Automatic turnover mechanism for steel backing

The automatic steel back flipping mechanism enables automatic flipping and continuous conveying of the brake pad steel back, solving the problem of cumbersome flipping operations and improving processing efficiency and automation.

CN223822757UActive Publication Date: 2026-01-23YONGZHAN (SHANDONG) PRECISION TECH CO LTD
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Patent Information

Application Number
CN202520403784.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-10
Publication Date
2026-01-23
Estimated Expiration
2035-03-10

AI Technical Summary

Technical Problem

The process of flipping the steel backing of brake pads is cumbersome and difficult, which affects processing efficiency.

Method used

An automatic steel back flipping mechanism is adopted, which uses a first servo motor to drive a rotating shaft to move a rectangular plate and a bending strip to achieve automatic flipping of the steel back. Combined with a synchronous conveying component, the steel back is continuously moved by a conveyor belt driven by a second servo motor.

Benefits of technology

It enables automated flipping and continuous conveying of steel backing, simplifies operation, improves processing efficiency, and saves manpower.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the technical field of steel backing processing, particularly relates to an automatic steel backing turnover mechanism, and aims to solve the problems that the turnover operation of the steel backing is complicated and difficult in the background technology, and adopts the following scheme that the automatic steel backing turnover mechanism comprises a first conveyor, and a connecting frame is arranged on the outer wall of one end of the first conveyor; and an overturning assembly and a synchronous conveying assembly are arranged on the outer wall of the connecting frame. In the overturning assembly, when the steel backing is transferred to the position between a long strip and a bent strip along a first conveyor, automatic overturning of the steel backing is achieved, operation is easy, the automation degree is high, manpower is saved, in the synchronous conveying assembly, the overturned steel backing can be transferred to a conveying belt, a driving shaft is driven by a second servo motor to rotate, and the steel backing can be automatically overturned. The multiple conveying belts can be combined to increase the conveying area and transfer the steel backing to the second conveyor together, the good material transferring effect is achieved, it is guaranteed that the steel backing can continue to move, and the continuous machining requirement of the steel backing can be well met.
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Description

Technical Field

[0001] This utility model relates to the field of steel back processing technology, and in particular to an automatic steel back flipping mechanism. Background Technology

[0002] The brake pad backing is an important component of the automotive braking system, primarily used to fix the friction material and facilitate installation on the braking system. It is typically made of high-strength steel plate, approximately 1.5-3 mm thick, located on the inner side of the brake pad, connected to the friction material, and enhancing the overall strength and load-bearing capacity of the brake pad.

[0003] During the processing of brake pad steel backing, in order to ensure product quality, the brake pad steel backing is usually ground. After the bottom surface of the brake pad steel backing is ground, the operator needs to pick up the brake pad steel backing and turn it over. Because the brake pad steel backing is small in size and relatively smooth, the turning process is cumbersome and difficult to operate. Utility Model Content

[0004] In view of the shortcomings of the prior art, this utility model provides an automatic steel back flipping mechanism, which overcomes the shortcomings of the prior art and effectively solves the problem of cumbersome and difficult operation of steel back flipping.

[0005] To achieve the above objectives, the present invention adopts the following technical solution:

[0006] An automatic steel-backed flipping mechanism includes a first conveyor. A connecting frame is provided on the outer wall of one end of the first conveyor, and a flipping component and a synchronous conveying component are respectively provided on the outer wall of the connecting frame. The flipping component includes a first servo motor fixedly connected to one side of the outer wall of the connecting frame by bolts, a rotating shaft fixedly connected to the output shaft of the first servo motor, a rectangular plate installed on the outer wall of the rotating shaft, and long strips and bent strips fixedly connected to the outer walls of both sides of the rectangular plate.

[0007] The synchronous conveying assembly includes a second servo motor fixedly connected to the outer wall of one side of the connecting frame by bolts, a drive shaft fixedly connected to the output shaft of the second servo motor by a coupling, connecting seats evenly distributed on the inner wall of one side of the connecting frame, a driven roller rotatably connected to the top outer wall of the connecting seat, and a conveyor belt installed between the drive shaft and the driven roller.

[0008] Preferably, a bidirectional lead screw is rotatably connected to the top outer wall of the first conveyor, and symmetrically distributed positioning plates are screwed onto the outer wall of the bidirectional lead screw.

[0009] Preferably, a guide rod is fixedly connected to the top outer wall of the first conveyor, and a positioning plate is slidably connected to the outer wall of the guide rod.

[0010] Preferably, a gantry frame is welded to the top outer wall of the first conveyor, and a photoelectric sensor is fixedly connected to one side of the outer wall of the gantry frame by screws.

[0011] Preferably, a second conveyor is provided on the outer wall of one end of the first conveyor, and a connecting frame is installed between the first conveyor and the second conveyor.

[0012] Preferably, steel backings are placed on the conveyor belts of both the first and second conveyors.

[0013] The beneficial effects of this utility model are as follows:

[0014] 1. The automatic steel back flipping mechanism of this design, in the flipping assembly, when the steel back is transferred between the long strip and the bent strip along the first conveyor, the first servo motor drives the rotating shaft to rotate, so that the rectangular plate can control the long strip and the bent strip to flip the steel back 180°, realizing the automatic flipping of the steel back. It is simple to operate, highly automated, and saves manpower.

[0015] 2. The automatic steel back flipping mechanism of this design, in the synchronous conveying component, the steel back that has been flipped will be transferred to the conveyor belt. The second servo motor drives the drive shaft to rotate. Multiple conveyor belts can work together to increase the conveying area and transfer the steel back to the second conveyor. It has a good material transfer effect, ensuring that the steel back can continue to move and can well adapt to the subsequent processing requirements of the steel back. Attached Figure Description

[0016] Figure 1 This is a schematic diagram of the overall structure of an automatic steel back flipping mechanism proposed in this utility model;

[0017] Figure 2 This is a partial enlarged schematic diagram of the automatic steel back flipping mechanism proposed in this utility model;

[0018] Figure 3 This is a schematic diagram of the flipping component of an automatic steel-back flipping mechanism proposed in this utility model;

[0019] Figure 4 This is a schematic diagram of the synchronous conveying component of an automatic steel back flipping mechanism proposed in this utility model.

[0020] In the diagram: 1. First conveyor; 2. Connecting frame; 3. Tilting assembly; 31. First servo motor; 32. Rotating shaft; 33. Rectangular plate; 34. Long strip; 35. Bending strip; 4. Synchronous conveying assembly; 41. Second servo motor; 42. Drive shaft; 43. Connecting seat; 44. Driven roller; 45. Conveyor belt; 5. Bidirectional lead screw; 6. Positioning plate; 7. Guide rod; 8. Gantry frame; 9. Photoelectric sensor; 10. Second conveyor. Detailed Implementation

[0021] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present utility model. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments.

[0022] Example 1, refer to Figures 2-3 An automatic steel-backed flipping mechanism includes a first conveyor 1. A connecting frame 2 is provided on the outer wall of one end of the first conveyor 1. A flipping component 3 and a synchronous conveying component 4 are respectively provided on the outer wall of the connecting frame 2. The flipping component 3 includes a first servo motor 31 fixedly connected to one side of the outer wall of the connecting frame 2 by bolts, a rotating shaft 32 fixedly connected to the output shaft of the first servo motor 31, a rectangular plate 33 installed on the outer wall of the rotating shaft 32, and long strips 34 and bent strips 35 fixedly connected to the outer walls of both sides of the rectangular plate 33.

[0023] In this embodiment, in the flipping assembly 3, when the steel back is transferred between the long strip 34 and the bent strip 35 along the first conveyor 1, the first servo motor 31 drives the rotating shaft 32 to rotate, so that the rectangular plate 33 can control the long strip 34 and the bent strip 35 to flip the steel back 180°, realizing the automatic flipping of the steel back. The operation is simple, the degree of automation is high, and manpower is saved.

[0024] Example 2, refer to Figure 4 A steel-backed automatic flipping mechanism, the synchronous conveying component 4 includes a second servo motor 41 fixedly connected to the outer wall of one side of the connecting frame 2 by bolts, a drive shaft 42 fixedly connected to the output shaft of the second servo motor 41 by a coupling, connecting seats 43 evenly distributed and welded to the inner wall of one side of the connecting frame 2, a driven roller 44 rotatably connected to the top outer wall of the connecting seat 43, and a conveyor belt 45 installed between the drive shaft 42 and the driven roller 44.

[0025] In this embodiment, in the synchronous conveying component 4, the steel back that has been flipped will be transferred to the conveyor belt 45. The second servo motor 41 drives the drive shaft 42 to rotate. Multiple conveyor belts 45 can work together to increase the conveying area and transfer the steel back to the second conveyor 10. This has a good material transfer effect, ensuring that the steel back can continue to move and can well adapt to the subsequent processing requirements of the steel back.

[0026] Reference Figure 1 The top outer wall of the first conveyor 1 is rotatably connected to a bidirectional lead screw 5, and symmetrically distributed positioning plates 6 are screwed onto the outer wall of the bidirectional lead screw 5.

[0027] Reference Figure 1 The top outer wall of the first conveyor 1 is fixedly connected to a guide rod 7, and the positioning plate 6 is slidably connected to the outer wall of the guide rod 7.

[0028] Reference Figure 1 The top outer wall of the first conveyor 1 is welded with a gantry frame 8, and a photoelectric sensor 9 is fixedly connected to one side of the outer wall of the gantry frame 8 by screws.

[0029] Reference Figure 1 A second conveyor 10 is provided on the outer wall of one end of the first conveyor 1, and a connecting frame 2 is installed between the first conveyor 1 and the second conveyor 10.

[0030] Reference Figure 1 Steel backings are placed on the conveyor belts of both the first conveyor 1 and the second conveyor 10.

[0031] Working principle: The steel back is placed on the first conveyor 1 and positioned by two positioning plates 6. When the photoelectric sensor 9 detects the position of the steel back, the steel back will slide between the long strip 34 and the bent strip 35. At this time, the first servo motor 31 starts and drives the rotating shaft 32 to rotate, so that the rectangular plate 33 can control the long strip 34 and the bent strip 35 to flip the steel back. The flipped steel back will be transferred to the conveyor belt 45. The second servo motor 41 drives the drive shaft 42 to rotate, and multiple conveyor belts 45 can transfer the steel back to the second conveyor 10 together to continue moving.

[0032] The above description is only a preferred embodiment of the present utility model, but the protection scope of the present utility model is not limited thereto. Any equivalent substitutions or changes made by those skilled in the art within the technical scope disclosed in the present utility model, based on the technical solution and the inventive concept of the present utility model, should be included within the protection scope of the present utility model.

Claims

1. A steel-backed automatic flipping mechanism, comprising a first conveyor (1), characterized in that, The first conveyor (1) has a connecting frame (2) on one end of its outer wall, and the connecting frame (2) has a flipping component (3) and a synchronous conveying component (4) respectively on its outer wall. The flipping component (3) includes a first servo motor (31) fixedly connected to the outer wall of one side of the connecting frame (2) by bolts, a rotating shaft (32) fixedly connected to the output shaft of the first servo motor (31), a rectangular plate (33) installed on the outer wall of the rotating shaft (32), and long strips (34) and bent strips (35) fixedly connected to the outer walls of both sides of the rectangular plate (33). The synchronous conveying assembly (4) includes a second servo motor (41) fixedly connected to the outer wall of one side of the connecting frame (2) by bolts, a drive shaft (42) fixedly connected to the output shaft of the second servo motor (41) by a coupling, connecting seats (43) evenly distributed on the inner wall of one side of the connecting frame (2), a driven roller (44) rotatably connected to the top outer wall of the connecting seat (43), and a conveyor belt (45) installed between the drive shaft (42) and the driven roller (44).

2. The automatic steel-backed flipping mechanism according to claim 1, characterized in that, The first conveyor (1) has a bidirectional lead screw (5) rotatably connected to the top outer wall, and symmetrically distributed positioning plates (6) are screwed onto the outer wall of the bidirectional lead screw (5).

3. The automatic steel-backed flipping mechanism according to claim 1, characterized in that, The first conveyor (1) has a guide rod (7) fixedly connected to the top outer wall, and the positioning plate (6) is slidably connected to the outer wall of the guide rod (7).

4. The automatic steel-backed flipping mechanism according to claim 1, characterized in that, The first conveyor (1) has a gantry frame (8) welded to its top outer wall, and a photoelectric sensor (9) is fixedly connected to one side of the outer wall of the gantry frame (8) by screws.

5. The automatic steel-backed flipping mechanism according to claim 1, characterized in that, A second conveyor (10) is provided on the outer wall of one end of the first conveyor (1), and a connecting frame (2) is installed between the first conveyor (1) and the second conveyor (10).

6. The automatic steel-backed flipping mechanism according to claim 1, characterized in that, Steel backings are placed on the conveyor belts of the first conveyor (1) and the second conveyor (10).