Transmission guide device for intelligent production of bus duct

Through the design of the transmission guide device, the problem of precise positioning during the bus duct riveting process is solved, the quality and efficiency of bus duct riveting are improved, and the position accuracy and stability during the processing are ensured.

CN223418272UActive Publication Date: 2025-10-10CHENYANG HENGBANG ELECTRIC CO LTD
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Patent Information

Application Number
CN202422913320.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-28
Publication Date
2025-10-10
Estimated Expiration
2034-11-28

AI Technical Summary

Technical Problem

During the production of bus ducts, it is difficult to accurately locate the position of the riveting process, resulting in low riveting efficiency and success rate.

Method used

A transmission guide device for the intelligent production of bus duct is designed, which includes riveting equipment, a conveyor line, a feeding table, a clamping assembly and a feeding precision feeder. The movement of the clamping assembly is precisely controlled by a drive motor, a ball screw, a carrier plate, a slideway and other structures to ensure the position accuracy of the bus duct during the riveting process.

Benefits of technology

The riveting quality and efficiency of the bus duct are improved, the position accuracy and stability of the bus duct during the processing are ensured, and the degree of automation and work efficiency are improved.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of bus duct production, and discloses a transmission guide device for intelligent bus duct production, which comprises riveting equipment and a transmission line body, the transmission line body is positioned below the riveting equipment, two side walls of the transmission line body are fixedly connected with guide rails, the two slide rails are connected with a feeding table in a sliding manner, and the feeding table is connected with the riveting equipment in a sliding manner. A limiting sensor is arranged on the conveying line body, a clamping assembly is arranged on the feeding table, and a feeding fine feeding piece is further arranged on the feeding table. According to the utility model, the feeding fine feeding piece is arranged, so that the moving distance of the clamping assemblies can be accurately controlled, the position accuracy of the bus duct in the riveting process is ensured, and during accurate feeding, the clamping assembly far away from riveting equipment loosens the bus duct to be processed, and the clamping assembly close to the riveting equipment clamps the bus duct to be processed; and after one-time nailing is completed, the clamping assembly automatically performs corresponding actions, so that the riveting quality and the success rate of the bus duct are improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to bus duct production technical field, concretely is a kind of transmission guide device for bus duct intelligent production. BACKGROUND

[0002] As an important equipment for power transmission and distribution, the structural strength and electrical connection reliability of bus duct are crucial. Riveting, as a cold connection technology, uses rivets to securely connect the various components of the bus duct together, ensuring the overall strength and stability of the electrical connection of the bus duct.

[0003] In the traditional production process of bus duct, a special bus duct rivet gun is usually used for riveting processing, and the aluminum alloy shell of the bus duct is connected and sealed by self-punching rivets. However, during the actual riveting process, it is difficult to accurately position the shell, which can easily cause the riveting position to deviate, affecting the riveting efficiency and success rate. To solve the above problems, we propose a transmission guide device for bus duct intelligent production. SUMMARY

[0004] The utility model aims to provide a kind of transmission guide device for bus duct intelligent production, to solve the problem of affecting riveting efficiency and riveting success rate.

[0005] To achieve the above purpose, the utility model provides the following technical scheme: a kind of transmission guide device for bus duct intelligent production, including riveting equipment and conveying line body, the conveying line body is located below riveting equipment, the both sides wall of conveying line body is fixedly connected with guide rail, two the slide rail is slidably connected with feeding table located directly above conveying line body, limit sensor is arranged on conveying line body, clamping assembly is arranged side by side on feeding table, feeding precision feed is also provided on the feeding table for driving the clamping assembly close to riveting equipment to move.

[0006] According to the above technical scheme, the feeding precision feed includes a drive motor fixed in the feeding table, the feeding table is provided with a mounting seat connected with the clamping assembly close to the riveting equipment, and a ball screw is connected with the output end of the drive motor on the mounting seat.

[0007] According to the above technical scheme, the inner wall of the feeding table is provided with a slide, and the slide is slidably provided with a carrier plate, the mounting seat is connected with the carrier plate, and the clamping assembly close to the riveting equipment is installed on the carrier plate.

[0008] According to the above technical scheme, the feeding precision feed includes a carrier plate, the clamping assembly includes a first gear rotatably connected with the carrier plate, the two sides of the first gear are respectively engaged with a first rack, and the two first racks are respectively connected with oppositely arranged clamping jaws, and the clamping ends of the clamping jaws are extended out of the inside of the feeding table.

[0009] According to the technical scheme, the side wall of the carrier plate is embedded with a sliding rail, and the side wall of the clamping jaw is provided with a sliding block in sliding connection with the sliding rail.

[0010] According to the technical scheme, the two sides of the carrier plate are respectively provided with a guide block, and the end of each of the two first racks is fixedly connected with a guide rod penetrating through the corresponding guide block.

[0011] According to the technical scheme, the clamping ends of the clamping jaws are respectively provided with rubber clamping blocks.

[0012] According to the technical scheme, the conveying line body is provided with a first rack, and the feeding table is provided with a first gear in meshing connection with the first rack.

[0013] Compared with the prior art, the utility model has the beneficial effects that:

[0014] The driving motor, the ball screw, the carrier plate and the slide way in the feeding precise feeding piece are cooperated to accurately control the moving distance of the clamping assembly, ensure the position precision of the bus duct in the riveting process, release the clamping assembly away from the riveting equipment when accurately feeding, clamp the clamping assembly close to the riveting equipment, and accurately move towards the riveting equipment to facilitate the nailing action of the riveting equipment, and after completing the nailing, the clamping assembly automatically performs corresponding action, improve the riveting quality and effect of the bus duct, and improve the automation degree and working efficiency of the whole device.

[0015] The first gear, the first rack, the clamping jaw and other structures in the clamping assembly, and the cooperation of the sliding block and the sliding rail and the guide rod and the guide block enable the clamping jaw to quickly and accurately perform corresponding action in the clamping and releasing action, accurately control the bus duct, prevent the bus duct from loosening or displacement in the processing process, and effectively ensure the processing precision and quality of the bus duct. BRIEF DESCRIPTION OF DRAWINGS

[0016] Figure 1 is the overall structure schematic view of the transmission guide device of the utility model;

[0017] Figure 2 is the sectional view of the clamping assembly of the utility model;

[0018] Figure 3 is the connection view of the clamping assembly and the feeding precise feeding piece of the utility model;

[0019] Figure 4 is the utility model Figure 3 is the enlarged schematic view of A part in the utility model;

[0020] In the figure: 1. Riveting equipment; 2. Conveyor line; 3. Guide rail; 4. Feeding table; 5. Clamping assembly; 51. First gear; 52. First rack; 53. Clamping claw; 54. Slide rail; 55. Slider; 56. Guide block; 57. Guide rod; 58. Rubber clamp; 6. Feeding precision feed member; 61. Drive motor; 62. Mounting seat; 63. Ball screw; 64. Slide; 65. Carrier plate; 7. Second rack; 8. Second gear. DETAILED DESCRIPTION

[0021] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0022] See also Figure 1-4 The present invention provides a technical solution: a transmission guide device for intelligent bus duct production, comprising a riveting device 1 and a conveyor line 2. The conveyor line 2 is located below the riveting device 1. The conveyor line 2 is responsible for conveying the bus duct components to be riveted to the bottom of the riveting device and, after riveting, conveying the finished product to the next production link. The riveting device 1 can perform riveting processing on various components of the bus duct. By applying a certain amount of pressure, the rivets are deformed and the aluminum alloy shell and other components of the bus duct are firmly connected together, thereby ensuring the overall strength of the bus duct and the stability of the electrical connection.

[0023] The two side walls of the conveyor line body 2 are fixed with guide rails 3, and a feeding platform 4 located directly above the conveyor line body is slidably connected to the two guide rails 3. The two guide rails 3 are arranged parallel to the conveying direction of the conveyor line body 2, so that the feeding platform 4 can slide along the two guide rails 3. The conveyor line body 2 is provided with a limit sensor 9 for monitoring the position of the feeding platform 4. During the feeding process, the limit sensor 9 can monitor the position of the feeding platform 4 after feeding, and ensure that the feeding platform 4 accurately stops at the appropriate position below the riveting equipment 1.

[0024] The feeding table 4 is provided with clamping assemblies 5 side by side. After the bus duct to be processed moves to the bottom of the feeding table 4 through the guide rollers on the conveyor line 2, the clamping assembly 5 can firmly clamp the bus duct to be processed and, driven by the feeding table 4, approach the riveting equipment 1, and can also prevent displacement during the feeding process.

[0025] The feeding table 4 is also provided with a feeding precision feeding member 6 for driving the clamping assembly 5 close to the riveting device 1 to move;

[0026] The feeding precision feeding member 6 can accurately control the moving distance of the clamping assembly 5 close to the riveting device 1, and perform precise feeding to ensure that the bus duct to be processed can accurately enter the riveting device 1 for riveting processing.

[0027] A PLC is provided on the transmission guide device. During precise feeding, the clamping assembly 5 close to the riveting device 1 will clamp the bus duct to be processed under the action of the PLC, while the clamping assembly 5 away from the riveting device 1 will loosen the bus duct to be processed under the action of the PLC, so as to facilitate the feeding precision feed 6 to drive the clamping assembly 5 close to the riveting device 1 and the bus duct to be processed to move precisely toward the riveting device, so as to facilitate the nailing action of the riveting device 1.

[0028] After the bus duct to be processed is moved into the riveting equipment, the PLC will control the clamping assembly 5 away from the riveting equipment 1 to clamp the bus duct to be processed again to improve the stability of the bus duct to be processed and improve the riveting effect.

[0029] After completing a nailing operation, the clamping assembly 5 close to the riveting device 1 will release the bus duct to be processed under the action of the PLC, and return to the initial clamping position, and continue the clamping and feeding action, thereby improving the riveting quality and success rate of the bus duct.

[0030] Specifically, the fine feeding member 6 plays a key role in ensuring precise control of the movement of the clamping assembly 5. The fine feeding member 6 includes a drive motor 61 fixed in the feeding table 4. The drive motor 61 serves as a power source and provides a stable and reliable driving force for the entire fine feeding process.

[0031] A mounting base 62 is located within the feeder platform 4 and is connected to the clamping assembly 5 near the riveting device 1. Mounting base 62 is equipped with a ball screw 63 connected to the output of the drive motor 61. This ball screw 63 features high precision, high efficiency, and high rigidity, enabling efficient and accurate power transmission. When the drive motor 61 is running, its power output is converted into precise linear motion by the ball screw 63, thereby driving the mounting base 62 and the connected clamping assembly 5 for precise movement, ensuring the positional accuracy and processing quality of the busbar trunking during the riveting process.

[0032] Specifically, the inner wall of the feed platform 4 is provided with a slideway 64, on which a carrier plate 65 slides, providing a stable sliding track for the carrier plate 65. The mounting base 62 is connected to the carrier plate 65, allowing the mounting base 62 to perform stable linear motion under the guidance of the slideway 64. The clamping assembly 5 near the riveting device 1 is mounted on the carrier plate 65. The sliding movement of the carrier plate 65 enables the clamping assembly 5 to move more stably and precisely, further improving the positional accuracy and processing quality of the busbar duct during the feeding and riveting processes.

[0033] Specifically, the feeding fine feeding piece 6 includes a carrier plate 65, which smoothly slides along a specific track during the feeding process, providing stable support and precise movement platform for the clamping assembly 5 close to the riveting equipment 1. The clamping assembly 5 includes a first gear 51 rotatably connected with the carrier plate 65, which can rotate flexibly on the carrier plate 65, so as to realize precise driving of the two side parts, and the clamping assembly 5 away from the riveting equipment 1 is installed on the carrier plate 65 fixed with the inner wall of the feeding table 4, and the two clamping assemblies 5 are the same in structure.

[0034] The two sides of the first gear 51 are respectively engaged with the first rack 52, and when the first gear 51 rotates, the two first racks 52 can be driven to move linearly in opposite directions through the meshing action with the first rack 52, so that the clamping jaw 53 connected with the first rack 52 can realize relative or opposite movement, thereby completing the clamping and loosening action of the bus duct.

[0035] The two first racks 52 are respectively connected with oppositely arranged clamping jaws 53 for firmly clamping the bus duct to be processed. The connection mode of the clamping jaw 53 with the first rack 52 ensures that the clamping jaw 53 can accurately respond to the movement of the first rack 52, realizing precise control of the clamping and loosening action. In the clamping and loosening action, the clamping jaw 53 can quickly and accurately perform the corresponding action, realizing precise control of the bus duct, ensuring that the bus duct will not loosen or displace during processing, thereby effectively guaranteeing the processing precision and quality of the bus duct.

[0036] The clamping end of the clamping jaw 53 extends out of the inside of the feeding table 4, so that the clamping jaw 53 can directly contact and clamp the bus duct located outside the feeding table 4, and the bus duct will not loosen or displace, thereby ensuring the processing precision and quality of the bus duct. The bottom of the feeding table 4 is also provided with a relief groove for the movement of the clamping jaw 53, which not only provides sufficient movement space for the clamping jaw 53, but also avoids interference between the clamping jaw 53 and the feeding table 4, ensuring the smooth progress of the feeding and clamping process.

[0037] Specifically, the side wall of the carrier plate 65 is embedded with a sliding rail 54, and the side wall of the clamping jaw 53 is provided with a sliding block 55 slidably connected with the sliding rail 54. The cooperation of the sliding block 55 and the sliding rail 54 makes the movement of the clamping jaw 53 more stable and accurate. This sliding connection mode further enhances the movement precision and stability of the clamping jaw 53, providing more reliable protection for the clamping and feeding process of the bus duct.

[0038] Specifically, guide blocks 56 are provided on either side of the carrier plate 65. Guide rods 57 are fixed to the ends of the two first racks 52. These guide rods 57 extend through their corresponding guide blocks 56, enabling precise linear motion under the guidance of the guide blocks 56. The guide blocks 56 provide stable support and guidance for the guide rods 57, ensuring that their movement direction remains correct, thereby guaranteeing the movement accuracy and stability of the first racks 52. The coordination between the guide rods 57 and the guide blocks 56 further enhances the accuracy and reliability of the clamping assembly during the feeding process, effectively ensuring the processing quality of the bus duct.

[0039] Specifically, rubber clamping blocks 58 are positioned in pairs at the clamping ends of the jaws 53. These blocks are made of a material with excellent flexibility and elasticity. When the jaws 53 clamp the bus duct, the rubber clamping blocks 58 adhere closely to the surface of the bus duct. On the one hand, their elastic deformation provides buffering protection for the bus duct, preventing damage to the bus duct caused by excessive clamping force. On the other hand, the high friction generated between the rubber clamping blocks 58 and the bus duct ensures a secure clamping force, effectively preventing the bus duct from loosening, shifting, or slipping during feeding.

[0040] Specifically, a second rack 7 is fixedly mounted on the upper end of the side wall of the conveyor line 2. A second gear 8 is provided inside the feed platform 4. A motor is also provided inside the feed platform 4 to drive the second gear 8. The second gear 8 passes through the feed platform 4 and meshes with the second rack 7. When the motor drives the second gear 8 to rotate, the second gear 8 meshes with the second rack 7, driving the feed platform 4 to move accordingly. This allows the feed platform 4 to achieve precise position adjustment and feeding operations.

[0041] It will be apparent to those skilled in the art that the present invention is not limited to the details of the exemplary embodiments described above and that the present invention can be implemented in other specific forms without departing from the spirit or essential characteristics of the present invention. Therefore, the embodiments should be considered in all respects as illustrative and non-restrictive, and the scope of the present invention is defined by the appended claims, not the foregoing description, and all variations within the meaning and range of equivalents of the claims are intended to be encompassed within the present invention. Any reference sign in a claim should not be construed as limiting the claim to which it relates.

[0042] In addition, it should be understood that although this specification is described in terms of implementation methods, not every implementation method contains only one independent technical solution. This narrative method of the specification is only for the sake of clarity. Those skilled in the art should regard the specification as a whole. The technical solutions in each embodiment can also be appropriately combined to form other implementation methods that can be understood by those skilled in the art.

Claims

1. A transmission guide device for intelligent production of bus ducts, comprising a riveting device (1) and a transmission line (2), wherein the transmission line (2) is located below the riveting device (1), and is characterized in that: Guide rails (3) are fixedly connected to the two side walls of the conveyor line body (2), and a feeding platform (4) is slidably connected to the two guide rails (3). The feeding platform (4) is located directly above the conveyor line body. A limit sensor (9) for monitoring the position of the feeding platform (4) is provided on the conveyor line body (2). Clamping assemblies (5) are arranged side by side on the feeding platform (4). The feeding platform (4) is also provided with a feeding precision feeding member (6) for driving the clamping assembly (5) to move close to the riveting equipment (1).

2. The transmission guide device for intelligent production of bus duct according to claim 1, characterized in that: The feeding precision feeding member (6) includes a driving motor (61) fixed in a feeding platform (4); a mounting seat (62) connected to a clamping assembly (5) near a riveting device (1) is provided in the feeding platform (4); a ball screw (63) connected to an output end of the driving motor (61) is provided on the mounting seat (62).

3. The transmission guide device for intelligent production of bus duct according to claim 2, characterized in that: The inner wall of the feeding platform (4) is provided with a slideway (64), a carrier plate (65) is slidably provided on the slideway (64), the mounting seat (62) is connected to the carrier plate (65), and the clamping assembly (5) close to the riveting device (1) is installed on the carrier plate (65).

4. The transmission guide device for intelligent production of bus duct according to claim 1, characterized in that: The feeding precision feeding member (6) includes a carrier plate (65), and the clamping assembly (5) includes a first gear (51) rotatably connected to the carrier plate (65), first racks (52) are respectively engaged on both sides of the first gear (51), and the two first racks (52) are respectively connected to oppositely arranged clamping claws (53), and the clamping ends of the clamping claws (53) extend out of the interior of the feeding platform (4).

5. The transmission guide device for intelligent production of bus duct according to claim 4, characterized in that: The side wall of the carrier plate (65) is embedded with a slide rail (54), and the side wall of the clamping jaw (53) is provided with a slider (55) slidably connected to the slide rail (54).

6. The transmission guide device for intelligent production of bus duct according to claim 4, characterized in that: Guide blocks (56) are respectively provided on both sides of the carrier plate (65), and guide rods (57) are fixedly connected to the ends of the two first racks (52), and the guide rods (57) respectively pass through the corresponding guide blocks (56).

7. The transmission guide device for intelligent production of bus duct according to claim 4, characterized in that: The clamping ends of the clamping jaws (53) are provided with rubber clamping blocks (58) in pairs facing each other.

8. The transmission guide device for intelligent production of bus duct according to claim 2, characterized in that: The transmission line body (2) is provided with a second rack (7), and the feeding platform (4) is provided with a second gear (8) meshing with the second rack (7).