Feeding structure for production of clamping mechanism of pressure equalizing plate of dust remover

By combining the spiral feeding mechanism and the transmission chain, along with the design of the servo motor and clamping block, the problem of unstable feeding in the production of the dust collector pressure plate clamping mechanism was solved, achieving efficient automated production and precise assembly.

CN223506584UActive Publication Date: 2025-11-04YANGZHOU SKODI METALLURGICAL EQUIP CO LTD
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Patent Information

Application Number
CN202423023883.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-09
Publication Date
2025-11-04
Estimated Expiration
2034-12-09

AI Technical Summary

Technical Problem

Traditional dust collector pressure plate clamping mechanisms suffer from unstable and uneven feeding during production, with feeding speeds that do not match the production line and lacking effective clamping and positioning mechanisms, thus affecting production efficiency and assembly accuracy.

Method used

It adopts components such as a screw feeding mechanism, a feeding drive motor, a feeding transmission chain, an adjusting tension device, and longitudinal and transverse clamping blocks to realize automatic and continuous feeding and precise positioning of materials, and can be flexibly assembled with servo motors and tightening heads.

Benefits of technology

It improves production efficiency and assembly accuracy, ensures stable material delivery and positioning, adapts to the assembly needs of different workpieces, and achieves efficient automated production.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of dust remover equipment, in particular to a feeding structure for production of a dust remover pressure equalizing plate clamping mechanism, which comprises a feeding assembly structure body, the feeding assembly structure body comprises a fixed support, a bearing plate is arranged at the top of the fixed support, a spiral feeding mechanism is arranged on the bearing plate, and the spiral feeding mechanism is arranged on the top of the fixed support. The feeding structure comprises a spiral feeding mechanism, a feeding driving motor is arranged on the spiral feeding mechanism in a matched mode, and an assembling structure is arranged on one side of the spiral feeding mechanism in a matched mode. And the production efficiency can be remarkably improved, manual intervention is reduced, and the machining consistency and precision are ensured.
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Description

Technical Field

[0001] This utility model relates to the field of dust collector equipment technology, and in particular to a feeding structure used in the production of a dust collector pressure plate clamping mechanism. Background Technology

[0002] In industrial production, especially in the dust collector manufacturing industry, the production of the pressure equalizing plate clamping mechanism is a crucial step. This mechanism requires not only high-precision machining but also extremely high precision in the feeding, positioning, and assembly of its components. Traditional production methods often rely on manual operation, which is not only inefficient but also makes it difficult to guarantee product consistency and quality stability. With the continuous development of automation technology, automated production lines are gradually becoming the preferred solution for improving production efficiency and product quality.

[0003] In the production process of the pressure equalization plate clamping mechanism of the dust collector, the feeding structure, as the starting point of the automated production line, directly affects the smooth progress of subsequent processes. Traditional feeding structures often have the following problems: First, the feeding is unstable, which can easily lead to material blockage or uneven feeding; second, the feeding speed is not matched with other parts of the production line, affecting the overall production efficiency; third, there is a lack of effective clamping and positioning mechanisms, which causes the material to shift position during the feeding process, affecting the accuracy of subsequent assembly.

[0004] To address the above problems, this invention proposes a feeding structure for the production of a dust collector pressure equalization plate clamping mechanism. Utility Model Content

[0005] To address some of the problems existing in the prior art, this utility model provides a feeding structure for the production of a dust collector pressure equalization plate clamping mechanism, thereby overcoming the shortcomings of the prior art.

[0006] To achieve the above objectives, this utility model provides a feeding structure for the production of a dust collector pressure equalization plate clamping mechanism, including a feeding assembly structure body. The feeding assembly structure body includes a fixed bracket, a bearing plate is provided on the top of the fixed bracket, a spiral feeding mechanism is provided on the bearing plate, a feeding drive motor is provided in cooperation with the spiral feeding mechanism, and an assembly structure is provided on one side of the spiral feeding mechanism.

[0007] As a further improvement of this utility model, in order to achieve effective power transmission, ensure the tension of the transmission chain, and improve the stability and accuracy of feeding, the spiral feeding mechanism includes a feeding base set on the support plate, a feeding clamp plate is provided on the feeding base, a feeding drive gear and a feeding driven gear are provided at both ends inside the feeding clamp plate, the feeding drive motor is connected to the feeding drive gear, and the feeding driven gear is provided with an adjusting tension device on the feeding clamp plate.

[0008] As a further improvement of this utility model, in order to provide a stable clamping and conveying platform for materials, ensure the stability of materials during the conveying process, and improve the continuity and efficiency of feeding, a feeding transmission chain is provided inside the feeding clamp plate in conjunction with the feeding drive gear and the feeding driven gear. Several sets of feeding chain plates are provided on the feeding transmission chain, and feeding slots are provided at both ends of the feeding chain plates.

[0009] As a further improvement of this utility model, in order to achieve precise adjustment of the tension of the feeding transmission chain and improve the stability of feeding, the tension adjustment device includes a feeding connecting shaft connected to the feeding driven gear. The feeding connecting shaft is fitted with a feeding linkage bearing inside the feeding driven gear. The end of the feeding clamp is provided with a feeding limiting groove. A feeding connecting rib is externally connected to the feeding connecting shaft. A feeding groove is provided on the feeding connecting rib. The feeding limiting groove and the feeding groove are fitted together. A feeding mounting block is also provided on the feeding clamp. A feeding sliding column is inserted through the feeding mounting block.

[0010] As a further improvement of this utility model, in order to ensure that the material can slide smoothly into the assembly area, realize the automatic pushing and positioning of the workpiece, and improve the efficiency and accuracy of assembly, the assembly structure includes a guide trough, the guide trough is connected to a first station, the height of the side of the first station near the feed guide trough is lower than the height of the other side, the front end of the first station is equipped with a transport platform, the transport platform is equipped with a workpiece trough, the workpiece trough is equipped with a workpiece push rod, and the workpiece push rod is connected to a first feeding cylinder.

[0011] As a further improvement of this utility model, in order to provide all-round clamping and positioning for the workpiece, ensure the stability of the workpiece during the assembly process, and improve the accuracy and reliability of the assembly, the transport table is equipped with a longitudinal clamping block and a transverse clamping block. The longitudinal clamping block is connected to a longitudinal clamping cylinder, and the transverse clamping block is connected to a transverse clamping cylinder.

[0012] As a further improvement of this utility model, in order to provide precise tightening operation for the workpiece and realize the flexible movement and positioning of the servo motor and the tightening head, a servo motor is provided in the first station, a tightening head is provided at the output end of the servo motor, a motor mounting base is provided below the servo motor, a drive cylinder is connected to the motor mounting base, and a motor sliding shaft is provided in the drive cylinder.

[0013] When this utility model is in operation, the feeding power motor starts working when the system is started, driving the feeding drive gear to rotate; the feeding driven gear rotates synchronously with the drive gear through the feeding transmission chain, driving the feeding chain plate to circulate within the feeding clamp; the tensioning device is in its initial state to ensure that the tension of the feeding transmission chain is moderate, avoiding slack or excessive tension. The tension of the feeding transmission chain is adjusted by adjusting the splicing position of the feeding limit groove and the feeding groove.

[0014] The first workpiece is placed in the feed slot of the feed chain plate and waits to be pushed to the first station. Because the height of the first workpiece on the side of the first station that is closer to the feed guide is lower than the height of the other side, the first workpiece naturally falls into the first station.

[0015] Driven by the first feeding cylinder, the workpiece pusher rod pushes the second workpiece from the workpiece trough to the transport table. The longitudinal clamping cylinder then pushes the second workpiece towards the first station, where it is clamped by longitudinal and transverse clamping blocks. The servo motor then starts, tightening both the first and second workpieces using a tightening head. The drive cylinder controls the servo motor's movement along its sliding shaft via extension and retraction to accommodate the tightening requirements of different workpieces.

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

[0017] High-efficiency automated production:

[0018] This invention achieves automatic and continuous material feeding through the cooperation of a screw feeding mechanism and a feeding drive motor. Simultaneously, the assembly structure enables automatic workpiece positioning, clamping, and assembly, significantly improving production efficiency, reducing manual intervention, and realizing highly efficient automated production.

[0019] Precise and stable feeding and assembly:

[0020] The feeding chain is equipped with several sets of feeding chain plates and feeding slots at both ends, ensuring the stability and accuracy of material conveying. Meanwhile, the presence of an adjustable tensioning device allows the feeding chain to maintain appropriate tension, further improving feeding stability.

[0021] In the assembly structure, the cooperation of the longitudinal clamping block, the transverse clamping block and the workpiece push rod enables the workpiece to be accurately and stably positioned in the designated position, providing a reliable guarantee for the subsequent tightening operation.

[0022] Flexible and adjustable assembly capabilities:

[0023] The combination of the servo motor and the tightening head enables the assembly structure to perform precise tightening operations according to different workpiece requirements. Simultaneously, the cooperation between the motor mounting base, the drive cylinder, and the motor sliding shaft allows for flexible adjustment of the positions of the servo motor and the tightening head, thus adapting to the assembly needs of workpieces of different sizes and shapes. Attached Figure Description

[0024] To facilitate understanding by those skilled in the art, the present invention will be further described below with reference to the accompanying drawings:

[0025] Figure 1 This is a structural diagram of the present invention.

[0026] Figure 2 This is a side view of the present invention.

[0027] Figure 3 This is a structural diagram of the tensioning device.

[0028] Figure 4 This is a side view and a top view of the present invention.

[0029] Figure 5 This is a structural diagram of the servo motor of this utility model.

[0030] The components include: 1. Fixed bracket; 2. Bearing plate; 3. Spiral feeding mechanism; 4. Feeding drive motor; 5. Assembly structure; 6. Feeding base; 7. Feeding clamp; 8. Feeding drive gear; 9. Feeding driven gear; 10. Adjusting tension device; 11. Feeding transmission chain; 12. Feeding chain plate; 13. Feeding slot; 14. Feeding connecting shaft; 15. Feeding linkage bearing; 16. Feeding limiting groove; 17. Feeding connecting rib; 18. Feeding groove; 19. Feeding mounting block; 20. Feeding sliding column; 21. Guide groove; 22. First station; 23. Transport table; 24. Workpiece trough; 25. Workpiece push rod; 26. First feeding cylinder; 27. Longitudinal clamping block; 28. Transverse clamping block; 29. ​​Longitudinal clamping cylinder; 30. Transverse clamping cylinder; 31. Servo motor; 32. Tightening head; 33. Motor mounting base; 34. Drive cylinder; 35. Motor sliding shaft. Detailed Implementation

[0031] To enable those skilled in the art to better understand the technical solutions in this application, the following description is provided in conjunction with the appendix. Figure 1-5 The present invention will be further described below. The following embodiments are only used to illustrate the technical solution of the present invention more clearly, and should not be used to limit the protection scope of the present invention.

[0032] like Figure 1-5The feeding structure shown is used in the production of a dust collector pressure plate clamping mechanism. It includes a feeding assembly structure body, which includes a fixed bracket 1. A bearing plate 2 is provided on the top of the fixed bracket 1. A spiral feeding mechanism 3 is provided on the bearing plate 2. A feeding drive motor 4 is provided in cooperation with the spiral feeding mechanism 3. An assembly structure 5 is provided on one side of the spiral feeding mechanism 3.

[0033] The spiral feeding mechanism 3 includes a feeding base 6 mounted on a support plate 2. A feeding clamp 7 is mounted on the feeding base 6. A feeding drive gear 8 and a feeding driven gear 9 are mounted at both ends inside the feeding clamp 7. The feeding drive motor 4 is connected to the feeding drive gear 8. The feeding driven gear 9 is equipped with an adjusting tension device 10 on the feeding clamp 7.

[0034] The feeding clamp 7 is equipped with a feeding drive gear 8 and a feeding driven gear 9, and a feeding transmission chain 11 is provided inside. The feeding transmission chain 11 is provided with several sets of feeding chain plates 12, and feeding slots 13 are provided at both ends of the feeding chain plates 12.

[0035] The tensioning adjustment device 10 includes a feeding connecting shaft 14 connected to the feeding driven gear 9. The feeding connecting shaft 14 is fitted with a feeding linkage bearing 15 inside the feeding driven gear 9. The end of the feeding clamp 7 is provided with a feeding limiting groove 16. The feeding connecting shaft 14 is externally connected with a feeding connecting rib 17. The feeding connecting rib 17 is provided with a feeding groove 18. The feeding limiting groove 16 and the feeding groove 18 are fitted together. The feeding clamp 7 is also provided with a feeding mounting block 19. The feeding mounting block 19 is interposed with a feeding sliding column 20.

[0036] The assembly structure 5 includes a material guide trough 21, and a first station 22 is connected to the material guide trough 21. The height of the side of the first station 22 closest to the material guide trough 21 is lower than the height of the other side. A transport platform 23 is provided at the front end of the first station 22. A workpiece trough 24 is provided on the transport platform 23. A workpiece push rod 25 is provided on the workpiece trough 24. A first feeding cylinder 26 is connected to the workpiece push rod 25.

[0037] The transport platform 23 is equipped with a longitudinal clamping block 27 and a transverse clamping block 28. The longitudinal clamping block 27 is connected to a longitudinal clamping cylinder 29, and the transverse clamping block 28 is connected to a transverse clamping cylinder 30.

[0038] The first workstation 22 is equipped with a servo motor 31, and the output end of the servo motor 31 is equipped with a tightening head 32. A motor mounting base 33 is provided below the servo motor 31, and a drive cylinder 34 is connected to the motor mounting base 33. A motor sliding shaft 35 is provided in conjunction with the drive cylinder 34.

[0039] When this utility model is in operation, the feeding power motor starts working when the system is started, driving the feeding drive gear 8 to rotate; the feeding driven gear 9 rotates synchronously with the drive gear through the feeding transmission chain 11, driving the feeding chain plate 12 to circulate within the feeding clamp plate 7; the tensioning device 10 is in its initial state to ensure that the tension of the feeding transmission chain 11 is moderate, avoiding slack or excessive tension. The tension of the feeding transmission chain 11 is adjusted by adjusting the splicing position of the feeding limit groove 16 and the feeding groove 18.

[0040] The first workpiece is placed in the feed slot 13 of the feed chain plate 12 and waits to be pushed to the first station 22. Since the height of the side of the first station 22 closest to the feed guide chute 21 is lower than the height of the other side, the first workpiece naturally falls into the first station 22.

[0041] Driven by the first feeding cylinder 26, the workpiece pusher 25 pushes the second workpiece from the workpiece trough 24 to the transport table 23. The longitudinal clamping cylinder 29 operates, pushing the second workpiece towards the first station 22. The workpiece is clamped by the longitudinal clamping block 27 and the transverse clamping block 28. The servo motor 31 starts, and the tightening head 32 tightens the first and second workpieces. The drive cylinder 34 controls the movement length of the servo motor 31 on the motor sliding shaft 35 by telescopic control to adapt to the tightening requirements of different workpieces.

[0042] This utility model is not limited to the above embodiments. Based on the technical solutions disclosed in this utility model, those skilled in the art can make some substitutions and modifications to some of the technical features without creative labor, and these substitutions and modifications are all within the protection scope of this utility model.

Claims

1. A feeding structure for the production of a dust collector pressure plate clamping mechanism, comprising a feeding assembly structure body, characterized in that, The main body of the feeding assembly structure includes a fixed bracket (1), a bearing plate (2) is provided on the top of the fixed bracket (1), a spiral feeding mechanism (3) is provided on the bearing plate (2), a feeding drive motor (4) is provided in cooperation with the spiral feeding mechanism (3), and an assembly structure (5) is provided on one side of the spiral feeding mechanism (3).

2. The feeding structure for the production of a dust collector pressure equalization plate clamping mechanism according to claim 1, characterized in that, The spiral feeding mechanism (3) includes a feeding base (6) set on a support plate (2), a feeding clamp (7) is provided on the feeding base (6), a feeding drive gear (8) and a feeding driven gear (9) are provided at both ends inside the feeding clamp (7), the feeding drive motor (4) is connected to the feeding drive gear (8), and the feeding driven gear (9) is provided with an adjusting tension device (10) on the feeding clamp (7).

3. The feeding structure for the production of a dust collector pressure equalization plate clamping mechanism according to claim 2, characterized in that, The feed clamp (7) is equipped with a feed drive chain (11) that works with the feed drive gear (8) and the feed driven gear (9). The feed drive chain (11) is provided with several sets of feed chain plates (12). The two ends of the feed chain plates (12) are respectively provided with feed slots (13).

4. The feeding structure for the production of a dust collector pressure equalization plate clamping mechanism according to claim 2, characterized in that, The tension adjustment device (10) includes a feeding connecting shaft (14) connected to the feeding driven gear (9). The feeding connecting shaft (14) is fitted with a feeding linkage bearing (15) inside the feeding driven gear (9). The end of the feeding clamp (7) is provided with a feeding limiting groove (16). The feeding connecting shaft (14) is externally connected with a feeding connecting rib (17). The feeding connecting rib (17) is provided with a feeding groove (18). The feeding limiting groove (16) and the feeding groove (18) are fitted together. The feeding clamp (7) is also provided with a feeding mounting block (19). The feeding mounting block (19) is interspersed with a feeding sliding column (20).

5. The feeding structure for the production of a dust collector pressure equalization plate clamping mechanism according to claim 1, characterized in that, The assembly structure (5) includes a guide trough (21), which is connected to a first station (22). The height of the first station (22) on the side closest to the feed guide trough (21) is lower than the height of the other side. A transport platform (23) is provided at the front end of the first station (22). A workpiece trough (24) is provided on the transport platform (23). A workpiece push rod (25) is provided on the workpiece trough (24). A first feeding cylinder (26) is connected to the workpiece push rod (25).

6. The feeding structure for the production of a dust collector pressure equalization plate clamping mechanism according to claim 5, characterized in that, The transport platform (23) is equipped with a longitudinal clamping block (27) and a transverse clamping block (28). The longitudinal clamping block (27) is connected to a longitudinal clamping cylinder (29), and the transverse clamping block (28) is connected to a transverse clamping cylinder (30).

7. The feeding structure for the production of a dust collector pressure plate clamping mechanism according to claim 5, characterized in that, The first workstation (22) is equipped with a servo motor (31), and the output end of the servo motor (31) is equipped with a tightening head (32). A motor mounting base (33) is provided below the servo motor (31), and a drive cylinder (34) is connected to the motor mounting base (33). A motor sliding shaft (35) is provided with the drive cylinder (34).