Dustproof safety feeding device for power battery black powder acid leaching and feeding
12374741 ยท 2025-07-29
Assignee
- GUANGDONG BRUNP RECYCLING TECHNOLOGY CO., LTD. (Guangdong, CN)
- HUNAN BRUNP RECYCLING TECHNOLOGY CO., LTD. (Hunan, CN)
- HUNAN BRUNP VEHICLES RECYCLING CO., LTD. (Hunan, CN)
Inventors
- Haijun YU (Guangdong, CN)
- Changdong Li (Guangdong, CN)
- Yinghao XIE (Guangdong, CN)
- Xuemei Zhang (Guangdong, CN)
- Kang Chen (Guangdong, CN)
Cpc classification
H01M50/14
ELECTRICITY
International classification
C22B7/00
CHEMISTRY; METALLURGY
H01M50/14
ELECTRICITY
Abstract
Disclosed is a dust-proof safe feeding device for power battery black powder acid leaching feeding, including a leaching tank, a blanking grid and a material shaking assembly, where the leaching tank includes a feeding port; the blanking grid is mounted in the feeding port, and the blanking grid is provided with a blanking hole; the material shaking assembly includes a material shaking member and a driving device, the material shaking member is movably arranged in the blanking hole, the driving device is connected with the material shaking member, and the driving device is configured to drive the material shaking member to move in the blanking hole.
Claims
1. A dust-proof safe feeding device for power battery black powder acid leaching feeding, comprising: a leaching tank comprising a feeding port; a blanking grid mounted in the feeding port, wherein the blanking grid is provided with a blanking hole; and a material shaking assembly comprising a material shaking member and a driving device, wherein the material shaking member is movably arranged in the blanking hole, the material shaking assembly further comprises a material shaking plate, the material shaking member is mounted on the material shaking plate, the driving device comprises a plurality of eccentric wheels and a motor, the material shaking plate is mounted on the leaching tank through the plurality of eccentric wheels, and the motor is connected to the eccentric wheels and configured to drive the eccentric wheels to rotate so as to drive the material shaking member to move in the blanking hole.
2. The dust-proof safe feeding device for power battery black powder acid leaching feeding according to claim 1, wherein the material shaking member is in a U shape.
3. The dust-proof safe feeding device for power battery black powder acid leaching feeding according to claim 1, wherein the material shaking member is in a plate shape, and the material shaking member is provided with a plurality of material guiding through holes.
4. The dust-proof safe feeding device for power battery black powder acid leaching feeding according to claim 3, wherein the material guiding through hole is provided with a bulge at a bottom portion, and two ends of the bulge are inclined planes.
5. The dust-proof safe feeding device for power battery black powder acid leaching feeding according to claim 1, further comprising an opening and closing assembly, wherein the opening and closing assembly is mounted in the feeding port and is located below the blanking grid, the opening and closing assembly comprises a feeding rotor rotatably mounted in the feeding port, the feeding rotor is provided with at least one holding tank, and an outer surface of the feeding rotor abuts against an inner surface of the feeding port, so that the feeding rotor seals the feeding port.
6. The dust-proof safe feeding device for power battery black powder acid leaching feeding according to claim 5, wherein the opening and closing assembly further comprises a fixation cylinder, the fixation cylinder is mounted in the feeding port and an outer surface of the fixation cylinder is hermetically and fixedly connected with the inner surface of the feeding port, the fixation cylinder is provided with a feed hole and a discharge hole communicated with the feeding port, the feeding rotor is located in the fixation cylinder, and the outer surface of the feeding rotor abuts against an inner surface of the fixation cylinder.
7. The dust-proof safe feeding device for power battery black powder acid leaching feeding according to claim 6, wherein the feeding rotor comprises an opening and closing plate and an arc-shaped plate, the arc-shaped plate is arranged at two ends of the opening and closing plate, the arc-shaped plate and the opening and closing plate enclose the holding tank, the feeding port and the discharge hole are both arc-shaped openings, and an arc length between two ends of the arc-shaped plate is longer than that between two ends of the arc-shaped opening.
8. The dust-proof safe feeding device for power battery black powder acid leaching feeding according to claim 7, wherein the arc-shaped plate is provided with a balance hole, a cross section of the balance hole is tapered, and a large hole end of the balance hole is close to an inner wall of the fixation cylinder.
9. The dust-proof safe feeding device for power battery black powder acid leaching feeding according to claim 1, further comprising a gas extraction device mounted on the leaching tank and being in fluid communication with the leaching tank, wherein the gas extraction device is configured to extract gas in the leaching tank.
Description
BRIEF DESCRIPTION OF DRAWINGS
(1) The additional aspects and advantages of the present disclosure will become apparent from the following description of embodiments taken in conjunction with the accompanying drawings, wherein:
(2)
(3)
(4)
(5)
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(9) Reference numerals: 100 refers to leaching tank, 110 refers to feeding port, 200 refers to blanking grid, 210 refers to blanking hole, 300 refers to material shaking assembly, 310 refers to material shaking member, 311 refers to material guiding through hole, 3111 refers to bulge, 320 refers to driving device, 321 refers to eccentric wheel, 322 refers to motor, 330 refers to material shaking plate, 400 refers to opening and closing assembly, 410 refers to feeding rotor, 411 refers to holding tank, 412 refers to opening and closing plate, 413 refers to arc-shaped plate, 414 refers to sealing strip, 420 refers to fixation cylinder, 421 refers to feed hole, 422 refers to discharge hole, and 500 refers to gas extraction device.
DETAILED DESCRIPTION
(10) The embodiments of the present disclosure will be described in detail hereinafter. Examples of the embodiments are shown in the accompanying drawings. The same or similar reference numerals throughout the drawings denote the same or similar elements or elements having the same or similar functions. The embodiments described below with reference to the accompanying drawings are exemplary and are only intended to explain the present disclosure, but should not be construed as limiting the present disclosure.
(11) In the description of the present disclosure, the meaning of multiple refers to be more than two. The meanings of greater than, less than, more than, etc., are understood as not including this number. It should be understood that the orientation or position relation related to the orientation description, such as the orientation or position relation indicated by the upper, lower, front, rear, left, right, and middle, etc., is based on the orientation or position relation shown the drawings, which is only used for convenience of description of the present disclosure and simplification of description instead of indicating or implying that the indicated device or element must have a specific orientation, and be constructed and operated in a specific orientation, and thus shall not be understood as a limitation to the present disclosure.
(12) In the description of the present disclosure, unless otherwise clearly defined, words such as installation, connection, etc., shall be understood broadly, and those skilled the art can reasonably determine the specific meanings of the above words in the present disclosure in combination with the specific contents of the technical solution.
(13) With reference to
(14) For example, as shown in
(15) In some embodiments of the present disclosure, the material shaking member 310 is in a U shape. As shown in
(16) In some embodiments of the present disclosure, as shown in
(17) In a further embodiment of the present disclosure, as shown in
(18) In a further embodiment of the present disclosure, as shown in
(19) In a further embodiment of the present disclosure, as shown in
(20) The process of putting the battery powder into a pickling tank in current art still has the following defects.
(21) In the feeding process, it is easy to accumulate a reactant oxygen in the reaction tank (3H.sub.2SO.sub.4+H.sub.2O.sub.2+2LiCoO.sub.2.fwdarw.2CoSO.sub.4+Li.sub.2SO.sub.4+4H.sub.2O+O.sub.2), because oxygen may be generated during feeding. The feeding port 110 needs to be opened during feeding, which may lead to oxygen leakage, and direct discharge of oxygen from a feeding opening is easy to cause a danger, thus being unsafe for a feeding staff. In current art, the feeding ports 110 are all open type, which is unsafe due to easy overflow of oxygen, and putting dried battery powder is easy to cause raised dust, which is easy to cause air pollution and endangers health of the operator.
(22) The opening and closing assembly 400 is provided in the present disclosure, so that a feeding process is completely sealed, thus avoiding oxygen leakage and raised dust.
(23) For example, two ends of the feeding rotor 410 are hinged in the conveying pipe, the feeding rotor 410 is driven to rotate by the motor 322, the holding tank 411 is used for holding the battery powder, and the holding tank 411 may be in a V shape, a U shape, or other shapes capable of holding a battery powder.
(24) In operation, materials are received when a notch of the holding tank 411 faces upwardly, and the battery powder in the holding tank 411 falls into the leaching tank 100 along the conveying pipe when the notch faces downwardly. The feeding rotor 410 is circularly rotated, so that the battery powder is repeatedly conveyed. Since an outer surface of the feeding rotor 410 abuts against an inner surface of the feeding port 110, relative sealing can be maintained in a circular and continuous feeding process.
(25) In a further embodiment of the present disclosure, as shown in
(26) In operation, the driving device 320 drives the notch of the holding tank 411 to face upwardly, the battery powder enters the holding tank 411 of the feeding rotor 410 through the feed hole 421, then the driving device 320 drives the notch of the holding tank 411 to face downwardly, and the battery powder is poured out from the discharge hole 422.
(27) In a further embodiment of the present disclosure, as shown in
(28) In a further embodiment of the present disclosure, the arc-shaped plate 413 is provided with a balance hole (not shown in the drawings), a cross section of the balance hole is tapered, and a large hole end of the balance hole is close to an inner wall of the fixation cylinder 420. The balance hole is provided, so that when the arc-shaped plate 413 is located at the discharge hole 422 of the fixation cylinder 420 and blocks a lower opening, the balance hole may balance air pressures inside and outside the leaching tank 100, and external air may flow into the leaching tank 100 under an action of a negative pressure.
(29) In a further embodiment of the present disclosure, as shown in
(30) In a further embodiment of the present disclosure, as shown in
(31) In the description of the specification, the descriptions of the reference terms some embodiments, it is conceivable that, etc. refer to that the specific features, structures, materials characteristics described in combination with the embodiment or example are included in at least one embodiment or example of the present disclosure. In the specification, the schematic representation of the above terms does not necessarily mean the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described may be combined in any one or more embodiments or examples in a suitable manner.
(32) Although the embodiments of the present disclosure have been shown and described, those of ordinary skills in the art should understand that: various changes, amendments, substitutions and modifications can be made to these embodiments without departing from the principles and purposes of the present disclosure, and the scope of the present disclosure is limited by the claims and equivalents thereof.