Automobile part machining production line convenient to debug

By introducing feeding and unloading components into the automotive parts production line, the problems of troublesome debugging and high costs have been solved, achieving the effects of simplified debugging and cost reduction.

CN223950104UActive Publication Date: 2026-02-27CHANGO INTELLIGENT TECH GUANGDONG CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202520681618.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-11
Publication Date
2026-02-27
Estimated Expiration
2035-04-11

AI Technical Summary

Technical Problem

Existing auto parts production lines are cumbersome and costly to debug, and cannot meet processing needs.

Method used

Design a production line structure including a frame, a first conveyor line, a second conveyor line, a membrane frame, a feeding assembly, a processing assembly, and a discharging assembly. The feeding assembly conveys the products on the membrane frame to the next membrane frame, and the discharging assembly places the products directly on the second conveyor line, reducing debugging steps and the use of robotic arms.

Benefits of technology

It simplified the debugging process, reduced processing costs, and met existing processing needs.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223950104U_ABST
    Figure CN223950104U_ABST
Patent Text Reader

Abstract

The utility model discloses an automobile part machining production line convenient to debug. The automobile part machining production line comprises a rack, a first conveying line, a second conveying line, a tire mold frame, a feeding assembly, a machining assembly and a discharging assembly. A plurality of tire film frames are fixed in the first conveying line; and the feeding assembly is used for backwards conveying the products on the forming die frame to the next forming die frame, so that the products are fixed by adopting the forming die frame, and the products in the forming die frame are directly conveyed backwards in sequence through the feeding assembly. Only the conveying distance and position of the feeding assembly need to be debugged, and the debugging process is more convenient; the feeding assembly is arranged on the second conveying line, the discharging assembly is used for taking down products fed into the second conveying line by the feeding assembly and placing the products on the second conveying line, the feeding assembly can directly feed the products to the position above the second conveying line, then the discharging assembly takes down the products and places the products on the second conveying line, and a mechanical arm does not need to be additionally arranged. And the overall processing cost is effectively reduced, so that the existing processing requirements can be met.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The utility model relates to the field technology of automobile accessories, especially points to a kind of automobile accessory machining production line of facilitating debugging. BACKGROUND

[0002] With the continuous development of economy and the continuous improvement of people's living standards, people's daily travel also becomes increasingly convenient. As a very common means of transport in daily life, cars play a very important role in goods transportation and people's daily travel. Automobile accessories need to be installed with other parts according to functional requirements during processing, and need to pass through multiple processing steps in the production line during installation.

[0003] In the existing automobile accessory production line, a plurality of support product membranes are arranged on the conveying line, and the product membranes are driven backward by the conveying line during processing. Before processing, the positions of the plurality of membrane racks need to be adjusted to ensure that the membrane racks correspond to the positions of the external processing components during conveying. Since the membrane racks are heavy, the adjustment process is troublesome. Moreover, when the products in the production line are discharged from one conveying line to another conveying line, a mechanical arm is needed to take the products in the membrane and place them in another conveying line. The use of the mechanical arm increases the overall processing cost, which cannot meet the existing processing requirements. Therefore, it is necessary to further improve the structure of the existing automobile accessory processing production line. SUMMARY

[0004] Therefore, the utility model provides a kind of automobile accessory machining production line of facilitating debugging, which can effectively solve the problems of troublesome adjustment process, high processing cost and inability to meet existing processing requirements of the existing automobile accessory production line.

[0005] To achieve the above-mentioned purpose, the utility model adopts the following technical solutions:

[0006] The application discloses a convenient-to-debug automobile accessory processing production line which comprises a rack, a first conveying line, a second conveying line, tire membrane racks, a feeding assembly, a processing assembly and a blanking assembly. The first conveying line and the second conveying line are arranged on the rack, the conveying direction of the second conveying line is different from that of the first conveying line, and the input end of the second conveying line is located on the side of the output end of the first conveying line. The tire membrane racks are arranged at intervals along the conveying direction of the first conveying line, and the tire membrane racks are fixed on the first conveying line. The feeding assembly is arranged on the first conveying line and moves back and forth along the conveying direction of the first conveying line, and the feeding assembly is used for conveying the products on the tire membrane racks to the next tire membrane rack. The processing assembly is arranged on the rack and located above the corresponding tire membrane rack. The blanking assembly is arranged on the rack and located above the input end of the second conveying line, and the blanking assembly is used for taking down the products sent into the second conveying line by the feeding assembly and placing the products on the second conveying line.

[0007] As a preferred scheme, the first conveying line comprises two slide rails extending in the transverse direction, the feeding assembly is provided with slide seats matched with the slide rails, and a first driving mechanism is arranged on the feeding assembly and drives the feeding assembly to move back and forth along the extending direction of the slide rails.

[0008] As a preferred scheme, the feeding assembly comprises a first movable seat, a second movable seat, a first feeding driving mechanism, a material taking head and a second feeding driving mechanism. The first movable seat is arranged on the first conveying line and moves back and forth along the conveying direction of the first conveying line. The second movable seat is movably arranged on the first movable seat and moves back and forth with the first movable seat. The first feeding driving mechanism is arranged on the first movable seat and drives the second movable seat to move back and forth. The material taking head is arranged in a front-back symmetrical manner, and the two material taking heads arranged in front and back are located on the two sides of the tire membrane rack. The material taking heads on the two sides are movably arranged on the second movable seat and face the tire membrane rack. The second feeding driving mechanism is arranged on the two sides, and each second feeding driving mechanism drives the corresponding material taking head to move back and forth.

[0009] As a preferred scheme, the feeding assembly comprises two feeding assemblies arranged in the transverse direction at intervals, and each feeding assembly comprises a plurality of groups of material taking heads arranged in the transverse direction at intervals.

[0010] As a preferred scheme, the processing assembly comprises a mounting plate and a second driving mechanism. The mounting plate is movably arranged on the rack and located directly above the corresponding tire membrane rack, and the mounting plate is provided with mounting grooves for mounting processing heads. The second driving mechanism is arranged on the rack and drives the mounting plate to move back and forth.

[0011] As a preferred scheme, the blanking assembly comprises a blanking seat, a third driving mechanism, a blanking head and a fourth driving mechanism; the blanking seat is movably arranged on the rack and located above the input end of the second conveying line; the third driving mechanism is arranged on the rack and drives the blanking seat to move up and down; the blanking head is arranged on the blanking seat, and a plurality of blanking heads are arranged on the blanking seat and can move towards the inner side of the blanking seat; and the fourth driving mechanism is arranged on the blanking seat and drives the blanking head to move.

[0012] As a preferred scheme, the second conveying line comprises a conveying rack, a conveying belt and a fifth driving mechanism; the conveying rack is arranged on the rack and located beside the output end of the first conveying line; the conveying belt is movably arranged on the conveying rack; and the fifth driving mechanism is arranged on the conveying rack and drives the conveying belt to move.

[0013] As a preferred scheme, the rack is provided with a cover, and the first conveying line, the tire membrane rack, the feeding assembly, the processing assembly and the blanking assembly are covered by the cover, and the output end of the second conveying line extends out of the cover.

[0014] Compared with the prior art, the utility model has obvious advantages and beneficial effects, specifically speaking, from the above technical scheme, it is known that:

[0015] The plurality of tire membrane racks are fixed in the first conveying line, and the feeding assembly is used for conveying the products on the tire membrane racks to the next tire membrane rack, so that the products are fixed by the tire membrane racks, and the products in the tire membrane racks are conveyed to the next tire membrane rack in sequence by the feeding assembly; thus, the position of the tire membrane rack does not need to be adjusted, only the conveying distance and position of the feeding assembly need to be adjusted, and the adjustment process is more convenient; and the products conveyed by the feeding assembly into the second conveying line are taken off by the blanking assembly and placed on the second conveying line, so that the feeding assembly can feed the products to the top of the second conveying line, and then the products are taken off by the blanking assembly and placed on the second conveying line, without the need of an additional mechanical arm; the overall processing cost is effectively reduced, and the processing demand can be met.

[0016] To make the structure features and effects of the utility model clearer, the utility model will be described in detail below by combining the drawings and specific embodiments. BRIEF DESCRIPTION OF DRAWINGS

[0017] Figure 1 is a three-dimensional structure schematic view of a preferred embodiment of the utility model;

[0018] Figure 2 is a local assembly schematic view of a preferred embodiment of the utility model;

[0019] Figure 3 isFigure 2 Enlarged view of part A;

[0020] Figure 4 is a schematic diagram of the three-dimensional structure of the processing assembly in the preferred embodiment of the utility model;

[0021] Figure 5 is another partial assembly schematic diagram of the preferred embodiment of the utility model;

[0022] Figure 6 is Figure 5 Enlarged view of part B.

[0023] Explanation of the drawing mark:

[0024] 10, rack 11, machine cover

[0025] 20, first conveying line 21, slide rail

[0026] 30, second conveying line 31, conveying frame

[0027] 32, conveying belt 33, fifth driving mechanism

[0028] 40, tire membrane frame 50, feeding assembly

[0029] 51, sliding seat 52, first driving mechanism

[0030] 53, first movable seat 54, second movable seat

[0031] 55, first feeding driving mechanism 56, material taking head

[0032] 57, second feeding driving mechanism 60, processing assembly

[0033] 601, mounting groove 61, mounting plate

[0034] 62, second driving mechanism 70, blanking assembly

[0035] 71, blanking seat 72, third driving mechanism

[0036] 73, blanking head 74, fourth driving mechanism. DETAILED DESCRIPTION

[0037] Please refer to Figures 1 to 6 It shows the specific structure of the preferred embodiment of the utility model, which includes rack 10, first conveying line 20, second conveying line 30, tire membrane frame 40, feeding assembly 50, processing assembly 60 and blanking assembly 70.

[0038] The first conveying line 20 and the second conveying line 30 are arranged on the frame 10, the conveying direction of the second conveying line 30 is different from that of the first conveying line 20, and the input end of the second conveying line 30 is located on the side of the output end of the first conveying line 20. In the embodiment, the first conveying line 20 comprises two slide rails 21 extending transversely. The frame 10 is provided with a cover 11, the first conveying line 20, the tire membrane frame 40, the feeding assembly 50, the processing assembly 60 and the discharging assembly 70 are covered by the cover 11, and the output end of the second conveying line 30 extends out of the cover 11.

[0039] The tire membrane frame 40 is arranged in multiple and is fixed on the first conveying line 20, and the tire membrane frame 40 is used for positioning and supporting the product to be processed.

[0040] The feeding assembly 50 is arranged on the first conveying line 20 and moves back and forth along the conveying direction of the first conveying line 20, and the feeding assembly 50 is used for conveying the product on the tire membrane frame 40 to the next tire membrane frame 40. In the embodiment, the feeding assembly 50 is provided with a sliding seat 51 matched with the slide rail 21, and a first driving mechanism 52 is arranged on the feeding assembly 50 and drives the feeding assembly 50 to move back and forth along the extending direction of the slide rail 21, so that the feeding process of the feeding assembly 50 is more stable through the cooperation of the slide rail 21 and the sliding seat 51.

[0041] The feeding assembly 50 comprises a first movable seat 53, a second movable seat 54, a first feeding driving mechanism 55, a material taking head 56 and a second feeding driving mechanism 57. The first movable seat 53 is arranged on the first conveying line 20 and moves back and forth along the conveying direction of the first conveying line 20. The second movable seat 54 is movably arranged on the first movable seat 53 and moves back and forth with the first movable seat 53. The first feeding driving mechanism 55 is arranged on the first movable seat 53 and drives the second movable seat 54 to move up and down. The material taking head 56 is arranged in a front-back symmetrical manner. Two material taking heads 56 arranged in front and back are respectively located on the two sides of the film frame 40. The two material taking heads 56 on the two sides are both movably arranged on the second movable seat 54 and move back and forth towards the film frame 40. The second feeding driving mechanism 57 is also arranged on the two sides. Each second feeding driving mechanism 57 drives the corresponding material taking head 56 to move back and forth. When the feeding assembly 50 drives the product to move backward, the two material taking heads 56 on the two sides move towards the film frame 40 and support the product in the film frame 40. Then, the first feeding driving mechanism 55 drives the second movable seat 54 and the material taking head 56 to move upward, so as to drive the product in the film frame 40 to move upward. Then, the first movable seat 53 moves towards the next film frame 40, so that the product on the material taking head 56 moves above the next film frame. Then, the first feeding driving mechanism 55 drives the material taking head 56 and the product on the material taking head 56 to move downward to the next film frame 40. Then, the second feeding driving mechanism 57 drives the material taking head 56 to reset and move away from the film frame 40.

[0042] The feeding assembly 50 is arranged in a transverse interval. Each feeding assembly 50 comprises a plurality of groups of material taking heads 56 arranged in a transverse interval. The number of feeding assemblies 50 and the number of material taking heads 56 in the feeding assembly 50 can be adjusted according to the actual number of film frames 40.

[0043] The processing assembly 60 is arranged in a plurality of groups. Each processing assembly 60 is arranged on the rack 10 and above the corresponding film frame 40. In the embodiment, the processing assembly 60 comprises a mounting plate 61 and a second driving mechanism 62. The mounting plate 61 is movably arranged on the rack 10 and above the corresponding film frame 40. The mounting plate 61 is provided with a mounting groove 601 for mounting a processing head. The second driving mechanism 62 is arranged on the rack 10 and drives the mounting plate 61 to move up and down. When the product is fed to the position, the second driving mechanism 62 drives the mounting plate 61 to move downward, and an external processing head arranged on the mounting plate 61 completes the processing of the product. The number and function of the processing heads in different processing assemblies 60 are different, so as to meet the processing of different processing steps of the product.

[0044] The unloading assembly 70 is arranged on the rack 10 and above the input end of the second conveying line 30, and is used to take the product sent by the feeding assembly 50 into the second conveying line 30 and place it on the second conveying line 30. In the embodiment, the unloading assembly 70 comprises an unloading seat 71, a third driving mechanism 72, an unloading head 73 and a fourth driving mechanism 74. The unloading seat 71 is arranged on the rack 10 and above the input end of the second conveying line 30 and can move up and down. The third driving mechanism 72 is arranged on the rack 10 and drives the unloading seat 71 to move up and down. The unloading head 73 is arranged on the unloading seat 71 and is a plurality of unloading heads arranged along the side of the unloading seat 71. The plurality of unloading heads 73 are arranged on the unloading seat 71 and can move towards the inside of the unloading seat 71. The fourth driving mechanism 74 is arranged on the unloading seat 71 and drives the unloading head 73 to move. When unloading, the feeding assembly 50 first sends the product processed in sequence to above the input end of the second conveying line 30, and then the third driving mechanism 72 drives the unloading seat 71 and the unloading head 73 on the unloading seat 71 to move downwards to the product in the feeding assembly 50. Then the fourth driving mechanism 74 drives the plurality of unloading heads 73 to move towards the inside of the unloading seat 71, and supports the product in the feeding assembly 50, and cooperates with the third driving mechanism 72 to drive the product to move upwards by a certain distance. Then the feeding assembly 50 is reset forward, and the product is placed on the second conveying line 30 through the cooperation of the third driving mechanism 72 and the fourth driving mechanism 74, and is conveyed backward through the second conveying line 30.

[0045] The second conveying line 30 comprises a conveying rack 31, a conveying belt 32 and a fifth driving mechanism 33. The conveying rack 31 is arranged on the rack 10 and beside the output end of the first conveying line 20. The conveying belt 32 is arranged on the conveying rack 31 and can move back and forth. The fifth driving mechanism 33 is arranged on the conveying rack 31 and drives the conveying belt 32 to move back and forth.

[0046] The design focus of the utility model lies in: a plurality of membrane racks are fixed in the first conveying line; and the feeding assembly is used to convey the product on the membrane rack to the next membrane rack, so that the product is fixed by the membrane rack and is conveyed backward in the membrane rack in sequence by the feeding assembly; so that the position of the membrane rack does not need to be adjusted, only the conveying distance and position of the feeding assembly need to be adjusted, and the adjustment process is more convenient; and the unloading assembly is used to take the product sent by the feeding assembly into the second conveying line and place it on the second conveying line, so that the feeding assembly can feed the product to above the second conveying line, and then the product is taken by the unloading assembly and placed on the second conveying line, without the need of an additional mechanical arm; the overall processing cost is effectively reduced, so that the processing demand can be met.

[0047] The above merely describes the preferred embodiment of the present application, and is not intended to limit the technical scope of the present application in any way. Any slight modification, equivalent change, and modification made according to the technical essence of the present application shall still fall within the scope of the technical scheme of the present application.

Claims

1. A convenient and easy-to-adjust automotive parts processing production line, characterized in that: The application relates to a tire membrane conveying device, which comprises a rack, a first conveying line, a second conveying line, a tire membrane rack, a feeding assembly, a processing assembly and a discharging assembly.

2. The automotive trim processing line of claim 1, wherein: The first conveying line comprises two slide rails extending in the transverse direction, the feeding assembly is provided with slide seats matched with the slide rails, and a first driving mechanism is arranged on the feeding assembly and drives the feeding assembly to move back and forth along the extension direction of the slide rails.

3. The automotive trim processing line of claim 1, wherein: The feeding assembly comprises a first movable seat, a second movable seat, a first feeding driving mechanism, a material taking head and a second feeding driving mechanism.

4. The automotive trim processing line of claim 3, wherein: The feeding assembly comprises two feeding assemblies arranged in the transverse direction, and each feeding assembly comprises a plurality of groups of material taking heads arranged in the transverse direction.

5. The automotive trim processing line of claim 1, wherein: The processing assembly comprises a mounting plate and a second driving mechanism.

6. The automotive trim processing line of claim 1, wherein: The discharging assembly comprises a discharging seat, a third driving mechanism, a discharging head and a fourth driving mechanism. The discharging assembly comprises a discharging seat, a third driving mechanism, a discharging head and a fourth driving mechanism.

7. The automotive trim processing line of claim 1, wherein: The second conveying line comprises a conveying frame, a conveying belt and a fifth driving mechanism; the conveying frame is arranged on the frame and located at the side of the output end of the first conveying line; the conveying belt is arranged on the conveying frame and can be driven to move back and forth; and the fifth driving mechanism is arranged on the conveying frame and drives the conveying belt to move back and forth.

8. The automotive trim processing line of claim 1, wherein: A machine cover is arranged on the frame, and the first conveying line, the tire membrane frame, the feeding assembly, the processing assembly and the blanking assembly are covered by the machine cover, and the output end of the second conveying line extends out of the machine cover.