CN211808444U - Cylindrical battery code spraying device - Google Patents

Cylindrical battery code spraying device Download PDF

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Publication number
CN211808444U
CN211808444U CN201922361476.9U CN201922361476U CN211808444U CN 211808444 U CN211808444 U CN 211808444U CN 201922361476 U CN201922361476 U CN 201922361476U CN 211808444 U CN211808444 U CN 211808444U
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China
Prior art keywords
battery
code spraying
cylindrical battery
cylindrical
cylinder
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CN201922361476.9U
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Chinese (zh)
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党建库
李峰
王东
赵海涛
齐萌
何显峰
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Xi'an Safty Energy Technology Co ltd
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Xi'an Safty Energy Technology Co ltd
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Abstract

The utility model discloses a cylinder battery spouts a yard device, including the workstation and all set up on the workstation and the first conveyer belt of complex in proper order, steering mechanism, spout a yard transport mechanism and battery and treat receiving agencies, spout a yard transport mechanism upside and hang and be equipped with the ink jet numbering machine. The utility model discloses a set up first conveyer belt, steering mechanism, spout a yard transport mechanism and battery and treat that receiving agencies is effectual to have realized the linkage of this device with last process, reduced the trouble that the battery made a round trip to have enough to meet the need, guarantee simultaneously that the word code typeface on the battery is clear, not crooked, not fuzzy, not waft clearly, non-overlapping, satisfy the production requirement, improved the degree of automation of production process, reduced the cost of labor, improved economic benefits.

Description

Cylindrical battery code spraying device
Technical Field
The utility model belongs to the technical field of the battery spouts the sign indicating number, concretely relates to cylinder battery spouts a yard device.
Background
In the production process, the traditional cylindrical object is easy to shake and self-rotate due to the fact that the surface shape of the cambered surface is in the moving process, and a special cambered surface clamp is required to be matched with the cylindrical surface to solve the problems of shaking and self-rotating. The fixture is required to be accurately positioned in code spraying, and the cylindrical object cannot shake, swing, skew, self-rotate and the like, so that the problems that the characters of the character codes which can be sprayed are clear, not skewed, not fuzzy, not floating and not overlapped are solved. Most independent production lines in the market at present adopt special cambered surface tool fixtures to form a special line, and are not effectively linked with the previous process. In order to realize that the battery is accurately positioned at one time in an assembly line, the battery does not shake, does not incline or rotate, the code spraying of the battery is clear, the surface quality of a font meets the quality requirement of the appearance of the battery, and the code spraying process is linked with the previous process or a machine, a cylindrical battery code spraying device needs to be designed.
SUMMERY OF THE UTILITY MODEL
The utility model aims to solve the technical problem that not enough among the above-mentioned prior art is directed against, a cylinder battery spouts a yard device is provided, a structure is simple, and reasonable design, therefore, the clothes hanger is strong in practicability, through setting up first conveyer belt, steering mechanism, spout a yard transport mechanism and battery and treat the effectual realization of receiving agencies with the linking of last process, the trouble of the battery turnover of making a round trip has been reduced, guarantee simultaneously that the word code typeface on the battery is clear, not crooked, not fuzzy, not wafing clearly, do not overlap, satisfy the production requirement, the degree of automation of production process has been improved, the cost of labor has been reduced, economic benefits has been improved.
In order to solve the technical problem, the utility model discloses a technical scheme is: the utility model provides a cylinder battery spouts a yard device which characterized in that: the battery collecting device comprises a workbench, a first conveyor belt, a steering mechanism, a code spraying conveying mechanism and a battery to-be-collected mechanism, wherein the first conveyor belt, the steering mechanism, the code spraying conveying mechanism and the battery to-be-collected mechanism are all arranged on the workbench and are sequentially matched with one another;
the steering mechanism comprises a star-shaped shifting wheel used for transferring the cylindrical battery from the first conveyor belt to the code spraying conveying mechanism and a steering motor used for controlling the star-shaped shifting wheel to rotate through a synchronous pulley set, and a battery inclined slide way used for guiding the cylindrical battery to move is arranged between the star-shaped shifting wheel and the code spraying conveying mechanism;
the code spraying conveying mechanism comprises a second conveying belt and a first baffle arranged on the periphery of the second conveying belt, soft magnetic strips used for adsorbing and fixing cylindrical batteries are arranged on the baffle on one side, away from the star-shaped shifting wheel, of the first baffle, and an arc guide block used for correcting the positions of the cylindrical batteries is arranged at the end part, close to the star-shaped shifting wheel, of the baffle on one side of the first baffle;
the receiving agencies is treated to battery includes battery hold up tank and sets up the cylinder that is close to second conveyer belt one end at the battery hold up tank, be provided with the circular arc slide between cylinder and the second conveyer belt, the circular arc slide top cooperates with the one end that the second conveyer belt is close to the cylinder, circular arc slide bottom cooperates with the plunger end of cylinder, battery hold up tank and circular arc slide bottom complex position are provided with the first proximity switch that detects cylinder battery entering battery hold up tank.
Foretell cylinder battery spouts a yard device, its characterized in that: the synchronous pulley group is including passing the first synchronizing wheel that mounting panel and star thumb wheel are connected, setting up the second synchronizing wheel on turning to motor output shaft and the hold-in range of connecting first synchronizing wheel and second synchronizing wheel, the epaxial cutting flower disc that is provided with of wheel of mounting panel one side is kept away from to first synchronizing wheel, the breach of cutting apart the flower disc is the same with the breach quantity and the one-to-one of star thumb wheel, is provided with the second proximity switch with star thumb wheel bottom breach complex position on the mounting panel, is provided with photoelectric switch with the arbitrary breach complex position of cutting apart the flower disc on the mounting panel.
Foretell cylinder battery spouts a yard device, its characterized in that: and a magnet and a resistance block for preventing the cylindrical battery in the battery storage tank from toppling over are arranged in the battery storage tank.
Foretell cylinder battery spouts a yard device, its characterized in that: the cylindrical batteries move along the axial direction of the cylindrical batteries on the first conveyor belt and the second conveyor belt, the first conveyor belt is controlled by the direct current motor, and the second conveyor belt is controlled by the speed regulating motor.
Foretell cylinder battery spouts a yard device, its characterized in that: the utility model discloses a quick-witted, including workstation, workstation downside, be provided with main control unit, ink jet numbering machine, steering motor, cylinder, first proximity switch, second proximity switch, photoelectric switch, direct current motor and buncher all are connected with main control unit.
Foretell cylinder battery spouts a yard device, its characterized in that: the one end that the cylinder was kept away from to the battery hold up tank is provided with the third proximity switch who is used for detecting that the battery hold up tank deposits full cylinder battery, and the third proximity switch is connected with main control unit.
Foretell cylinder battery spouts a yard device, its characterized in that: and a manual control box is arranged on the workbench, and a manual control module connected with a main controller is arranged in the manual control box.
Foretell cylinder battery spouts a yard device, its characterized in that: and second baffles are arranged on two sides of the first conveyor belt.
Foretell cylinder battery spouts a yard device, its characterized in that: the inclination angle of the battery inclined slideway is 5-15 degrees.
Foretell cylinder battery spouts a yard device, its characterized in that: the bottom of the workbench is provided with a ground foot with adjustable height.
Compared with the prior art, the utility model has the following advantage:
1. the utility model discloses a set up first conveyer belt and star thumb wheel and realized this device with the linking of the process of going up is followed the process of going up is transferred and is spouted a yard transport mechanism and spout the sign indicating number, has reduced the artifical trouble of making a round trip to the turnover of cylinder battery to reduce the cost of labor, improved the degree of automation of cylinder battery production system, improved output.
2. The utility model discloses a cooperation of battery slide, circular arc guide block and soft magnetic stripe, the cylinder battery of guaranteeing on the second conveyer belt can be hugged closely and keep away from the first baffle of battery slide one side to one side, prevents that the cylinder battery from producing the displacement along with the vibrations of second conveyer belt, guarantees that cylinder battery self does not rock, not crooked, not rotation to guarantee that the battery spouts the clear conformity with requirement of sign indicating number writing, realized that the accuracy of cylinder battery spouts the sign indicating number.
3. The utility model discloses a set up the battery and treat that receiving agencies makes the steady state of transition to upright state from the horizontality of cylinder battery after spouting the sign indicating number, cooperation through cylinder and first proximity switch makes the cylinder battery arrange and get into the battery hold up tank in proper order according to spouting the sign indicating number, 20 ~ 40 cylinder batteries can be stored up in the battery hold up tank, leave certain operation space and be convenient for operating personnel or manipulator and pick up the cylinder battery, reasonable in design, production processes has been optimized, it stares the production flow constantly to need not operating personnel, the efficiency that the cylinder battery was collected has been improved.
To sum up, the utility model discloses simple structure, reasonable in design, the practicality is strong, treats the effectual realization of receiving agencies with the linking of last process through setting up first conveyer belt, steering mechanism, spouting yard transport mechanism and battery, has reduced the trouble that the battery made a round trip to have enough to meet the need, guarantees simultaneously that the word code typeface on the battery is clear, not crooked, not fuzzy, not waft clearly, non-overlapping, satisfies the production requirement, has improved the degree of automation of production process, has reduced the cost of labor, has improved economic benefits.
The technical solution of the present invention is further described in detail by the accompanying drawings and examples.
Drawings
Fig. 1 is a three-dimensional structure diagram of the present invention.
Fig. 2 is a partially enlarged view of a portion a in fig. 1.
Fig. 3 is a partially enlarged view of B in fig. 1.
Fig. 4 is a schematic structural view of fig. 3 with a portion of the first baffle removed.
Fig. 5 is a view in the direction C of fig. 1.
Fig. 6 is a partial enlarged view of fig. 5 at D.
Fig. 7 is a schematic structural view of fig. 6 with a portion of the first baffle removed.
Fig. 8 is a circuit block diagram of the present invention.
Description of reference numerals:
1-a first conveyor belt; 2-a steering mechanism; 3-code spraying and conveying mechanism;
4-an ink-jet printer; 5-a battery material receiving mechanism; 6-a workbench;
7-cylindrical batteries; 8-star-shaped thumb wheel; 9-a steering motor;
10-battery ramp; 11-a second conveyor belt; 12-a first baffle;
13-soft magnetic strips; 14-arc guide block; 15-a battery storage tank;
16-a cylinder; 17-arc chute; 18-a first proximity switch;
19-mounting a plate; 20-a first synchronizing wheel; 21-a second synchronizing wheel;
22-a synchronous belt; 23-dividing the flower disc; 24-a second proximity switch;
25-a photoelectric switch; 26-a resistance block; 27-a direct current motor;
28-speed regulating motor; 29-a control cabinet; 30-a main controller;
31-ground feet; 32-a third proximity switch; 33-a second baffle;
34-a manual control box; 34-manual control module.
Detailed Description
As shown in fig. 1 to 7, the utility model comprises a workbench 6, a first conveyor belt 1, a steering mechanism 2, a code spraying conveyor mechanism 3 and a battery material receiving mechanism 5 which are all arranged on the workbench 6 and are matched in sequence, wherein a code spraying machine 4 is suspended on the upper side of the code spraying conveyor mechanism 3;
the steering mechanism 2 comprises a star-shaped shifting wheel 8 for transferring the cylindrical battery 7 from the first conveyor belt 1 to the code spraying conveyor mechanism 3 and a steering motor 9 for controlling the star-shaped shifting wheel 8 to rotate through a synchronous pulley set, and a battery inclined slide way 10 for guiding the cylindrical battery 7 to move is arranged between the star-shaped shifting wheel 8 and the code spraying conveyor mechanism 3;
the code spraying conveying mechanism 3 comprises a second conveying belt 11 and a first baffle 12 arranged on the periphery of the second conveying belt 11, soft magnetic strips 13 used for adsorbing and fixing the cylindrical batteries 7 are arranged on the baffle on one side, away from the star-shaped thumb wheel 8, of the first baffle 12, and an arc guide block 14 used for correcting the positions of the cylindrical batteries 7 is arranged at the end part, close to the star-shaped thumb wheel 8, of the first baffle 12;
receiving agencies 5 is treated to battery includes battery hold up tank 15 and sets up the cylinder 16 that is close to 11 one ends of second conveyer belt at battery hold up tank 15, be provided with circular arc slide 17 between cylinder 16 and the second conveyer belt 11, circular arc slide 17 top cooperates with the one end that second conveyer belt 11 is close to cylinder 16, circular arc slide 17 bottom cooperates with the plunger end of cylinder 16, battery hold up tank 15 is provided with the first proximity switch 18 that detects cylindrical battery 7 entering battery hold up tank 15 with circular arc slide 17 bottom complex position.
It should be noted that one end of the first conveyor belt 1, which is far away from the steering mechanism 2, is connected with an output end of a previous process, and the previous process outputs cylindrical batteries 7 which are not subjected to code spraying for subsequent processes; the ink-jet printer 4 is provided with an infrared sensor for detecting that the cylindrical battery 7 is in place, when the cylindrical battery 7 advances to the spray head of the ink-jet printer 4, the infrared sensor senses the arrival of the cylindrical battery 7 and outputs a signal to the ink-jet printer 4, and the ink-jet printer 4 starts to spray ink according to the input ink-jet data, so that the accuracy of ink-jet printing is ensured;
the first conveyor belt 1 and the star-shaped shifting wheel 8 are arranged to realize the linkage of the device with the previous process, the cylindrical battery 7 is transferred to the code spraying conveyor mechanism 3 from the previous process to be sprayed with codes, and the trouble of manual turnover of the cylindrical battery 7 is reduced, so that the labor cost is reduced, the automation degree of a cylindrical battery 7 production system is improved, and the yield is improved;
through the cooperation of the battery inclined slideway 10, the arc guide block 14 and the soft magnetic strips 13, the cylindrical batteries 7 on the second conveyor belt 11 can be ensured to be tightly attached to the first baffle 12 far away from one side of the battery inclined slideway 10, the cylindrical batteries 7 are prevented from generating displacement along with the vibration of the second conveyor belt 11, and the cylindrical batteries 7 are ensured not to shake, skew and rotate, so that the clear code-spraying character of the batteries meets the requirement, and the accurate code-spraying of the cylindrical batteries 7 is realized;
if sundries appear on the battery inclined slide way 10, the cylindrical battery 7 is enabled to be inclined when entering the second conveyor belt 11, when the inclined cylindrical battery 7 moves to the position of the arc guide block 14, the arc guide block 14 guides the inclined cylindrical battery 7 to change the position, the inclined cylindrical battery 7 is enabled to be straightened after passing through a channel between the arc guide block 14 and the first baffle 12 and to be attracted with the soft magnetic strip 13, the stability of the cylindrical battery 7 during code spraying is ensured, the device can be suitable for the cylindrical batteries 7 with different sizes by adjusting the distance between the arc guide block 14 and the first baffle 12, and the device is economical and practical;
the cylindrical battery 7 is sprayed with the codes by the code spraying machine 4 and then continuously moves along with the second conveyor belt 11, and the length of the second conveyor belt 11 between the code spraying machine 4 and the battery material receiving mechanism 5 can ensure that the code-sprayed writing on the cylindrical battery 7 is fully air-dried, so that the writing is prevented from being polluted in the subsequent production process, the definition of the code-sprayed writing is ensured, and the production requirement is met;
treat receiving agencies 5 through setting up the battery and make the steady state of transition to upright state from the horizontality of cylinder battery 7 after spouting the sign indicating number, cooperation through cylinder 16 and first proximity switch 18 makes cylinder battery 7 arrange and get into battery hold up tank 15 in proper order according to spouting the sign indicating number, battery hold up tank 15 can store up 20 ~ 40 cylinder battery 7, it picks up cylinder battery 7 to leave certain operating space be convenient for operating personnel or manipulator, and reasonable in design has optimized production processes, need not operating personnel and tightly stare the production flow constantly, the efficiency of cylinder battery 7 collection has been improved.
In this embodiment, the synchronous pulley group includes a first synchronous pulley 20 passing through the mounting plate 19 and connected with the star-shaped dial wheel 8, a second synchronous pulley 21 disposed on the output shaft of the steering motor 9, and a synchronous belt 22 connecting the first synchronous pulley 20 and the second synchronous pulley 21, a wheel shaft of the first synchronous pulley 20 on the side away from the mounting plate 19 is provided with a split faceplate 23, the number of gaps of the split faceplate 23 is the same as that of the gaps of the star-shaped dial wheel 8 and corresponds to that of the star-shaped dial wheel 8, a second proximity switch 24 is disposed at a position on the mounting plate 19 matched with the gap at the bottom of the star-shaped dial wheel 8, and a photoelectric switch 25 is disposed at a position on the mounting plate 19 matched with any gap of the.
It should be noted that the number of the notches of the star-shaped thumb wheel 8 is N, N is a positive integer and N is 4-8, and the star-shaped thumb wheel 8 with different numbers of notches can be applied to cylindrical batteries 7 with different sizes, so that the application range is wide; convey cylindrical battery 7 to star thumb wheel 8 breach department from first conveyer belt 1, second proximity switch 24 senses cylindrical battery 7 after turn to motor 9 and begin to rotate and drive star thumb wheel 8 and cut apart the synchronous rotation of flower disc 23, when photoelectric switch 25 senses the breach of cutting apart flower disc 23 once more, turn to motor 9 stall, wait for the next cylindrical battery 7 to arrive after repeated above-mentioned process, realized transferring cylindrical battery 7 to the position conversion of second conveyer belt 11 from first conveyer belt 1, if there is the accumulational condition of cylindrical battery 7 on the first conveyer belt 1, can also follow second conveyer belt 11 and remove equidistantly after star thumb wheel 8 when accumulational cylindrical battery 7 passes through in proper order, can not influence the yard of ink jet numbering machine 4, and the design is ingenious, make the production flow of cylindrical battery 7 more reasonable, reduce the probability that the trouble takes place.
In this embodiment, the battery storage tank 15 is provided with a magnet and a resistance block 26 for preventing the cylindrical battery 7 in the battery storage tank 15 from falling.
It should be noted that the magnets are uniformly arranged in the battery storage tank 15, the magnets can enable the plurality of cylindrical batteries 7 in the battery storage tank 15 to maintain the upright state of the cylindrical batteries 7 after the cylinder 16 is pushed, and the resistance blocks 26 are arranged at the end parts of the plurality of cylindrical batteries 7 in the battery storage tank 15 far away from the cylinder 16, so as to prevent the cylindrical batteries 7 from flying out due to the pushing force of the cylinder 16 and ensure the smooth collection of the cylindrical batteries 7.
In this embodiment, the cylindrical battery 7 moves on the first conveyor belt 1 and the second conveyor belt 11 along the axial direction of the cylindrical battery 7, the first conveyor belt 1 is controlled by the dc motor 27, and the second conveyor belt 11 is controlled by the speed-regulating motor 28.
As shown in fig. 8, in this embodiment, a control cabinet 29 is disposed on the lower side of the workbench 6, a main controller 30 is disposed in the control cabinet 29, and the inkjet printer 4, the steering motor 9, the air cylinder 16, the first proximity switch 18, the second proximity switch 24, the photoelectric switch 25, the dc motor 27, and the speed regulating motor 28 are all connected to the main controller 30.
Preferably, the main controller 30 is a PLC controller, and the steering motor 9 is a stepping motor.
In this embodiment, a third proximity switch 32 for detecting that the cylindrical battery 7 is full of the battery storage tank 15 is disposed at an end of the battery storage tank 15 away from the cylinder 16, and the third proximity switch 32 is connected to the main controller 30.
When the resistance block 26 in the battery storage tank 15 reaches the position of the third proximity switch 32, which indicates that the cylindrical battery 7 in the battery storage tank 15 is full, the device is automatically stopped to prevent the occurrence of a fault.
In this embodiment, the worktable 6 is provided with a manual control box 34, and a manual control module 35 connected with the main controller 30 is arranged in the manual control box 34.
It should be noted that the manual control box 34 is provided with a start button, a stop button and a reset button which are all connected with the manual control module 35, and the operation of the device is controlled by selecting a proper button according to different operation conditions of the device, so that the normal operation of the device is ensured, and the device is convenient to overhaul.
In this embodiment, the first conveyor belt 1 is provided with second baffles 33 on both sides.
In this embodiment, the inclined angle of the battery inclined slideway 10 is 5 to 15 °.
The battery inclined chute 10 is inclined toward the side away from the star wheel 8, so that the cylindrical battery 7 can be smoothly transferred to the second conveyor belt 11.
In this embodiment, the bottom of the working table 6 is provided with a height-adjustable anchor 31.
When the feet 31 are installed, the height difference of the table top of the workbench 6 is adjusted according to the position of the soft magnetic strips 13, the table top of the workbench 6 is inclined by 10-15 degrees, and the cylindrical batteries 7 are ensured to be abutted against the first baffle plate 12 provided with the soft magnetic strips 13 when being conveyed on the second conveyor belt 11.
When the utility model is used, the starting button control device is used for starting, the cylindrical battery 7 enters the first conveyor belt 1 from the previous working procedure, and the two ends of the first conveyor belt 1 are protected by the second baffle 33; the cylindrical battery 7 is conveyed to the gap of the star-shaped thumb wheel 8 from the first conveyor belt 1, the second proximity switch 24 feeds back a signal to the main controller 30 after sensing the cylindrical battery 7, the main controller 30 controls the steering motor 9 to rotate so as to drive the star-shaped thumb wheel 8 and the split faceplate 23 to synchronously rotate, the cylindrical battery 7 is conveyed to the second conveyor belt 11 through the battery inclined slide way 10, when the photoelectric switch 25 senses the gap of the split faceplate 23 again, the photoelectric switch 25 outputs a signal to the main controller 30, the main controller 30 controls the steering motor 9 to stop operating, and the process is repeated after waiting for the next cylindrical battery 7 to arrive; the cylindrical batteries 7 conveyed to the second conveyor belt 11 lean against the first baffle 12 provided with the soft magnetic strips 13 under the action of the magnetic force of the soft magnetic strips 13 and the inclination angle of the workbench 6, and are secondarily corrected by the arc guide block 14, so that the accurate positioning of the cylindrical batteries 7 is realized; when the cylindrical battery 7 advances to the spray head of the code spraying machine 4 along with the second conveyor belt 11, the infrared sensor senses the arrival of the cylindrical battery 7 and outputs a signal to the code spraying machine 4, the code spraying machine 4 starts to spray codes according to the input code spraying data, the cylindrical battery 7 slides down through the arc slideway 17 after being dried for a certain distance after being sprayed with the codes, at this time, the cylindrical battery 7 enters the front end of the battery storage tank 15, and the cylindrical battery 7 is returned from the original horizontal state to the upright state, and at this time, the first proximity switch 18 senses the cylindrical batteries 7 and then feeds back a signal to the main controller 30, the main controller 30 controls the air cylinders 16 to push the cylindrical batteries 7 forwards, the air cylinders 16 of the cylindrical batteries 7 are pushed forwards once and repeatedly for reciprocating motion every time when sliding down through the arc slide ways 17, the cylindrical batteries 7 are arranged according to a code spraying sequence and sequentially enter the battery storage tank 15, and then an operator or a manipulator picks up the cylindrical batteries 7; when the resistance block 26 in the battery storage tank 15 reaches the position of the third proximity switch 32, which indicates that the cylindrical battery 7 in the battery storage tank 15 is full, the device is automatically stopped.
The above, only be the utility model discloses a preferred embodiment, it is not right the utility model discloses do any restriction, all according to the utility model discloses the technical entity all still belongs to any simple modification, change and the equivalent structure change of doing above embodiment the utility model discloses technical scheme's within the scope of protection.

Claims (10)

1. The utility model provides a cylinder battery spouts a yard device which characterized in that: the automatic material collecting device comprises a workbench (6), and a first conveyor belt (1), a steering mechanism (2), a code spraying conveyor mechanism (3) and a battery material to be collected mechanism (5) which are all arranged on the workbench (6) and are matched in sequence, wherein a code spraying machine (4) is arranged on the upper side of the code spraying conveyor mechanism (3) in a hanging manner;
the steering mechanism (2) comprises a star-shaped shifting wheel (8) used for transferring the cylindrical battery (7) from the first conveyor belt (1) to the code spraying conveying mechanism (3) and a steering motor (9) used for controlling the star-shaped shifting wheel (8) to rotate through a synchronous belt wheel set, and a battery inclined slide way (10) used for guiding the cylindrical battery (7) to move is arranged between the star-shaped shifting wheel (8) and the code spraying conveying mechanism (3);
the code spraying conveying mechanism (3) comprises a second conveying belt (11) and a first baffle (12) arranged on the periphery of the second conveying belt (11), soft magnetic strips (13) used for adsorbing and fixing the cylindrical batteries (7) are arranged on the baffle on one side, away from the star-shaped shifting wheel (8), of the first baffle (12), and an arc guide block (14) used for correcting the positions of the cylindrical batteries (7) is arranged at the end part, close to the star-shaped shifting wheel (8), of the first baffle (12);
receiving agencies (5) are treated to battery include battery hold up tank (15) and set up cylinder (16) near second conveyer belt (11) one end in battery hold up tank (15), be provided with circular arc slide (17) between cylinder (16) and second conveyer belt (11), circular arc slide (17) top cooperates with the one end that second conveyer belt (11) is close to cylinder (16), circular arc slide (17) bottom cooperates with the plunger end of cylinder (16), battery hold up tank (15) and circular arc slide (17) bottom complex position are provided with first proximity switch (18) that detect cylinder battery (7) entering battery hold up tank (15).
2. The cylindrical battery code spraying device according to claim 1, characterized in that: the synchronous pulley group comprises a first synchronous pulley (20) penetrating through a mounting plate (19) and connected with a star shifting wheel (8), a second synchronous pulley (21) arranged on an output shaft of a steering motor (9) and a synchronous belt (22) connected with the first synchronous pulley (20) and the second synchronous pulley (21), wherein a cutting disc chuck (23) is arranged on a wheel shaft on one side, away from the mounting plate (19), of the first synchronous pulley (20), notches for cutting the disc chuck (23) are identical to notches of the star shifting wheel (8) in number and are in one-to-one correspondence, a second proximity switch (24) is arranged at a position, matched with any notch of the cutting disc chuck (8), of the mounting plate (19) in number, and a photoelectric switch (25) is arranged at a position, matched with any notch of the cutting disc chuck (23), of the mounting plate (19).
3. The cylindrical battery code spraying device according to claim 1, characterized in that: and a magnet and a resistance block (26) for preventing the cylindrical battery (7) in the battery storage tank (15) from toppling are arranged in the battery storage tank (15).
4. The cylindrical battery code spraying device according to claim 2, characterized in that: the cylindrical battery (7) moves on the first conveyor belt (1) and the second conveyor belt (11) along the axial direction of the cylindrical battery (7), the first conveyor belt (1) is controlled by a direct current motor (27), and the second conveyor belt (11) is controlled by a speed regulating motor (28).
5. The cylindrical battery code spraying device according to claim 4, wherein: the automatic ink jet printing machine is characterized in that a control cabinet (29) is arranged on the lower side of the workbench (6), a main controller (30) is arranged in the control cabinet (29), and the ink jet printing machine (4), the steering motor (9), the air cylinder (16), the first proximity switch (18), the second proximity switch (24), the photoelectric switch (25), the direct current motor (27) and the speed regulating motor (28) are all connected with the main controller (30).
6. The cylindrical battery code spraying device according to claim 5, wherein: one end of the battery storage tank (15), which is far away from the air cylinder (16), is provided with a third proximity switch (32) used for detecting that the cylindrical battery (7) is filled in the battery storage tank (15), and the third proximity switch (32) is connected with the main controller (30).
7. The cylindrical battery code spraying device according to claim 5, wherein: a manual control box (34) is arranged on the workbench (6), and a manual control module (35) connected with the main controller (30) is arranged in the manual control box (34).
8. The cylindrical battery code spraying device according to claim 1, characterized in that: and second baffles (33) are arranged on two sides of the first conveyor belt (1).
9. The cylindrical battery code spraying device according to claim 1, characterized in that: the inclination angle of the battery inclined slideway (10) is 5-15 degrees.
10. The cylindrical battery code spraying device according to claim 1, characterized in that: the bottom of the working table (6) is provided with a ground pin (31) with adjustable height.
CN201922361476.9U 2019-12-25 2019-12-25 Cylindrical battery code spraying device Active CN211808444U (en)

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Application Number Priority Date Filing Date Title
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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112478316A (en) * 2020-12-20 2021-03-12 王朋 Continuous waterproof coiled material production device and working method thereof
CN114229327A (en) * 2021-12-06 2022-03-25 黄冈职业技术学院 Counting and transferring device of new energy automobile power battery assembly line
CN115157849A (en) * 2022-08-01 2022-10-11 深圳市国钠科技有限公司 Automatic code spraying device for sodium ion battery processing

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112478316A (en) * 2020-12-20 2021-03-12 王朋 Continuous waterproof coiled material production device and working method thereof
CN114229327A (en) * 2021-12-06 2022-03-25 黄冈职业技术学院 Counting and transferring device of new energy automobile power battery assembly line
CN114229327B (en) * 2021-12-06 2024-02-27 黄冈职业技术学院 Counting and transferring device of new energy automobile power battery assembly line
CN115157849A (en) * 2022-08-01 2022-10-11 深圳市国钠科技有限公司 Automatic code spraying device for sodium ion battery processing
CN115157849B (en) * 2022-08-01 2023-12-22 深圳市国钠科技有限公司 Automatic code spraying device for sodium ion battery processing

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