Copper bar storage rack
By designing the drive components and guide rail structure of the copper busbar storage rack, the automatic lifting and moving of the storage frame is realized, which solves the problems of high labor intensity and low efficiency caused by the need for manual storage in existing devices and improves operational efficiency.
Patent Information
- Application Number
- CN202520508282.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-21
- Publication Date
- 2026-02-03
- Estimated Expiration
- 2035-03-21
AI Technical Summary
The existing copper busbar storage device requires manual operation by workers, resulting in a large workload and low efficiency.
Design a copper busbar storage rack that uses a drive assembly and guide rail structure to realize the automatic lifting and moving of the storage frame. The drive assembly controls the lifting and moving of the storage frame on the guide rail, reducing manual operation.
It reduces the labor intensity of workers, improves the efficiency of copper busbar storage, and allows operators to complete storage and retrieval operations without relying on external equipment such as forklifts.
Smart Images

Figure CN223863768U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of copper busbar storage, and specifically relates to a copper busbar storage rack. Background Technology
[0002] A copper busbar, also known as a copper busbar or copper busbar, is a long conductor made of copper with a rectangular or chamfered rectangular cross-section. It serves to transmit current and connect electrical equipment in a circuit.
[0003] Copper busbar storage racks are a common piece of equipment used in the production, processing, and storage of copper busbars to store and manage them in an orderly manner.
[0004] For example, Chinese patent CN217075330U discloses a copper busbar storage device. Each unit includes a first column, a crossbeam, a second column, a shelf, a baffle, a screw mechanism, a support plate, a crossbar, and a foot cup. The first column is vertically installed on the foot cup, the crossbeam is horizontally installed between the first columns, the shelf is horizontally installed between the crossbeams, the second column is vertically installed on the crossbeam, the screw mechanism is installed on the crossbeam, and the baffle is installed on the screw mechanism.
[0005] When using this device to store copper busbars, it can only be done manually by workers. Since the copper busbars have a certain length and weight, it often requires two workers to work together to store them. Manual storage by workers is labor-intensive and inefficient.
[0006] Therefore, corresponding improvements should be made to address the shortcomings of the device. Utility Model Content
[0007] To address the problem that copper busbar storage relies solely on manual labor, which is labor-intensive and inefficient, this invention provides a copper busbar storage rack.
[0008] The solution adopted by this utility model to solve its technical problem is: a copper busbar storage rack, including two symmetrically arranged vertical arms, with a crossbeam welded and fixed to the top of the two vertical arms, and also including a drive assembly, a storage frame, and N sets of storage units arranged sequentially from top to bottom.
[0009] A set of the storage units includes two symmetrically arranged fixed guide rails, which are respectively welded and fixed to the opposite sides of the two vertical arms;
[0010] The storage box is located on the rear side of the upright arm, and lifting guide rails are provided on its left and right sides respectively. The lifting guide rails correspond to the fixed guide rails front and back.
[0011] Multiple wheels are installed on the left and right sides of the storage frame. The wheels are set in the lifting guide rail and can slide along the lifting guide rail to the fixed guide rail.
[0012] The drive assembly is mounted on the boom and connected to the lifting guide rail, and is used to drive the lifting guide rail to move up and down.
[0013] Preferably, a reinforcing plate is welded and fixed to the outer side of the fixed guide rail, and the end of the reinforcing plate is welded and fixed to the front side of the upright arm.
[0014] Preferably, a diagonal tie rod is welded and fixed between the front side of the upright arm and the upper surface of the reinforcing plate.
[0015] Preferably, a base is welded and fixed to the bottom of the upright arm, and two ribs are welded and fixed between the upper surface of the base and the outer side of the upright arm.
[0016] Preferably, the upright arm is made of channel steel and the crossbeam is made of square steel.
[0017] Preferably, the drive assembly includes a forward and reverse motor, a chain, and two threaded rods. The two threaded rods are respectively installed in the two vertical arms. Nuts are threaded onto the threaded rods and welded to the lifting guide rails. A bearing and a sprocket are mounted on the optical shaft at the top of the threaded rod. The bearing is installed at the bottom of the crossbeam, and the sprocket is installed inside the crossbeam. The two sprockets are connected by the same chain drive. The drive motor is installed at the top of the crossbeam, and its output shaft is connected to the top of either of the threaded rods.
[0018] Preferably, it also includes two U-shaped guide rods, which are welded and fixed to the rear side of the boom. The U-shaped guide rods are provided with sliding sleeves, which are welded and fixed to the side of the lifting guide rail.
[0019] Compared with the prior art, the beneficial effects of this utility model are:
[0020] 1. This utility model involves sliding a storage frame containing copper busbars between two lifting guide rails and controlling the forward rotation of a forward and reverse motor. Under the transmission action of the chain and sprocket, the two threaded rods rotate synchronously, causing the storage frame and the two lifting guide rails to slowly rise. The storage frame is then raised to a suitable height, and by pushing the storage frame, it is moved between two fixed guide rails for storage of the storage frame and copper busbars. This reduces the labor intensity of workers and improves work efficiency.
[0021] 2. By setting up a drive component, this utility model realizes the automatic lifting function of the storage frame. Operators can easily complete the storage and retrieval of copper busbars without relying on external equipment such as forklifts, which significantly improves operating efficiency and reduces labor intensity. Attached Figure Description
[0022] Figure 1 This is a front-view three-dimensional structural diagram of the present invention;
[0023] Figure 2 This is a rear-view three-dimensional structural diagram of the present invention;
[0024] Figure 3 This is a frontal cross-sectional view of the present invention.
[0025] In the diagram: 1. Vertical arm, 21. Base, 22. Rib plate, 31. Fixed guide rail, 32. Diagonal tie rod, 33. Reinforcing plate, 41. U-shaped guide rod, 42. Sliding sleeve, 51. Forward and reverse motor, 52. Threaded rod, 53. Nut, 54. Sprocket, 55. Chain, 6. Lifting guide rail, 71. Storage frame, 72. Wheel, 8. Crossbeam. Detailed Implementation
[0026] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0027] Please see Figure 1-3 This utility model provides a technical solution for a copper busbar storage rack:
[0028] Example 1:
[0029] according to Figure 1-3 As shown, it includes two symmetrically arranged vertical arms 1. A crossbeam 8 is welded and fixed to the top of the two vertical arms 1. The vertical arms 1 are made of channel steel, and the crossbeam 8 is made of square steel. A base 21 is welded and fixed to the bottom of the vertical arms 1. Two ribs 22 are welded and fixed between the upper surface of the base 21 and the outer side of the vertical arm 1. By fixing the base 21 to the ground, the stability of the vertical arms 1 is ensured by the connection of the ribs 22.
[0030] It also includes a drive assembly, a storage frame 71, and N sets of storage units arranged sequentially from top to bottom. Each storage unit includes two symmetrically arranged fixed guide rails 31. The two fixed guide rails 31 are welded and fixed to the opposite sides of the two upright arms 1. A reinforcing plate 33 is welded and fixed to the outer side of the fixed guide rails 31. The end of the reinforcing plate 33 is welded and fixed to the front side of the upright arm 1. A diagonal tie rod 32 is welded and fixed between the front side of the upright arm 1 and the upper surface of the reinforcing plate 33. By setting the reinforcing plate 33 and the diagonal tie rod 32 between the upright arm 1 and the fixed guide rails 31, the structural stability of the fixed guide rails 31 is significantly enhanced.
[0031] The storage frame 71 is located on the rear side of the upright arm 1, and lifting guide rails 6 are respectively provided on its left and right sides. The lifting guide rails 6 correspond to the fixed guide rails 31 front and back. Multiple wheels 72 are installed on the left and right sides of the storage frame 71. The wheels 72 are located in the lifting guide rails 6 and can slide along the lifting guide rails 6 to the fixed guide rails 31.
[0032] The drive assembly includes a forward and reverse motor 51, a chain 55, and two threaded rods 52. The two threaded rods 52 are respectively installed in the two vertical arms 1. Nuts 53 are threadedly connected to the threaded rods 52. The nuts 53 are welded and fixed to the lifting guide rail 6. A bearing and a sprocket 54 are installed on the top optical shaft of the threaded rod 52. The bearing is installed at the bottom of the crossbeam 8 to ensure the stability of the threaded rod 52 during rotation.
[0033] The sprocket 54 is installed inside the crossbeam 8. The two sprockets 54 are connected by the same chain 55. The drive motor is installed on the top of the crossbeam 8, and its output shaft is connected to the top of any threaded rod 52. By setting up the drive assembly, the automatic lifting function of the storage frame 71 is realized. Operators can easily complete the storage and retrieval of copper busbars without relying on external equipment such as forklifts, which significantly improves operating efficiency and reduces labor intensity.
[0034] In practical use, the copper busbar storage rack of this utility model first stacks the processed copper busbars on the storage frame 71;
[0035] After a certain number of copper busbars are stacked in the storage box 71, the storage box 71 containing the copper busbars is pushed between the two lifting guide rails 6. Then, the forward and reverse motors 51 are controlled to rotate in the forward direction. Under the transmission action of the chain 55 and the sprocket 54, the two threaded rods 52 rotate synchronously, causing the storage box 71 and the two lifting guide rails 6 to rise slowly.
[0036] The storage frame 71 is raised to a suitable height, the forward and reverse motor 51 stops working, and then the storage frame 71 is pushed to move the storage frame 71 between the two fixed guide rails 31 to store the storage frame 71 and the copper busbar. Finally, the forward and reverse motor 51 is controlled to rotate in the opposite direction, so that the two lifting guide rails 6 are lowered and reset.
[0037] Example 2:
[0038] Based on Example 1, such as Figure 2 As shown, it also includes two U-shaped guide rods 41. The U-shaped guide rods 41 are welded and fixed to the rear side of the vertical arm 1. A sliding sleeve 42 is provided on the U-shaped guide rod 41. The sliding sleeve 42 is welded and fixed to the side of the lifting guide rail 6. By setting the U-shaped guide rods 41 and the sliding sleeve 42, the stability of the lifting guide rail 6 during the lifting process is improved.
Claims
1. A copper busbar storage rack, comprising two symmetrically arranged vertical arms, with a crossbeam welded and fixed to the top of the two vertical arms, characterized in that: It also includes a driver component, a storage frame, and N sets of storage units arranged sequentially from top to bottom. A set of the storage units includes two symmetrically arranged fixed guide rails, which are respectively welded and fixed to the opposite sides of the two vertical arms; The storage box is located on the rear side of the upright arm, and lifting guide rails are provided on its left and right sides respectively. The lifting guide rails correspond to the fixed guide rails front and back. Multiple wheels are installed on the left and right sides of the storage frame. The wheels are set in the lifting guide rail and can slide along the lifting guide rail to the fixed guide rail. The drive assembly is mounted on the boom and connected to the lifting guide rail, and is used to drive the lifting guide rail to move up and down.
2. The copper busbar storage rack according to claim 1, characterized in that: A reinforcing plate is welded and fixed to the outer side of the fixed guide rail, and the end of the reinforcing plate is welded and fixed to the front side of the upright arm.
3. The copper busbar storage rack according to claim 2, characterized in that: A diagonal tie rod is welded and fixed between the front side of the support arm and the upper surface of the reinforcing plate.
4. The copper busbar storage rack according to claim 1, characterized in that: A base is welded and fixed to the bottom of the upright arm, and two ribs are welded and fixed between the upper surface of the base and the outer side of the upright arm.
5. The copper busbar storage rack according to claim 1, characterized in that: The vertical arm is made of channel steel, and the horizontal beam is made of square steel.
6. The copper busbar storage rack according to claim 5, characterized in that: The drive assembly includes a forward and reverse motor, a chain, and two threaded rods. The two threaded rods are respectively installed inside the two vertical arms. Nuts are threaded onto the threaded rods and welded to the lifting guide rails. A bearing and a sprocket are mounted on the optical shaft at the top of the threaded rod. The bearing is installed at the bottom of the crossbeam, and the sprocket is installed inside the crossbeam. The two sprockets are connected by the same chain drive. The drive motor is installed at the top of the crossbeam, and its output shaft is connected to the top of either of the threaded rods.
7. The copper busbar storage rack according to claim 6, characterized in that: It also includes two U-shaped guide rods, which are welded and fixed to the rear side of the boom. The U-shaped guide rods are equipped with sliding sleeves, which are welded and fixed to the side of the lifting guide rail.
Citation Information
Patent Citations
Copper bar storage device
CN217075330U