar, cut into the carbon bar of one section with cutting knife 16 below cutting frame 7 and cut into the carbon bar of cutting one section during transportation, be convenient for follow-up use and vanning sales, enter into in the stoving cover 8 after the carbon bar cuts simultaneously and utilize the heating pipe 19 in the stoving cover 8 to cooperate with fan 20, carry out the stoving discharge with the moisture in the carbon bar, thereby accomplish the automated production of carbon bar, and the manual work is carried into extrusion mould 5 with continuous, and take the carbon bar need of big end at the end of the time of the manual work, the manual work is greatly reduced in the manual work of the utility model, the utility model is compared with the manual work and is carried out, the utility model, the efficiency can be greatly improved, the health and the manual work is improved, the utility model is easy and is compared with the manual work and is easy and has been manufactured.
Firstly, referring to fig. 1-3, a feed hopper 9 and a liquid adding pipe 10 are fixedly installed at the top of a mixing tank 1, a sealing cover is connected to the top of the liquid adding pipe 10 in a threaded manner, carbon powder obtained by crushing a smokeless carbon carbonized raw material is poured into the mixing tank 1 by the feed hopper 9, and then water and an adhesive are poured into the mixing tank through the liquid adding pipe 10 in proportion by opening the sealing cover;
further, the stirring mechanism 2 comprises a first driving motor 11, a rotating frame 12, stirring rods 13 and scraping plates 14, the top of the mixing tank 1 is fixedly provided with the first driving motor 11, the driving end of the first driving motor 11 is positioned in the mixing tank 1 and is fixedly provided with the rotating frame 12, the stirring rods 13 are fixedly arranged in the middle of the bottom of the rotating frame 12, the scraping plates 14 are fixedly arranged on the left side and the right side of the rotating frame 12, after all raw materials are added into the mixing tank 1, the first driving motor 11 is started to drive the rotating frame 12 to rotate, the stirring rods 13 below the rotating frame 12 are used for mixing and stirring the raw materials, and meanwhile, the raw materials on the inner side wall of the mixing tank 1 are scraped by the scraping plates 14, so that the raw materials are prevented from being adhered to the inner side wall of the mixing tank 1 and not in place;
secondly, a valve is fixedly arranged in the discharge pipe 3, an auger is rotationally connected in the conveying pipe 4, a second driving motor is fixedly arranged at one end of the auger, which is positioned on the back surface of the conveying pipe 4, a plurality of groups of hexagonal extrusion holes are formed in the front surface of the extrusion die 5, the mixed mixture is discharged into the conveying pipe 4 through the discharge pipe 3, the mixture is conveyed into the extrusion die 5 by the auger in the conveying pipe 4, and the mixture is continuously conveyed into the extrusion die 5 along with the continuous conveying of the mixture, so that the mixture is extruded into strip-shaped carbon strips from the hexagonal extrusion holes in the front surface of the extrusion die 5;
then, the top of the cutting frame 7 is fixedly provided with a telescopic cylinder 15, the driving end of the telescopic cylinder 15 is positioned below the cutting frame 7, a cutting knife 16 is fixedly arranged at the bottom of the cutting knife, the left end and the right end of the cutting knife are both in sliding connection with the cutting frame 7 through sliding rods, extruded carbon strips fall onto the conveying frame 6 to be conveyed, and the telescopic cylinder 15 at the top of the cutting frame 7 is utilized to drive the lower cutting knife 16 to descend so as to cut the carbon strips into a section of carbon strips, so that the carbon strips are convenient for subsequent use and boxing sales, and meanwhile, the sliding rods are matched with the cutting knife, so that the cutting stability is improved;
finally, the conveyer belt 17 is fixedly arranged in the conveyer frame 6, the material guide frame 18 is fixedly arranged at the front end of the conveyer frame 6, a plurality of groups of heating pipes 19 are fixedly arranged at the left side and the right side of the inside of the drying cover 8, the exhaust fans 20 are fixedly arranged at the front side and the rear side of the top of the drying cover 8, the carbon strips enter the drying cover 8 after being cut, the heating pipes 19 in the drying cover 8 are matched with the exhaust fans 20, and moisture in the carbon strips is dried and discharged, so that automatic production of the carbon strips is completed, a container is only required to be placed below the material guide frame 18 at the tail end of the conveyer frame 6 manually, and the container is transported away after being filled, so that the production efficiency of smokeless carbon is greatly improved.
Although embodiments of the present utility model have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made therein without departing from the principles and spirit of the utility model, the scope of which is defined in the appended claims and their equivalents.

Claims (6)

1. The utility model provides a smokeless charcoal processing equipment, includes blending tank (1), its characterized in that: mixing jar (1) internally mounted has rabbling mechanism (2), the bottom fixed mounting of mixing jar (1) has row material pipe (3), the bottom fixed mounting of row material pipe (3) has conveyer pipe (4), the front fixed mounting of conveyer pipe (4) has extrusion die (5), the front fixed mounting of extrusion die (5) has carriage (6), the one end fixed mounting that is close to extrusion die (5) at carriage (6) top has cut frame (7), the top of carriage (6) just is located the front fixed mounting of cutting frame (7) and has stoving cover (8).
2. The smokeless carbon processing apparatus of claim 1, wherein: the top of compounding jar (1) is fixed mounting respectively feeder hopper (9) and liquid feeding pipe (10), the top threaded connection of liquid feeding pipe (10) has the closing cap.
3. The smokeless carbon processing apparatus of claim 1, wherein: the stirring mechanism (2) comprises a first driving motor (11), a rotating frame (12), stirring rods (13) and scraping plates (14), wherein the first driving motor (11) is fixedly arranged at the top of the mixing tank (1), the rotating frame (12) is fixedly arranged at the driving end of the first driving motor (11) in the mixing tank (1), the stirring rods (13) are fixedly arranged in the middle of the bottom of the rotating frame (12), and the scraping plates (14) are fixedly arranged at the left side and the right side of the rotating frame (12).
4. The smokeless carbon processing apparatus of claim 1, wherein: the novel extrusion die is characterized in that a valve is fixedly arranged in the discharge pipe (3), an auger is connected to the inside of the conveying pipe (4) in a rotating mode, a second driving motor is fixedly arranged at one end of the auger, located at the back of the conveying pipe (4), of the auger, and a plurality of groups of hexagonal extrusion holes are formed in the front of the extrusion die (5).
5. The smokeless carbon processing apparatus of claim 1, wherein: the top fixed mounting of cutting frame (7) has flexible cylinder (15), the drive end of flexible cylinder (15) is located the below fixed mounting cutting board of cutting frame (7), the bottom fixed mounting of cutting board has cutting knife (16), both ends all pass through slide bar and cutting frame (7) sliding connection about the cutting board.
6. The smokeless carbon processing apparatus of claim 1, wherein: the inside fixed mounting of carriage (6) has conveyer belt (17), the front end of carriage (6) has guide frame (18), the inside left and right sides of stoving cover (8) is all fixed mounting has multiunit heating pipe (19), the front and back both sides at stoving cover (8) top are all fixed mounting exhaust fan (20).
CN202320860682.8U 2023-04-13 2023-04-13 Smokeless charcoal processing equipment Active CN219886003U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202320860682.8U CN219886003U (en) 2023-04-13 2023-04-13 Smokeless charcoal processing equipment

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202320860682.8U CN219886003U (en) 2023-04-13 2023-04-13 Smokeless charcoal processing equipment

Publications (1)

Publication Number Publication Date
CN219886003U true CN219886003U (en) 2023-10-24

Family

ID=88411048

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202320860682.8U Active CN219886003U (en) 2023-04-13 2023-04-13 Smokeless charcoal processing equipment

Country Status (1)

Country Link
CN (1) CN219886003U (en)

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