CN215704393U - Carbon rod machine device with self-cleaning function - Google Patents

Carbon rod machine device with self-cleaning function Download PDF

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Publication number
CN215704393U
CN215704393U CN202022730994.6U CN202022730994U CN215704393U CN 215704393 U CN215704393 U CN 215704393U CN 202022730994 U CN202022730994 U CN 202022730994U CN 215704393 U CN215704393 U CN 215704393U
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motor
fixed connection
reduction gear
carbon rod
platform
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涂欢
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Foshan Shunde Yimir Environmental Protection Technology Co ltd
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Foshan Shunde Yimir Environmental Protection Technology Co ltd
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Abstract

The utility model discloses a carbon rod machine device with a self-cleaning function, relates to the technical field of carbon rod machines, and aims to solve the problem that the manual cleaning efficiency of a common carbon rod machine in the prior art is low. The cylinder is installed to one side of pillar, and cylinder and pillar fixed connection, first motor is installed to the below of cylinder, and first motor and cylinder fixed connection, first reduction gear is installed to the below of first motor, the hollow tube is installed to the below of first reduction gear, hollow tube and first motor all pass through shaft coupling and first reduction gear fixed connection, the header tank is installed in the outside of hollow tube, and the header tank rotates with the hollow tube to be connected, the spray pipe is installed to the below of hollow tube, and spray pipe and hollow tube fixed connection, the hose is installed to one side of header tank, and hose and header tank fixed connection.

Description

Carbon rod machine device with self-cleaning function
Technical Field
The utility model relates to the technical field of carbon rod machines, in particular to a carbon rod machine device with a self-cleaning function.
Background
The carbon rod is a non-metal product, is used as a necessary cutting consumable material before welding in a carbon arc gouging cutting process, is prepared by adding proper adhesive into carbon and graphite, extruding and forming, baking and plating a layer of copper after a rotary section at 2200 ℃, is high-temperature resistant, good in conductivity and not easy to break, is suitable for cutting metal into shapes meeting requirements, is widely applied to the fields of national defense, machinery, metallurgy, chemical industry, casting, non-ferrous alloy, lightening and the like due to high use temperature and good chemical stability of the carbon rod, especially is a black carbon rod, is also used in the fields of ceramics, semiconductors, medicine, environmental protection, laboratory analysis and the like, and becomes the most widely applied non-metal material at present.
The carbon rod machine is used for producing carbon rods, the carbon rods are usually manufactured in an extrusion stamping mode, but carbon powder is easily attached to the interior of the carbon rod machine when the carbon rod machine is used for producing the carbon rods, the carbon rod machine needs to be cleaned after being used for a period of time, the carbon rod machine in the market does not have a self-cleaning function, needs to be cleaned manually, is inconvenient to use and has low cleaning efficiency; therefore, the market urgently needs to develop a carbon rod machine device with a self-cleaning function to help people to solve the existing problems.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide a carbon rod machine device with a self-cleaning function, and aims to solve the problem of low manual cleaning efficiency of a common carbon rod machine in the background technology.
In order to achieve the purpose, the utility model provides the following technical scheme: the utility model provides a carbon-point machine device with self-cleaning function, includes pillar and brace table, the cylinder is installed to one side of pillar, and cylinder and pillar fixed connection, first motor is installed to the below of cylinder, and first motor and cylinder fixed connection, first reduction gear is installed to the below of first motor, the hollow tube is installed to the below of first reduction gear, hollow tube and first motor all pass through shaft coupling and first reduction gear fixed connection, the header tank is installed in the outside of hollow tube, and the header tank rotates with the hollow tube to be connected, the spray pipe is installed to the below of hollow tube, and spray pipe and hollow tube fixed connection, the hose is installed to one side of header tank, and hose and header tank fixed connection.
Preferably, feed bin and biaxial motor are installed respectively to one side of pillar, and feed bin and biaxial motor all with pillar fixed connection, the second reduction gear is installed to biaxial motor's top, the inside of feed bin is provided with row material piece, arrange material piece and biaxial motor and all pass through shaft coupling and second reduction gear fixed connection, the below of feed bin is provided with row material pipe, and arranges material pipe and feed bin and set up structure as an organic whole, the finished product platform is installed to the top of brace table, and finished product platform passes through the bearing rotation with the brace table and is connected.
Preferably, driven gear is installed in the outside of finished product platform, and driven gear and finished product platform fixed connection, the third reduction gear is installed to the below of biax motor, drive gear is installed to the below of third reduction gear, drive gear and biax motor all pass through shaft coupling and third reduction gear fixed connection, drive gear is connected with the driven gear interlock, the inside of finished product platform is provided with the material hole, and the material hole sets up structure as an organic whole with the finished product platform.
Preferably, a hydraulic ram is installed on one side of the support column and fixedly connected with the support column, a pressing table is installed below the hydraulic ram and fixedly connected with the hydraulic ram, a pressing column, a guiding column and a cleaning column are respectively installed below the pressing table, and the pressing column, the guiding column and the cleaning column are fixedly connected with the pressing table.
Preferably, the below of brace table is provided with the material conveying box, drive roller and driven voller are installed respectively to the inside of material conveying box, and drive roller and driven voller all rotate with the material conveying box through the bearing and be connected, the outside of drive roller and driven voller all is provided with the material conveying area, the drive roller rotates through the material conveying area with the driven voller and is connected.
Preferably, the internally mounted of biography workbin has the second motor, and second motor and biography workbin fixed connection, install the fourth reduction gear on the preceding terminal surface of second motor, install the drive wheel on the preceding terminal surface of fourth reduction gear, drive wheel and second motor are all through shaft coupling and fourth reduction gear fixed connection, one side of drive roller is installed from the driving wheel, and from driving wheel and drive roller fixed connection, pass through the belt rotation with the drive wheel from the driving wheel and be connected.
Compared with the prior art, the utility model has the beneficial effects that:
1. the utility model has the advantages that through the arrangement of the air cylinder, the first motor, the hollow pipe, the water collecting tank and the spraying pipe, the air cylinder can push the first motor to ascend or descend, clear water is conveyed to the water collecting tank through the hose, the water collecting tank can convey clear water to the hollow pipe, the hollow pipe can convey clear water to the spray pipe, the clear water is sprayed out through the spray pipe, the first motor is descended through the air cylinder, the spray pipe is descended to the inner part of the storage bin, the hollow pipe is driven to rotate through the first motor, thereby leading the spray pipe to rotate, washing the carbon powder on the inner wall of the storage bin by spraying the clean water on the inner wall of the storage bin, thereby realize self-cleaning's effect to when this carbon-point machine is washd to needs, need not artifical the intervention, directly realize automatic cleaning's effect, it is convenient high-efficient to clean, makes this carbon-point machine use simple more convenient.
2. The utility model discloses a through the setting of clearance post, the clearance post equals with the diameter in material hole, and the inside that gets into the material hole under ordering about of clearance post accessible hydraulic ram, with the inner wall laminating in material hole, will expect that adnexed carbon dust cleans on the downthehole wall and gets rid of away to expect at every turn after the hole extrusion makes the carbon-point, all can go to clear away adnexed carbon dust on the inner wall through the clearance post, play and clear up at any time, clear effect at any time improves the result of use of this carbon-point machine.
Drawings
FIG. 1 is a front view of a carbon rod machine apparatus having a self-cleaning function according to the present invention;
FIG. 2 is a schematic view showing an internal structure of a header tank according to the present invention;
FIG. 3 is a schematic view of the internal structure of the storage bin of the present invention;
FIG. 4 is a bottom view of the platen table of the present invention;
FIG. 5 is a top view of the batching table of the present invention;
fig. 6 is a schematic view of the internal structure of the material transfer box of the present invention.
In the figure: 1. a pillar; 2. a support table; 3. a material conveying box; 4. a storage bin; 5. a material forming table; 6. a cylinder; 7. a hydraulic jack; 8. a first motor; 9. a first decelerator; 10. a water collection tank; 11. pressing the table; 12. a hollow tube; 13. a hose; 14. a spray tube; 15. pressing the material column; 16. a material guiding column; 17. cleaning the column; 18. a double-shaft motor; 19. a second decelerator; 20. a third speed reducer; 21. discharging the slices; 22. a drive gear; 23. a driven gear; 24. material holes; 25. a second motor; 26. a fourth speed reducer; 27. a drive wheel; 28. a driven wheel; 29. a drive roller; 30. a material conveying belt; 31. a driven roller; 32. a discharge pipe.
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.
Referring to fig. 1-6, an embodiment of the present invention is shown: the utility model provides a carbon-point machine device with self-cleaning function, including pillar 1 and brace table 2, cylinder 6 is installed to one side of pillar 1, and cylinder 6 and pillar 1 fixed connection, first motor 8 is installed to the below of cylinder 6, and first motor 8 and cylinder 6 fixed connection, first reduction gear 9 is installed to the below of first motor 8, hollow tube 12 is installed to the below of first reduction gear 9, hollow tube 12 and first motor 8 all pass through shaft coupling and first reduction gear 9 fixed connection, header tank 10 is installed in the outside of hollow tube 12, and header tank 10 rotates with hollow tube 12 to be connected, spray pipe 14 is installed to the below of hollow tube 12, and spray pipe 14 and hollow tube 12 fixed connection, hose 13 is installed to one side of header tank 10, and hose 13 and header tank 10 fixed connection.
Further, feed bin 4 and biaxial motor 18 are installed respectively to one side of pillar 1, and feed bin 4 and biaxial motor 18 all with pillar 1 fixed connection, second reduction gear 19 is installed to biaxial motor 18's top, the inside of feed bin 4 is provided with row material piece 21, arrange material piece 21 and biaxial motor 18 and all pass through shaft coupling and second reduction gear 19 fixed connection, the below of feed bin 4 is provided with row material pipe 32, and arrange material pipe 32 and feed bin 4 and set up structure as an organic whole, prop up the top of supporting bench 2 and install into material platform 5, and become material platform 5 and prop up supporting bench 2 and pass through the bearing rotation and be connected, arrange and rotate through the bearing between material piece 21 and the feed bin 4 and be connected.
Further, driven gear 23 is installed in the outside of finished product platform 5, and driven gear 23 and finished product platform 5 fixed connection, third reduction gear 20 is installed to the below of biax motor 18, drive gear 22 is installed to the below of third reduction gear 20, drive gear 22 and biax motor 18 all pass through shaft coupling and third reduction gear 20 fixed connection, drive gear 22 is connected with driven gear 23 interlock, finished product platform 5's inside is provided with material hole 24, and material hole 24 sets up structure as an organic whole with finished product platform 5, material hole 24 with can arrange material pipe 32 position coincide mutually.
Further, a hydraulic ram 7 is installed on one side of the support column 1, the hydraulic ram 7 is fixedly connected with the support column 1, a pressing table 11 is installed below the hydraulic ram 7, the pressing table 11 is fixedly connected with the hydraulic ram 7, a pressing column 15, a guiding column 16 and a cleaning column 17 are installed below the pressing table 11 respectively, the pressing column 15, the guiding column 16 and the cleaning column 17 are all fixedly connected with the pressing table 11, and the pressing column 15, the guiding column 16 and the cleaning column 17 are the same in diameter and the material hole 24 in diameter.
Further, a material conveying box 3 is arranged below the supporting platform 2, a driving roller 29 and a driven roller 31 are respectively installed inside the material conveying box 3, the driving roller 29 and the driven roller 31 are rotatably connected with the material conveying box 3 through bearings, material conveying belts 30 are arranged on the outer sides of the driving roller 29 and the driven roller 31, the driving roller 29 and the driven roller 31 are rotatably connected through the material conveying belts 30, a through hole is formed inside the supporting platform 2, the lower portion of the through hole is opposite to the material conveying belts 30, the diameter of the through hole is larger than that of the material hole 24, and the through hole and the material hole 24 can be overlapped.
Further, the internally mounted of passing workbin 3 has second motor 25, and second motor 25 and pass workbin 3 fixed connection, install fourth reduction gear 26 on the preceding terminal surface of second motor 25, install drive wheel 27 on the preceding terminal surface of fourth reduction gear 26, drive wheel 27 and second motor 25 all pass through shaft coupling and fourth reduction gear 26 fixed connection, driven wheel 28 is installed to one side of drive roller 29, and from driving wheel 28 and drive roller 29 fixed connection, it is connected through the belt rotation to follow driving wheel 28, can carry extrusion's carbon rod to the collection area through passing workbin 3.
The working principle is as follows: when the carbon powder feeding device is used, carbon powder is poured into the bin 4, the double-shaft motor 18 is started, the double-shaft motor 18 drives the discharging piece 21 to rotate after being decelerated by the second decelerator 19, the double-shaft motor 18 drives the driving gear 22 to rotate after being decelerated by the third decelerator 20, the carbon powder in the bin 4 is fed into the discharging pipe 32 in a rhythmic manner through the rotation of the discharging piece 21, the driving gear 22 drives the driven gear 23 to rotate, the forming table 5 is driven to rotate, the material hole 24 of the forming table 5 rotates to the position below the discharging pipe 32 in a rhythmic manner, the carbon powder in the discharging pipe 32 is discharged into the material hole 24 which is empty, the material hole 24 with the carbon powder rotates to the position below the material pressing column 15, the material pressing column 15 is driven to sink and extrude the carbon powder in the material hole 24 through the hydraulic ram 7, the carbon powder in the material hole 24 forms a carbon rod, the material hole 24 forming the carbon rod rotates to the position below the material guiding column 16, then the carbon rod is led out by the material guiding column 16 and arranged above the material conveying belt 30, finally the material hole 24 which is processed by the carbon rod manufacturing process rotates to the cleaning column 17, carbon powder remained on the inner wall of the material hole 24 is cleaned by the cleaning column 17, the second motor 25 is started, the second motor 25 drives the driving wheel 27 to rotate after being decelerated by the fourth speed reducer 26, the driving wheel 27 drives the driving roller 29 to rotate by the driven wheel 28, the driving roller 29 drives the material conveying belt 30 to rotate, so that the finished carbon rod is conveyed to the collection area, when the carbon rod machine needs to be cleaned, the air cylinder 6 is started, the air cylinder 6 pushes the first motor 8 to sink, so that the spraying pipe 14 sinks into the bin 4, a special cleaning solvent is conveyed into the water collecting tank 10 through the hose 13, the cleaning solvent enters the hollow pipe 12 through the water collecting tank 10 and enters the spraying pipe 14 through the hollow pipe 12, and the inner wall of the spraying pipe 4 is cleaned through the spraying pipe 14, the first motor 8 drives the hollow pipe 12 to rotate after being decelerated by the first speed reducer 9, the hollow pipe 12 drives the spraying pipe 14 to rotate, so that the inner wall of the storage bin 4 is washed without dead angles by three hundred and sixty degrees, and the carbon rod machine is cleaned.
It will be evident to those skilled in the art that the utility model is not limited to the details of the foregoing illustrative embodiments, and that the present invention may be embodied in other specific forms without departing from the spirit or essential attributes thereof. The present embodiments are therefore to be considered in all respects as illustrative and not restrictive, the scope of the utility model being indicated by the appended claims rather than by the foregoing description, and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein. Any reference sign in a claim should not be construed as limiting the claim concerned.

Claims (6)

1. A carbon rod machine device with self-cleaning function, comprising a support column (1) and a support table (2), characterized in that: the cylinder (6) is installed on one side of the support column (1), the cylinder (6) is fixedly connected with the support column (1), the first motor (8) is installed below the cylinder (6), the first motor (8) is fixedly connected with the cylinder (6), the first speed reducer (9) is installed below the first motor (8), the hollow pipe (12) is installed below the first speed reducer (9), the hollow pipe (12) and the first motor (8) are both fixedly connected with the first speed reducer (9) through the coupler, the water collecting tank (10) is installed on the outer side of the hollow pipe (12), the water collecting tank (10) is rotatably connected with the hollow pipe (12), the spray pipe (14) is installed below the hollow pipe (12), the spray pipe (14) is fixedly connected with the hollow pipe (12), the hose (13) is installed on one side of the water collecting tank (10), and the hose (13) is fixedly connected with the water collecting tank (10).
2. A carbon rod machine apparatus having a self-cleaning function according to claim 1, wherein: feed bin (4) and biaxial motor (18) are installed respectively to one side of pillar (1), and feed bin (4) and biaxial motor (18) all with pillar (1) fixed connection, second reduction gear (19) are installed to the top of biaxial motor (18), the inside of feed bin (4) is provided with row material piece (21), arrange material piece (21) and biaxial motor (18) and all pass through shaft coupling and second reduction gear (19) fixed connection, the below of feed bin (4) is provided with row material pipe (32), and arranges material pipe (32) and feed bin (4) and set up as an organic whole structure, material platform (5) is installed to the top of brace table (2), and becomes material platform (5) and brace table (2) and rotate through the bearing and be connected.
3. A carbon rod machine apparatus having a self-cleaning function according to claim 2, wherein: driven gear (23) are installed in the outside of one-tenth material platform (5), and driven gear (23) and one-tenth material platform (5) fixed connection, third reduction gear (20) are installed to the below of biaxial motor (18), drive gear (22) are installed to the below of third reduction gear (20), drive gear (22) and biaxial motor (18) all are through shaft coupling and third reduction gear (20) fixed connection, drive gear (22) are connected with driven gear (23) interlock, the inside of one-tenth material platform (5) is provided with material hole (24), and material hole (24) and one-tenth material platform (5) set up to a body structure.
4. A carbon rod machine apparatus having a self-cleaning function according to claim 1, wherein: hydraulic ram (7) is installed to pillar (1) one side, and hydraulic ram (7) and pillar (1) fixed connection, press platform (11) are installed to the below of hydraulic ram (7), and press platform (11) and hydraulic ram (7) fixed connection, press the below of platform (11) to install respectively and press material post (15), guide post (16) and clearance post (17), and press material post (15), guide post (16) and clearance post (17) all with press platform (11) fixed connection.
5. A carbon rod machine apparatus having a self-cleaning function according to claim 1, wherein: the below of brace table (2) is provided with and passes material case (3), drive roller (29) and driven voller (31) are installed respectively to the inside of passing material case (3), and drive roller (29) and driven voller (31) all rotate with passing material case (3) through the bearing and be connected, the outside of drive roller (29) and driven voller (31) all is provided with passes material area (30), drive roller (29) and driven voller (31) are through passing material area (30) rotation connection.
6. A carbon rod machine apparatus having a self-cleaning function according to claim 5, wherein: the internally mounted of material conveying case (3) has second motor (25), and second motor (25) and material conveying case (3) fixed connection, install fourth reduction gear (26) on the preceding terminal surface of second motor (25), install drive wheel (27) on the preceding terminal surface of fourth reduction gear (26), drive wheel (27) and second motor (25) are all through shaft coupling and fourth reduction gear (26) fixed connection, driven wheel (28) are installed to one side of drive roller (29), and from driving wheel (28) and drive roller (29) fixed connection, rotate through the belt from driving wheel (28) and drive wheel (27) and be connected.
CN202022730994.6U 2020-11-24 2020-11-24 Carbon rod machine device with self-cleaning function Active CN215704393U (en)

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CN202022730994.6U CN215704393U (en) 2020-11-24 2020-11-24 Carbon rod machine device with self-cleaning function

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114771010A (en) * 2022-04-26 2022-07-22 亳州市亚珠新材料有限公司 Thermoforming machine for carbon rod production and control method thereof

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114771010A (en) * 2022-04-26 2022-07-22 亳州市亚珠新材料有限公司 Thermoforming machine for carbon rod production and control method thereof

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