CN204342438U - Graphite electrical carbon is produced with the pre-processing device that becomes more meticulous - Google Patents

Graphite electrical carbon is produced with the pre-processing device that becomes more meticulous Download PDF

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Publication number
CN204342438U
CN204342438U CN201420728860.2U CN201420728860U CN204342438U CN 204342438 U CN204342438 U CN 204342438U CN 201420728860 U CN201420728860 U CN 201420728860U CN 204342438 U CN204342438 U CN 204342438U
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meticulous
level
becomes
arranges
processing
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CN201420728860.2U
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Chinese (zh)
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徐中席
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Taizhou Space Flight Electrical Carbon Product Co Ltd
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Taizhou Space Flight Electrical Carbon Product Co Ltd
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Abstract

The utility model discloses a kind of graphite electrical carbon produces with the pre-processing device that becomes more meticulous, comprise quantitative feeding device, twin-stage shredding unit, air intake device and vibration screening device, quantitative feeding device comprises feeding cylinder and is located at the storage bin of feeding cylinder discharge end, storage bin side is provided with some fixed quantity feeders, each fixed quantity feeder lower end is communicated with twin-stage shredding unit and arranges, twin-stage shredding unit comprises one-level disintegrating mechanism and two grade pulverization mechanism, one-level disintegrating mechanism and two grade pulverization mechanism up and down and integral hermetic arrange, a circle inter snubber is provided with at one-level disintegrating mechanism and two grade pulverization mechanism connection, two grade pulverization mechanism bottom is through arranges air intake device, air intake device arranges vibration screening device below top, the utility model division of labor is clear and definite, and material loading is even, lower materials quantitative, pulverizes evenly, comprehensively, thoroughly, screening effect is good, moves material easily and fast, accomplishes to become more meticulous pre-treatment to material asphalt.

Description

Graphite electrical carbon is produced with the pre-processing device that becomes more meticulous
Technical field
the utility model relates to graphite electrical carbon production unit field, particularly relates to a kind of graphite electrical carbon and produces with the pre-processing device that becomes more meticulous.
Background technology
Graphite electrical carbon is with the electrical material of carbon and graphite a kind of specific function that is matrix.For the manufacture of electrical carbon products such as the fixing electrical contact of electrical equipment or the component of rotation electrical contact, such as, for the brush of motor, the graphite contact etc. of power switch and rly., graphite electrical carbon belongs to high-end electrical material, play vital effect in electron trade, instead of the use of traditional electrical material.
The main raw material source that graphite electrical carbon is produced is pitch, pitch needed the pre-treatment carrying out becoming more meticulous before being produced into graphite electrical carbon, graphite electrical carbon belongs to high-end product, its quality produced directly affects its superior conductivity, therefore for graphite electrical carbon production asphalt stock the pretreated degree height that becomes more meticulous be the one of the main reasons that the graphite electrical carbon quality of production is high, therefore in order to the higher graphite electrical carbon of quality can be obtained, the pre-treatment link of its raw material will do further improvement, the raw materials pretreatment making it obtain becomes more meticulous more, so that carry out good place mat for follow-up processing parts.
Summary of the invention
For above-mentioned problem, it is clear and definite that the utility model aims to provide a kind of division of labor, and evenly, lower materials quantitative, pulverizes evenly, comprehensively, thoroughly, screening effect is good material loading, moves the material graphite electrical carbon production pre-processing device that becomes more meticulous easily and fast.
To achieve these goals, the technical scheme that adopts of the utility model is as follows:
Graphite electrical carbon is produced with the pre-processing device that becomes more meticulous, comprise quantitative feeding device, twin-stage shredding unit, air intake device and vibration screening device, described quantitative feeding device comprises feeding cylinder and is located at the storage bin of described feeding cylinder discharge end, described storage bin side is provided with some fixed quantity feeders, each described fixed quantity feeder lower end is communicated with described twin-stage shredding unit and arranges, described twin-stage shredding unit comprises one-level disintegrating mechanism and two grade pulverization mechanism, described one-level disintegrating mechanism and described two grade pulverization mechanism up and down and integral hermetic arrange, a circle inter snubber is provided with at described one-level disintegrating mechanism and described two grade pulverization mechanism connection, described two grade pulverization mechanism bottom is through arranges described air intake device, below described air intake device top, described vibration screening device is set.
Further, described feeding cylinder inner upper end is fixedly installed driving mechanism one, arranges screw conveyor shaft in described driving mechanism one lower end.
Further, described one-level disintegrating mechanism comprises one-level and pulverizes body, perpendicular roller and two driving mechanisms two, described one-level is pulverized body two sides and is connected with described fixed quantity feeder is through respectively, pulverize internal body in described one-level and the vertical described perpendicular roller of two rows is set, two described driving mechanisms two are located at described one-level and are pulverized body side, and the transmission axle head of a described driving mechanism two and is arranged described perpendicular roller top and is in transmission connection.
Further, each described fixed quantity feeder is that the cylindricality hollow cylinder reduced successively by some internal diameters is socketed to form.
Further, described two grade pulverization mechanism comprises two grade pulverization body, barrel roll and two driving mechanisms three, described two grade pulverization body inside is provided with at least one pair of barrel roll laterally put from the top down, two described driving mechanisms three are located at described secondary breaker body side surface, and the transmission axle head of a described driving mechanism three and an end arranging described barrel roll are in transmission connection.
Further, each described perpendicular roller and each described barrel roll are equipped with ratchet, and are spaced apart 1/4 ~ 1/3 of interval on described perpendicular roller between every two described ratchets on described barrel roll between every two described ratchets.
Further, described vibration screening device upper end is fixed with blanking bin, and described vibration screening device by pedestal, be located at one-level ring-type cylinder on pedestal and secondary ring-type cylinder up and down respectively, arranges a circle vibroshock between described pedestal and described one-level ring-type cylinder.
Further, described one-level ring-type cylinder side is provided with discharge port one, and described discharge port one lower end arranges drawer type and moves glassware one, and described secondary ring-type cylinder side is provided with discharge port two, and described discharge port two lower end arranges drawer type and moves glassware two.
Further, described air intake device comprises aspiration channel and suction fan.
The beneficial effects of the utility model are: arrange quantitative feeding device, twin-stage shredding unit, air intake device and vibration screening device, four devices are clear and definite for the process of refinement division of labor of material asphalt, material asphalt is by quantitative feeding device evenly and quantitatively enter the pulverizing carrying out in twin-stage shredding unit becoming more meticulous, sucked in vibration screening device by air intake device again after pulverizing and carry out the screening that becomes more meticulous, material asphalt is accomplished to the pre-treatment become more meticulous; First, quantitative feeding device arranges screw conveyor shaft unlike the prior art in feeding cylinder, screw conveyor shaft can by massive asphalt raw material helical feed to storage bin, manual labor can be alleviated by screw conveyor shaft, asphalt stock in storage bin by even and quantitative the entering and pulverize of fixed quantity feeder around one-level pulverizing mechanism side face, and from the hollow cylinder that each internal diameter reduces successively, blanking can control discharge quantity; Secondly, shredding unit is designed to Double-grade disintegrating mill structure, be divided into one-level disintegrating mechanism and two grade pulverization mechanism, one-level disintegrating mechanism adopts the vertical perpendicular roller of two rows to pulverize, perpendicular roller arranges ratchet, asphalt stock is processed for the first time in one-level disintegrating mechanism, powdered asphalt after process carries out ultimate pulverizing entering into two grade pulverization mechanism, adopt horizontal barrel roll to pulverize in two grade pulverization mechanism, material asphalt crushing effect can be improved and the gap between pitch pulverized particles can not be made larger by twin-stage shredding unit; Again, vibration screening device adopts two-stage screening, one-level screening be high-quality particle, be namely exactly comparatively micronized particles, secondary granule is defective particle, screening one-level out and secondary granule move glassware one and drawer type respectively by drawer type and move glassware two and shifted out by material, be reentered in twin-stage shredding unit after secondary screening particle shifts out and pulverize, screening effect is good, evenly, and it is quick, convenient to move material, does not leak material; In addition, inter snubber is set between one-level disintegrating mechanism and two grade pulverization mechanism, its objective is that guaranteeing that both produce whole machine due to vibration in the course of the work destroys, and extends the life cycle of twin-stage shredding unit.
Accompanying drawing explanation
Fig. 1 is the utility model schematic front view.
Fig. 2 is the enlarged view of Fig. 1 D part.
Fig. 3 is the utility model storage bin and twin-stage shredding unit side connection diagram.
Wherein: 1-feeding cylinder, 2-screw conveyor shaft, 3-driving mechanism one, 4-storage bin, 5-fixed quantity feeder, 51-hollow cylinder, 6-one-level pulverizes body, 7-two grade pulverization body, 8-erects roller, 9-barrel roll, 10-ratchet, 11-driving mechanism two, 111-transmission belt one, 12-driving mechanism three, 121-transmission belt two, 13-inter snubber, 14-aspiration channel, 15-suction fan, 16-pedestal, 17-one-level ring-type cylinder, 18-secondary ring-type cylinder, 19-vibroshock, 20-discharge port one, 21-discharge port two, 22-drawer type moves glassware one, 23-drawer type moves glassware two, 24-blanking bin, 25-handle, 26-opening for feed.
Embodiment
Below in conjunction with drawings and Examples, the technical solution of the utility model is further described.
Produce with the pre-processing device that becomes more meticulous with reference to the graphite electrical carbon shown in accompanying drawing 1-3, comprise quantitative feeding device, twin-stage shredding unit, air intake device and vibration screening device, described quantitative feeding device comprises feeding cylinder 1 and is located at the storage bin 4 of described feeding cylinder 1 discharge end, described storage bin 4 lower end arranges opening for feed 26, material asphalt can directly be poured in feeding cylinder 1 by opening for feed 26, described feeding cylinder 1 inner upper end is fixedly installed driving mechanism 1, in described driving mechanism 1 lower end, screw conveyor shaft 2 is set, material asphalt is by pouring in opening for feed 26 after in feeding cylinder 1, screw conveyor shaft 2 is driven to tell rotary motion by driving mechanism 1, material asphalt not only can be pulverized for the first time by screw conveyor shaft 2 in the process of high speed rotating, and material asphalt can also be sent into fast in storage bin 4, the grinding time of conservation pitch in twin-stage shredding unit, save energy, described storage bin 4 side is provided with some fixed quantity feeders 5, each described fixed quantity feeder 5 lower end is communicated with described twin-stage shredding unit and arranges, described twin-stage shredding unit comprises one-level disintegrating mechanism and two grade pulverization mechanism, described one-level disintegrating mechanism and described two grade pulverization mechanism up and down and integral hermetic arrange, through connection between both inside, the material asphalt be convenient in one-level disintegrating mechanism directly falls into two grade pulverization mechanism and again pulverizes, a circle inter snubber 13 is provided with at described one-level disintegrating mechanism and described two grade pulverization mechanism connection, the vibration that alleviation one-level disintegrating mechanism and two grade pulverization mechanism produce in the process worked, described two grade pulverization mechanism bottom is through arranges described air intake device, described air intake device comprises aspiration channel 14 and suction fan 15, described aspiration channel 14 one end is connected with described two grade pulverization mechanism lower end is through, described aspiration channel 14 is divided into horizontal section and vertical section, the position that horizontal section is connected with vertical section arranges described suction fan 15, at described vertical section tip designs semicircular structure, the below of this semicircular structure arranges described vibration screening device, .
In the utility model, described one-level disintegrating mechanism comprises one-level and pulverizes body 6, perpendicular roller 8 and two driving mechanisms 2 11, described one-level is pulverized body 6 two sides fixed quantity feeder 5 described with 3 is through respectively and is connected, described fixed quantity feeder 5 is that the cylindricality hollow cylinder 51 reduced successively by some internal diameters is socketed to form, equal and quantitative blanking is realized by the hollow cylinder 51 reduced successively, discharge quantity in each fixed quantity feeder 5 is the same, guarantee even blanking, and the discharge quantity of material asphalt is reduced by the hollow cylinder 51 reduced successively, prevent discharge quantity from too much causing disintegrating mechanism can not pulverize the latch up phenomenon caused in time, pulverize body 6 inside in described one-level and the vertical described perpendicular roller 8 of two rows is set, two described driving mechanisms 2 11 are located at described one-level and are pulverized body 6 side, and the transmission axle head of a described driving mechanism 2 11 and is arranged described perpendicular roller 8 top and is in transmission connection, be in transmission connection by transmission belt 111 between described driving mechanism 2 11 and described perpendicular roller 8 top, described two grade pulverization mechanism comprises two grade pulverization body 7, barrel roll 9, and two driving mechanisms 3 12, described two grade pulverization body 7 inside is provided with a pair barrel roll 9 laterally put from the top down, two described driving mechanisms 3 12 are located at described two grade pulverization body 7 side, and the end that the transmission axle head of a described driving mechanism 3 12 and arranges described barrel roll 9 is in transmission connection, be in transmission connection by transmission belt 2 121 between described driving mechanism 3 12 and described barrel roll 9, each described perpendicular roller 8 and each described barrel roll 9 are equipped with ratchet 10, and be spaced apart 1/4 ~ 1/3 of interval on described perpendicular roller 8 between every two described ratchets 10 on described barrel roll 9 between every two described ratchets 10, it is closely knit that ratchet 10 on described barrel roll 9 arranges arranging of ratchet 10 on more described perpendicular roller 8.
In the utility model, described vibration screening device upper end is fixed with blanking bin 24, described vibration screening device is by pedestal 16, be located at the one-level ring-type cylinder 17 on pedestal 16 and secondary ring-type cylinder 18 respectively up and down, between described pedestal 16 and described one-level ring-type cylinder 17, a circle vibroshock 19 is set, described one-level ring-type cylinder 17 side is provided with discharge port 1, described discharge port 1 lower end arranges drawer type and moves glassware 1, described secondary ring-type cylinder 18 side is provided with discharge port 2 21, described discharge port 2 21 lower end arranges drawer type and moves glassware 2 23, described drawer type moves glassware 1 and described drawer type and moves glassware 2 23 and all arrange handle 25, in one-level ring-type cylinder 17, vibratory screening apparatus separates the asphalt powder comparatively become more meticulous, moving glassware 1 by drawer type can be quick, conveniently shifted out, in secondary ring-type cylinder 18, vibrosieve asphalt powder particle is out larger, do not meet process for processing requirement, it moves glassware 2 23 convenience by drawer type, again proceed in twin-stage shredding unit after shifting out fast and pulverize again, improve crushing effect, the pitch particle fallen short of specifications is had to exist and affect the quality of production of graphite electrical carbon in Tujue's following process.

Claims (9)

1. graphite electrical carbon is produced with the pre-processing device that becomes more meticulous, it is characterized in that: comprise quantitative feeding device, twin-stage shredding unit, air intake device and vibration screening device, described quantitative feeding device comprises feeding cylinder (1) and is located at the storage bin (4) of described feeding cylinder (1) discharge end, described storage bin (4) side is provided with some fixed quantity feeders (5), each described fixed quantity feeder (5) lower end is communicated with described twin-stage shredding unit and arranges, described twin-stage shredding unit comprises one-level disintegrating mechanism and two grade pulverization mechanism, described one-level disintegrating mechanism and described two grade pulverization mechanism up and down and integral hermetic arrange, a circle inter snubber (13) is provided with at described one-level disintegrating mechanism and described two grade pulverization mechanism connection, described two grade pulverization mechanism bottom is through arranges described air intake device, below described air intake device top, described vibration screening device is set.
2. graphite electrical carbon according to claim 1 is produced with the pre-processing device that becomes more meticulous, and it is characterized in that: described feeding cylinder (1) inner upper end is fixedly installed driving mechanism one (3), arranges screw conveyor shaft (2) in described driving mechanism one (3) lower end.
3. graphite electrical carbon according to claim 1 is produced with the pre-processing device that becomes more meticulous, it is characterized in that: described one-level disintegrating mechanism comprises one-level and pulverizes body (6), perpendicular roller (8) and two driving mechanisms two (11), described one-level is pulverized body (6) two sides and is connected with described fixed quantity feeder (5) is through respectively, pulverize body (6) inside in described one-level and the vertical described perpendicular roller (8) of two rows is set, two described driving mechanisms two (11) are located at described one-level and are pulverized body (6) side, and the transmission axle head and of a described driving mechanism two (11) is arranged described perpendicular roller (8) top and is in transmission connection.
4. graphite electrical carbon according to claim 3 is produced with the pre-processing device that becomes more meticulous, and it is characterized in that: each described fixed quantity feeder (5) is that the cylindricality hollow cylinder (51) reduced successively by some internal diameters is socketed to form.
5. graphite electrical carbon according to claim 4 is produced with the pre-processing device that becomes more meticulous, it is characterized in that: described two grade pulverization mechanism comprises two grade pulverization body (7), barrel roll (9) and two driving mechanisms three (12), described two grade pulverization body (7) inside is provided with at least one pair of barrel roll (9) laterally put from the top down, two described driving mechanisms three (12) are located at described two grade pulverization body (7) side, and the end that the transmission axle head and of a described driving mechanism three (12) arranges described barrel roll (9) is in transmission connection.
6. graphite electrical carbon according to claim 5 is produced with the pre-processing device that becomes more meticulous, it is characterized in that: each described perpendicular roller (8) and each described barrel roll (9) are equipped with ratchet (10), and be spaced apart 1/4 ~ 1/3 of interval between upper every two the described ratchets (10) of described perpendicular roller (8) between upper every two the described ratchets (10) of described barrel roll (9).
7. graphite electrical carbon according to claim 1 is produced with the pre-processing device that becomes more meticulous, it is characterized in that: described vibration screening device upper end is fixed with blanking bin (24), described vibration screening device by pedestal (16), be located at one-level ring-type cylinder (17) on pedestal (16) and secondary ring-type cylinder (18) up and down respectively, arranges a circle vibroshock (19) between described pedestal (16) and described one-level ring-type cylinder (17).
8. graphite electrical carbon according to claim 7 is produced with the pre-processing device that becomes more meticulous, it is characterized in that: described one-level ring-type cylinder (17) side is provided with discharge port one (20), described discharge port one (20) lower end arranges drawer type and moves glassware one (22), described secondary ring-type cylinder (18) side is provided with discharge port two (21), and described discharge port two (21) lower end arranges drawer type and moves glassware two (23).
9. graphite electrical carbon according to claim 1 is produced with the pre-processing device that becomes more meticulous, and it is characterized in that: described air intake device comprises aspiration channel (14) and suction fan (15).
CN201420728860.2U 2014-11-28 2014-11-28 Graphite electrical carbon is produced with the pre-processing device that becomes more meticulous Expired - Fee Related CN204342438U (en)

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2018119653A1 (en) * 2016-12-27 2018-07-05 深圳市玖创科技有限公司 Two-stage pulverization device for negative electrode material of lithium-ion battery
WO2018119656A1 (en) * 2016-12-27 2018-07-05 深圳市玖创科技有限公司 Graphite pulverization device for negative electrode material of portable lithium battery

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2018119653A1 (en) * 2016-12-27 2018-07-05 深圳市玖创科技有限公司 Two-stage pulverization device for negative electrode material of lithium-ion battery
WO2018119656A1 (en) * 2016-12-27 2018-07-05 深圳市玖创科技有限公司 Graphite pulverization device for negative electrode material of portable lithium battery

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Granted publication date: 20150520

Termination date: 20151128