CN211495807U - Automatic feeding, detecting and sequencing system for batteries - Google Patents
Automatic feeding, detecting and sequencing system for batteries Download PDFInfo
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- CN211495807U CN211495807U CN201921935311.1U CN201921935311U CN211495807U CN 211495807 U CN211495807 U CN 211495807U CN 201921935311 U CN201921935311 U CN 201921935311U CN 211495807 U CN211495807 U CN 211495807U
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Abstract
The utility model discloses an automatic feeding detection sequencing system of batteries, which comprises a feeding machine box and a conveyor belt, wherein the bottom of the conveyor belt is provided with a bottom plate, the bottoms of the feeding machine box and the bottom plate are welded with supporting legs, the bottoms of the supporting legs are welded with a supporting base, the front of the feeding machine box is provided with a waste outlet, the bottom of the feeding machine box is welded with a motor fixing frame, the inner side of the motor fixing frame is provided with a motor, the top of the motor is movably inserted with a motor rotating shaft, the top end of the motor rotating shaft is connected with a shifting sheet rotating shaft, the interior of the feeding machine box is sleeved with a shifting sheet through the shifting sheet rotating shaft, the inner wall of the feeding machine box is clamped with a static collecting plate, the bottom of the interior of the feeding machine box is electrically connected with a static integrating plate through the static collecting plate, the bottom of the static integrating plate is electrically connected with an earth wire, the, such design has solved the problem that the feed box static can cause the influence to the battery.
Description
Technical Field
The utility model relates to a check out test set technical field specifically is an automatic feeding detects sequencing system of battery.
Background
Battery (Battery) refers to a device that converts chemical energy into electrical energy in a cup, tank, or other container or portion of a composite container that holds an electrolyte solution and metal electrodes to generate an electric current. Has a positive electrode and a negative electrode. With the advancement of technology, batteries generally refer to small devices that can generate electrical energy. Such as a solar cell. The performance parameters of the battery are mainly electromotive force, capacity, specific energy and resistance. The battery is used as an energy source, can obtain current which has stable voltage and current, is stably supplied for a long time and is slightly influenced by the outside, has simple structure, convenient carrying, simple and easy charging and discharging operation, is not influenced by the outside climate and temperature, has stable and reliable performance, and plays a great role in various aspects of modern social life.
However, when the existing battery feeding detection equipment is used, the problems that the quality of a prepared battery is not feasible due to the fact that liquid is adhered to raw materials of the battery, a part of batteries are scrapped due to the fact that the raw materials are directly processed without being detected during feeding exist, and meanwhile the problem that static electricity of a feeding case can affect the battery exists, and therefore an automatic feeding detection sorting system for the battery is provided.
SUMMERY OF THE UTILITY MODEL
Technical problem to be solved
Not enough to prior art, the utility model provides an automatic feeding of battery detects sequencing system to it is stained with liquid, raw materials to be provided the raw materials in solving above-mentioned background art and is not caused the influence and lead to the problem that battery product quality is low by detection and material loading case static to the battery raw materials.
(II) technical scheme
In order to achieve the above purpose, the utility model discloses a following technical scheme realizes: the utility model provides an automatic feeding of battery detects sequencing system, includes material loading machine case and conveyer belt, the bottom plate is installed to the bottom of conveyer belt, the supporting leg has all been welded to the bottom of material loading machine case and bottom plate, the bottom welding of supporting leg has the support base, the waste outlet has been seted up in the front of material loading machine case, the bottom welding of material loading machine case has the fixed frame of motor, the motor is installed to the inboard of the fixed frame of motor, the top activity interlude of motor has motor shaft, motor shaft's top is connected with the plectrum pivot, the plectrum has been cup jointed through the plectrum pivot in the inside of material loading machine case, the inner wall joint of material loading machine case has the static collection board, the inside bottom of material loading machine case is collected the board electric connection through static and is had the static integration board, the bottom electric connection.
The utility model discloses a conveyor belt, including conveyer belt, baffle, waste material cleaning groove, fan, fixed screw, quality detection board, infrared ray detection post and data wire, the equal activity interlude in both sides of conveyer belt has the conveyer belt pivot, the top fixedly connected with baffle of conveyer belt, the front of baffle is run through there is the vent, the waste material clearance groove has been seted up under the vent, the back embedding of baffle has the fan, the inside fixedly connected with fan pivot of fan, the outside joint of fan pivot has the fan blade, the inboard embedding of baffle has the cylinder, the top embedding of baffle has the fixed screw, the baffle passes through fixed screw fixedly connected with quality detection board, the bottom embedding of quality detection board has infrared.
Preferably, the supporting legs are provided with six, two of the six supporting legs are located at the bottom of the feeding case, and the other two supporting legs are located at four corners of the bottom plate.
Further preferably, the electrostatic collecting plate completely covers the inner wall of the feeding case, and the electrostatic collecting plate is seamlessly connected with the inner wall of the feeding case.
Further preferably, the waste outlet has a smooth inner surface, and the waste outlet is formed at the bottom of the front surface of the feeding box.
Further preferably, the motor comprises a motor rotating shaft arranged at the top of the motor and a shifting sheet rotating shaft arranged at the top end of the motor rotating shaft, and the motor rotating shaft is fixedly connected with the shifting sheet rotating shaft.
Further preferably, seven infrared detection columns are arranged, and the seven infrared detection columns are uniformly embedded into the bottom of the mass detection plate.
Further preferably, the outer surface of the roller is smooth, a plurality of rollers are arranged on the roller, and the rollers are uniformly distributed on the top of the conveyor belt.
Further preferably, the surface of the bottom plate forms a thirty-degree angle with the horizontal plane, and the roller is parallel to the horizontal plane.
(III) advantageous effects
The utility model provides an automatic feeding of battery detects sequencing system possesses following beneficial effect:
(1) the automatic feeding detection and sequencing system of the batteries comprises a conveyor belt, a feeding box, a fan, a quality detection plate, a motor, a fan rotating shaft, a fan blade, a waste material collecting port, a quality detection plate and a motor, wherein the raw materials are added from one side of the conveyor belt away from the feeding box when the automatic feeding detection and sequencing system works, then the raw materials of the batteries are conveyed on rollers, the fan, the quality detection plate and the motor are started simultaneously, if the raw materials of the batteries occupy liquid, the fan rotating shaft in the fan can drive the fan blade to move circularly, further wind power is generated, then the liquid on the raw materials of the batteries is air-dried, because the distance between each roller is specially set, the raw materials of the batteries, at this moment, the infrared ray detection post of quality control board bottom is when detecting the battery raw materials that is not conform to the quality, the quality control board can pass through data wire on with signal transmission to the motor, motor control motor shaft afterwards, then motor shaft can drive the plectrum pivot and rotate, make the battery raw materials that is not conform to the quality enter into the one side of waste outlet, and the waste material is discharged from the waste outlet, not only air-dry the liquid that is stained with the battery raw materials surface of liquid like this, still will not conform to the whole screening of battery raw materials of production condition, such design has solved and has had battery raw materials to be stained with liquid, the battery quality that leads to preparing out is not go on problem, and do not detect the raw materials when still having the material loading and just directly process, lead to the condemned problem of some batteries.
(2) The automatic feeding of this kind of battery detects sequencing system, through the static collecting plate and the static integration board and the electric wire that connect that set up, at the material loading case during operation, the produced static of material loading case can be collected by the static collecting plate of material loading incasement wall, static collecting plate collects static in the static integration board afterwards, pass through earth connection discharge material loading machine case with static at last, thereby can not influenced by static in the battery material loading, the problem that material loading case static can cause the influence to the battery has been solved in such design.
Drawings
Fig. 1 is a schematic view of the overall structure of the present invention;
fig. 2 is a sectional view of the structure of the feeding box of the utility model;
fig. 3 is a partial structural sectional view of the mass detecting plate of the present invention;
FIG. 4 is a partial structural view of the fan of the present invention;
fig. 5 is a cross-sectional view of the bottom plate structure of the present invention.
In the figure: 1. a support base; 2. supporting legs; 3. a feeding case; 301. a static electricity collecting plate; 302. an electrostatic integration plate; 303. a ground line; 304. a motor shaft; 305. a motor; 306. a motor fixing frame; 4. a waste outlet; 5. a shifting sheet; 6. a plectrum rotating shaft; 7. a mass detection plate; 701. an infrared detection column; 702. a data conductor; 8. fixing screws; 9. a baffle plate; 10. a drum; 11. a vent; 12. a fan; 1201. a fan rotating shaft; 1202. a fan blade; 13. a conveyor belt; 14. a conveyor belt shaft; 15. a waste cleaning tank; 16. a base plate.
The utility model provides an instrument all can obtain through market purchase and private customization:
a motor: ABB QABP.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
Referring to fig. 1-5, the present invention provides a technical solution: the utility model provides an automatic feeding of battery detects sequencing system, including feeder box 3 and conveyer belt 13, bottom plate 16 is installed to conveyer belt 13's bottom, supporting leg 2 has all been welded to feeder box 3 and bottom plate 16's bottom, the bottom welding of supporting leg 2 has support base 1, scrap outlet 4 has been seted up in feeder box 3's front, the fixed frame 306 of motor has been welded to feeder box 3's bottom, motor 305 is installed to the inboard of the fixed frame 306 of motor, motor 305's top activity interlude has motor shaft 304, motor shaft 304's top is connected with plectrum pivot 6, the plectrum 5 has been cup jointed through plectrum pivot 6 in feeder box 3's inside, feeder box 3's inner wall joint has static collecting plate 301, the inside bottom of feeder box 3 has static electricity integration board 302 through static collecting plate 301 electric connection, static integration board 302's bottom electric connection has earth connection 303.
In this embodiment, specifically, the supporting legs 2 are provided with six, and two of them are located the bottom of material loading machine case 3, and two other supporting legs 2 are located the four corners department of bottom plate 16 bottom simultaneously, and then provide a stable operational environment for the device at the during operation.
In this embodiment, specifically, the electrostatic collecting plate 301 completely covers the inner wall of the feeding case 3, and the electrostatic collecting plate 301 is seamlessly connected to the inner wall of the feeding case 3, so as to eliminate the static electricity generated during the operation of the feeding case 3, thereby preventing the static electricity from affecting the battery raw materials.
In this embodiment, it is concrete, 4 internal surfaces of waste outlet are smooth, and waste outlet 4 offers with the positive bottom department of feed box 3, and then will not conform to the battery of making quality standard and transport and discharge the collection, avoid the raw materials that the quality is not too much to sneak into and cause the influence to product quality.
In this embodiment, specifically, the motor 305 includes a motor rotating shaft 304 disposed at the top of the motor 305 and a dial plate rotating shaft 6 disposed at the top end of the motor rotating shaft 304, and the motor rotating shaft 304 is fixedly connected to the dial plate rotating shaft 6, so as to provide power for the movement selection of the dial plate 5.
In this embodiment, specifically, seven infrared detection columns 701 are provided, and the seven infrared detection columns 701 are uniformly embedded in the bottom of the mass detection plate 7, so as to detect the battery raw material.
In this embodiment, it is concrete, cylinder 10 surface is smooth, and cylinder 10 is provided with many, and many cylinders 10 evenly arrange at the top of conveyer belt 13, and then reduce the frictional force between to the battery raw materials for transfer rate.
In this embodiment, specifically, the bottom surface of the bottom plate 16 is at an angle of thirty degrees with the horizontal plane, and the roller 10 is parallel to the horizontal plane, so that the battery raw materials not conforming to the caliber size are discharged from the waste cleaning tank 15 by using gravitational potential energy.
The working principle is as follows: after the utility model is installed, firstly, the installation fixing and the safety protection of the utility model are checked, when in work, the raw material is added from one side of the conveyor belt 13 far away from the feeding box 3, then the battery raw material is transmitted on the roller 10, the fan 12, the quality detecting plate 7 and the motor 305 are simultaneously started, if the battery raw material is occupied with liquid, the fan rotating shaft 1201 in the fan 12 can drive the fan blade 1202 to do circular motion, further wind power is generated, then the liquid on the battery raw material is dried, because the distance between each roller 10 is specially set, the battery raw material which is not in line with the caliber of the raw material can enter the conveyor belt 13, then because the bottom plate 16 and the horizontal plane have an included angle of thirty degrees, the battery raw material which is not in line with the caliber can slide out from the waste material cleaning groove 15, then the battery raw material which is in line with the caliber enters the bottom of, at this time, when the infrared detection column 701 at the bottom 7 of the quality detection board detects the battery material not conforming to the quality, the quality detection board 7 will transmit a signal to the motor 305 through the data wire 702, then the motor 305 controls the motor rotating shaft 304, and then the motor rotating shaft 304 will drive the dial plate rotating shaft 6 to rotate, so that the battery material not conforming to the quality enters one side of the waste material outlet 4, and the waste material is discharged from the waste material outlet 4, and the battery material conforming to the quality requirement is subjected to the feeding process, when the feeding case 3 works, the static electricity generated by the feeding case 3 will be collected by the static electricity collecting board 301 at the inner wall of the feeding case 3, then the static electricity collecting board 301 collects the static electricity into the static electricity integrating board 302, and finally the static electricity is discharged out of the feeding case 3 through the grounding wire, thus completing the use process of the utility model, the utility model has simple structure, the use is safe and convenient.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.
Claims (8)
1. The utility model provides an automatic feeding of battery detects sequencing system, includes material loading machine case (3) and conveyer belt (13), its characterized in that: the bottom plate (16) is installed at the bottom of the conveyor belt (13), the supporting legs (2) are welded at the bottoms of the feeding machine box (3) and the bottom plate (16), the supporting base (1) is welded at the bottom of the supporting legs (2), the waste outlet (4) is formed in the front of the feeding machine box (3), the motor fixing frame (306) is welded at the bottom of the feeding machine box (3), the motor (305) is installed on the inner side of the motor fixing frame (306), the motor rotating shaft (304) is movably inserted into the top of the motor (305), the top end of the motor rotating shaft (304) is connected with the shifting sheet rotating shaft (6), the shifting sheet (5) is sleeved in the feeding machine box (3) through the shifting sheet rotating shaft (6), the electrostatic collecting plate (301) is clamped on the inner wall of the feeding machine box (3), and the electrostatic integrating plate (302) is electrically connected to the bottom of the feeding machine box (3) through the electrostatic collecting plate (, the bottom of the electrostatic integration plate (302) is electrically connected with a grounding wire (303);
a conveyor belt rotating shaft (14) is movably inserted into both sides of the conveyor belt (13), a baffle (9) is fixedly connected to the top of the conveyor belt (13), a ventilation opening (11) penetrates through the front surface of the baffle plate (9), a waste material cleaning groove (15) is arranged under the ventilation opening (11), a fan (12) is embedded in the back of the baffle (9), a fan rotating shaft (1201) is fixedly connected inside the fan (12), the outer side of the fan rotating shaft (1201) is clamped with fan blades (1202), the inner side of the baffle (9) is embedded with a roller (10), the top of the baffle plate (9) is embedded with a fixing screw (8), the baffle plate (9) is fixedly connected with a quality detecting plate (7) through the fixing screw (8), an infrared detection column (701) and a data wire (702) are embedded in the bottom of the mass detection plate (7).
2. The automatic feeding, detecting and sequencing system of the battery as claimed in claim 1, wherein: the supporting legs (2) are provided with six, two of the six supporting legs are located at the bottom of the feeding case (3), and the other two supporting legs (2) are located at four corners of the bottom plate (16).
3. The automatic feeding, detecting and sequencing system of the battery as claimed in claim 1, wherein: the electrostatic collecting plate (301) completely covers the inner wall of the feeding case (3), and the electrostatic collecting plate (301) is connected with the inner wall of the feeding case (3) in a seamless mode.
4. The automatic feeding, detecting and sequencing system of the battery as claimed in claim 1, wherein: the inner surface of the waste outlet (4) is smooth, and the waste outlet (4) is arranged at the bottom of the front surface of the feeding case (3).
5. The automatic feeding, detecting and sequencing system of the battery as claimed in claim 1, wherein: the motor (305) comprises a motor rotating shaft (304) arranged at the top of the motor (305) and a shifting sheet rotating shaft (6) arranged at the top end of the motor rotating shaft (304), and the motor rotating shaft (304) is fixedly connected with the shifting sheet rotating shaft (6).
6. The automatic feeding, detecting and sequencing system of the battery as claimed in claim 1, wherein: seven infrared detection columns (701) are arranged, and the seven infrared detection columns (701) are uniformly embedded into the bottom of the mass detection plate (7).
7. The automatic feeding, detecting and sequencing system of the battery as claimed in claim 1, wherein: the outer surface of the roller (10) is smooth, a plurality of rollers (10) are arranged, and the rollers (10) are uniformly distributed at the top of the conveyor belt (13).
8. The automatic feeding, detecting and sequencing system of the battery as claimed in claim 1, wherein: the bottom surface of the bottom plate (16) forms a thirty-degree angle with the horizontal plane, and the roller (10) is parallel to the horizontal plane.
Priority Applications (1)
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CN201921935311.1U CN211495807U (en) | 2019-11-11 | 2019-11-11 | Automatic feeding, detecting and sequencing system for batteries |
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CN201921935311.1U CN211495807U (en) | 2019-11-11 | 2019-11-11 | Automatic feeding, detecting and sequencing system for batteries |
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CN211495807U true CN211495807U (en) | 2020-09-15 |
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CN201921935311.1U Active CN211495807U (en) | 2019-11-11 | 2019-11-11 | Automatic feeding, detecting and sequencing system for batteries |
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Effective date of registration: 20230425 Address after: 341800 Building 3 and Building 7, Phase III, Standard Factory Building, 5G Intelligent Industrial Park, Hainuo Road, Quannan County, Ganzhou City, Jiangxi Province Patentee after: Jiangxi Shengxin Energy Technology Co.,Ltd. Address before: 426100 group 7, Daqiao Wan Village, xiamadu Town, Qiyang County, Yongzhou City, Hunan Province Patentee before: Zhang Guihua |