CN211706909U - Processing device for graphite - Google Patents

Processing device for graphite Download PDF

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Publication number
CN211706909U
CN211706909U CN202020121634.3U CN202020121634U CN211706909U CN 211706909 U CN211706909 U CN 211706909U CN 202020121634 U CN202020121634 U CN 202020121634U CN 211706909 U CN211706909 U CN 211706909U
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crushing
box
graphite
wheel
chamber
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CN202020121634.3U
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Chinese (zh)
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周英龙
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Nanjing Changhongxin Material Co ltd
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Nanjing Changhongxin Material Co ltd
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Priority to CN202020121634.3U priority Critical patent/CN211706909U/en
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Abstract

The utility model provides a processing device for graphite, which comprises a base, a crushing box, a crushing chamber and a dust cover, wherein the crushing chamber is connected with the side surface of the crushing box; the top of the crushing box is provided with a feeding funnel, two first crushing rollers, a sieve plate and a material guide plate which are tangent in parallel and the tangent plane of which is opposite to the bottom of the feeding funnel are sequentially arranged in the crushing box from top to bottom, one side of the sieve plate and one side of the material guide plate are connected with the same side of the crushing box, the other side of the sieve plate is inclined towards the base, and the other side of the sieve plate penetrates through the discharge hole and is arranged in the crushing chamber; the opposite cutting surfaces of the two second crushing rollers in the crushing chamber are opposite to one side of the sieve plate arranged in the crushing chamber, and the bottom of the crushing chamber is provided with a filtering bottom plate; a transmission belt connected between a driving wheel and a driven wheel arranged on the base is arranged right below the material guide plate and the filtering bottom plate, and a first driving motor is connected to a wheel shaft of the driving wheel; the base is provided with a groove arranged below the driven wheel; the first crushing roller and the second crushing roller are both connected with a second driving motor.

Description

Processing device for graphite
Technical Field
The utility model relates to a graphite processing technology field, concretely relates to processingequipment for graphite.
Background
In graphite production and processing process, in order to obtain the graphite of small granule, often need smash graphite, this just needs to use the shredding device, and current shredding device crushing effect is poor, uses inconveniently, smashes inefficiency, obviously can't satisfy people's user demand.
SUMMERY OF THE UTILITY MODEL
The utility model aims at providing a processingequipment for graphite, easy operation uses manpower sparingly material resources, and twice is smashed, improves and smashes efficiency.
The utility model provides a following technical scheme:
a processing device for graphite comprises a base, a crushing box, a crushing chamber and a dust cover, wherein the crushing chamber is fixedly connected with the outer wall of the side face of the crushing box; the feeding hopper is arranged on the inner wall of the top of the crushing box, two first crushing rollers, a sieve plate and a material guide plate are respectively arranged in the crushing box from top to bottom, the two first crushing rollers are tangent in parallel, the tangent plane of each first crushing roller is just opposite to the bottom of the feeding hopper, a communicated discharge hole is formed between the side surfaces of the crushing box connected with the crushing chamber, one side of the sieve plate and one side of the material guide plate are respectively and fixedly connected with the same side surface of the crushing box, the other side of the sieve plate penetrates through the discharge hole and is arranged in the crushing chamber, the horizontal position of the side of the sieve plate connected with the crushing box is higher than the horizontal position of the sieve plate arranged on one side of the crushing chamber, and the other side of the material guide plate is obliquely arranged towards the;
two tangent second crushing rollers are arranged in the crushing chamber, the tangent plane of each second crushing roller is opposite to one side of the sieve plate arranged in the crushing chamber, and a filtering bottom plate is arranged at the bottom of the crushing chamber; a driving wheel and a driven wheel are respectively arranged on the base outside the crushing chamber and the crushing chamber, a transmission belt is connected between the driving wheel and the driven wheel, the transmission belt is arranged under the material guide plate and the filtering bottom plate, and a first driving motor is connected to a wheel shaft of the driving wheel; the top of the base is also provided with a groove, the groove is arranged on one side of the driven wheel far away from the driving wheel, and one side of the groove is arranged below the driven wheel;
the outer wall of the crushing box and the outer wall of the crushing chamber are provided with four second driving motors which are respectively connected with the first crushing roller and the second crushing roller.
Preferably, one side of the sieve plate in the crushing chamber is provided with a guide plate, one side of the guide plate is connected with the end of the sieve plate, the other side of the guide plate is opposite to the two second crushing rollers, and the side surface of the guide plate is arc-shaped.
Preferably, the driving wheel and the driven wheel both comprise wheel shafts.
Preferably, two opposite vertical plates are arranged on two sides of the driving wheel and two opposite vertical plates are arranged on two sides of the driven wheel, a wheel shaft of the driving wheel is fixedly connected with the center of the driving wheel, one end of the wheel shaft of the driving wheel is connected with the first driving motor, the driven wheel is movably sleeved on the wheel shaft of the driven wheel, and two ends of the wheel shaft of the driven wheel are fixedly connected with the two vertical plates.
Preferably, the material collecting box is arranged in the groove, and the size of the material collecting box is smaller than that of the groove.
Preferably, the side of the crushing box is provided with two through holes matched with the transmission belt, and the transmission belts tensioned at the top and the bottom of the driving wheel respectively penetrate through the two through holes.
Preferably, the bottom of the base is provided with a roller.
Preferably, the top of crushing case is equipped with feed hopper's matched feed inlet, the feed inlet is equipped with the dustproof stopper who matches with it.
Preferably, the top of the dust cover is provided with a heat dissipation hole.
Preferably, a box door is arranged on the side face of the crushing box, a cover door is arranged on the side face of the dust cover, and a box door is arranged on the side face of the crushing chamber.
The utility model has the advantages that: the utility model discloses pour the graphite piece into crushing case from the feed hopper, filter through the sieve after two first crushing roller grinding crushing, the graphite piece that is not smashed completely slips into crushing room from the sieve, through two second crushing roller secondary grinding crushing, the graphite powder that smashes falls on the transmission belt through sieve and filter plate screening, transports to the receipts workbin through the transmission belt, and easy operation saves manpower and materials, smashes twice, improves crushing efficiency; smash in crushing case, crushing room, be equipped with the dust cover simultaneously, graphite powder flies into the air and causes the harm to staff's respiratory track when avoiding smashing, influences its healthy.
Drawings
The accompanying drawings are included to provide a further understanding of the invention, and are incorporated in and constitute a part of this specification, illustrate embodiments of the invention, and together with the description serve to explain the invention and not to limit the invention. In the drawings:
FIG. 1 is a schematic structural view of the present invention;
labeled as: 1. a base; 2. a crushing box; 3. a crushing chamber; 4. a dust cover; 5. a feed hopper; 6. a first crushing roller; 7. a discharge port; 8. leading the plate; 9. a second crushing roller; 10. a driven wheel; 11. a roller; 12. a groove; 13. a material receiving box; 14. a filter base plate; 15. perforating; 16. a transfer belt; 17. a vertical plate; 18. a driving wheel; 19. a material guide plate; 20. and (4) a sieve plate.
Detailed Description
As shown in fig. 1, a processing device for graphite comprises a base 1, a crushing box 2, a crushing chamber 3 and a dust cover 4, wherein the bottom of the base 1 is provided with rollers 11 for moving the processing device conveniently, and the crushing chamber 3 is fixedly connected with the outer wall of the side surface of the crushing box 2;
the inner wall of the top of the crushing box 2 is provided with a feeding funnel 5, the top of the crushing box 2 is provided with a feeding hole matched with the feeding funnel 5 and used for pouring graphite blocks to be ground into the crushing box 2, and the feeding hole is provided with a dustproof plug matched with the feeding hole so as to avoid dust falling in the crushing box 2 when the crushing box is not used;
the crushing box 2 is internally provided with two first crushing rollers 6, a sieve plate 20 and a material guide plate 19 from top to bottom respectively, the two first crushing rollers 6 are tangent in parallel, the tangent plane of each first crushing roller 6 is just opposite to the bottom of the feeding funnel 5, a communicated discharge hole 7 is arranged between the side surfaces of the crushing box 2 connected with the crushing chamber 3, one side of the sieve plate 20 and one side of the material guide plate 19 are fixedly connected with the same side surface of the crushing box 2 respectively, the other side of the sieve plate 20 penetrates through the discharge hole 7 and is arranged in the crushing chamber 3, the horizontal position of one side of the sieve plate 20 connected with the crushing box 2 is higher than the horizontal position of one side of the sieve plate 20 arranged in the crushing chamber 3, one side of the sieve plate 20 arranged in the crushing chamber 3 is provided with a guide plate 8, one side of the guide plate 8 is connected with the end of the sieve plate 20, the other side of the guide plate 8 is just opposite to the two second crushing rollers 9, the side surface of the guide plate 8 is arc-shaped, so that the graphite blocks which do not pass through the sieve plate 20 slide into the space between the two second crushing rollers 9 through the guide plate 8;
the opposite side of stock guide 19 is the slope setting towards the bottom of smashing case 2 for on will leading to transmission belt 16 from the graphite powder that sieve 20 fell into, avoid the graphite powder direct vertical drop to transmission belt 16 on lead to the raise dust more.
Two tangent second crushing rollers 9 are arranged in the crushing chamber 3, the tangent plane of each second crushing roller 9 is opposite to one side of the sieve plate 20 arranged in the crushing chamber 3, a filtering bottom plate 14 is arranged at the bottom of the crushing chamber 3, and the filtering bottom plate 14 is a grid sieve plate 20, has the same action with the sieve plate 20 and is used for filtering graphite powder qualified for grinding;
a driving wheel 18 and a driven wheel 10 are respectively arranged on the base 1 outside the crushing chamber 3 and the crushing chamber 3, a transmission belt 16 is connected between the driving wheel 18 and the driven wheel 10, the transmission belt 16 is arranged under a material guide plate 19 and a filter bottom plate 14, a first driving motor is connected to a wheel shaft of the driving wheel 18, specifically, the driving wheel 18 and the driven wheel 10 both comprise wheel shafts, two opposite vertical plates 17 are respectively arranged on two sides of the driving wheel 18 and the driven wheel 10, the wheel shaft of the driving wheel 18 is fixedly connected with the center of the driving wheel 18, one end of the wheel shaft of the driving wheel 18 is connected with the first driving motor, the driven wheel 10 is movably sleeved on the wheel shaft of the driven wheel 10, two ends of the wheel shaft of the driven wheel 10 are fixedly connected with the two vertical plates 17, two through holes 15 matched with the transmission belt 16 are arranged on the side surface of the crushing box 2, and the;
the top of base 1 still is equipped with recess 12, and recess 12 is located and is kept away from one side of action wheel 18 from driving wheel 10, and the below from driving wheel 10 is located to one side of recess 12, and is specific, a processingequipment for graphite still includes receipts workbin 13, receives workbin 13 and locates in recess 12, and the size of receiving workbin 13 is less than the size of recess 12.
The outer wall of crushing case 2 and the outer wall of crushing room 3 are equipped with four second driving motor who is connected with first crushing roller 6 and second crushing roller 9 respectively for four crushing roller of drive rotate, and the top of dust cover 4 is equipped with the louvre, is used for the heat dissipation, avoids the motor operation to lead to the high temperature in the cover to influence its normal work.
Specifically, a box door (not shown) is arranged on the side surface of the crushing box 2, a cover door (not shown) is arranged on the side surface of the dust cover 4, and a box door (not shown) is arranged on the side surface of the crushing chamber 3 and used for maintaining and cleaning the processing device.
As shown in fig. 1, a working process of a processing apparatus for graphite is as follows:
a material receiving box 13 is placed in a groove 12 at the top of a base 1 and pushed to be positioned under a driven wheel 10, graphite blocks to be crushed are poured into a crushing box 2 from a feeding funnel 5 and fall into the tangent plane of two first crushing rollers 6, the two first crushing rollers 6 rotate to grind and crush the graphite blocks, the crushed graphite falls onto a sieve plate 20, completely crushed graphite powder is filtered by the sieve plate 20 and falls onto a material guide plate 19 and then slides onto a transmission belt 16 from the material guide plate 19, the graphite blocks which are not completely ground fall into a crushing chamber 3 from the sieve plate 20 and slide onto the tangent plane between two second crushing rollers 9 through a guide plate 8, the two second crushing rollers 9 rotate to grind and crush the graphite blocks which are not completely ground for the second time, the crushed graphite falls onto a filtering bottom plate 14, the completely crushed graphite powder is filtered by the filtering bottom plate 14 and falls onto the transmission belt 16, the graphite blocks which are not completely ground slide to the lowest corner of the filtering bottom plate 14, and the graphite powder falling on the conveying belt 16 is conveyed to the material receiving box 13 through the conveying belt 16, so that the operation is simple, the manpower and material resources are saved, the grinding is carried out twice, and the grinding efficiency is improved; smash in crushing case 2, crushing room 3, be equipped with dust cover 4 simultaneously, graphite powder flies into the air and causes the harm to staff's respiratory track when avoiding smashing, influences its healthy.
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 modifications may be made to the embodiments described in the foregoing embodiments, or equivalents may be substituted for elements thereof. Any modification, equivalent replacement, or improvement made within the spirit and principle of the present invention should be included in the protection scope of the present invention.

Claims (10)

1. The processing device for graphite is characterized by comprising a base, a crushing box, a crushing chamber and a dust cover, wherein the crushing chamber is fixedly connected with the outer wall of the side face of the crushing box; the feeding hopper is arranged on the inner wall of the top of the crushing box, two first crushing rollers, a sieve plate and a material guide plate are respectively arranged in the crushing box from top to bottom, the two first crushing rollers are tangent in parallel, the tangent plane of each first crushing roller is just opposite to the bottom of the feeding hopper, a communicated discharge hole is formed between the side surfaces of the crushing box connected with the crushing chamber, one side of the sieve plate and one side of the material guide plate are respectively and fixedly connected with the same side surface of the crushing box, the other side of the sieve plate penetrates through the discharge hole and is arranged in the crushing chamber, the horizontal position of the side of the sieve plate connected with the crushing box is higher than the horizontal position of the sieve plate arranged on one side of the crushing chamber, and the other side of the material guide plate is obliquely arranged towards the;
two tangent second crushing rollers are arranged in the crushing chamber, the tangent plane of each second crushing roller is opposite to one side of the sieve plate arranged in the crushing chamber, and a filtering bottom plate is arranged at the bottom of the crushing chamber; a driving wheel and a driven wheel are respectively arranged on the base outside the crushing chamber and the crushing chamber, a transmission belt is connected between the driving wheel and the driven wheel, the transmission belt is arranged under the material guide plate and the filtering bottom plate, and a first driving motor is connected to a wheel shaft of the driving wheel; the top of the base is also provided with a groove, the groove is arranged on one side of the driven wheel far away from the driving wheel, and one side of the groove is arranged below the driven wheel;
the outer wall of the crushing box and the outer wall of the crushing chamber are provided with four second driving motors which are respectively connected with the first crushing roller and the second crushing roller.
2. The processing device for graphite as claimed in claim 1, wherein a guide plate is provided on one side of the screen plate in the pulverizing chamber, one side of the guide plate is connected to the end of the screen plate, the other side of the guide plate is opposite to the two second pulverizing rollers, and the side surface of the guide plate is arc-shaped.
3. The processing device for graphite as claimed in claim 1, wherein the driving wheel and the driven wheel each comprise an axle.
4. The processing device for graphite as claimed in claim 3, wherein two opposite vertical plates are arranged on two sides of the driving wheel and two sides of the driven wheel, a wheel shaft of the driving wheel is fixedly connected with the center of the driving wheel, one end of the wheel shaft of the driving wheel is connected with the first driving motor, the driven wheel is movably sleeved on the wheel shaft of the driven wheel, and two ends of the wheel shaft of the driven wheel are fixedly connected with the two vertical plates.
5. The processing device for graphite as claimed in claim 1, further comprising a material receiving box, wherein the material receiving box is arranged in the groove, and the size of the material receiving box is smaller than that of the groove.
6. The processing device for graphite as claimed in claim 1, wherein the side of the pulverizing box is provided with two through holes matching with the transmission belt, and the transmission belts tensioned at the top and bottom of the driving wheel respectively pass through the two through holes.
7. The processing device for graphite as claimed in claim 1, wherein the bottom of the base is provided with rollers.
8. The processing device for graphite as claimed in claim 1, wherein the top of the crushing box is provided with a feed inlet matched with the feed hopper, and the feed inlet is provided with a dustproof plug matched with the feed inlet.
9. The processing apparatus for graphite as claimed in claim 1, wherein the dust cover has heat dissipation holes at its top.
10. The processing apparatus for graphite as claimed in claim 1, wherein a box door is provided on a side of the pulverizing box, a cover door is provided on a side of the dust cover, and a chamber door is provided on a side of the pulverizing chamber.
CN202020121634.3U 2020-01-19 2020-01-19 Processing device for graphite Active CN211706909U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202020121634.3U CN211706909U (en) 2020-01-19 2020-01-19 Processing device for graphite

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202020121634.3U CN211706909U (en) 2020-01-19 2020-01-19 Processing device for graphite

Publications (1)

Publication Number Publication Date
CN211706909U true CN211706909U (en) 2020-10-20

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202020121634.3U Active CN211706909U (en) 2020-01-19 2020-01-19 Processing device for graphite

Country Status (1)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113245020A (en) * 2021-05-11 2021-08-13 黄石海纳新材料科技股份有限公司 Wollastonite reducing mechanism

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113245020A (en) * 2021-05-11 2021-08-13 黄石海纳新材料科技股份有限公司 Wollastonite reducing mechanism

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