Copper strip coil steel sleeve transfer device

By designing a copper strip coil steel sleeve transfer device, which utilizes a base, a steel sleeve support lifting frame, and a pushing structure, the problems of steel sleeve deformation and large space occupation are solved, achieving efficient and compact steel sleeve transfer and storage, and improving workshop layout and installation efficiency.

CN121247531APending Publication Date: 2026-01-02ANHUI YONGJIE COPPER
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Patent Information

Application Number
CN202511580077.5
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-10-31
Publication Date
2026-01-02

AI Technical Summary

Technical Problem

In existing copper strip processing, when the steel sleeve is installed on the winding shaft, the double-cone clamping method is prone to deformation, resulting in a complex device structure, large space occupation, inconvenience for workshop layout, and low transfer efficiency.

Method used

A copper strip coil steel sleeve transfer device was designed, including a base, a steel sleeve lifting frame and a steel sleeve storage rack. Combined with a push structure, the device achieves efficient movement and storage of the steel sleeve through slide rails and drive cylinders. It adopts a liftable frame structure and rubber pads for cushioning, resulting in a compact structure and small space occupation.

Benefits of technology

It enables efficient transfer and storage of steel sleeves. The device has a compact structure, reduces space occupation, facilitates workshop layout and installation, and improves operational efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a copper strip coil steel sleeve transfer device which comprises a base, a steel sleeve bearing lifting frame and a steel sleeve storage frame and further comprises a pushing structure, a sliding rail is arranged on the base in the axial direction of a rolling shaft, the steel sleeve bearing lifting frame is arranged on the sliding rail, and the steel sleeve storage frame and the pushing structure are arranged corresponding to the outer end of the sliding rail. The steel jacket storage rack and the pushing structure are correspondingly arranged on the two sides of the sliding rail. The disassembled steel sleeve is supported by the steel sleeve bearing lifting frame, the steel sleeve bearing lifting frame supports and bears the steel sleeve to move to the pushing position together, the steel sleeve descends to be flush with the steel sleeve storage frame, the steel sleeve is pushed into the steel sleeve storage frame through the pushing structure, the structure is compact, the occupied space is small, and workshop arrangement and installation are facilitated; and the steel jacket transfer operation is efficient.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of copper strip processing, in particular to a copper strip coil steel sleeve transfer device. BACKGROUND

[0002] In the current copper strip processing industry, the steel sleeve is installed on the winding shaft, and the winding shaft drives the steel sleeve to rotate together for winding. The steel sleeve generally adopts a double taper head clamping method, and the taper head is used to clamp the steel sleeve. The cooperation between the taper hole at the end of the steel sleeve and the taper head is relatively precise, and after long-term use, a certain deformation will occur, which requires the steel sleeve to be removed for grinding processing.

[0003] For example, patent CN215236884U discloses a device for automatically transferring a sleeve from a copper strip unwinding machine to a winding machine, which includes an unwinding trolley for discharging the sleeve and a winding trolley for receiving the sleeve and feeding it to the winding shaft. The unwinding trolley has a nylon plate supported by a frame, which extends towards the winding trolley and is set in a downward inclined posture. The winding trolley has a sleeve holder supported by a base, which extends towards the unwinding trolley and is set in an upward inclined posture. The nylon plate and the sleeve holder are connected to form a transfer bridge structure for the rolling transfer of the sleeve. It also includes a discharge gate system that acts on the sleeve on the sleeve holder. The discharge gate system releases one sleeve at a time. The device structure is complex, occupies a large space, and is not conducive to the layout of the workshop. SUMMARY

[0004] To overcome the shortcomings of the prior art, the present application provides a copper strip coil steel sleeve transfer device to achieve a compact structure and efficient transfer.

[0005] To solve the above technical problems, the technical solution adopted by the present application is as follows: The copper strip coil steel sleeve transfer device comprises a base, a steel sleeve carrying lifting frame and a steel sleeve storage rack. It also comprises a pushing structure. The base is provided with a sliding rail along the winding shaft. The steel sleeve carrying lifting frame is arranged on the sliding rail. The steel sleeve storage rack and the pushing structure are arranged corresponding to the outer end of the sliding rail. The steel sleeve storage rack and the pushing structure are arranged corresponding to the two sides of the sliding rail.

[0006] Further or preferably: A driving cylinder is arranged on the base to move the steel sleeve carrying lifting frame. The piston rod end of the driving cylinder is connected to the bottom of the steel sleeve carrying lifting frame.

[0007] The steel sleeve storage rack is a lifting frame structure. A steel sleeve carrying plate is arranged at the top of the frame structure. A baffle is arranged at one end of the steel sleeve carrying plate.

[0008] The pushing structure comprises a pushing frame, a pushing cylinder and a pushing plate arranged at the end of the pushing cylinder. The pushing cylinder is arranged on the pushing frame.

[0009] The contact surface between the baffle and the steel sleeve is provided with a rubber pad.

[0010] An elastic element is provided between the back of the baffle and the frame structure.

[0011] The top of the pusher is an outward-sloping surface, and the pusher cylinder is mounted on the sloped surface.

[0012] The lower end of the baffle is hinged to the frame structure. A support plate is provided on the frame structure corresponding to the outer side of the baffle. The elastic element is a steel spring, which is set between the support plate and the baffle.

[0013] The outer side of the steel sleeve bearing lifting frame is provided with a cover plate, and the inner edge of the cover plate is connected to the steel sleeve bearing lifting frame. When the steel sleeve bearing lifting frame moves, it causes the cover plate to move together. When the steel sleeve bearing lifting frame is directly below the roller, the cover plate corresponds to the pushing structure and is located above the slide rail at this point.

[0014] Compared with the prior art, the present invention has the following advantages: The copper strip coil steel sleeve transfer device has a reasonable structural design. The disassembled steel sleeve is supported by a steel sleeve carrying lifting frame. The steel sleeve carrying lifting frame moves together with the steel sleeve to the pushing position. The steel sleeve is lowered to be flush with the steel sleeve storage rack. The pushing structure pushes the steel sleeve into the steel sleeve storage rack. The structure is compact, occupies little space, and is conducive to workshop layout and installation. Moreover, the steel sleeve transfer operation is highly efficient. Attached Figure Description

[0015] The following is a brief explanation of the contents of each of the accompanying drawings and the markings in the drawings: Figure 1 This is a schematic diagram of the device structure of the present invention.

[0016] In the picture: 1. Rewinding mechanism, 2. Steel sleeve, 3. Base, 4. Slide rail, 5. Steel sleeve bearing lifting frame, 6. Push frame, 7. Push cylinder, 8. Push plate, 9. Steel sleeve storage rack. Detailed Implementation

[0017] The specific embodiments of the present invention will be further described in detail below with reference to the accompanying drawings and through the description of the examples.

[0018] like Figure 1 As shown, the copper strip coil steel sleeve transfer device includes a base 3, a steel sleeve bearing lifting frame 5, a steel sleeve storage rack 9, and a pushing structure; a slide rail 4 is provided on the base 3 along the winding axis of the winding mechanism 1, the steel sleeve bearing lifting frame is movably mounted on the slide rail, the steel sleeve storage rack 9 and the pushing structure are provided at the outer ends of the corresponding slide rail, and the steel sleeve storage rack and the pushing structure are located on both sides of the slide rail respectively.

[0019] The copper strip coil steel sleeve transfer device has reasonable structure design, the disassembled steel sleeve is supported by a steel sleeve bearing lifting frame, the steel sleeve bearing lifting frame supports the steel sleeve to move to a pushing position together, the steel sleeve is lowered to be flush with a steel sleeve storage rack, the steel sleeve 2 is pushed into the steel sleeve storage rack by a pushing structure, the structure is compact, occupies small space, and is beneficial to workshop layout and installation; and the steel sleeve transfer operation is efficient.

[0020] A driving cylinder for pushing the steel sleeve bearing lifting frame is arranged on the base 3, the piston rod end of the driving cylinder is connected with the bottom of the steel sleeve bearing lifting frame, and the steel sleeve bearing lifting frame is pushed to move on the slide rail by the driving cylinder; when the steel sleeve bearing lifting frame corresponds to the reel, the steel sleeve bearing lifting frame is raised to bear the steel sleeve, after the clamping structure of the steel sleeve is disassembled, the driving cylinder drives the steel sleeve bearing lifting frame to move outward, so that the steel sleeve is moved out; the steel sleeve is moved to a storage alignment position, the steel sleeve bearing lifting frame is lowered, and the steel sleeve is pushed into the steel sleeve storage rack by the pushing structure.

[0021] The steel sleeve storage rack 9 is a liftable frame structure, the frame structure is provided with a steel sleeve bearing plate at the top, and the steel sleeve bearing plate is provided with a baffle at one end.

[0022] Further, the contact surface between the baffle and the steel sleeve is provided with a rubber pad, and an elastic element is arranged between the back of the baffle and the frame structure, so as to buffer the pushed steel sleeve and be stable and reliable. Preferably, the lower end of the baffle is hingedly connected with the frame structure, a supporting plate is arranged on the frame structure and corresponds to the outer side of the baffle, the elastic element is a steel spring, and the steel spring is arranged between the supporting plate and the baffle, so that the structure is compact.

[0023] The pushing structure comprises a pushing frame 6, a pushing cylinder 7 and a pushing plate 8 arranged at the end of the pushing cylinder, and the pushing cylinder is arranged on the pushing frame; the top of the pushing frame is an inclined surface inclined to the outside, the pushing cylinder is installed on the inclined surface, and the pushing plate is inclined upward to push the steel sleeve.

[0024] Further, a cover plate is arranged on the outer side of the steel sleeve bearing lifting frame, the inner side edge of the cover plate is connected with the lifting frame, the cover plate moves together with the steel sleeve bearing lifting frame, the cover plate corresponds to the pushing structure when the steel sleeve bearing lifting frame is located directly below the reel, the cover plate is located above the slide rail at this position, and the operator can stand on the cover plate to operate, so that the operation is safe and reliable.

[0025] The above only describes the preferred embodiments of the present application, and the above technical features can be combined to form multiple embodiments of the present application.

[0026] The present application is described above in conjunction with the drawings, and it is obvious that the specific implementation of the present application is not limited by the above manner, as long as the concept and technical scheme of the present application are adopted for various non-essential improvements or the concept and technical scheme of the present application are directly applied to other occasions without improvement, which are all within the protection scope of the present application.

Claims

1. A copper strip coil steel sleeve transfer device, comprising a base, a steel sleeve bearing lifting frame, and a steel sleeve storage rack, characterized in that: It also includes a pushing structure. The base is provided with a slide rail along the winding axis. The steel sleeve bearing lifting frame is installed on the slide rail. The steel sleeve storage rack and the pushing structure are provided at the outer ends of the slide rail. The steel sleeve storage rack and the pushing structure are located on both sides of the slide rail and are respectively provided.

2. The copper strip coil steel sleeve transfer device as described in claim 1, characterized in that: The base is equipped with a drive cylinder for moving the steel sleeve bearing lifting frame, and the piston rod end of the drive cylinder is connected to the bottom of the steel sleeve bearing lifting frame.

3. The copper strip coil steel sleeve transfer device as described in claim 1, characterized in that: The steel sleeve storage rack is a liftable frame structure with a steel sleeve bearing plate on the top and a baffle plate at one end of the steel sleeve bearing plate.

4. The copper strip coil steel sleeve transfer device as described in claim 1, characterized in that: The pushing structure includes a pusher frame, a pusher cylinder, and a pusher plate located at the end of the pusher cylinder, with the pusher cylinder mounted on the pusher frame.

5. The copper strip coil steel sleeve transfer device as described in claim 3, characterized in that: The contact surface between the baffle and the steel sleeve is provided with a rubber pad.

6. The copper strip coil steel sleeve transfer device as described in claim 5, characterized in that: An elastic element is provided between the back of the baffle and the frame structure.

7. The copper strip coil steel sleeve transfer device as described in claim 4, characterized in that: The top of the pusher is an outward-sloping surface, and the pusher cylinder is mounted on the sloped surface.

8. The copper strip coil steel sleeve transfer device as described in claim 6, characterized in that: The lower end of the baffle is hinged to the frame structure. A support plate is provided on the frame structure corresponding to the outer side of the baffle. The elastic element is a steel spring, which is set between the support plate and the baffle.

9. The copper strip coil steel sleeve transfer device as described in claim 2, characterized in that: The outer side of the steel sleeve bearing lifting frame is provided with a cover plate, and the inner edge of the cover plate is connected to the steel sleeve bearing lifting frame. When the steel sleeve bearing lifting frame moves, it causes the cover plate to move together. When the steel sleeve bearing lifting frame is directly below the roller, the cover plate corresponds to the pushing structure and is located above the slide rail at this point.

Citation Information

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