Movable aluminum foil box auxiliary transfer equipment

By designing a mobile aluminum foil box auxiliary transport equipment including support frame, mobile components, lifting components and auxiliary conveying components, the problem of staff in the prior art relying on manpower to transport aluminum foil boxes is solved, and efficient and automated aluminum foil box transfer is achieved.

CN223032410UActive Publication Date: 2025-06-27NINGXIA HAILI ELECTRONICS
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Patent Information

Application Number
CN202422067859.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-26
Publication Date
2025-06-27
Estimated Expiration
2034-08-26

AI Technical Summary

Technical Problem

In the prior art, staff need to rely on manpower to transport the aluminum foil box to or unload it from the transfer equipment, resulting in high labor intensity and low efficiency, which cannot meet the needs of rapid transfer of aluminum foil box.

Method used

A mobile aluminum foil box auxiliary transport equipment is designed, including a support frame, a moving assembly, a lift assembly and an auxiliary conveying assembly. The auxiliary conveying assembly includes a conveying platform, an automatic conveying part and an auxiliary conveying part. The conveying platform is driven to lift and lower through the lifting assembly, and the aluminum foil box is automatically entered or removed from the conveying platform by using the automatic conveying part and the auxiliary conveying part.

Benefits of technology

It greatly reduces the labor intensity of staff, improves the transportation efficiency, and meets the demand for rapid transportation of aluminum foil boxes.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN223032410U_ABST
    Figure CN223032410U_ABST
Patent Text Reader

Abstract

The utility model provides movable aluminum foil box auxiliary transfer equipment, which belongs to the technical field of aluminum foil box transfer and comprises a support frame, a moving component, a lifting component and an auxiliary conveying component, the moving component is arranged at the bottom of the support frame, the lifting component is arranged on the support frame, and the auxiliary conveying component is arranged at the front end of the support frame. The auxiliary conveying assembly comprises a conveying platform, an automatic conveying part, an auxiliary conveying part, a front limiting part and a rear limiting part, the front end of the conveying platform is an inclined plane, the automatic conveying part, the auxiliary conveying part, the front limiting part and the rear limiting part are all arranged on the conveying platform, the auxiliary conveying part is arranged on one side or two sides of the automatic conveying part, the automatic conveying part drives the aluminum foil box to move, and the aluminum foil box is arranged on the conveying platform. And the auxiliary conveying part assists the aluminum foil box in moving, the front limiting part and the rear limiting part prevent the aluminum foil box from falling off, in the using process, the aluminum foil box can automatically enter the conveying platform or be unloaded from the conveying platform, the labor intensity of workers is reduced, the transferring efficiency is improved, and the requirement for rapidly transferring the aluminum foil box is met.
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Description

Technical Field

[0001] The utility model relates to the field of box transfer, and particularly relates to a mobile auxiliary transfer device for aluminum foil boxes. Background Art

[0002] After the finished aluminum foil rolls are packed and sealed in aluminum foil boxes, the aluminum foil boxes need to be transported from the packing area to the shipping area for storage. Since the aluminum foil boxes are heavy, it is time-consuming and laborious for the staff to carry them during the transportation process, resulting in a large labor intensity. Therefore, most staff use transfer equipment to transfer the aluminum foil boxes.

[0003] In the prior art, a Chinese utility model patent with the patent number CN202518238U and the name of "a trolley for replacing an electric vehicle battery box" discloses a transfer device. The transfer device includes a vehicle chassis with walking wheels, a box tray is arranged on the vehicle chassis, load-bearing rollers are rotatably assembled on the box tray, and a lifting device is arranged between the box tray and the vehicle chassis. During use, relevant staff can push the transfer device to the corresponding position through the walking wheels to transfer the box. However, during the process of using this transfer device to transfer the box, relevant staff need to manually carry the box onto the transfer device or unload the box from the transfer device, resulting in time-consuming and laborious work for the relevant staff and low efficiency, which cannot meet the requirement of quickly transferring aluminum foil boxes. Summary of the Invention

[0004] In view of this, it is necessary to provide a mobile auxiliary transfer device for aluminum foil boxes to solve the technical problems that during the transfer process of aluminum foil boxes, relevant staff manually carry the aluminum foil boxes onto the transfer device or unload the aluminum foil boxes from the transfer device, resulting in a large labor intensity and low efficiency of the relevant staff and unable to meet the requirement of quickly transferring aluminum foil boxes.

[0005] A mobile auxiliary transfer device for aluminum foil boxes includes a support frame, a moving component, a lifting component, and an auxiliary conveying component. The moving component is arranged at the bottom of the support frame, the lifting component is arranged on the support frame, the auxiliary conveying component is arranged at the front end of the support frame. The moving component is connected to the bottom of the support frame, the lifting component is connected to the support frame, the auxiliary conveying component is connected to the front end of the support frame, the lifting component is connected to the auxiliary conveying component. The moving component drives the support frame to move, and the lifting component drives the auxiliary conveying component to lift on the support frame;

[0006] The auxiliary conveying assembly includes a conveying platform, an automatic conveying part, and an auxiliary conveying part. The front end of the conveying platform is an inclined surface. One end of the front-end inclined surface of the conveying platform is connected to the upper surface of the conveying platform, and the other end of the front-end inclined surface of the conveying platform is connected to the lower surface of the conveying platform. The front-end inclined surface of the conveying platform is inclined in the direction conducive to the entry of the aluminum foil box into the conveying platform. The conveying platform is arranged at the front end of the support frame. The automatic conveying part and the auxiliary conveying part are both arranged on the conveying platform. The auxiliary conveying part is arranged on one side or both sides of the automatic conveying part. The auxiliary conveying part is parallel to the automatic conveying part. The conveying platform is connected to the support frame and the lifting assembly. The automatic conveying part is connected to the conveying platform, and the auxiliary conveying part is connected to the conveying platform. The lifting assembly drives the conveying platform to move up and down on the support frame. The automatic conveying part drives the aluminum foil box to enter or be unloaded from the conveying platform, and the auxiliary conveying part assists the aluminum foil box to enter or be unloaded from the conveying platform.

[0007] Preferably, a through hole is formed at the rear end of the conveying platform, and at least one automatic conveying groove is formed on the conveying platform. The number of the automatic conveying parts is the same as that of the automatic conveying grooves. The automatic conveying part includes a conveying motor, a transmission shaft, a driving roller, a supporting roller, and a conveyor belt. There is at least one supporting roller. The conveying motor is located on the lower surface of the conveying platform. The transmission shaft is located in the through hole at the rear end of the conveying platform. The transmission shaft is located at the axis of the driving roller. The driving roller, the supporting roller, and the conveyor belt are all located in the automatic conveying groove. The driving roller is located at the rear end of the automatic conveying groove. One of the supporting rollers is located at the front end of the automatic conveying groove. The driving roller is located behind the supporting roller. The conveyor belt is wound around the driving roller and the supporting roller. The conveying motor is connected to the conveying platform. The output gear of the conveying motor meshes with the input gear of the transmission shaft. The transmission shaft is rotatably connected to the conveying platform. The transmission shaft is fixedly connected to the driving roller. The transmission shaft and the supporting roller are rotatably connected to the automatic conveying groove. The driving roller is connected to the conveyor belt. The conveying motor drives the transmission shaft to rotate. The transmission shaft drives the driving roller to rotate. The driving roller drives the conveyor belt to rotate. The driving roller and the supporting roller form the rotating space of the conveyor belt. The supporting roller and the driving roller support the conveyor belt to rotate in the automatic conveying groove. The conveyor belt drives the aluminum foil box to enter or be unloaded from the conveying platform.

[0008] Preferably, the conveyor belt is provided with convex ridges. There are several convex ridges, which are evenly located on the outer surface of the conveyor belt. The convex ridges are inclined, and the convex ridges are inclined towards the rear end of the conveying platform. The convex ridges are fixedly connected to the conveyor belt.

[0009] Preferably, the upper surface of the conveying platform is provided with auxiliary conveying grooves. There is at least one auxiliary conveying groove. The number of the auxiliary conveying parts is the same as that of the auxiliary conveying grooves. The auxiliary conveying grooves are arranged on one side or both sides of the automatic conveying through groove. The auxiliary conveying grooves are parallel to the automatic conveying through groove. The auxiliary conveying parts are balls. The balls are arranged in the auxiliary conveying grooves. The upper surface of the balls is flush with the upper surface of the conveyor belt. The balls are rotatably connected to the auxiliary conveying grooves. The balls assist the aluminum foil boxes to enter or be unloaded from the conveying platform.

[0010] Preferably, the auxiliary conveying assembly further includes a front limiting part and a rear limiting part. The front limiting part is arranged at the front end of the conveying platform. The front limiting part is arranged on one side of the automatic conveying part or the auxiliary conveying part. The front limiting part is parallel to both the automatic conveying part and the auxiliary conveying part. The rear limiting part is arranged at the rear end of the conveying platform. The rear limiting part is arranged behind the automatic conveying part and the auxiliary conveying part. The front limiting part is connected to the conveying platform. The rear limiting part is connected to the conveying platform. The front limiting part restricts the aluminum foil boxes from moving towards the front end of the conveying platform. The rear limiting part restricts the aluminum foil boxes from moving towards the rear end of the conveying platform.

[0011] Preferably, at least one limiting groove is opened at the front end of the conveying platform. A horizontally penetrating through hole is opened at the front end of the conveying platform. The horizontally penetrating through hole at the front end of the conveying platform penetrates through the limiting groove. The front limiting part includes a limiting blocking strip and a rotating rod. The number of the limiting blocking strips is the same as that of the limiting grooves. The limiting blocking strips are arranged in the limiting grooves. One end of the rotating rod passes through the horizontally penetrating through hole at the front end of the conveying platform and is fixedly connected to the limiting blocking strip. The rotating rod drives the limiting blocking strip to rotate in the limiting groove. The front end of the limiting blocking strip contacts the front end of the limiting groove to support the rear end of the limiting blocking strip to protrude out of the limiting groove. And the rear end of the limiting blocking strip restricts the aluminum foil boxes from moving towards the front end of the conveying platform.

[0012] Preferably, the lower surface of the front end of the limit blocking strip has a first magnet, and the upper surface of the front end of the limit groove has a second magnet. The first magnet and the second magnet are opposite magnetic poles and can attract each other. The first magnet is connected to the limit blocking strip, and the second magnet is connected to the limit groove. When the first magnet and the second magnet are magnetically attracted, the rear end of the limit blocking strip protrudes out of the limit groove.

[0013] Preferably, the rear limit part is a blocking plate, the blocking plate is arranged at the rear end of the conveying platform, the blocking plate is integrally formed with the conveying platform, and the blocking plate restricts the movement of the aluminum foil box towards the rear end of the conveying platform.

[0014] Preferably, two support vertical plates are arranged on both sides of the rear end of the conveying platform. The two support vertical plates are parallel to each other. Each of the two support vertical plates is provided with at least two sets of lifting pulley groups. Each set of the lifting pulley groups is composed of two pulleys in the same horizontal direction. Each of the two support vertical plates is further provided with a rotating shaft having the same number of pulleys as the lifting pulley groups. The rotating shaft is arranged on the inner sides of the opposite support vertical plates. The lifting pulley groups are arranged on the rotating shafts. The support vertical plates are integrally formed with the conveying platform. The support vertical plates are rotatably connected to the rotating shafts. The pulleys of the lifting pulley groups are rotatably connected to the rotating shafts. The sliding connection between the two pulleys of the lifting pulley groups and the support frame.

[0015] Preferably, the lifting assembly includes a motor, a fixed pulley, and a transmission belt. The motor is arranged on the side of the conveying platform opposite to the support frame. The fixed pulley is arranged above the support frame. The height of the fixed pulley is higher than the height of the motor. The transmission belt is arranged on the fixed pulley. The motor is fixedly connected to the support frame. The fixed pulley is connected to the support frame. One end of the transmission belt is connected to the conveying platform, and the other end of the transmission belt bypasses the fixed pulley and is connected to the motor. The motor drives the transmission belt to lift, and the transmission belt makes the conveying platform lift on the support frame under the action of the motor.

[0016] As can be seen from the above technical solutions, the mobile aluminum foil box auxiliary transfer device provided by the present invention includes a support frame, a moving assembly, a lifting assembly, and an auxiliary conveying assembly. The moving assembly is arranged at the bottom of the support frame, the lifting assembly is arranged on the support frame, the auxiliary conveying assembly is arranged at the front end of the support frame. The moving assembly is connected to the bottom of the support frame, the lifting assembly is connected to the support frame, the auxiliary conveying assembly is connected to the front end of the support frame, the lifting assembly is connected to the auxiliary conveying assembly. The moving assembly drives the support frame to move, and the lifting assembly drives the auxiliary conveying assembly to lift on the support frame;

[0017] The auxiliary conveying assembly includes a conveying platform, an automatic conveying part, and an auxiliary conveying part. The front end of the conveying platform is an inclined surface. One end of the front-end inclined surface of the conveying platform is connected to the upper surface of the conveying platform, and the other end of the front-end inclined surface of the conveying platform is connected to the lower surface of the conveying platform. The front-end inclined surface of the conveying platform is inclined in the direction that is beneficial for the aluminum foil box to enter the conveying platform. The conveying platform is arranged at the front end of the support frame. The automatic conveying part and the auxiliary conveying part are both arranged on the conveying platform. The auxiliary conveying part is arranged on one side or both sides of the automatic conveying part. The auxiliary conveying part is parallel to the automatic conveying part. The conveying platform is connected to the support frame and the lifting assembly. The automatic conveying part is connected to the conveying platform, and the auxiliary conveying part is connected to the conveying platform. The lifting assembly drives the conveying platform to move up and down on the support frame;

[0018] During the process of transferring the aluminum foil box, the relevant staff controls the lifting assembly to drive the auxiliary conveying assembly to move up and down to the corresponding position on the support frame. When the aluminum foil box needs to enter the conveying platform, the aluminum foil box is located on the front-end inclined surface of the conveying platform. The automatic conveying part rotates forward to drive the aluminum foil box to automatically enter the conveying platform through the front-end inclined surface of the conveying platform, and the lower surface of the aluminum foil box contacts the auxiliary conveying part. The auxiliary conveying part assists the movement of the aluminum foil box. When the aluminum foil box needs to be unloaded from the conveying platform, the automatic conveying part rotates in reverse to drive the aluminum foil box to automatically unload from the conveying platform through the front-end inclined surface of the conveying platform, and the lower surface of the aluminum foil box contacts the auxiliary conveying part. The auxiliary conveying part assists the movement of the aluminum foil box. The automatic conveying part drives the aluminum foil box to enter the conveying platform or unload from the conveying platform, eliminating the need for the relevant staff to manually carry the aluminum foil box onto or off the conveying platform, greatly reducing the labor intensity of the relevant staff, improving the transfer efficiency, and meeting the requirement of quickly transferring the aluminum foil box. Description of the Drawings

[0019] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the following will briefly introduce the drawings required for the description of the embodiments. Obviously, the following drawings are only some embodiments of the present invention. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.

[0020] Figure 1 It is a schematic structural diagram of a mobile aluminum foil box auxiliary transfer device.

[0021] Figure 2 It is a top view of the conveying platform.

[0022] Figure 3 It is a schematic structural diagram of the automatic conveying part.

[0023] Figure 4 It is a schematic structural diagram of the front limiting part.

[0024] Figure 5 It is an axonometric view of one angle of the mobile aluminum foil box auxiliary transfer device.

[0025] Figure 6 It is an axonometric view of another angle of the mobile aluminum foil box auxiliary transfer device.

[0026] Figure 7 It is a partial enlarged view of the moving wheel.

[0027] In the figure: support frame 1, support frame groove 11, first cross plate 12, vertical plate 13, second cross plate 14, moving assembly 2, moving wheel 21, rotating bearing 211, driven wheel 22, lifting assembly 3, motor 31, fixed pulley 32, transmission belt 33, auxiliary conveying assembly 4, conveying platform 41, automatic conveying through groove 411, auxiliary conveying groove 412, limiting groove 413, second magnet 4131, supporting vertical plate 414, lifting pulley group 4141, rotating shaft 4142, automatic conveying part 42, conveying motor 421, transmission shaft 422, transmission roller 423, supporting roller 424, conveyor belt 425, convex rib 4251, rotating space 426, auxiliary conveying part 43, front limiting part 44, limiting blocking strip 441, first magnet 4411, rotating rod 442, rear limiting part 45. Specific embodiments

[0028] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.

[0029] In the description of the present invention, it should be understood that the terms "upper", "middle", "outer", "inner", "lower", etc. indicating the orientation or position relationship are only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the components or elements referred to must have a specific orientation, be constructed and operated in a specific orientation, and thus cannot be construed as a limitation to the present invention.

[0030] Please refer to Figure 1-7, A mobile aluminum foil box auxiliary transfer device, including a support frame 1, a moving component 2, a lifting component 3, and an auxiliary conveying component 4. The moving component 2 is arranged at the bottom of the support frame 1, the lifting component 3 is arranged on the support frame 1, the auxiliary conveying component 4 is arranged at the front end of the support frame 1. The moving component 2 is connected to the bottom of the support frame 1, the lifting component 3 is connected to the support frame 1, the auxiliary conveying component 4 is connected to the front end of the support frame 1, the lifting component 3 is connected to the auxiliary conveying component 4. The moving component 2 drives the support frame 1 to move, and the lifting component 3 drives the auxiliary conveying component 4 to lift on the support frame 1. When handling the aluminum foil box, the relevant staff gives a driving force to the support frame 1, and the moving component 2 drives the support frame 1 to move to realize the transfer of the aluminum foil box;

[0031] The auxiliary conveying component 4 includes a conveying platform 41, an automatic conveying part 42, and an auxiliary conveying part 43. The front end of the conveying platform 41 is an inclined surface. One end of the front inclined surface of the conveying platform 41 is connected to the upper surface of the conveying platform 41, and the other end of the front inclined surface of the conveying platform 41 is connected to the lower surface of the conveying platform 41. The front inclined surface of the conveying platform 41 is inclined in the direction beneficial to the aluminum foil box entering the conveying platform 41. The conveying platform 41 is arranged at the front end of the support frame 1. The automatic conveying part 42 and the auxiliary conveying part 43 are both arranged on the conveying platform 41. The auxiliary conveying part 43 is arranged on one side or both sides of the automatic conveying part 42. The auxiliary conveying part 43 is relatively parallel to the automatic conveying part 42. The conveying platform 41 is connected to the support frame 1, the conveying platform 41 is connected to the lifting component 3, the automatic conveying part 42 is connected to the conveying platform 41, and the auxiliary conveying part 43 is connected to the conveying platform 41. The lifting component 3 drives the conveying platform 41 to lift on the support frame 1. The automatic conveying part 42 drives the aluminum foil box to enter the conveying platform 41 or unload from the conveying platform 41, and the auxiliary conveying part 43 assists the aluminum foil box to enter the conveying platform 41 or unload from the conveying platform 41. When the aluminum foil box needs to enter the conveying platform 41, the aluminum foil box is located on the front inclined surface of the conveying platform 41. The automatic conveying part 42 rotates forward to drive the aluminum foil box to automatically enter the conveying platform 41 through the front inclined surface of the conveying platform 41, and the lower surface of the aluminum foil box contacts the auxiliary conveying part 43. The auxiliary conveying part 43 assists the aluminum foil box to move and reduces friction. When the aluminum foil box needs to be unloaded from the conveying platform 41, the automatic conveying part 42 rotates reversely to drive the aluminum foil box to automatically unload from the conveying platform 41 through the front inclined surface of the conveying platform 41, and the lower surface of the aluminum foil box contacts the auxiliary conveying part 43. The auxiliary conveying part 43 assists the aluminum foil box to move. The auxiliary conveying part 43 reduces the resistance during the conveying process, which is beneficial to the conveying of the aluminum foil box by the automatic conveying part 42, improves the conveying efficiency, and reduces the wear on the bottom of the aluminum foil box.

[0032] In one embodiment, a through hole is formed at the rear end of the conveying platform 41, and two automatic conveying grooves 411 are formed on the conveying platform 41. The two automatic conveying grooves 411 are evenly arranged on the conveying platform 41 and are relatively parallel to each other. The number of the automatic conveying parts 42 is the same as that of the automatic conveying grooves 411. The automatic conveying part 42 includes a conveying motor 421, a transmission shaft 422, a driving roller 423, a supporting roller 424, and a conveyor belt 425. A plurality of teeth are evenly arranged on the outer surface of the driving roller 423. A plurality of tooth holes are formed on the conveyor belt 425 and are matched with the teeth on the outer surface of the driving roller 423. The number of the supporting rollers 424 is several. The conveying motor 421 is located on the lower surface of the conveying platform 41. The transmission shaft 422 is located in the through hole at the rear end of the conveying platform 41. The transmission shaft 422 is located at the axis of the driving roller 423. The driving roller 423, the supporting roller 424, and the conveyor belt 425 are all located in the automatic conveying groove 411. The driving roller 423 is located at the rear end of the automatic conveying groove 411. One of the supporting rollers 424 is located at the front end of the automatic conveying groove 411. The driving roller 423 is located at the rear of the supporting roller 424. The conveyor belt 425 is wound around the driving roller 423 and the supporting roller 424. The driving roller 423 and the supporting roller 424 form a rotating space 426 for the conveyor belt 425. The other supporting rollers 424 are evenly located in the rotating space 426 to support the conveyor belt 425 and prevent the conveyor belt 425 from sagging. The conveying motor 421 is connected to the conveying platform 41. The output gear of the conveying motor 421 meshes with the input gear of the transmission shaft 422. The transmission shaft 422 is rotatably connected to the conveying platform 41. The transmission shaft 422 is fixedly connected to the driving roller 423. The transmission shaft 422, the supporting roller 424 are rotatably connected to the automatic conveying groove 411. The driving roller 423 meshes with the conveyor belt 425. The conveying motor 421 drives the transmission shaft 422 to rotate. The transmission shaft 422 drives the driving roller 423 to rotate. The driving roller 423 drives the conveyor belt 425 to rotate. The supporting roller 424 and the driving roller 423 support the conveyor belt 425 to rotate in the automatic conveying groove 411. The conveyor belt 425 drives the aluminum foil box to enter the conveying platform 41 or unload from the conveying platform 41. A height difference is formed between the rotating space 426 and the upper surface of the conveying platform 41. The height difference formed between the rotating space 426 and the upper surface of the conveying platform 41 is beneficial for the conveyor belt 425 to drive the aluminum foil box to enter the conveying platform 41 or unload from the conveying platform 41. When the aluminum foil box needs to enter the conveying platform 41, the staff transports the aluminum foil box to the front inclined surface of the conveying platform 41 so that the lower surface of the aluminum foil box presses on the conveyor belt 425. At this time, the conveying motor 421 rotates forward to drive the conveyor belt 425 to drive the aluminum foil box to move towards the rear end of the conveying platform 41, and the aluminum foil box automatically enters the conveying platform 41. When the aluminum foil box needs to be unloaded from the conveying platform 41,The reverse rotation of the conveyor motor 421 causes the conveyor belt 425 to drive the aluminum foil box to move towards the front end of the conveyor platform 41, and the aluminum foil box is automatically unloaded from the conveyor platform 41, thereby improving the conveying efficiency and saving manual handling.

[0033] In one embodiment, in order to improve the conveying efficiency of the conveyor belt 425 and have a certain limiting effect on the aluminum foil box to prevent the aluminum foil box from sliding down from the front inclined surface of the conveyor platform 41, the conveyor belt 425 is provided with convex ridges 4251. The conveyor belt 425 is provided with convex ridges 4251. The number of convex ridges 4251 is several. The convex ridges 4251 are evenly located on the outer surface of the conveyor belt 425. The convex ridges 4251 are inclined. The inclined direction of the convex ridges 4251 is close to the rear end of the conveyor platform 41. The convex ridges 4251 are fixedly connected to the conveyor belt 425 to increase the contact area between the conveyor belt 425 and the aluminum foil box and prevent the aluminum foil box from moving towards the front end of the conveyor platform 41.

[0034] In one embodiment, auxiliary conveying grooves 412 are formed on the upper surface of the conveyor platform 41. The number of auxiliary conveying grooves 412 is four. The number of auxiliary conveying parts 43 is the same as that of the auxiliary conveying grooves 412. The auxiliary conveying grooves 412 are arranged on both sides of the automatic conveying through groove 411. The auxiliary conveying grooves 412 are relatively parallel to the automatic conveying through groove 411. The auxiliary conveying parts 43 are balls. The balls are arranged in the auxiliary conveying grooves 412. The upper surface of the balls is flush with the upper surface of the conveyor belt 425. The balls are rotatably connected to the auxiliary conveying grooves 412. When the conveyor belt 425 drives the aluminum foil box to move, the balls contact the lower surface of the aluminum foil box and the balls rotate. The balls assist the aluminum foil box to move back and forth on the conveyor platform 41, reduce the contact area between the auxiliary conveying parts 43 and the bottom of the aluminum foil box during the conveying process, and reduce the wear on the bottom of the aluminum foil box.

[0035] In one embodiment, the auxiliary conveying assembly 4 further includes a front limiting part 44 and a rear limiting part 45. The front limiting part 44 is arranged at the front end of the conveyor platform 41. The front limiting part 44 is arranged on both sides of the automatic conveying part 42 and the auxiliary conveying part 43. The front limiting part 44 is relatively parallel to both the automatic conveying part 42 and the auxiliary conveying part 43. The rear limiting part 45 is arranged at the rear end of the conveyor platform 41. The rear limiting part 44 is arranged behind the automatic conveying part 42 and the auxiliary conveying part 43. The front limiting part 44 is connected to the conveyor platform 41. The rear limiting part 45 is connected to the conveyor platform 41. During the transfer process, the aluminum foil box is located between the front limiting part 44 and the rear limiting part 45. The front limiting part 44 restricts the aluminum foil box from moving towards the front end of the conveyor platform 41. The rear limiting part 45 restricts the aluminum foil box from moving towards the rear end of the conveyor platform 41, preventing the aluminum foil box from moving forward or backward due to inertia during the movement of the mobile aluminum foil box auxiliary transfer device, resulting in the aluminum foil box slipping off.

[0036] In one embodiment, three limiting grooves 413 are formed at the front end of the conveying platform 41. The limiting grooves 413 are located on both sides of the automatic conveying through groove 411 and the auxiliary conveying groove 412. The limiting grooves 413 are relatively parallel to both the automatic conveying through groove 411 and the auxiliary conveying groove 412. A horizontally penetrating through hole is formed at the front end of the conveying platform 41. The horizontally penetrating through hole at the front end of the conveying platform 41 penetrates through the three limiting grooves 413. The front limiting portion 44 includes a limiting blocking strip 441 and a rotating rod 442. The number of the limiting blocking strips 441 is the same as that of the limiting grooves 413. The limiting blocking strips 441 are arranged in the limiting grooves 413. One end of the rotating rod 442 passes through the horizontally penetrating through hole at the front end of the conveying platform 41 and is fixedly connected to the limiting blocking strip 441. The rotating rod 442 drives the limiting blocking strip 441 to rotate in the limiting groove 413. The front end of the limiting blocking strip 441 contacts the front end of the limiting groove 413 to support the rear end of the limiting blocking strip 441 to protrude out of the limiting groove 413. In order to improve the limiting effect of the limiting blocking strip 441, the rear end of the limiting blocking strip 441 can be set as a sector, so that the contact between the limiting blocking strip 441 and the aluminum foil box is smoother, preventing the aluminum foil box from moving forward due to inertia during the movement process, and the limiting blocking strip 441 piercing the aluminum foil box and causing damage to the aluminum foil box. When the aluminum foil box needs to enter the conveying platform 41, the relevant staff rotates the rotating rod 442 to drive the limiting blocking strip 441 to rotate so that the limiting blocking strip 441 is completely located in the limiting groove 413. At this time, the conveying motor 421 rotates forward to drive the conveyor belt 425 and the auxiliary conveying portion 43 to jointly drive the aluminum foil box onto the conveying platform 41. When the aluminum foil box needs to be transferred on the conveying platform 41, the relevant staff rotates the rotating rod 442 to drive the limiting blocking strip 441 to rotate so that the front end of the limiting blocking strip 441 contacts the front end of the limiting groove 413 to support the rear end of the limiting blocking strip 441 to protrude out of the limiting groove 413 to limit the movement of the aluminum foil box towards the front end of the conveying platform 41. When the aluminum foil box needs to be unloaded from the conveying platform 41, the relevant staff rotates the rotating rod 442 to drive the limiting blocking strip 441 to rotate so that the limiting blocking strip 441 is completely located in the limiting groove 411. At this time, the conveying motor 421 rotates in reverse to drive the conveyor belt 425 and the auxiliary conveying portion 43 to jointly unload the aluminum foil box from the conveying platform 41.

[0037] In one embodiment, to achieve automatic limiting of the front limiting portion 44, the lower surface of the front end of the limiting blocking strip 441 has a first magnet 4411, and the upper surface of the front end of the limiting groove 413 has a second magnet 4131. The first magnet 4411 and the second magnet 4131 are opposite magnetic poles and can attract each other. The first magnet 4411 is connected to the limiting blocking strip 441, and the second magnet 4131 is connected to the limiting groove 413. When the first magnet 4411 and the second magnet 4131 are magnetically attracted, the rear end of the limiting blocking strip 441 protrudes outwards from the limiting groove 413. When the aluminum foil box needs to enter the conveying platform 41, the conveying motor 421 rotates forward to drive the conveyor belt 425 and the auxiliary conveying portion 44 to jointly drive the aluminum foil box to move to the limiting groove 413. The aluminum foil box presses the protruding rear end of the limiting blocking strip 441, causing the rear end of the limiting blocking strip 441 to rotate into the limiting groove 413 and the first magnet 4411 to separate from the second magnet 4131, without affecting the aluminum foil box entering the conveying platform 41. When the aluminum foil box moves onto the conveying platform 41 and is not in contact with the limiting blocking strip 441, the first magnet 4411 and the second magnet 4131 cause the limiting blocking strip 441 to rotate within the limiting groove 413 under the action of magnetic attraction. The front end of the limiting blocking strip 441 contacts the front end of the limiting groove 413 to support the rear end of the limiting blocking strip 441 protruding outwards from the limiting groove 413, and the automatic limiting of the aluminum foil box is completed. When the aluminum foil box needs to be unloaded from the conveying platform 41, the relevant staff rotates the rotating rod 422 to drive the limiting blocking strip 441 to rotate, causing the first magnet 42111 to separate from the second magnet 4111 and the limiting blocking strip 441 to be completely located within the limiting groove 413. At this time, the conveying motor 421 rotates in reverse to drive the conveyor belt 425 and the auxiliary conveying portion 44 to jointly unload the aluminum foil box from the conveying platform 41.

[0038] In one embodiment, the rear limiting portion 45 is a blocking plate. The blocking plate 45 is arranged at the rear end of the conveying platform 41 and is integrally formed with the conveying platform 41. When the automatic conveying portion 42 drives the aluminum foil box to move onto the conveying platform 41, the aluminum foil box moves to the rear end of the conveying platform 41, and the side surface of the aluminum foil box contacts the blocking plate 45. The automatic conveying portion 42 continues to drive the aluminum foil box to move towards the rear end of the conveying platform 41. The blocking plate 45 prevents the aluminum foil box from moving towards the rear end of the conveying platform 41, and under the combined action of the automatic conveying portion 42 and the blocking plate 45, there is also a certain rectifying effect on the aluminum foil box.

[0039] In one embodiment, in order to enable the conveying platform 41 to move up and down on the support frame 1, two support vertical plates 414 are provided on both sides of the rear end of the conveying platform 41. The two support vertical plates 414 are respectively arranged on the left and right sides of the blocking plate 45 and are integrally formed with the blocking plate 45. The two support vertical plates 414 are located at the rear end of the blocking plate 45. The two support vertical plates 414 are relatively parallel. Two groups of lifting pulley sets 4141 and two groups of rotating shafts 4142 are respectively provided on the two support vertical plates 414. Each group of lifting pulley sets 4141 is composed of two pulleys in the same horizontal direction. The rotating shaft 4142 is arranged on the opposite inner sides of the support vertical plate 414. The lifting pulley set 4141 is arranged on the rotating shaft 4142. The support vertical plate 414 is integrally formed with the conveying platform 41. The support vertical plate 414 is rotatably connected to the rotating shaft 4142. The pulleys of the lifting pulley set 4141 are rotatably connected to the rotating shaft 4142. The two pulleys of the lifting pulley set 4141 are slidably connected to the support frame 1;

[0040] Specifically, there is a sliding gap between the two pulleys of each group of lifting pulley sets 4141. The support frame 1 is adapted to the sliding gap. The support frame 1 is located in the sliding gap. When the aluminum foil box needs to be transferred to the stacking area for stacking on the mobile aluminum foil box auxiliary transfer device, there will be a situation where the height of the stacking platform is different from that of the conveying platform 41. At this time, the lifting pulley set 4141 is adapted to the support frame 1 to drive the conveying platform 41 to move up and down in the support frame 1, and adjusting the height of the conveying platform 41 is more convenient for the mobile aluminum foil box auxiliary transfer device to complete unloading.

[0041] In one embodiment, the lifting assembly 3 includes a motor 31, a fixed pulley 32, and a transmission belt 33. The motor 31 is arranged on the side of the conveying platform 41 opposite to the support frame 1. The fixed pulley 32 is arranged above the support frame 1. The height of the fixed pulley 32 is higher than the height of the motor 31. The transmission belt 33 is arranged on the fixed pulley 32. The motor 31 is fixedly connected to the support frame 1. The fixed pulley 32 is connected to the support frame 1. One end of the transmission belt 33 is connected to the conveying platform 41, and the other end of the transmission belt 33 bypasses the fixed pulley 32 and is connected to the motor 31. The motor 31 drives the transmission belt 33 to move up and down. The transmission belt 33 makes the conveying platform 41 move up and down on the support frame 1 under the action of the motor 31. When the relevant staff operate the mobile aluminum foil box auxiliary transfer device to pick up and place the aluminum foil box, the height of the conveying platform 41 on the support frame 1 can be adjusted through the lifting assembly 3 to pick up and place the aluminum foil boxes stored at different heights.

[0042] In one embodiment, the moving assembly 2 includes moving wheels 21, and the moving wheels 21 are connected to the bottom of the support frame 1;

[0043] Further, the moving component 2 further includes driven wheels 22. The number of the driven wheels 22 is eight, and the number of the moving wheels 21 is two. Two grooves 11 are formed in the bottom of the support frame 1. Four driven wheels 22 are grouped together and located in each groove 11 respectively. The driven wheels 2 are located at the front end of the moving wheels 21, and the driven wheels 22 are rotatably connected to the grooves 11.

[0044] Specifically, in order to make the mobile aluminum foil box auxiliary transfer device move more flexibly, the vertical cross-sections of the left and right sides of the bottom of the support frame 1 are Z-shaped. The bottom of the support frame 1 includes two first cross plates 12, vertical plates 13, and two second cross plates 14. The first cross plates 12, vertical plates 13, and second cross plates 14 together form the Z-shaped vertical cross-sections of the left and right sides of the bottom of the support frame 1. Grooves 11 are formed on the lower surfaces of both first cross plates 12. Both first cross plates 12 are arranged at the front end of the vertical plate 13. Both second cross plates 14 are arranged at the rear end of the vertical plate 13. Four driven wheels 22 are grouped together and located in the grooves 11 of each first cross plate 12 respectively. Two moving wheels 21 are respectively located on the lower surfaces of each second cross plate 14. Both first cross plates 12 are fixedly connected to the vertical plate 13. Both second cross plates 14 are fixedly connected to the vertical plate 13. The driven wheels 22 are rotatably connected to the grooves 11 of the first cross plates 12. A rotating bearing 211 is provided above each moving wheel 21. One end of the rotating bearing 211 is rotatably connected to the moving wheel 21, and the other end of the rotating bearing 211 is rotatably connected to the lower surface of the second cross plate 14. The rotating bearing 211 enables rotation between the moving wheel 21 and the second cross plate 14. Thus, the moving wheel 21 can control the sliding direction of the driven wheels 22. The moving wheels 21 and the driven wheels 22 jointly drive the support frame 1 to slide.

[0045] The above-disclosed are only the preferred embodiments of the present invention. Of course, the scope of the rights of the present invention cannot be limited thereby. Those of ordinary skill in the art can understand all or part of the processes of implementing the above embodiments, and the equivalent changes made according to the claims of the present invention still fall within the scope covered by the present invention.

Claims

1. A mobile aluminum foil box auxiliary transfer equipment, characterized by: It includes a support frame, a moving component, a lifting component, and an auxiliary conveying component, wherein the moving component is arranged at the bottom of the support frame, the lifting component is arranged on the support frame, the auxiliary conveying component is arranged at the front end of the support frame, the moving component is connected to the bottom of the support frame, the lifting component is connected to the support frame, the auxiliary conveying component is connected to the front end of the support frame, the lifting component is connected to the auxiliary conveying component, the moving component drives the support frame to move, and the lifting component drives the auxiliary conveying component to rise and fall on the support frame; The auxiliary conveying assembly comprises a conveying platform, an automatic conveying part, and an auxiliary conveying part. The front end of the conveying platform is an inclined surface, one end of the front end inclined surface of the conveying platform is connected to the upper surface of the conveying platform, and the other end of the front end inclined surface of the conveying platform is connected to the lower surface of the conveying platform. The front end inclined surface of the conveying platform is inclined in a direction that is conducive to the aluminum foil box entering the conveying platform. The conveying platform is arranged at the front end of the support frame, the automatic conveying part and the auxiliary conveying part are both arranged on the conveying platform, the auxiliary conveying part is arranged on one side or both sides of the automatic conveying part, the auxiliary conveying part is relatively parallel to the automatic conveying part, the conveying platform is connected to the support frame, the conveying platform is connected to the lifting assembly, the automatic conveying part is connected to the conveying platform, the auxiliary conveying part is connected to the conveying platform, the lifting assembly drives the conveying platform to rise and fall on the support frame, the automatic conveying part drives the aluminum foil box to enter the conveying platform or unload from the conveying platform, and the auxiliary conveying part assists the aluminum foil box to enter the conveying platform or unload from the conveying platform.

2. The mobile aluminum foil box auxiliary transfer equipment according to claim 1 is characterized in that: A through hole is provided at the rear end of the conveying platform, at least one automatic conveying slot is provided on the conveying platform, the number of the automatic conveying parts is the same as the number of the automatic conveying slots, the automatic conveying part comprises a conveying motor, a transmission shaft, a transmission roller, a support roller, and a conveyor belt, and there is at least one support roller. The conveying motor is located on the lower surface of the conveying platform, the transmission shaft is located in the through hole at the rear end of the conveying platform, the transmission shaft is located at the axis of the transmission roller, the transmission roller, the support roller, and the conveyor belt are all located in the automatic conveying slot, the transmission roller is located at the rear end of the automatic conveying slot, one of the support rollers is located at the front end of the automatic conveying slot, the transmission roller is located at the rear end of the support roller, and the conveyor belt surrounds the transmission motor. The conveying motor is connected to the conveying platform, the output gear of the conveying motor is meshed with the input gear of the transmission shaft, the transmission shaft is rotatably connected to the conveying platform, the transmission shaft is fixedly connected to the transmission roller, the transmission shaft and the support roller are rotatably connected to the automatic conveying slot, the transmission roller is connected to the conveyor belt, the conveying motor drives the transmission shaft to rotate, the transmission shaft drives the transmission roller to rotate, the transmission roller drives the conveyor belt to rotate, the transmission roller and the support roller form a rotation space for the conveyor belt, the support roller and the transmission roller support the conveyor belt to rotate in the automatic conveying slot, and the conveyor belt drives the aluminum foil box to enter the conveying platform or unload from the conveying platform.

3. The mobile aluminum foil box auxiliary transfer equipment according to claim 2 is characterized in that: The conveyor belt is provided with ridges, there are several ridges, the ridges are evenly located on the outer surface of the conveyor belt, the ridges are inclined, the ridges are inclined toward the rear end of the conveying platform, and the ridges are fixedly connected to the conveyor belt.

4. The mobile aluminum foil box auxiliary transfer equipment according to claim 2 or 3 is characterized in that: An auxiliary conveying groove is provided on the upper surface of the conveying platform, and there is at least one auxiliary conveying groove. The number of the auxiliary conveying parts is the same as that of the auxiliary conveying groove. The auxiliary conveying groove is arranged on one side or both sides of the automatic conveying groove. The auxiliary conveying groove is relatively parallel to the automatic conveying groove. The auxiliary conveying part is a ball bearing, and the ball bearing is arranged in the auxiliary conveying groove. The upper surface of the ball bearing is flush with the upper surface of the conveyor belt. The ball bearing is rotatably connected to the auxiliary conveying groove. The ball bearing assists the aluminum foil box to enter the conveying platform or be unloaded from the conveying platform.

5. The mobile aluminum foil box auxiliary transport equipment according to claim 1 is characterized by: The auxiliary conveying assembly also includes a front limit part and a rear limit part, the front limit part is arranged at the front end of the conveying platform, the front limit part is arranged on one side of the automatic conveying part or the auxiliary conveying part, the front limit part is relatively parallel to the automatic conveying part and the auxiliary conveying part, the rear limit part is arranged at the rear end of the conveying platform, the rear limit part is arranged behind the automatic conveying part and the auxiliary conveying part, the front limit part is connected to the conveying platform, the rear limit part is connected to the conveying platform, the front limit part limits the aluminum foil box from moving toward the front end of the conveying platform, and the rear limit part limits the aluminum foil box from moving toward the rear end of the conveying platform.

6. The mobile aluminum foil box auxiliary transfer equipment according to claim 5 is characterized in that: At least one limiting groove is provided at the front end of the conveying platform, and a horizontal through hole is provided at the front end of the conveying platform. The horizontal through hole at the front end of the conveying platform passes through the limiting groove, and the front limiting part includes a limiting blocking bar and a rotating rod. The number of the limiting blocking bars is the same as the limiting groove, and the limiting blocking bar is arranged in the limiting groove. One end of the rotating rod passes through the horizontal through hole at the front end of the conveying platform and is fixedly connected with the limiting blocking bar. The rotating rod drives the limiting blocking bar to rotate in the limiting groove, and the front end of the limiting blocking bar contacts with the front end of the limiting groove to support the rear end of the limiting blocking bar to protrude to the outside of the limiting groove, and the rear end of the limiting blocking bar limits the movement of the aluminum foil box toward the front end of the conveying platform.

7. The mobile aluminum foil box auxiliary transfer equipment according to claim 6 is characterized in that: The front lower surface of the limit blocking strip has a first magnet, and the front upper surface of the limit groove has a second magnet. The first magnet and the second magnet have opposite magnetic poles and can attract each other. The first magnet is connected to the limit blocking strip, and the second magnet is connected to the limit groove. When the first magnet and the second magnet are magnetically attracted, the rear end of the limit blocking strip protrudes to the outside of the limit groove.

8. The mobile aluminum foil box auxiliary transport equipment according to claim 5 is characterized by: The rear limiting portion is a blocking plate, which is arranged at the rear end of the conveying platform. The blocking plate is integrally formed with the conveying platform, and the blocking plate limits the aluminum foil box from moving toward the rear end of the conveying platform.

9. The mobile aluminum foil box auxiliary transport equipment according to claim 1 is characterized by: Two support vertical plates are arranged on both sides of the rear end of the conveying platform, and the two support vertical plates are relatively parallel. The two support vertical plates are respectively provided with at least two groups of lifting pulley groups, and each group of the lifting pulley groups consists of two pulleys in the same horizontal direction. The two support vertical plates are also respectively provided with a rotating shaft with the same number as the pulleys of the lifting pulley group, and the rotating shaft is arranged on the inner side opposite to the support vertical plates, and the lifting pulley group is arranged on the rotating shaft. The support vertical plates are integrally formed with the conveying platform, the support vertical plates are rotatably connected to the rotating shaft, the pulley of the lifting pulley group is rotatably connected to the rotating shaft, and the two pulleys of the lifting pulley group are slidably connected to the support frame.

10. The mobile aluminum foil box auxiliary transfer equipment according to claim 1 or 9, characterized in that: The lifting assembly includes a motor, a fixed pulley, and a transmission belt. The motor is arranged on the side of the conveying platform opposite to the support frame, the fixed pulley is arranged above the support frame, the height of the fixed pulley is higher than the height of the motor, the transmission belt is arranged on the fixed pulley, the motor is fixedly connected to the support frame, the fixed pulley is connected to the support frame, one end of the transmission belt is connected to the conveying platform, and the other end of the transmission belt bypasses the fixed pulley and is connected to the motor, the motor drives the transmission belt to rise and fall, and the transmission belt causes the conveying platform to rise and fall on the support frame under the action of the motor.

Citation Information

Patent Citations

  • Trolley for replacing battery box of electric vehicle

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