CN217076295U - Graphitized crucible filling equipment - Google Patents

Graphitized crucible filling equipment Download PDF

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Publication number
CN217076295U
CN217076295U CN202220663560.5U CN202220663560U CN217076295U CN 217076295 U CN217076295 U CN 217076295U CN 202220663560 U CN202220663560 U CN 202220663560U CN 217076295 U CN217076295 U CN 217076295U
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China
Prior art keywords
bin
buffer memory
feed bin
hob
support
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CN202220663560.5U
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Chinese (zh)
Inventor
徒雨龙
谢庆王
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Yulong (Yunnan) Intelligent Equipment Co.,Ltd.
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Shenzhen Yulong Intelligent Equipment Co ltd
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Abstract

The utility model relates to a graphitization crucible loads equipment, including support, buffer memory feed bin, motor and hob, the buffer memory feed bin is fixed on the support, the buffer memory feed bin is provided with feed inlet and discharge gate, the motor sets up the top at the buffer memory feed bin, the motor is connected with the one end of hob, the other end of hob runs through the buffer memory feed bin and arranges discharge gate department in, be provided with the stirring leaf on the hob, the stirring leaf is used for stirring the material in the feed bin. The utility model has the advantages that: compared with the prior art, the utility model discloses simple structure adopts the whereabouts of spiral transmission material, and the top of spiral is provided with the stirring leaf, and the stirring leaf stirs the material in the buffer memory feed bin along with the hob rotates, makes the material that gets into in the spiral even, through stirring leaf collocation spiral, can ensure that the material drops evenly, increases the density of material.

Description

Graphitized crucible filling equipment
Technical Field
The utility model relates to an anode material technical field, in particular to graphitization crucible loading equipment.
Background
In the carbonization process in the preparation of the lithium battery cathode material, artificial graphite powder or natural graphite powder needs to be filled into a crucible for roasting, most of the conventional filling modes are that the artificial graphite powder or the natural graphite powder is directly filled into the crucible by an operator, and the filling density of the graphite powder filled in the mode is low and the filling amount is small.
SUMMERY OF THE UTILITY MODEL
In order to overcome the defects in the prior art, the utility model provides a graphitizing crucible filling device which is realized by the following technical scheme.
The utility model provides a graphitization crucible loads equipment, includes support, buffer memory feed bin, motor and hob, the buffer memory feed bin is fixed on the support, the buffer memory feed bin is provided with feed inlet and discharge gate, the motor sets up the top at the buffer memory feed bin, the motor is connected with the one end of hob, the other end of hob runs through the buffer memory feed bin and arranges discharge gate department in, be provided with the stirring leaf on the hob, the stirring leaf is used for stirring the material in the feed bin.
Furthermore, the buffer storage bin is fixed on the lifting support, and the transmission rack is fixed on the support.
Further, still include feeding device, feeding device includes the blowing storehouse and receives the measurement storehouse, be provided with the material pipe between blowing storehouse and the receipt measurement storehouse, the blowing storehouse through material pipe with receive the measurement storehouse through connection, it fixes on lifting support to receive the measurement storehouse, receive the measurement storehouse and set up in the top of buffer memory feed bin, and with the feed inlet through connection of buffer memory feed bin.
Further, the discharge bin is provided with a suction box, and the suction box is connected with one end of the material pipe.
Further, receive the measurement storehouse and be provided with air exhaust device and logical material mouth, air exhaust device 71 sets up in the top of receiving the measurement storehouse, and with receive the measurement storehouse through connection, lead to the material mouth and be connected with the other end of material pipe.
Furthermore, the buffer storage device further comprises a pressing device, the pressing device is located on the side face of the buffer storage bin, the pressing device comprises an air cylinder and a pressing plate, the air cylinder is fixed on the support, the pressing plate is connected with the air cylinder, and the pressing plate is located below the air cylinder.
Further, still include the conveyer belt, the conveyer belt sets up in the bottom of support, and is located the discharge gate and the clamp plate below, the conveyer belt is used for conveying the crucible.
The utility model has the advantages that: compared with the prior art, the utility model discloses simple structure adopts the spiral transmission material whereabouts, and the top of spiral is provided with the stirring leaf, and the stirring leaf stirs the material in the buffer memory feed bin along with the hob rotates, makes the material that gets into in the spiral even, through stirring leaf collocation spiral, can ensure that the material drops evenly, increases the density of material.
Drawings
Fig. 1 is a schematic structural diagram of the present invention.
Detailed Description
The present invention will be further described with reference to the following examples, which are only part of the present invention, and these examples are only used to explain the present invention, and do not constitute any limitation to the scope of the present invention.
As shown in fig. 1, a graphitization crucible filling device, including support 4, buffer memory feed bin 1, motor 2 and hob 3, buffer memory feed bin 1 is fixed on support 4, buffer memory feed bin 1 is provided with feed inlet 11 and discharge gate 12, motor 2 sets up the top at buffer memory feed bin 1, motor 2 is connected with hob 3's one end, the other end of hob 3 runs through buffer memory feed bin and arranges discharge gate 12 department in, be provided with stirring leaf 31 on hob 3, stirring leaf 31 is used for stirring the material in the feed bin.
Crucible 11 has been placed to the discharge gate below of buffer memory feed bin, the material adopts artifical blowing or the automatic blowing of equipment, make the material pass through feed inlet 11 and get into in buffer memory feed bin 1, buffer memory feed bin 1 is fixed on support 4, motor 2 is fixed in buffer memory feed bin 1's top, the one end and the motor 2 of hob 3 are connected, the other end runs through buffer memory feed bin and arranges discharge gate 12 department in, motor motion drives the hob and rotates, be provided with spiral and stirring leaf on the hob, the spiral is located the below of stirring leaf, the hob rotates and drives stirring leaf and spiral rotation, the stirring leaf stirs the material, make the even whereabouts of material in to the spiral, the spiral is as the displacement spiral, the material falls to the discharge gate along with the spiral rotation, and then the even ration of material that makes the rotatory whereabouts of hob falls into the crucible. In the prior art, the crucible filler is prepared by directly filling artificial graphite powder or natural graphite powder into a crucible by an operator, so that the filling density of the graphite powder filled in the crucible is low; and the utility model discloses a loading equipment adopts the spiral transmission material whereabouts, and the top of spiral is provided with the stirring leaf, and the stirring leaf stirs the material in the buffer memory feed bin along with the hob rotates, makes the material that gets into in the spiral even, through stirring leaf collocation spiral, can ensure that the material drops evenly, increases the density of material.
Further, still include elevating gear 5, elevating gear includes drive rack 52 and lifting support 51, lifting support 51 is connected with drive rack 52, buffer memory feed bin 1 is fixed on lifting support 51, drive rack 52 is fixed on support 4. Buffer memory feed bin 1 is fixed on lifting support 51, discharge gate 12 stretches into in the crucible, the motion of driving rack 52 comes control lifting support 51 to rise, adjust the position of discharge gate in the crucible, shorten the distance that the material dropped to in the crucible, along with piling up of material, make the discharge gate slowly rise through control driving rack, be favorable to shortening the distance of discharge gate and crucible bottom, make material whereabouts distance shorten, avoid the material to be raised and produce the dust, influence operational environment.
Preferably, the material adopts the automatic blowing of equipment, and furtherly still includes feeding device, feeding device includes blowing storehouse 6 and receives measurement storehouse 7, be provided with material pipe 9 between blowing storehouse 6 and the receipt measurement storehouse 7, blowing storehouse 6 passes through material pipe 9 and receives measurement storehouse 7 through connection, it fixes on lifting support 51 to receive measurement storehouse 7, receive measurement storehouse 7 setting in the top of buffer memory feed bin 1, and with the 11 through connection of feed inlet of buffer memory feed bin 1. The receiving and metering bin is internally provided with negative pressure, and the materials are conveyed into the receiving and metering bin from the discharging bin so as to enter the cache bin.
Further, the discharge bin is provided with a suction box 61, and the suction box 61 is connected with one end of the material pipe 9.
Further, the receiving and metering bin 7 is provided with an air extractor 71 and a material passing opening 72, the air extractor 71 is arranged above the receiving and metering bin 7 and is in through connection with the receiving and metering bin 7, and the material passing opening 72 is connected with the other end of the material pipe 9.
The interior of the material discharging bin is positive pressure, the interior of the receiving metering bin is pumped into negative pressure by an air pumping device, so that materials are blown into the receiving metering bin from the material discharging bin through the material pipe due to pressure difference, the materials are conveyed into the receiving metering bin by using the pressure of the material discharging bin and the pressure of the receiving metering bin, and the receiving metering bin is communicated with a feed inlet of the cache bin, so that the material filling work of the crucible is completed; when the crucible is filled, the air exhaust device stops exhausting air, the air pressure in the material discharging bin is the same as that in the receiving and metering bin, the material in the material discharging bin stops being conveyed, and then the material discharging port stops discharging.
Receive the material in the measurement storehouse and get into the buffer memory feed bin through the feed inlet, in the crucible was arranged in to the discharge gate of buffer memory feed bin, when filling, the motor rotated and drives the hob and rotate and carry the material, buffer memory feed bin and receipt measurement storehouse are fixed on lifting support, lifting support and transmission rack connection, and transmission rack motion drives the lifting support motion, because piling up of material, makes lifting support rise through control transmission rack motion, accomplishes the material loading work of crucible.
Further, still include press device 8, press device is located the side of buffer memory feed bin 1, press device includes cylinder 81 and clamp plate 82, cylinder 81 is fixed on support 4, clamp plate 82 is connected with cylinder 81, clamp plate 82 is located the below of cylinder 81. Be provided with press device in the side of buffer memory feed bin, place in press device's below as the material fills the crucible of accomplishing, the cylinder drives the clamp plate motion, makes clamp plate downstream, and the clamp plate contacts with the top of material for the material is flat real, and the cylinder drives the clamp plate upward movement and accomplishes and press, is favorable to improving conveying efficiency.
Further, the crucible furnace device further comprises a conveyor belt 10, wherein the conveyor belt 10 is arranged at the bottom of the support 4 and is positioned below the discharge port 12 and the pressing plate 82, and the conveyor belt 10 is used for conveying the crucible 11. The crucible is placed on the transmission belt, and the crucible positioned below the discharge port is conveyed to the lower part of the pressing plate through the transmission belt.
The above description is only a preferred embodiment of the present invention, and the present invention is not limited to the above description, and although the present invention has been disclosed with the preferred embodiment, it is not limited to the present invention, and any person skilled in the art can make some modifications or modifications to the equivalent embodiment of the equivalent change without departing from the technical scope of the present invention, but all the simple modifications, equivalent changes and modifications made to the above embodiments according to the technical spirit of the present invention still belong to the technical scope of the present invention.

Claims (7)

1. The utility model provides a graphitization crucible loads equipment, a serial communication port, including support, buffer memory feed bin, motor and hob, the buffer memory feed bin is fixed on the support, the buffer memory feed bin is provided with feed inlet and discharge gate, the motor sets up the top at the buffer memory feed bin, the motor is connected with the one end of hob, the other end of hob runs through the buffer memory feed bin and arranges discharge gate department in, be provided with the stirring leaf on the hob, the stirring leaf is used for stirring the material in the feed bin.
2. The graphitization crucible filling equipment according to claim 1, further comprising a lifting device, wherein the lifting device comprises a transmission rack and a lifting support, the lifting support is connected with the transmission rack, the buffer storage bin is fixed on the lifting support, and the transmission rack is fixed on the support.
3. The graphitization crucible filling equipment according to claim 2, further comprising a feeding device, wherein the feeding device comprises a discharging bin and a receiving metering bin, a material pipe is arranged between the discharging bin and the receiving metering bin, the discharging bin is in through connection with the receiving metering bin through the material pipe, the receiving metering bin is fixed on a lifting support, and the receiving metering bin is arranged above the cache bin and is in through connection with a feeding port of the cache bin.
4. The graphitization crucible filling apparatus as claimed in claim 3, wherein the discharge bin is provided with a suction box connected with one end of the material pipe.
5. The graphitization crucible filling equipment as claimed in claim 4, wherein the receiving and metering bin is provided with an air exhaust device and a material passing opening, the air exhaust device is arranged above the receiving and metering bin and is in through connection with the receiving and metering bin, and the material passing opening is connected with the other end of the material pipe.
6. The graphitization crucible filling equipment as claimed in claim 1, further comprising a pressing device, wherein the pressing device is located on the side face of the buffer storage bin, the pressing device comprises an air cylinder and a pressing plate, the air cylinder is fixed on a support, the pressing plate is connected with the air cylinder, and the pressing plate is located below the air cylinder.
7. The graphitization crucible filling apparatus as claimed in claim 6, further comprising a conveyor belt arranged at the bottom of the support and below the discharge port and the pressing plate, wherein the conveyor belt is used for conveying the crucible.
CN202220663560.5U 2022-03-25 2022-03-25 Graphitized crucible filling equipment Active CN217076295U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202220663560.5U CN217076295U (en) 2022-03-25 2022-03-25 Graphitized crucible filling equipment

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202220663560.5U CN217076295U (en) 2022-03-25 2022-03-25 Graphitized crucible filling equipment

Publications (1)

Publication Number Publication Date
CN217076295U true CN217076295U (en) 2022-07-29

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Application Number Title Priority Date Filing Date
CN202220663560.5U Active CN217076295U (en) 2022-03-25 2022-03-25 Graphitized crucible filling equipment

Country Status (1)

Country Link
CN (1) CN217076295U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115535663A (en) * 2022-12-02 2022-12-30 石家庄中栋碳素有限公司 Automatic filling system of new forms of energy lithium electricity negative electrode material

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115535663A (en) * 2022-12-02 2022-12-30 石家庄中栋碳素有限公司 Automatic filling system of new forms of energy lithium electricity negative electrode material

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GR01 Patent grant
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TR01 Transfer of patent right

Effective date of registration: 20230602

Address after: 657000 new material industrial park, Yingxin Road, Xiangjiaba Town, Shuifu City, Zhaotong City, Yunnan Province

Patentee after: Yulong (Yunnan) Intelligent Equipment Co.,Ltd.

Address before: 518000 B502, building 1, Yinxing Zhijie phase II, No. 1301-76, sightseeing Road, Xinlan community, Guanlan street, Longhua District, Shenzhen, Guangdong

Patentee before: Shenzhen Yulong Intelligent Equipment Co.,Ltd.

TR01 Transfer of patent right