Copper foil roll transferring and discharging device

By designing a copper foil roll transfer and unloading device, the copper foil roll is axially limited by a walking mechanism, a support mechanism, and a drive mechanism. This solves the problem that existing devices cannot adapt to copper foil rolls of different lengths, and achieves stable transfer and saves time and effort.

CN223737260UActive Publication Date: 2025-12-30HUBEI ZHONGYI TECH
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Patent Information

Application Number
CN202520386101.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-06
Publication Date
2025-12-30
Estimated Expiration
2035-03-06

AI Technical Summary

Technical Problem

Existing copper foil roll transfer devices are not suitable for copper foil rolls of different lengths and cannot limit the ends of the core, causing the copper foil rolls to easily fall off during transfer.

Method used

A copper foil roll transfer and unloading device was designed, including a walking mechanism, a support mechanism, and a drive mechanism. By adjusting the distance of the support mechanism and using rollers to axially limit the core of the copper foil roll, it is ensured that the copper foil roll does not fall off during the transfer process.

Benefits of technology

This technology enables stable transfer of copper foil rolls of different lengths, preventing axial movement of the copper foil rolls during the transfer process, reducing the labor intensity of workers, and improving transfer efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a copper foil roll transferring and discharging device which comprises a walking mechanism, two supporting mechanisms and a driving mechanism, and the walking mechanism is used for walking on the ground; the two supporting mechanisms are oppositely arranged and slidably connected with the walking mechanism, the tops of the two supporting mechanisms are each provided with a containing groove, and the tops and the sides, close to each other, of the two containing grooves are open; the driving mechanism is connected with the two supporting mechanisms and used for driving the two supporting mechanisms to get close to each other or get away from each other in a back-to-back mode. The copper foil roll transferring and discharging device has the advantages that the copper foil roll transferring and discharging device can be used for supporting and transferring tube cores of copper foil rolls with different lengths, the tube cores of the copper foil rolls can be axially limited due to the fact that the groove walls of the sides, away from each other, of the two containing grooves abut against the two end faces of the tube cores respectively, and in the process of manually pulling and pulling the rolls, the tube cores of the copper foil rolls are not prone to falling off. And the tube core of the copper foil roll does not axially move, so that the copper foil roll does not fall off.
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Description

TECHNICAL FIELD

[0001] The utility model relates to copper foil production technical field especially relates to a copper foil roll transfer and discharge device. BACKGROUND

[0002] Copper foil is one of the basic materials in the electronic industry, and is widely used in industrial computers, communication equipment and lithium ion batteries due to its excellent bending performance and adhesion. The produced copper foil is wound on a tube core to form a copper foil roll. The copper foil roll needs to be transferred between different stations in the workshop.

[0003] The existing copper foil roll transfer device (such as the waste foil removing and supporting device for copper foil roll disclosed in application No. 202321432051.2) is not suitable for supporting and transferring the tube core of copper foil rolls of different lengths. Since the two ends of the tube core are not limited, the tube core of the copper foil roll is prone to axial movement during manual unrolling and pulling, which causes the copper foil roll to fall off. UTILITY MODEL CONTENT

[0004] The utility model aims to overcome the above technical deficiencies and provide a copper foil roll transfer and discharge device to solve the technical problems that the existing transfer and discharge device is not suitable for supporting and transferring the tube core of copper foil rolls of different lengths, and cannot limit the two ends of the tube core. The tube core of the copper foil roll is prone to axial movement, which causes the copper foil roll to fall off.

[0005] To achieve the above technical purpose, the technical scheme of the utility model provides a copper foil roll transfer and discharge device, which comprises:

[0006] A walking mechanism for walking on the ground;

[0007] Two supporting mechanisms are oppositely arranged and are both slidingly connected with the walking mechanism. The top of each supporting mechanism has a placing groove, and the top and the side close to each other of each placing groove are both open.

[0008] A driving mechanism is connected with both supporting mechanisms for driving the two supporting mechanisms to move closer to or farther away from each other to adjust the distance between the two placing grooves.

[0009] Further, the walking mechanism comprises a support, a plurality of walking wheels and at least one guide shaft. Each walking wheel is fixedly connected with the bottom of the support. Each guide shaft is horizontally arranged and parallel to each other. Both ends of each guide shaft are fixedly connected with the support. Both supporting mechanisms are slidingly connected with each guide shaft.

[0010] Further, the walking wheel is a universal wheel.

[0011] Further, the placing groove is an arc structure.

[0012] Further, the support mechanism comprises a base, a vertical plate, a carrier plate and a baffle, two bases are slidingly sleeved on the guide shafts and can move along the length direction of the guide shafts, the bottom of the vertical plate is fixedly connected with the base, the carrier plate is fixedly connected with the top of the vertical plate, the carrier plate is an arc structure and forms the placing groove, the baffle is fixedly connected with the outside of the carrier plate, the driving mechanism is connected with the two bases for driving the two bases to move close to or away from each other.

[0013] Further, the baffle is an arc structure.

[0014] Further, the top of the vertical plate is provided with a groove, the groove is an arc structure, the baffle is arranged on the outside of the vertical plate, and the inside of the baffle is fixedly connected with the vertical plate, so that the placing groove is connected with the groove.

[0015] Further, the support mechanism further comprises a first roller, the first roller is arranged in the placing groove and close to the baffle, the first roller is rotatably connected with the carrier plate, and the arc side wall of the first roller is used for rolling abutment with the end face of the pipe core of the copper foil roll.

[0016] Further, the support mechanism further comprises a plurality of second rollers, each second roller is arranged on the inside of the vertical plate and rotatably connected with the vertical plate, and the arc side wall of the second roller is used for rolling abutment with the arc side wall of the pipe core of the copper foil roll.

[0017] Further, the driving mechanism comprises a driving shaft and a hand wheel, the driving shaft is horizontally arranged, both ends of the driving shaft are rotatably connected with the support, two threads with opposite rotation directions and equal lengths are arranged on the driving shaft, screw holes are arranged on the two bases and the two bases are sleeved on the driving shaft through the screw holes, the two screw holes are one-to-one corresponding screw connection with the two threads, and the hand wheel is fixedly connected with one end of the driving shaft.

[0018] Compared with the prior art, the beneficial effects of the utility model include: in use, the distance between the two placing grooves is adjusted to a preset value according to the length of the tube core of the copper foil roll, the driving mechanism is controlled to drive the two support mechanisms to move closer to each other or move away from each other, so that the distance between the two placing grooves can be adjusted, the two ends of the tube core of the copper foil roll are placed in the corresponding placing grooves respectively, and the groove walls on the side away from each other of the two placing grooves abut against the two end faces of the tube core respectively, so that the tube core of the copper foil roll can be axially limited, after the copper foil roll is transferred to the preset position, the end of the copper foil roll is manually pulled to tear off the copper foil for subsequent processing and use, the copper foil roll transfer and discharging device can support and transfer the tube core of the copper foil roll of different lengths for use, since the groove walls on the side away from each other of the two placing grooves abut against the two end faces of the tube core respectively, the tube core of the copper foil roll can be axially limited, and the tube core of the copper foil roll does not move axially in the process of manually pulling and tearing the roll, so that the copper foil roll is prevented from falling off. BRIEF DESCRIPTION OF DRAWINGS

[0019] Figure 1 It is a three-dimensional structure schematic view of the copper foil roll transfer and discharging device when transferring the copper foil roll.

[0020] Figure 2 It is a structure schematic view of the copper foil roll transfer and discharging device.

[0021] Figure 3 It is Figure 2 It is a three-dimensional structure schematic view of the support mechanism of the copper foil roll transfer and discharging device.

[0022] Figure 4 It is Figure 2 It is a three-dimensional structure schematic view of the support mechanism of the copper foil roll transfer and discharging device from another perspective.

[0023] In the figure: 1-copper foil roll, 100-traveling mechanism, 110-bracket, 120-traveling wheel, 130-guide shaft, 200-support mechanism, 210-placing groove, 220-base, 221-sleeve, 222-mounting plate, 223-connection plate, 224-stiffening plate, 230-stand plate, 231-groove, 240-carrier plate, 250-baffle, 260-first roller, 270-second roller, 300-driving mechanism, 310-driving shaft, 320-hand wheel. DETAILED DESCRIPTION

[0024] In order to make the purpose, technical scheme and advantages of the utility model more clear and obvious, the utility model is further described in detail below in combination with the drawings and examples. It should be understood that the specific examples described herein are only used to explain the utility model and not used to limit the utility model.

[0025] The utility model provides a copper foil roll transfer discharging device, its structure is as Figure 1 And Figure 2 As shown in the figure, including walking mechanism 100, two support mechanism 200 and drive mechanism 300, walking mechanism 100 is used to walk on the ground, two support mechanism 200 are oppositely arranged, and are all slidably connected with walking mechanism 100, the top of two support mechanism 200 all has a placing groove 210, and the top of two placing grooves 210 and the side close to each other are all open, drive mechanism 300 is connected with two support mechanism 200, and is used to drive two support mechanism 200 to close to each other or to move away from each other, to adjust the distance between two placing grooves 210.

[0026] In use, according to the length of the tube core of copper foil roll 1, the distance between two placing grooves 210 is adjusted to a preset value, by operating drive mechanism 300, drive mechanism 300 drives two support mechanism 200 to close to each other or to move away from each other, so that the distance between two placing grooves 210 can be adjusted, the two ends of the tube core of copper foil roll 1 are placed in the corresponding placing groove 210 respectively, and the groove walls of the sides away from each other of two placing grooves 210 are respectively in abutment with the two end faces of the tube core, so that the tube core of copper foil roll 1 can be axially limited, after copper foil roll 1 is transferred to a preset position, the end of copper foil roll 1 is manually pulled, and the copper foil is pulled down for subsequent processing and use, the copper foil roll transfer discharging device can support and transfer the tube core of copper foil roll 1 of different lengths, and since the groove walls of the sides away from each other of two placing grooves 210 are respectively in abutment with the two end faces of the tube core, the tube core of copper foil roll 1 can be axially limited, and the tube core of copper foil roll 1 will not move axially in the process of manual uncoiling and rolling, so that copper foil roll 1 will not fall off.

[0027] As a preferred embodiment, please refer to Figure 1 And Figure 2 Walking mechanism 100 includes support 110, a plurality of walking wheels 120 and at least one guide shaft 130, each walking wheel 120 is fixedly connected with the bottom of support 110, each guide shaft 130 is horizontally arranged and parallel to each other, and the two ends of each guide shaft 130 are fixedly connected with support 110, two support mechanisms 200 are slidably connected with each guide shaft 130, each walking wheel 120 can be supported by support 110, and the movement of two support mechanisms 200 can be guided and limited by each guide shaft 130, so that two support mechanisms 200 can close to each other or move away from each other under the driving action of drive mechanism 300.

[0028] As a preferred embodiment, the walking wheel 120 is a universal wheel with a brake structure.

[0029] As a preferred embodiment, please refer to Figure 3 and Figure 4 The placement slot 210 is an arc structure, which facilitates the rotation of the core of the copper foil roll 1 in the placement slot 210.

[0030] As a preferred embodiment, please refer to Figure 3 and Figure 4 The support mechanism 200 includes a base 220, a vertical plate 230, a carrier plate 240, and a baffle 250. Two bases 220 are each slidably sleeved on a guide shaft 130 and can move along the length direction of the guide shaft 130. The bottom of the vertical plate 230 is fixedly connected with the base 220. The carrier plate 240 is fixedly connected with the top of the vertical plate 230. The carrier plate 240 is an arc structure and forms the placement slot 210. The baffle 250 is fixedly connected with the outer side of the carrier plate 240. The driving mechanism 300 is connected with the two bases 220 for driving the two bases 220 to move closer to or farther away from each other. The vertical plate 230 can have a certain height between the carrier plate 240 and the bracket 110, so as to avoid the carrier plate 240 being too close to the bracket 110 and affecting the installation of the copper foil roll 1. The baffle 250 can axially limit the core of the copper foil roll 1.

[0031] As a preferred embodiment, please refer to Figure 3 and Figure 4 The baffle 250 is an arc structure. Since the core of the copper foil roll 1 is generally in a tubular structure, the baffle 250 is arranged in an arc structure to facilitate the adaptation to the core of the copper foil roll 1 and axially limit the core of the copper foil roll 1.

[0032] As a preferred embodiment, please refer to Figure 3 and Figure 4 The top of the vertical plate 230 is provided with a groove 231, which is an arc structure. The baffle 250 is arranged on the outer side of the vertical plate 230, and the inner side of the baffle 250 is fixedly connected with the vertical plate 230, so that the placement slot 210 is connected with the groove 231, and a plurality of second rollers 270 can be arranged on the inner side of the vertical plate 230.

[0033] As a preferred embodiment, please refer to Figure 4The support mechanism 200 further comprises a first roller 260 arranged in the placing groove 210 and close to the baffle 250, the first roller 260 is rotationally connected with the carrier plate 240, and the arc-shaped side wall of the first roller 260 is used for rolling abutment with the end surface of the core of the copper foil roll 1. During the process that the worker manually pulls the end portion of the copper foil roll 1, the core of the copper foil roll 1 rotates in the placing groove 210 and drives the first roller 260 to rotate. The point contact is used to replace the surface contact, which can reduce the friction force suffered by the core of the copper foil roll 1 during rotation, so that the core of the copper foil roll 1 is easier to rotate, and the worker only needs to exert a small force on the copper foil roll 1 to drive the copper foil roll 1 to rotate, thereby saving time and effort and reducing the labor intensity of the worker.

[0034] As a preferred embodiment, refer to Figure 3 and Figure 4 The support mechanism 200 further comprises a plurality of second rollers 270, each of which is arranged on the inner side of the vertical plate 230 and rotationally connected with the vertical plate 230. The arc-shaped side wall of the second roller 270 is used for rolling abutment with the arc-shaped side wall of the core of the copper foil roll 1. During the process that the worker manually pulls the end portion of the copper foil roll 1, the core of the copper foil roll 1 rotates in the placing groove 210 and drives the second roller 270 to rotate. The point contact is used to replace the surface contact, which can reduce the friction force suffered by the core of the copper foil roll 1 during rotation, so that the core of the copper foil roll 1 is easier to rotate, and the worker only needs to exert a small force on the copper foil roll 1 to drive the copper foil roll 1 to rotate, thereby saving time and effort and reducing the labor intensity of the worker.

[0035] As a preferred embodiment, refer to Figure 1 and Figure 2 The drive mechanism 300 comprises a drive shaft 310 and a hand wheel 320. The drive shaft 310 is horizontally arranged, both ends of the drive shaft 310 are rotationally connected with the support 110, two sections of threads with opposite rotation directions and equal lengths are arranged on the drive shaft 310, two screw holes are formed in each of the two bases 220 and are sleeved on the drive shaft 310 through the screw holes, the two screw holes and the two threads are one-to-one corresponding and screwed, and the hand wheel 320 is fixedly connected with one end of the drive shaft 310. By rotating the hand wheel 320 in the forward or reverse direction, the drive shaft 310 can be rotated in the forward or reverse direction. Since the two sections of threads arranged on the drive shaft 310 have opposite rotation directions and equal lengths, the two bases 220 are one-to-one corresponding and screwed with the two threads through the corresponding screw holes, and the base 220 is limited by each guide shaft 130. During the forward or reverse rotation of the drive shaft 310, the two bases 220 can be driven to move close to or away from each other.

[0036] As a preferred embodiment, refer to Figure 3 and Figure 4 The guide shaft 130 has two, the base 220 includes two sliding sleeves 221, mounting plates 222, connecting plates 223 and reinforcing plates 224, two sliding sleeves 221 are respectively sleeved on the corresponding guide shaft 130, the mounting plate 222 is detachably fixedly connected with two sliding sleeves 221, the bottom of the vertical plate 230 is fixedly connected with the mounting plate 222, the connecting plate 223 is provided with the screw hole, and the reinforcing plate 224 is fixedly connected with the mounting plate 222 and the vertical plate 230.

[0037] In order to better understand the utility model, the following will be combined with Figure 1 - Figure 4 The working principle of the technical scheme of the utility model is described in detail:

[0038] In use, the distance between the two placement grooves 210 is adjusted to a preset value according to the length of the pipe core of the copper foil roll 1, the drive shaft 310 is rotated forward or reversely by operating the hand wheel 320 forward or reversely, since the two threads arranged on the drive shaft 310 are opposite in rotation direction and equal in length, the two bases 220 are screwed one by one through the corresponding screw holes and the two threads, and the bases 220 are limited by the guide shafts 130, when the drive shaft 310 is rotated forward or reversely, the two bases 220 are brought closer to or farther away from each other, so that the distance between the two placement grooves 210 can be adjusted, the two ends of the pipe core of the copper foil roll 1 are placed in the corresponding placement grooves 210 respectively, and the arc-shaped side walls of the two first rollers 260 are respectively in rolling abutment with the two end faces of the pipe core of the copper foil roll 1, the pipe core of the copper foil roll 1 is axially limited by the two first rollers 260, after the copper foil roll 1 is transferred to a preset position, the end of the copper foil roll 1 is manually pulled to tear off the copper foil for subsequent processing, since the pipe core of the copper foil roll 1 rotates in the placement groove 210 during manual pulling of the end of the copper foil roll 1, the first roller 260 and the second roller 270 are rotated, the point contact is used instead of the surface contact, so that the frictional force of the pipe core of the copper foil roll 1 during rotation is reduced, so that the pipe core of the copper foil roll 1 is more easily rotated, the worker only needs to exert a small force on the copper foil roll 1 to pull the copper foil roll 1 to rotate, time and labor are saved, and the labor intensity of the worker is reduced, the copper foil roll transfer and discharging device can support and transfer the pipe core of the copper foil roll 1 of different lengths, since the groove walls away from each other of the two placement grooves 210 are respectively in abutment with the two end faces of the pipe core, the pipe core of the copper foil roll 1 can be axially limited, and the pipe core of the copper foil roll 1 does not axially move during manual unrolling and pulling, so that the copper foil roll 1 is not dropped.

[0039] The copper foil roll transfer and discharging device has the following beneficial effects:

[0040] (1) The distance between the two placement grooves 210 is adjusted to a preset value according to the length of the pipe core of the copper foil roll 1, the drive shaft 310 is rotated forward or reversely by operating the hand wheel 320 forward or reversely, since the two threads arranged on the drive shaft 310 are opposite in rotation direction and equal in length, the two bases 220 are screwed one by one through the corresponding screw holes and the two threads, and the bases 220 are limited by the guide shafts 130, when the drive shaft 310 is rotated forward or reversely, the two bases 220 are brought closer to or farther away from each other, so that the distance between the two placement grooves 210 can be adjusted;

[0041] (2) The arc-shaped side wall of the first roller 260 is used for rolling abutment with the end surface of the core of the copper foil roll 1, and the arc-shaped side wall of the second roller 270 is used for rolling abutment with the arc-shaped side wall of the core of the copper foil roll 1. Since the core of the copper foil roll 1 rotates in the placing groove 210 during manual pulling of the end of the copper foil roll 1, the first roller 260 and the second roller 270 are driven to rotate. The point contact is used instead of the surface contact, so that the frictional force during rotation of the core of the copper foil roll 1 is reduced, the core of the copper foil roll 1 is more easily rotated, and the worker only needs to exert a small force on the copper foil roll 1 to pull the copper foil roll 1 to rotate, thereby saving time and effort and reducing the labor intensity of the worker.

[0042] (3) The copper foil roll transfer and discharging device can support and transfer the cores of copper foil rolls 1 of different lengths. Since the groove walls on the mutually faraway sides of the two placing grooves 210 respectively abut against the two end surfaces of the core, the core of the copper foil roll 1 is axially limited, and the core of the copper foil roll 1 does not axially move during manual unrolling and pulling of the copper foil roll 1, so that the copper foil roll 1 is prevented from falling off.

[0043] The specific embodiments of the utility model described above do not constitute a limitation on the protection scope of the utility model. Any other corresponding changes and modifications made according to the technical concept of the utility model should be included in the protection scope of the utility model claim.

Claims

1. A copper foil roll transfer and unloading device, characterized in that, The utility model provides a copper foil roll placing device, which comprises a walking mechanism for walking on the ground, two support mechanisms arranged oppositely and connected with the walking mechanism, and a driving mechanism connected with the two support mechanisms and used for driving the two support mechanisms to move closer to or farther away from each other to adjust the distance between the two placing slots. The walking mechanism comprises a support, a plurality of walking wheels and at least one guide shaft, each walking wheel is fixedly connected with the bottom of the support, each guide shaft is horizontally arranged and parallel to each other, and both ends of each guide shaft are fixedly connected with the support. The walking wheels are universal wheels. The placing slots are arc-shaped structures.

2. The copper foil roll transfer and unloading device according to claim 1, wherein The support mechanism comprises a base, a vertical plate, a carrier plate and a baffle, each base is slidably sleeved on each guide shaft and can move along the length direction of the guide shaft, the bottom of the vertical plate is fixedly connected with the base, the carrier plate is fixedly connected with the top of the vertical plate, the carrier plate is an arc-shaped structure and forms the placing slot, the baffle is fixedly connected with the outer side of the carrier plate, and the driving mechanism is connected with the two bases and used for driving the two bases to move closer to or farther away from each other.

3. The copper foil roll transfer and unloading device according to claim 2, wherein The baffle is an arc-shaped structure.

4. The copper foil roll transfer and unloading device according to claim 2, wherein The top of the vertical plate is provided with a groove, the groove is an arc-shaped structure, the baffle is arranged on the outer side of the vertical plate, and the inner side of the baffle is fixedly connected with the vertical plate to make the placing slot and the groove butt joint.

5. The copper foil roll transfer and unloading device according to claim 4, wherein The support mechanism further comprises a first roller arranged in the placing slot and close to the baffle, the first roller is rotatably connected with the carrier plate, and the arc-shaped side wall of the first roller is used for rolling abutment with the end face of the pipe core of the copper foil roll.

6. The copper foil roll transfer and unloading device according to claim 5, wherein The support mechanism further comprises a plurality of second rollers, each second roller is arranged on the inner side of the vertical plate and rotatably connected with the vertical plate, and the arc-shaped side wall of the second roller is used for rolling abutment with the arc-shaped side wall of the pipe core of the copper foil roll.

7. The copper foil roll transfer and unloading device according to claim 5, wherein The driving mechanism comprises a driving shaft and a hand wheel, the driving shaft is horizontally arranged, both ends of the driving shaft are rotatably connected with the support, two threads with opposite rotation directions and equal lengths are arranged on the driving shaft, screw holes are arranged on the two bases and sleeved on the driving shaft through the screw holes, the two screw holes are in one-to-one correspondence with the two threads, and the hand wheel is fixedly connected with one end of the driving shaft.

8. The copper foil roll transfer and unloading device according to claim 5, wherein ​ 9. The copper foil roll transfer and unloading device according to claim 7, wherein ​ 10. The copper foil roll transfer and unloading device according to claim 5, wherein ​

Citation Information

Patent Citations

  • Waste foil stripping and supporting device for copper foil roll

    CN219885213U