Battery multi-item feeding device

The battery multi-item feeder system addresses the inflexibility of existing equipment by allowing simultaneous handling and adjustable counts of different battery types, enhancing efficiency and reducing costs.

CN223102060UActive Publication Date: 2025-07-15FUJIAN NANPING NANFU BATTERY
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Patent Information

Application Number
CN202422476245.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-14
Publication Date
2025-07-15
Estimated Expiration
2034-10-14

AI Technical Summary

Technical Problem

Existing battery card-mounted equipment can only perform battery card-mounted for specified items and cannot be flexibly adjusted, resulting in poor equipment compatibility, increasing procurement costs and wasting production space.

Method used

A battery multi-item feeding device is designed, including a battery feeding mechanism, a battery conveying runway and a battery transfer device. Through the combination of a dial, a guard plate, a transverse shifting mechanism, a lifting mechanism and a longitudinal shifting mechanism, the flexible conveying and transfer of batteries is realized to meet the production needs of different products.

Benefits of technology

It realizes the automated production of battery card packaging, improves the adaptability and versatility of the equipment, and reduces equipment costs and land occupation needs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a battery multi-item feeding device. The battery multi-item feeding device comprises a battery discharging mechanism, a battery conveying track and a battery transferring device, the battery discharging mechanism comprises a shifting wheel and a protective plate, a battery discharging channel is formed between the protective plate and the shifting wheel, and the battery discharging channel is located over the input end of the battery conveying track; the battery conveying track comprises a conveying belt, and a plurality of battery placing slots are formed in the conveying belt; the battery transfer device comprises a transverse moving mechanism, a lifting mechanism, a longitudinal moving mechanism and a suction cup assembly. According to the battery multi-item feeding device, the battery transfer device is arranged on the conveying path of the battery conveying track, so that automatic production of a battery hanging, clamping and packaging procedure is achieved, meanwhile, the single-time conveying amount of the batteries is controllable through the arrangement of the battery discharging mechanism, and the battery conveying efficiency is improved. The device can adapt to production of battery hanging cards of various different items, and is high in adaptability and high in universality.
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Description

Technical Field

[0001] The utility model relates to the technical field of battery manufacturing, in particular to a battery multi-item feeding device. Background Art

[0002] In the battery industry, many batteries are sold in the form of hanging cards. The existing single battery hanging card device can only perform battery hanging cards for specified items. For example, a single battery hanging card device can only separately suck 2 batteries (or separately suck 3, 4, 6, 8 batteries) into the blister for hanging card packaging. The compatibility of the device is poor and it cannot convey and hang cards for batteries of each item at the same time, and cannot flexibly adjust the hanging card items to meet the production requirements. As a result, for the packaging of batteries of each item, a corresponding battery hanging card device needs to be separately configured, which not only greatly increases the procurement cost of the device, but also wastes the available production space. Summary of the Utility Model

[0003] The purpose of the utility model is to provide a battery multi-item feeding device.

[0004] The technical solution for realizing the purpose of the utility model is: a battery multi-item feeding device, which includes a battery blanking mechanism, a battery conveying runway and a battery transfer device;

[0005] The battery blanking mechanism includes a dial wheel and a guard plate. A plurality of tooth grooves are provided on the peripheral wall of the dial wheel, and the plurality of tooth grooves are arranged and distributed along the circumferential direction of the dial wheel. The dial wheel is rotatably installed, and the dial wheel is in transmission connection with a rotation driving mechanism and is driven to rotate by the rotation driving mechanism. The guard plate is installed outside the dial wheel, and a battery blanking channel is formed between the guard plate and the dial wheel. The battery blanking channel is directly above the input end of the battery conveying runway;

[0006] The battery conveying runway includes a conveyor belt, and a plurality of battery placement slots are provided on the conveyor belt. The plurality of battery placement slots are distributed along the length direction of the conveyor belt, and there are more than two battery placement grooves in the battery placement slots;

[0007] The battery transfer device includes a transverse movement mechanism, a lifting mechanism, and a longitudinal movement mechanism. The transverse movement mechanism includes a transverse movement track, a cross beam, and a transverse movement drive mechanism. The transverse movement track is perpendicular to the battery conveying runway. The cross beam is slidably installed on the transverse movement track. The cross beam is located above the battery conveying runway and is in transmission connection with the transverse movement drive mechanism and can be driven by the transverse movement drive mechanism to move along the transverse movement track. The lifting mechanism is installed on the cross beam, and a lifting frame is installed on the lifting mechanism and is driven by the lifting mechanism to move up and down. The longitudinal movement mechanism includes a longitudinal movement track, a longitudinal beam, and a longitudinal movement drive mechanism. The longitudinal movement track is installed on the lifting frame. The longitudinal movement track is perpendicular to the transverse movement track. The longitudinal beam is slidably installed on the longitudinal movement track and is in transmission connection with the longitudinal movement drive mechanism and can be driven by the longitudinal movement drive mechanism to move along the longitudinal movement track. A suction cup assembly is installed on the longitudinal beam, and the suction cup assembly is located at the bottom of the longitudinal beam.

[0008] Further, magnets are provided inside the dial. The magnets are fixedly installed. The magnets are fixedly installed on the machine frame, and the distribution of the magnets is limited to that the batteries conveyed along the battery blanking channel can be adsorbed, and the batteries output from the battery blanking channel are not adsorbed. The magnets are used to provide suction force, so that the batteries conveyed in the battery blanking channel can be tightly adhered and conveyed to the side close to the center of the dial under the action of this suction force, avoiding the batteries approaching the guard plate, contacting the guard plate, and being damaged by friction.

[0009] Further, the axis of the dial is perpendicular to the battery conveying runway.

[0010] Further, the axis of the tooth groove is perpendicular to the battery conveying runway.

[0011] Further, the guard plate is a movable guard plate. Under the structure of the movable guard plate, the installation is more flexible, which is convenient for making adaptive adjustments to the battery blanking channel for different batteries.

[0012] Further, the axis of the battery placement groove is perpendicular to the battery conveying runway.

[0013] Further, the transverse movement drive mechanism is a motor, and the cross beam is in transmission connection with the transverse movement drive mechanism through a belt. During operation, the transverse movement drive mechanism drives, sequentially drives the belt and the cross beam connected to the belt, so that the cross beam moves along the transverse movement track.

[0014] Further, the lifting mechanism includes a lead screw and a lifting motor. The lead screw is vertically and rotatably installed on the cross beam. The lifting motor is in transmission connection with the lead screw. The lifting frame includes a cross plate and guide rods. The cross plate is threadedly sleeved on the lead screw. The guide rods are vertically arranged and fixedly installed on the cross plate. The guide rods movably pass through the cross beam. During operation, driven by the lifting motor, the lead screw rotates, and the rotating lead screw drives the lifting frame to move up and down. This device has a simple structure and high accuracy in reaching the lifting position. In addition to restricting the cross plate to prevent it from rotating, the guide rods also guide the lifting, making the lifting operation of the lifting frame more stable.

[0015] Further, the longitudinal movement driving mechanism is a cylinder. The telescopic rod of the longitudinal movement driving mechanism is parallel to the longitudinal movement track. During operation, the longitudinal movement driving mechanism expands and contracts, driving the longitudinal beam and the suction cup assembly thereon to move along the longitudinal movement track.

[0016] Further, a longitudinal movement limiting mechanism is installed on the moving path of the longitudinal beam. The longitudinal movement limiting mechanism includes a nut and a bolt. The nut is fixedly installed on the longitudinal beam. The bolt passes through the nut and is threadedly installed with the nut. The bolt and the longitudinal movement mechanism are located on both sides of the longitudinal beam, and the bolt faces the longitudinal beam. The bolt is parallel to the longitudinal movement track. During the working process, the position of the bolt can be adjusted by rotating the bolt, thereby adjusting the moving stroke of the longitudinal beam. This setting can flexibly adjust the moving stroke of the longitudinal beam, enabling the moving stroke of the longitudinal beam to be accurately controlled.

[0017] Further, the suction cup assembly includes a mounting block and suction cups. The mounting block is fixedly installed at the bottom of the longitudinal beam. The suction cups are installed at the bottom of the mounting block. The number of suction cups is the same as the number of battery placement slots in each battery placement groove position. With this setting, it is convenient to first install the suction cups on the mounting block and then install the whole on the longitudinal beam, facilitating the installation operation.

[0018] Further, the number of the suction cup assemblies is several. The several suction cup assemblies are arranged and distributed. The arrangement direction of the several suction cup assemblies is parallel to the battery conveying runway. The several suction cup assemblies suck simultaneously, with higher working efficiency.

[0019] Furthermore, the rotation driving mechanism is electrically connected to a control unit. In this setting, through the parameter setting of the control unit, it is convenient to control the driving of the rotation driving mechanism, and then control the rotation of the dial. In this way, when feeding batteries of different items, it is convenient to control the rotation angle of the dial each time, and then control the number of batteries transported to the battery placement slot. For example, when packaging 2 batteries by hanging card, the control unit controls the rotation driving mechanism to make the dial output 2 batteries to the battery placement slot each time; when packaging 3 batteries by hanging card, the control unit controls the rotation driving mechanism to make the dial output 3 batteries to the battery placement slot each time.

[0020] For the battery multi-item feeding device of the present utility model, by arranging the battery transfer device on the conveying path of the battery conveying runway, after the battery transfer device sucks and transfers the batteries conveyed on the battery conveying runway, it can feed materials for the packaging process of battery hanging cards, realizing the automated production of the battery hanging card packaging process. At the same time, when feeding materials for the battery hanging card packaging process, through the setting of the battery feeding mechanism, while the batteries are queued for conveying, the single-time conveying volume of the batteries can also be controlled by the rotation control of the dial, making the single-time conveying volume of the batteries adjustable. Furthermore, when producing battery hanging cards of different items, the single-time conveying volume of the batteries can be adjusted to adapt to the production of various different items of battery hanging cards. The battery multi-item feeding device of the present utility model can adapt to the production of various different items of battery hanging cards with a single device, having high adaptability and strong versatility, and effectively solving the problems of the cost and floor area of traditional equipment.

[0021] The battery multi-item feeding device of the present utility model includes the battery transfer device of the transverse movement mechanism, the lifting mechanism, and the longitudinal movement mechanism. It can not only perform transverse movement through the transverse movement mechanism and lifting through the lifting mechanism to complete the transfer of the battery and feed materials for the hanging card blister packaging, but also when there is a longitudinal position deviation between the suction cup assembly and the battery placement slot on the battery conveying runway, or between the battery placement slot on the battery conveying runway and the hanging card blister on the side, perform longitudinal movement through the longitudinal movement mechanism to solve the above longitudinal position deviation problem, making the operation more flexible and reliable, and not being unable to transfer the battery and feed materials for the battery due to the longitudinal position deviation between the suction cup assembly and the battery placement slot on the battery conveying runway, or between the battery placement slot on the battery conveying runway and the hanging card blister on the side.

[0022] The battery multi-item feeding device of the present utility model analyzes and considers the operating characteristics and the upper and lower surface structure characteristics, installs the lifting mechanism on the transverse movement mechanism, and installs the longitudinal movement mechanism on the lifting mechanism. Among them, the transverse movement mechanism with strong load-bearing capacity and large operating stroke is located at the bottom layer, which can not only stably bear the load but also facilitate the formation of a large-stroke operation; the lifting mechanism with small load-bearing capacity and large operating stroke is located in the middle layer, which does not need to bear a large load and can also form a large-stroke operation; although it is difficult to form a large-stroke operation on the upper layer, the longitudinal movement mechanism itself requires a small operating stroke. For the battery multi-item feeding device of the present utility model, the structural distribution of the transverse movement mechanism, the lifting mechanism and the longitudinal movement mechanism is reasonable, the operation is stable and efficient. BRIEF DESCRIPTION OF THE DRAWINGS

[0023] Figure 1 FIG. is a three-dimensional structural schematic diagram of the battery multi-item feeding device of the present utility model;

[0024] Figure 2 FIG. is a three-dimensional structural schematic diagram of the battery blanking mechanism of the battery multi-item feeding device of the present utility model;

[0025] Figure 3 FIG. is a sectional structural schematic diagram of the battery blanking mechanism of the battery multi-item feeding device of the present utility model;

[0026] Figure 4 FIG. is a three-dimensional structural schematic diagram of the battery blanking mechanism and the battery conveying runway of the battery multi-item feeding device of the present utility model;

[0027] Figure 5 FIG. is a three-dimensional structural schematic diagram of the battery transfer device of the battery multi-item feeding device of the present utility model;

[0028] Figure 6 FIG. is a front view structural schematic diagram of the battery transfer device of the battery multi-item feeding device of the present utility model;

[0029] Figure 7 FIG. is a control structural schematic diagram of the battery multi-item feeding device of the present utility model. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0030] The following describes in detail the preferred embodiments of the battery multi-item feeding device of the present utility model with reference to the drawings:

[0031] As Figures 1 to 6 shown, a battery multi-item feeding device includes a battery blanking mechanism 1, a battery conveying runway 2 and a battery transfer device 3;

[0032] The battery blanking mechanism 1 includes a dial wheel 11 and a guard plate 12. A plurality of tooth grooves 111 are provided on the circumferential wall of the dial wheel 11. The plurality of tooth grooves 111 are arranged and distributed along the circumferential direction of the dial wheel 11. The dial wheel 11 is rotatably installed. The dial wheel 11 is in transmission connection with a rotary drive mechanism 110 and is driven to rotate by the rotary drive mechanism 110. The guard plate 12 is installed outside the dial wheel 11. A battery blanking channel 10 is formed between the guard plate 12 and the dial wheel 11. The outlet of the battery blanking channel 10 is directly above the input end of the battery conveying runway 2.

[0033] The battery conveying runway 2 includes a conveyor belt 21. A plurality of battery placement slots 22 are provided on the conveyor belt 21. The plurality of battery placement slots 22 are distributed along the length direction of the conveyor belt 21. Two or more battery placement grooves 221 are provided on the battery placement slots 22.

[0034] The battery transfer device 3 includes a transverse movement mechanism 31, a lifting mechanism 32 and a longitudinal movement mechanism 33. The transverse movement mechanism 31 includes a transverse movement track 311, a cross beam 312 and a transverse movement drive mechanism 313. The transverse movement track 311 is perpendicular to the battery conveying runway 2. The cross beam 312 is slidably installed on the transverse movement track 311. The cross beam 312 is located above the battery conveying runway 2. The cross beam 312 is in transmission connection with the transverse movement drive mechanism 313 and is driven by the transverse movement drive mechanism 313 to move along the transverse movement track 311. The lifting mechanism 32 is installed on the cross beam 312. A lifting frame 320 is installed on the lifting mechanism 32 and is driven by the lifting mechanism 32 to move up and down. The longitudinal movement mechanism 33 includes a longitudinal movement track 331, a longitudinal beam 332 and a longitudinal movement drive mechanism 333. The longitudinal movement track 331 is installed on the lifting frame 320. The longitudinal movement track 331 is perpendicular to the transverse movement track 311. The longitudinal beam 332 is slidably installed on the longitudinal movement track 331. The longitudinal beam 332 is in transmission connection with the longitudinal movement drive mechanism 333 and is driven by the longitudinal movement drive mechanism 333 to move along the longitudinal movement track 331. A suction cup assembly 4 is installed on the longitudinal beam 332. The suction cup assembly 4 is located at the bottom of the longitudinal beam 332.

[0035] For the battery multi-item feeding device of the present utility model, the battery blanking mechanism 1 is used for queue conveying of batteries. In the battery blanking mechanism 1, the rotary drive mechanism 110 provides power for the rotation of the dial wheel 11. The dial wheel 11 with the tooth grooves 111 on its circumferential wall is used for queue conveying of batteries. The guard plate 12 is installed outside the dial wheel 11 and is used to form the battery blanking channel 10 between the guard plate 12 and the dial wheel 11.

[0036] The battery multi-item feeding device of the present utility model, wherein the battery conveying runway 2 is used for feeding and conveying the batteries. In the battery conveying runway 2, the conveyor belt 21 serves as the conveying power of the battery conveying runway 2; the battery placement slot 22 is adapted to the position of the hanging card and blister; the battery placement groove 221 is used to limit the batteries placed therein.

[0037] The battery multi-item feeding device of the present utility model, wherein the battery transfer device 3 is used to shift the fed batteries onto the blister for hanging card packaging. In the battery transfer device 3, the transverse movement mechanism 31 is used for transverse movement; the lifting mechanism 32 is used for lifting; the longitudinal movement mechanism 33 is used for longitudinal movement; the suction cup assembly 4 is used for sucking the batteries.

[0038] When the battery multi-item feeding device of the present utility model works, the batteries enter the battery feeding channel 10 of the battery feeding mechanism 1. The batteries entering the battery feeding channel 10 are driven by the rotating drive mechanism 110 to rotate the dial 11 under the limiting action of the tooth grooves 111 of the dial 11, and are conveyed to the battery placement groove 221 of the battery placement slot 22 on the battery conveying runway 2; then, driven by the conveyor belt 21, they are conveyed along the battery conveying runway 2 to the battery transfer device 3; after the batteries are conveyed to the battery transfer device 3, they are driven by the transverse movement drive mechanism 313 of the transverse movement mechanism 31 to drive the cross beam 312 and the components thereon to move along the transverse movement track 311 to the directly above the batteries; they are driven by the lifting mechanism 32 of the lifting mechanism 32 to drive the lifting frame 320 and the components thereon to descend; then, the suction cup assembly 4 sucks up the batteries in the battery placement groove 221; after the batteries are sucked up, the lifting mechanism 32 of the lifting mechanism 32 drives again to drive the suction cup assembly 4 and the sucked-up batteries to rise; then, the transverse movement drive mechanism 313 of the transverse movement mechanism 31 drives to drive the suction cup assembly 4 and the sucked-up batteries to move along the transverse movement track 311 to the blister on one side of the battery conveying runway 2 for hanging card packaging. Thus, the operation is cycled.

[0039] In the battery multi-item feeding device of the present utility model, under different hanging card structures of the item batteries, each rotation of the dial 11 conveys a corresponding number of batteries to the battery placement groove 221 of the battery placement slot 22. For example, for 4-battery hanging card, each rotation of the dial 11 conveys 4 batteries to the battery placement groove 221 of the battery placement slot 22. For example, for 3-battery hanging card, each rotation of the dial 11 only conveys 3 batteries to the battery placement groove 221 of the battery placement slot 22.

[0040] The battery multi-item feeding device of the present utility model is provided with the battery transfer device 3 on the conveying path of the battery conveying runway 2. After the battery transfer device 3 sucks and transfers the batteries conveyed on the battery conveying runway 2, it can feed the packaging process of battery hanging cards, realizing the automated production of the battery hanging card packaging process. At the same time, when feeding the battery hanging card packaging process, through the setting of the battery blanking mechanism 1, while the batteries are queued and conveyed, the single-time conveying amount of the batteries can also be controlled by the rotation control of the dial wheel 11, making the single-time conveying amount of the batteries adjustable. Furthermore, when producing battery hanging cards of different items, the single-time conveying amount of the batteries can be adjusted to adapt to the production of various different items of battery hanging cards. The battery multi-item feeding device of the present utility model can adapt to the production of various different items of battery hanging cards with one device, with high adaptability and strong versatility, effectively solving the problems of the cost and floor area of traditional equipment.

[0041] The battery transfer device 3 of the battery multi-item feeding device of the present utility model, which includes the transverse movement mechanism 31, the lifting mechanism 32 and the longitudinal movement mechanism 33, can not only perform transverse movement through the transverse movement mechanism 31 and lifting through the lifting mechanism 32 to complete the transfer of the battery and realize the feeding operation for hanging card blister packaging, but also, when there is a longitudinal position deviation between the suction cup assembly 4 and the battery placement groove 221 on the battery conveying runway 2, or between the battery placement groove 221 on the battery conveying runway 2 and the side hanging card blister, perform longitudinal movement through the longitudinal movement mechanism 33 to solve the above longitudinal position deviation problem, making the operation more flexible and reliable, and preventing the inability to transfer the battery and feed the battery due to the longitudinal position deviation between the suction cup assembly 4 and the battery placement groove 221 on the battery conveying runway 2, or between the battery placement groove 221 on the battery conveying runway 2 and the side hanging card blister.

[0042] The battery multi-item feeding device of the present utility model. In the battery transfer device 3, the transverse movement mechanism 31 realizes transverse movement, the lifting mechanism 32 realizes lifting, and the longitudinal movement mechanism 33 realizes longitudinal movement. Among the transverse movement mechanism 31, the lifting mechanism 32, and the longitudinal movement mechanism 33, on the one hand, in terms of movement stability, the load of the transverse movement mechanism 31 falls on the transverse movement track 311, and the load of the longitudinal movement mechanism 33 falls on the longitudinal movement track 331. Both the transverse movement track 311 and the longitudinal movement track 331 are horizontal tracks with strong load-bearing capacity. Compared with lifting, the horizontal operation with stable load-bearing is also more stable. On the other hand, in terms of the operating stroke, the transverse movement mechanism 31 and the lifting mechanism 32 undertake the main actions of battery transfer and have a large operating stroke, while the longitudinal movement track 331 solves the longitudinal position deviation and has a small operating stroke. In terms of the vertical distribution structure, the structure at the basic layer has a large load-bearing capacity but is convenient for forming a large-stroke operation; the structure at the middle layer has a relatively small load-bearing capacity and can also be convenient for forming a large-stroke operation; the structure at the upper layer has a very small load-bearing capacity and is difficult to form a large-stroke operation.

[0043] The battery multi-item feeding device of the present utility model. After analyzing and considering the above operating characteristics and vertical distribution structure characteristics, the lifting mechanism 32 is installed on the transverse movement mechanism 31, and the longitudinal movement mechanism 33 is installed on the lifting mechanism 32. Among them, the transverse movement mechanism 31 with strong load-bearing capacity and large operating stroke is located at the bottom layer, which can not only stably bear the load but also be convenient for forming a large-stroke operation; the lifting mechanism 32 with small load-bearing capacity and large operating stroke is located at the middle layer, which neither needs to bear a large load nor can form a large-stroke operation; although it is difficult to form a large-stroke operation at the upper layer, the longitudinal movement mechanism 33 itself requires a small operating stroke. In the battery multi-item feeding device of the present utility model, the structural distribution of the transverse movement mechanism 31, the lifting mechanism 32, and the longitudinal movement mechanism 33 is reasonable, the operation is stable and efficient, and the fluency of operation and the feeding efficiency can be greatly improved.

[0044] In the battery multi-item feeding device of the present utility model, preferably, a magnet 13 is provided inside the dial 11, and the magnet 13 is fixedly installed. The magnet 13 is fixedly installed on the machine frame, and the distribution of the magnet 13 is limited to that the batteries conveyed along the battery blanking channel 10 can be adsorbed, and the batteries output from the battery blanking channel 10 are not adsorbed. The magnet 13 is used to provide suction force, so that the batteries conveyed in the battery blanking channel 10 can be tightly adhered and conveyed to the side of the battery blanking channel 10 close to the center of the dial 11 under the action of this suction force, avoiding the batteries approaching the guard plate 12 and contacting and being damaged by friction with the guard plate 12.

[0045] In the battery multi-item feeding device of the present utility model, preferably, the axis of the dial 11 is perpendicular to the battery conveying runway 2.

[0046] The battery multi-item feeding device of the present utility model, preferably, the axis of the tooth groove 111 is perpendicular to the battery conveying track 2.

[0047] The battery multi-item feeding device of the present utility model, preferably, the guard plate 12 is a movable guard plate. Under the structure of the movable guard plate, the installation is more flexible, which is convenient for making adaptive adjustments to the battery blanking channel 10 for different batteries.

[0048] The battery multi-item feeding device of the present utility model, preferably, the axis of the battery placement groove 221 is perpendicular to the battery conveying track 2.

[0049] For the battery multi-item feeding device of the present utility model, the transverse movement driving mechanism 313 is a motor, and the cross beam 312 is in transmission connection with the transverse movement driving mechanism 313 through a belt 314. During operation, driven by the transverse movement driving mechanism 313, the belt 314 and the cross beam 312 connected to the belt 314 are driven in sequence, so that the cross beam 312 moves along the transverse movement track 311.

[0050] The battery multi-item feeding device of the present utility model, preferably, the lifting mechanism 32 includes a lead screw 321 and a lifting motor 322. The lead screw 321 is vertically and rotatably installed on the cross beam 312, the lifting motor 322 is in transmission connection with the lead screw 321. The lifting frame 320 includes a cross plate 3201 and a guide rod 3202. The cross plate 3201 is threadedly sleeved on the lead screw 321, the guide rod 3202 is vertically arranged and fixedly installed on the cross plate 3201, and the guide rod 3202 movably passes through the cross beam 312. During operation, driven by the lifting motor 322, the lead screw 321 rotates, and the rotating lead screw 321 drives the lifting frame 320 to move up and down. This device has a simple structure, high precision in place during lifting, and in addition to restricting the cross plate 3201 to prevent the cross plate 3201 from rotating, the guide rod 3202 also guides the lifting, making the lifting operation of the lifting frame 320 more stable.

[0051] For the battery multi-item feeding device of the present utility model, the longitudinal movement driving mechanism 333 is a cylinder. The telescopic rod of the longitudinal movement driving mechanism 333 is parallel to the longitudinal movement track 331. During operation, the longitudinal movement driving mechanism 333 expands and contracts, driving the longitudinal beam 332 and the suction cup assembly 4 thereon to move along the longitudinal movement track 331.

[0052] The multi-item feeding device for batteries of the present utility model. Preferably, a longitudinal movement limiting mechanism 334 is installed on the movement path of the longitudinal beam 332. The longitudinal movement limiting mechanism 334 includes a nut 3341 and a bolt 3342. The nut 3341 is fixedly installed on the longitudinal beam 332. The bolt 3342 passes through the nut 3341 and is threadedly installed with the nut 3341. The bolt 3342 and the longitudinal movement mechanism 33 are located on both sides of the longitudinal beam 332, and the bolt 3342 faces the longitudinal beam 332. The bolt 3342 is parallel to the longitudinal movement track 331. During the working process, the position of the bolt 3342 can be adjusted by rotating the bolt 3342, and then the movement stroke of the longitudinal beam 332 can be adjusted. With this setting, the movement stroke of the longitudinal beam 332 can be flexibly adjusted, and the movement stroke of the longitudinal beam 332 can be accurately controlled.

[0053] The multi-item feeding device for batteries of the present utility model. Preferably, the suction cup assembly 4 includes a mounting block 41 and suction cups 42. The mounting block 41 is fixedly installed at the bottom of the longitudinal beam 332. The suction cups 42 are installed at the bottom of the mounting block 41. The number of the suction cups 42 is the same as the number of the battery placement slots 221 on each battery placement slot 22. With this setting, it is convenient to first install the suction cups 42 on the mounting block 41 and then install the whole on the longitudinal beam 332, which is convenient for the installation operation.

[0054] The multi-item feeding device for batteries of the present utility model. Preferably, the number of the suction cup assemblies 4 is several. The several suction cup assemblies 4 are arranged and distributed, and the arrangement direction of the several suction cup assemblies 4 is parallel to the battery conveying runway 2. The several suction cup assemblies 4 suck simultaneously, and the working efficiency is higher.

[0055] The multi-item feeding device for batteries of the present utility model. Preferably, as Figure 7 shown, the rotation driving mechanism 110 is electrically connected to a control unit 5. With this setting, through the parameter setting of the control unit 5, the driving of the rotation driving mechanism 110 can be conveniently controlled, and then the rotation of the dial 11 can be controlled. In this way, when feeding batteries of different items, the rotation angle of the dial 11 each time can be conveniently controlled, and then the number of batteries conveyed to the battery placement slot 22 can be controlled. For example, when packing 2 batteries by hanging card, the control unit 5 controls the rotation driving mechanism 110 to make the dial 11 output 2 batteries to the battery placement slot 22 each time; when packing 3 batteries by hanging card, the control unit 5 controls the rotation driving mechanism 110 to make the dial 11 output 3 batteries to the battery placement slot 22 each time.

[0056] The battery multi-item feeding device of the present utility model. Preferably, the conveyor belt 21, the transverse movement driving mechanism 313, the lifting mechanism 32, the longitudinal movement driving mechanism 333 and the suction cup assembly 4 are respectively electrically connected to the control unit 5. Under this setting, when producing battery hang cards of different items, through the control of the conveyor belt 21, the transverse movement driving mechanism 313, the lifting mechanism 32, the longitudinal movement driving mechanism 333, the suction cup assembly 4, etc. by the control unit 5, the operation can be made more flexible.

[0057] For the battery multi-item feeding device of the present utility model, the control unit 5 is a PLC controller or an MCU controller.

[0058] For those of ordinary skill in the technical field to which the present utility model pertains, without departing from the concept of the present utility model, several simple deductions or substitutions can also be made, which should all be regarded as falling within the protection scope of the present utility model.

Claims

1. A battery multi-item feeding device, characterized in that: It includes a battery blanking mechanism, a battery conveying runway, and a battery transfer device; The battery blanking mechanism includes a dial wheel and a guard plate. A plurality of tooth grooves are provided on the circumferential wall of the dial wheel, and the plurality of tooth grooves are arranged and distributed along the circumferential direction of the dial wheel. The dial wheel is rotatably installed and is in transmission connection with a rotary drive mechanism and is driven to rotate by the rotary drive mechanism. The guard plate is installed outside the dial wheel, and a battery blanking channel is formed between the guard plate and the dial wheel. The battery blanking channel is directly above the input end of the battery conveying runway; The battery conveying runway includes a conveyor belt, and a plurality of battery placement slots are provided on the conveyor belt. The plurality of battery placement slots are distributed along the length direction of the conveyor belt, and each battery placement slot has more than two battery placement grooves; The battery transfer device includes a transverse movement mechanism, a lifting mechanism, and a longitudinal movement mechanism. The transverse movement mechanism includes a transverse movement track, a cross beam, and a transverse movement drive mechanism. The transverse movement track is perpendicular to the battery conveying runway. The cross beam is slidably installed on the transverse movement track. The cross beam is located above the battery conveying runway and is in transmission connection with the transverse movement drive mechanism and is driven by the transverse movement drive mechanism to move along the transverse movement track. The lifting mechanism is installed on the cross beam, and a lifting frame is installed on the lifting mechanism and is driven by the lifting mechanism to move up and down. The longitudinal movement mechanism includes a longitudinal movement track, a longitudinal beam, and a longitudinal movement drive mechanism. The longitudinal movement track is installed on the lifting frame, and the longitudinal movement track is perpendicular to the transverse movement track. The longitudinal beam is slidably installed on the longitudinal movement track and is in transmission connection with the longitudinal movement drive mechanism and is driven by the longitudinal movement drive mechanism to move along the longitudinal movement track. A suction cup assembly is installed on the longitudinal beam, and the suction cup assembly is located at the bottom of the longitudinal beam.

2. The battery multi-item feeding device according to claim 1, wherein: Magnets are provided inside the dial wheel, and the magnets are fixedly installed.

3. The battery multi-item feeding device according to claim 1, characterized in that: The guard plate is a movable guard plate.

4. The battery multi-item feeding device according to claim 1, characterized in that: The axis of the dial wheel is perpendicular to the battery conveying runway; the axis of the tooth groove is perpendicular to the battery conveying runway; the axis of the battery placement groove is perpendicular to the battery conveying runway.

5. The battery multi-item feeding device according to claim 1, wherein: The lifting mechanism includes a lead screw and a lifting motor. The lead screw is vertically and rotatably installed on the cross beam. The lifting motor is in transmission connection with the lead screw. The lifting frame includes a cross plate and a guide rod. The cross plate is threadedly sleeved on the lead screw. The guide rod is vertically arranged and fixedly installed on the cross plate. The guide rod movably passes through the cross beam.

6. The battery multi-item feeding device according to claim 1, wherein: The transverse movement drive mechanism is a motor, and the cross beam is in transmission connection with the transverse movement drive mechanism through a belt; the longitudinal movement drive mechanism is a cylinder.

7. The battery multi-item feeding device according to claim 1, characterized in that: A longitudinal movement limiting mechanism is installed on the movement path of the longitudinal beam. The longitudinal movement limiting mechanism includes a nut and a bolt. The nut is fixedly installed on the longitudinal beam. The bolt passes through the nut and is threadedly installed with the nut. The bolt and the longitudinal movement mechanism are located on both sides of the longitudinal beam, and the bolt faces the longitudinal beam.

8. The battery multi-item feeding device according to claim 1, wherein: The suction cup assembly includes a mounting block and suction cups. The mounting block is fixedly installed at the bottom of the longitudinal beam, and the suction cups are installed at the bottom of the mounting block. The number of the suction cups is the same as the number of the battery placement grooves in each battery placement slot.

9. The battery multi-item feeding device according to claim 1, characterized in that: The number of the suction cup assemblies is several, and the several suction cup assemblies are arranged and distributed. The arrangement direction of the several suction cup assemblies is parallel to the battery conveying runway.

10. The battery multi-item feeding device according to claim 1, characterized in that: The rotary drive mechanism is electrically connected to a control unit.