Feeding device for copper bar vulcanization production

By designing a copper drain vulcanization production and loading device including an electric translation mechanism and an adjustable material hanging mechanism, the problem of inconvenient adjustment of the height and angle of the copper drain busbar in the prior art is solved, and the automatic loading and flexible adjustment of the copper drain busbar during the vulcanization process is realized, and the vulcanization treatment effect is improved.

CN222922320UActive Publication Date: 2025-05-30QUANZHOU DAXIYANG ELECTRIC POWER TECH CO LTD
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Patent Information

Application Number
CN202421991721.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-16
Publication Date
2025-05-30
Estimated Expiration
2034-08-16

AI Technical Summary

Technical Problem

During the loading and transportation process of the existing copper drain vulcanization production and loading device, it is not convenient to flexibly adjust the height and angle of the copper drain busbar according to the needs of different processing steps, resulting in the inability to achieve better vulcanization treatment effect.

Method used

A copper discharge vulcanization production and loading device including an electric translation mechanism and an adjustable material hanging mechanism is designed. The electric translation mechanism realizes the translation and angle adjustment of the copper row busbar through the transverse lead screw, guide rail and servo motor, ensuring that the copper row busbar can be automatically and orderly transported to each processing process area.

Benefits of technology

Through the coordinated cooperation of this device, the height and angle of the copper row busbar can be adjusted flexibly, meeting the needs of different processing steps, and improving the effect of vulcanization treatment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a feeding device for copper bar vulcanization production, which relates to the technical field of copper bar vulcanization treatment and comprises a feeding platform provided with an electric translation mechanism and an adjustable hanging mechanism. The electric translation mechanism comprises two transverse lead screws, two guide rails, a synchronous control assembly and a moving frame, wherein the two transverse lead screws, the two guide rails and the synchronous control assembly are sequentially and rotationally installed on the top of the feeding platform, and the moving frame is connected between the two transverse lead screws in a threaded mode. The adjustable material hanging mechanism comprises two electric push rods, a lifting plate, an angle adjusting assembly and a hanging plate, and a row of hooks distributed at equal intervals are fixedly installed on the outer wall of the bottom of the hanging plate. According to the utility model, the hoisted copper bar bus can be automatically and orderly conveyed to each treatment process area of a vulcanization treatment line, so that the effect of automatic feeding is realized; in the feeding and conveying process, the height and the angle of the suspended copper bar bus can be flexibly adjusted according to the requirements in different treatment process areas, so that a better vulcanization treatment effect can be conveniently achieved.
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Description

Technical Field

[0001] The utility model relates to the technical field of copper bar vulcanization treatment, in particular to a feeding device for copper bar vulcanization production. Background Art

[0002] Copper bars are mainly used in high- and low-voltage switch cabinets to serve as conductors for collecting, distributing, and transmitting electric energy by connecting between cabinets and various electrical equipment within the cabinets. During short-circuit faults, they have to withstand the heating and electrodynamic forces caused by short-circuit currents and are important components in high- and low-voltage complete sets of electrical appliances. During high-voltage power transmission, the vulcanization treatment of copper bar busbars can prevent the switch cabinet shell or other components from being electrified, thereby protecting the components in the circuit from damage.

[0003] Currently, a feeding device is used during the processing of copper bar busbar vulcanization treatment. For example, the patent with the application number 201821372983.1 discloses a feeding device for copper bar vulcanization production, which includes a transfer platform, a lifting tool, a lifting workbench, and a pushing track. This patent can achieve the effect of automatic feeding. However, in the prior art, during the feeding and conveying process, it is not convenient to flexibly adjust the height and angle of the suspended copper bar busbars according to the requirements in different processing procedure areas, and thus a better vulcanization treatment effect cannot be achieved. Summary of the Utility Model

[0004] The purpose of the utility model is to solve the problem that in the prior art, during the feeding and conveying process, it is not convenient to flexibly adjust the height and angle of the suspended copper bar busbars according to the requirements in different processing procedure areas, and thus a better vulcanization treatment effect cannot be achieved, and to propose a feeding device for copper bar vulcanization production.

[0005] In order to achieve the above purpose, the utility model adopts the following technical scheme:

[0006] A feeding device for copper bar vulcanization production includes a feeding platform provided with an electric translation mechanism and an adjustable hanging mechanism.

[0007] The electric translation mechanism includes two transverse lead screws rotatably installed in sequence on the top of the feeding platform, two guide rails symmetrically fixedly connected to the outer wall of the top of the feeding platform, a synchronous control component, and a moving frame threadedly connected between the two transverse lead screws.

[0008] The adjustable hanging mechanism includes two electric push rods symmetrically and fixedly installed on the outer wall of the top of the moving frame, the same lifting plate fixedly connected to the bottom ends of the output shafts of the two electric push rods, an angle adjustment component, and a hanging plate fixedly installed on the bottom outer wall with a row of equally spaced hooks.

[0009] As a preferred technical solution of the present utility model, both of the guide rails are slidably connected to the moving frame, which can ensure the stability of the linear motion of the moving frame.

[0010] As a preferred technical solution of the present utility model, the synchronous control assembly includes two synchronous pulleys fixedly sleeved on one end of two transverse lead screws in sequence, a support plate welded to the side wall of the loading platform, and a servo motor fixedly installed on the outer wall of the top of the support plate.

[0011] As a preferred technical solution of the present utility model, the two synchronous pulleys are drivingly connected by the same synchronous belt, and the output shaft of the servo motor is coaxially fixedly connected to one end of one of the transverse lead screws through a coupling.

[0012] As a preferred technical solution of the present utility model, the angle adjustment assembly includes an inverted U-shaped seat fixedly connected to the outer wall of the top of the lifting plate, a rotating shaft rotatably installed at the center of the lifting plate, a stepping motor fixedly installed on the side wall of the inverted U-shaped seat, a driving bevel gear fixedly sleeved on the output shaft of the stepping motor, and a driven bevel gear fixedly sleeved on the top end of the rotating shaft, which can flexibly adjust the angle of the copper busbar suspended on the suspension plate.

[0013] As a preferred technical solution of the present utility model, the output shaft of the stepping motor penetrates through one side of the inverted U-shaped seat, and the driving bevel gear meshes with the driven bevel gear.

[0014] As a preferred technical solution of the present utility model, the outer wall of the bottom end of the rotating shaft is welded to the center outer wall of the top of the suspension plate, and two balance brackets are symmetrically welded between the rotating shaft and the suspension plate.

[0015] As a preferred technical solution of the present utility model, two avoidance holes are formed in the top of the moving frame, and the output shafts of the two electric push rods respectively penetrate through the two avoidance holes.

[0016] The beneficial effects of the present utility model are as follows:

[0017] 1. Through the coordinated cooperation of the electric translation mechanism and the adjustable hanging material mechanism of the present utility model, the lifted copper busbar can be automatically and orderly transported to each processing procedure area of the vulcanization treatment line, thereby achieving the effect of automatic loading.

[0018] 2. The utility model can control the lifting plate to move up and down through two electric push rods, which is convenient for flexibly adjusting the height of the copper bar bus suspended on the suspension plate. The stepping motor drives the driving bevel gear to rotate, and then the driven bevel gear meshing with the driving bevel gear drives the rotating shaft to rotate, so as to flexibly adjust the angle of the copper bar bus suspended on the suspension plate. In this way, during the feeding and conveying process, it is convenient to flexibly adjust the height and angle of the suspended copper bar bus according to the requirements in different processing procedure areas, so as to achieve a better vulcanization treatment effect. Brief Description of the Drawings

[0019] Figure 1 Fig. is an overall three-dimensional structure schematic diagram of a copper bar vulcanization production feeding device proposed by the utility model;

[0020] Figure 2 Fig. is a partial three-dimensional structure schematic diagram of a copper bar vulcanization production feeding device proposed by the utility model;

[0021] Figure 3 Fig. is an enlarged three-dimensional structure schematic diagram of the bottom view of an adjustable hanging mechanism of a copper bar vulcanization production feeding device proposed by the utility model;

[0022] Figure 4 Fig. is a three-dimensional structure schematic diagram of the front view of an adjustable hanging mechanism of a copper bar vulcanization production feeding device proposed by the utility model;

[0023] Figure 5 Fig. is an enlarged three-dimensional structure schematic diagram of an angle adjustment component of a copper bar vulcanization production feeding device proposed by the utility model.

[0024] In the figure: 1. Feeding platform; 2. Horizontal lead screw; 3. Guide rail; 4. Moving frame; 5. Synchronous pulley; 6. Synchronous belt; 7. Electric push rod; 8. Lifting plate; 9. Suspension plate; 10. Hook; 11. Inverted U-shaped seat; 12. Rotating shaft; 13. Stepping motor; 14. Driving bevel gear; 15. Driven bevel gear; 16. Balance bracket; 17. Support plate; 18. Servo motor. Detailed Description of the Embodiment

[0025] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments.

[0026] Embodiment

[0027] Refer to Figures 1-5 , a copper bar vulcanization production feeding device, including a feeding platform 1 provided with an electric translation mechanism and an adjustable hanging mechanism;

[0028] In this embodiment, the electric translation mechanism includes two transverse screws 2 which are sequentially rotatably mounted on the top of the loading platform 1, two guide rails 3 which are symmetrically fixedly connected to the outer wall of the top of the loading platform 1, a synchronous control assembly and a moving frame 4 which is threadedly connected between the two transverse screws 2;

[0029] Furthermore, the synchronous control assembly includes two synchronous wheels 5 fixedly mounted on one end of the two transverse screws 2 in sequence, a support plate 17 welded to the side wall of the loading platform 1, and a servo motor 18 fixedly mounted on the top outer wall of the support plate 17. The two synchronous wheels 5 are connected by a same synchronous belt 6, and the output shaft of the servo motor 18 is coaxially fixedly connected to one end of one of the transverse screws 2 through a coupling.

[0030] Furthermore, the two guide rails 3 are slidably connected to the moving frame 4, and two avoidance holes are opened on the top of the moving frame 4, and the conveying shafts of the two electric push rods 7 pass through the two avoidance holes respectively;

[0031] When the electric translation mechanism is in operation: the servo motor 18 drives a transverse lead screw 2 connected to it through a coupling to rotate, and then under the synchronous transmission effect of two synchronous wheels 5 and a synchronous belt 6, the two transverse lead screws 2 will rotate synchronously, and under the guidance of the two guide rails 3, the moving frame 4 threadedly connected between the two transverse lead screws 2 will make a linear motion in the horizontal direction;

[0032] In this embodiment, the adjustable hanging mechanism includes two electric push rods 7 symmetrically fixedly mounted on the top outer wall of the moving frame 4, a same lifting plate 8 fixedly connected to the bottom ends of the output shafts of the two electric push rods 7, an angle adjustment component and a hanging plate 9 on the bottom outer wall of which a row of hooks 10 distributed at equal distances are fixedly mounted;

[0033] Furthermore, the angle adjustment assembly includes an inverted U-shaped seat 11 fixedly connected to the outer wall of the top of the lifting plate 8, a rotating shaft 12 rotatably mounted at the center of the lifting plate 8, a stepping motor 13 fixedly mounted on the side wall of the inverted U-shaped seat 11, a driving bevel gear 14 fixedly mounted on the output shaft of the stepping motor 13, and a driven bevel gear 15 fixedly mounted on the top of the rotating shaft 12;

[0034] Furthermore, the output shaft of the stepper motor 13 passes through one side of the inverted U-shaped seat 11, the driving bevel gear 14 and the driven bevel gear 15 are meshed with each other, the bottom outer wall of the rotating shaft 12 is welded to the top center outer wall of the hanging plate 9, and two balancing brackets 16 are symmetrically welded between the rotating shaft 12 and the hanging plate 9;

[0035] When the adjustable hanging material mechanism is in motion: The lifting plate 8 can be controlled to move up and down by two electric push rods 7, which facilitates the flexible adjustment of the height of the copper busbar suspended on the suspension plate 9. The stepping motor 13 drives the driving bevel gear 14 to rotate, and then the driven bevel gear 15 meshing with the driving bevel gear 14 will drive the rotating shaft 12 to rotate, so as to flexibly adjust the angle of the copper busbar suspended on the suspension plate 9.

[0036] The working principle of this embodiment: First, a plurality of copper busbars to be vulcanized are suspended on each hook 10, and then the lifting plate 8 is controlled by two electric push rods 7 to move upward to lift the hung copper busbars.

[0037] Secondly, the servo motor 18 drives a transverse lead screw 2 connected to it through a coupling. Then, under the synchronous transmission effect of two synchronous pulleys 5 and a synchronous belt 6, the two transverse lead screws 2 will rotate synchronously. Under the guidance of two guide rails 3, the moving frame 4 threadedly connected between the two transverse lead screws 2 will move linearly in the horizontal direction, so as to automatically and orderly convey the lifted copper busbars to each processing procedure area of the vulcanization treatment line, thus realizing the effect of automatic feeding.

[0038] Moreover, the lifting plate 8 can be controlled to move up and down by two electric push rods 7, which facilitates the flexible adjustment of the height of the copper busbar suspended on the suspension plate 9. The stepping motor 13 drives the driving bevel gear 14 to rotate, and then the driven bevel gear 15 meshing with the driving bevel gear 14 will drive the rotating shaft 12 to rotate, so as to flexibly adjust the angle of the copper busbar suspended on the suspension plate 9. In this way, during the feeding and conveying process, it is convenient to flexibly adjust the height and angle of the suspended copper busbar according to the requirements in different processing procedure areas, so as to facilitate achieving a better vulcanization treatment effect.

[0039] The above is only the preferred specific embodiment of the present invention, but the protection scope of the present invention is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present invention, according to the technical solution of the present invention and its inventive concept, makes equivalent substitutions or changes, and all should be covered within the protection scope of the present invention.

Claims

1. A feeding device for copper bar vulcanization production, comprising a feeding platform (1) provided with an electric translation mechanism, characterized in that: Also included is an adjustable material hanging mechanism; The electric translation mechanism comprises two transverse screws (2) which are rotatably mounted on the top of the loading platform (1), two guide rails (3) which are symmetrically fixedly connected to the outer wall of the top of the loading platform (1), a synchronous control component and a moving frame (4) which is threadedly connected between the two transverse screws (2); The adjustable material hanging mechanism comprises two electric push rods (7) symmetrically fixedly mounted on the top outer wall of the moving frame (4), a common lifting plate (8) fixedly connected to the bottom ends of the output shafts of the two electric push rods (7), an angle adjustment component and a hanging plate (9) on the bottom outer wall of which a row of hooks (10) distributed at equal distances are fixedly mounted.

2. A copper busbar vulcanization production feeding device according to claim 1, characterized in that: The two guide rails (3) are both slidably connected to the moving frame (4).

3. A copper bar sulfurization production feeding device according to claim 1, characterized in that: The synchronous control assembly comprises two synchronous wheels (5) which are fixedly mounted on one end of two transverse lead screws (2) in sequence, a support plate (17) welded to the side wall of the loading platform (1), and a servo motor (18) fixedly mounted on the top outer wall of the support plate (17).

4. A copper busbar vulcanization production feeding device according to claim 3, characterized in that: The two synchronous wheels (5) are connected by a same synchronous belt (6), and the output shaft of the servo motor (18) is coaxially fixedly connected to one end of one of the transverse lead screws (2) via a coupling.

5. A copper busbar vulcanization production feeding device according to claim 1, characterized in that: The angle adjustment assembly comprises an inverted U-shaped seat (11) fixedly connected to the outer wall of the top of the lifting plate (8), a rotating shaft (12) rotatably mounted at the center of the lifting plate (8), a stepping motor (13) fixedly mounted on the side wall of the inverted U-shaped seat (11), a driving bevel gear (14) fixedly mounted on the output shaft of the stepping motor (13), and a driven bevel gear (15) fixedly mounted on the top of the rotating shaft (12).

6. A copper busbar vulcanization production feeding device according to claim 5, characterized in that: The output shaft of the stepping motor (13) passes through one side of the inverted U-shaped seat (11), and the driving bevel gear (14) and the driven bevel gear (15) are meshed with each other.

7. A copper busbar vulcanization production feeding device according to claim 5, characterized in that: The outer wall of the bottom end of the rotating shaft (12) is welded to the outer wall of the top center of the hanging plate (9), and two balancing brackets (16) are symmetrically welded between the rotating shaft (12) and the hanging plate (9).

8. A copper bar sulfurization production feeding device according to claim 1, characterized in that: Two avoidance holes are provided on the top of the movable frame (4), and the output shafts of the two electric push rods (7) respectively pass through the two avoidance holes.

Citation Information

Patent Citations

  • Copper bar vulcanizes production loading attachment

    CN208761520U