Grooving equipment for bracket machining

The novel branch cutting device addresses the inefficiencies of traditional devices by using a pivoting V-shaped plate and spring mechanism for automatic branch collection and debris removal, enhancing production efficiency and automation.

CN223098595UActive Publication Date: 2025-07-15TIANJIN JUCAI HUIXIN IRON & STEEL CO LTD
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Patent Information

Application Number
CN202422165296.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-04
Publication Date
2025-07-15
Estimated Expiration
2034-09-04

AI Technical Summary

Technical Problem

The traditional bracket processing and groove equipment does not have effective bearing of the bracket steel plate after shearing, resulting in poor processing fluidity and needs to be removed manually or mechanically, reducing production efficiency and failing to meet the requirements of automation efficiency.

Method used

A grooved device including a V-plate and a curved spring is designed to slide the bracket off the V-plate using gravity, and automatically collect it through an elastic structure, combining a servo motor to drive a threaded rod to achieve bracket cutting and debris collection.

Benefits of technology

It realizes automatic collection of brackets and convenient cleaning of debris, improves production efficiency, and meets the efficiency and automation needs of modern shear devices.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of bracket processing, and discloses a slotting device for bracket processing, which comprises a base, a table body is fixedly arranged above the base, a transverse groove is arranged on the upper side of the table body, a movable block is movably arranged in the transverse groove, and a cutting table is fixedly arranged above the movable block. Pressure is applied to the bottom face of the V-shaped plate through the support under the influence of gravity, so that the V-shaped plate drives the connecting cylinder to deflect around the circular shaft, the support is separated from the V-shaped plate and slides down through the inclined plate, then the arc-shaped spring releases elastic potential energy to push the arc-shaped block to return to the original position, and the V-shaped plate is driven to return to the original position. Compared with traditional grooving equipment for bracket machining, the grooving equipment for bracket machining deflects through the circular shaft, so that a bracket is separated from the V-shaped plate and slides off through the inclined plate, and therefore, the bracket is conveniently collected, and the situation that subsequent machining is affected due to bracket accumulation is prevented.
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Description

Technical Field

[0001] The utility model relates to the technical field of bracket processing, and more specifically, to a slotting device used for bracket processing. Background Art

[0002] Photovoltaic brackets are special brackets used for installing, placing, carrying, fixing and adjusting photovoltaic modules in photovoltaic power stations. In the production and processing process of the water guide trough of the photovoltaic panel bracket, the shearing operation usually relies on a cylinder-driven tool holder system, which controls the linear movement of the cylinder to drive the tool in the tool holder to efficiently cut the bracket.

[0003] Traditional grooving equipment used for bracket processing has the following shortcomings: in traditional grooving equipment used for bracket processing, after shearing is completed, the bracket steel plate falls directly to the surface of the workbench due to no effective support, which not only interferes with the smoothness of subsequent processing operations, but also increases the necessity for workers or limit devices to temporarily support the front end of the steel plate. After cutting, the steel plate needs to be removed from the workbench manually or with the help of a robotic arm; this process is not only time-consuming and labor-intensive, reducing overall production efficiency, but also fails to fully meet the high standards of modern shearing devices for automated and efficient operations. Therefore, it needs to be improved. Utility Model Content

[0004] In order to overcome the deficiencies of the prior art, the utility model provides a slotting device for bracket processing, which has the advantage of being easy to shear.

[0005] To achieve the above-mentioned purpose, the utility model provides the following technical solutions: a grooving device for bracket processing, comprising a base, a table body fixedly installed on the top of the base, a transverse groove opened on the upper side of the table body, a movable block movably installed inside the transverse groove, a cutting table fixedly installed above the movable block, a mounting plate fixedly installed on the rear side of the base, a long table fixedly installed on the top of the rear end of the base, an inclined plate fixedly installed on the outside of the long table, a connecting table fixedly installed on the front side of the long table, a round shaft fixedly installed between the inner side of the mounting plate and the inner side of the connecting table, a connecting cylinder movably installed on the outer side of the round shaft, and a V-shaped plate fixedly installed above the connecting cylinder.

[0006] As a preferred technical solution of the utility model, a material collection box is movably installed inside the cutting table, a slot is provided on the front side of the cutting table, a connecting block located inside the slot is fixedly installed on the outside of the material collection box, a card slot is provided on the outside of the connecting block, a square slot is provided on the outside of the slot, a ramp block extending to the inside of the card slot is movably installed inside the square slot, a connecting rod extending to the outside of the cutting table is fixedly installed on the inside of the ramp block, and a pull ring is fixedly installed on the outside of the connecting rod.

[0007] As a preferred technical solution of the present utility model, a return spring is elastically installed between the inner side of the square groove and the inner side of the inclined plane block, and the return spring is movably connected to the outer side of the connecting rod.

[0008] As a preferred technical solution of the present utility model, a telescopic spring is elastically installed inside the slot, and the telescopic spring is located inside the connecting block.

[0009] As a preferred technical solution of the present utility model, an arc-shaped block is fixedly installed inside the V-shaped plate, an arc-shaped groove is formed inside the connecting table, and the arc-shaped block is movably connected inside the arc-shaped groove.

[0010] As a preferred technical solution of the present utility model, a servo motor is fixedly installed on the front side of the table body, a threaded rod extending into the transverse groove is fixedly installed inside the servo motor, and the movable block is threadedly sleeved on the outer side of the threaded rod.

[0011] As a preferred technical solution of the present utility model, an arc-shaped spring is elastically installed inside the arc-shaped groove, and the arc-shaped spring is located inside the arc-shaped block.

[0012] Compared with the prior art, the beneficial effects of the present utility model are as follows:

[0013] 1. Under the influence of gravity, the present utility model applies pressure to the bottom surface of the V-shaped plate through the bracket, so that the V-shaped plate drives the connecting cylinder to deflect around the circular shaft, the bracket disengages from the V-shaped plate and slides down through the inclined plate, and then the arc-shaped spring releases elastic potential energy to push the arc-shaped block back to its original position, thereby driving the V-shaped plate back to its original position. Compared with the traditional slotting equipment for bracket processing, this slotting equipment for bracket processing deflects through the circular shaft, the bracket disengages from the V-shaped plate and slides down through the inclined plate, so as to facilitate the collection of brackets and prevent the accumulation of brackets from affecting subsequent processing.

[0014] 2. By pulling the pull ring, the present utility model makes the pull ring drive the inclined plane block out of the inside of the card slot, the inclined plane block squeezes the return spring, and the telescopic spring releases elastic potential energy to push the connecting block to move outwards, thereby driving the aggregate box to move outwards, facilitating the removal of the aggregate box. Compared with the traditional slotting equipment for bracket processing, this slotting equipment for bracket processing makes the inclined plane block disengage from the inside of the card slot, and the telescopic spring releases elastic potential energy to push the connecting block to move outwards, thereby driving the aggregate box to move outwards, facilitating the removal of the aggregate box. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] Figure 1 is a schematic structural diagram of the present utility model;

[0016] Figure 2 is a schematic transverse sectional view of the present utility model;

[0017] Figure 3 is Figure 2 a partially enlarged structural schematic diagram of part A in

[0018] Figure 4 a schematic diagram of the V-shaped plate of the present utility model;

[0019] Figure 5 a schematic diagram of the arc-shaped groove of the present utility model.

[0020] In the figure: 1, base; 2, table body; 3, horizontal groove; 4, servo motor; 5, threaded rod; 6, movable block; 7, cutting table; 8, slot; 9, telescopic spring; 10, aggregate box; 11, connecting block; 12, clamping groove; 13, square groove; 14, inclined plane block; 15, connecting rod; 16, pull ring; 17, reset spring; 18, long table; 19, inclined plate; 20, connecting table; 21, round shaft; 22, connecting cylinder; 23, V-shaped plate; 24, arc-shaped block; 25, arc-shaped spring; 26, mounting plate; 27, arc-shaped groove. Specific embodiments

[0021] 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. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present utility model.

[0022] As Figures 1 to 5 shown, the present utility model provides a grooving device for bracket processing, including a base 1, a table body 2 is fixedly installed above the base 1, a horizontal groove 3 is opened on the upper side of the table body 2, a movable block 6 is movably installed inside the horizontal groove 3, a cutting table 7 is fixedly installed above the movable block 6, a mounting plate 26 is fixedly installed at the rear side of the base 1, a long table 18 is fixedly installed above the rear end of the base 1, an inclined plate 19 is fixedly installed on the outer side of the long table 18, a connecting table 20 is fixedly installed on the front side of the long table 18, a round shaft 21 is fixedly installed between the inner side of the mounting plate 26 and the inner side of the connecting table 20, a connecting cylinder 22 is movably installed on the outer side of the round shaft 21, and a V-shaped plate 23 is fixedly installed above the connecting cylinder 22.

[0023] When the bracket is transported above the V-shaped plate 23, the cutting table 7 cuts the bracket. The cut bracket falls above the V-shaped plate 23 and applies pressure to the bottom surface of the V-shaped plate 23 under the influence of gravity, causing the V-shaped plate 23 to drive the connecting cylinder 22 to deflect around the circular shaft 21. Then, the connecting cylinder 22 drives the arc-shaped block 24 to move inside the arc-shaped groove 27 to squeeze the arc-shaped spring 25, deforming the arc-shaped spring 25. As a result, the bracket detaches from the V-shaped plate 23 and slides down through the inclined plate 19. After that, the arc-shaped spring 25 releases its elastic potential energy to push the arc-shaped block 24 back to its original position, driving the V-shaped plate 23 back to its original position.

[0024] Due to the bracket applying pressure to the bottom surface of the V-shaped plate 23 under the influence of gravity, the V-shaped plate 23 drives the connecting cylinder 22 to deflect around the circular shaft 21, causing the bracket to detach from the V-shaped plate 23 and slide down through the inclined plate 19. Then, the arc-shaped spring 25 releases its elastic potential energy to push the arc-shaped block 24 back to its original position, driving the V-shaped plate 23 back to its original position. Compared with traditional slotting equipment for bracket processing, this slotting equipment for bracket processing deflects through the circular shaft 21, causing the bracket to detach from the V-shaped plate 23 and slide down through the inclined plate 19, facilitating the collection of brackets and preventing bracket accumulation from affecting subsequent processing.

[0025] Among them, a collection box 10 is movably installed inside the cutting table 7. A slot 8 is opened on the front side of the cutting table 7. A connecting block 11 located inside the slot 8 is fixedly installed on the outer side of the collection box 10. A card slot 12 is opened on the outer side of the connecting block 11. A square slot 13 is opened on the outer side of the slot 8. An inclined plane block 14 extending into the card slot 12 is movably installed inside the square slot 13. A connecting rod 15 extending outside the cutting table 7 is fixedly installed on the inner side of the inclined plane block 14. A pull ring 16 is fixedly installed on the outer side of the connecting rod 15.

[0026] During the cutting process, the generated debris falls into the collection box 10. When the debris needs to be taken out, simply pull the pull ring 16, causing the pull ring 16 to drive the connecting rod 15 to move outwards, thereby driving the inclined plane block 14 to disengage from the inside of the card slot 12 and squeezing the return spring 17, deforming the return spring 17. When the inclined plane block 14 is completely retracted into the square slot 13, the telescopic spring 9 releases its elastic potential energy to push the connecting block 11 outwards, driving the collection box 10 outwards, facilitating the removal of the collection box 10.

[0027] By pulling the pull ring 16, the pull ring 16 drives the inclined block 14 to disengage from the inside of the card slot 12, causing the inclined block 14 to squeeze the return spring 17. The telescopic spring 9 releases elastic potential energy to push the connecting block 11 to move outward, thereby driving the aggregate box 10 to move outward, facilitating the removal of the aggregate box 10. Compared with the traditional slotting equipment for bracket processing, this slotting equipment for bracket processing disengages the inclined block 14 from the inside of the card slot 12, and the telescopic spring 9 releases elastic potential energy to push the connecting block 11 to move outward, thereby driving the aggregate box 10 to move outward, facilitating the removal of the aggregate box 10.

[0028] Wherein, a return spring 17 is elastically installed between the inner side of the square groove 13 and the inner side of the inclined block 14, and the return spring 17 is movably connected to the outside of the connecting rod 15.

[0029] When the inclined block 14 disengages from the inside of the card slot 12, the inclined block 14 squeezes the return spring 17, causing the return spring 17 to deform.

[0030] Wherein, a telescopic spring 9 is elastically installed inside the slot 8, and the telescopic spring 9 is located inside the connecting block 11.

[0031] After the inclined block 14 is completely received into the square groove 13, the telescopic spring 9 releases elastic potential energy to push the connecting block 11 to move outward, thereby driving the aggregate box 10 to move outward, facilitating the removal of the aggregate box 10.

[0032] Wherein, an arc-shaped block 24 is fixedly installed inside the V-shaped plate 23, and an arc-shaped groove 27 is formed inside the connecting platform 20, and the arc-shaped block 24 is movably connected inside the arc-shaped groove 27.

[0033] The V-shaped plate 23 drives the connecting cylinder 22 to deflect around the round shaft 21, thereby driving the arc-shaped block 24 to move inside the arc-shaped groove 27 through the connecting cylinder 22 to squeeze the arc-shaped spring 25.

[0034] Wherein, a servo motor 4 is fixedly installed on the front side of the table body 2, and a threaded rod 5 extending into the horizontal groove 3 is fixedly installed inside the servo motor 4, and the movable block 6 is threadedly sleeved on the outside of the threaded rod 5.

[0035] The servo motor 4 drives the threaded rod 5 to rotate, causing the movable block 6 to move along with the bracket, thereby cutting the bracket.

[0036] Wherein, an arc-shaped spring 25 is elastically installed inside the arc-shaped groove 27, and the arc-shaped spring 25 is located inside the arc-shaped block 24.

[0037] The arc-shaped block 24 squeezes the arc-shaped spring 25, causing the arc-shaped spring 25 to deform, so that the bracket disengages from the V-shaped plate 23 and slides down through the inclined plate 19.

[0038] Working principle and usage process of the present utility model:

[0039] When the bracket is transported above the V-shaped plate 23, the cutting table 7 cuts the bracket. The cut bracket falls above the V-shaped plate 23 and applies pressure to the bottom surface of the V-shaped plate 23 under the influence of gravity, so that the V-shaped plate 23 drives the connecting cylinder 22 to deflect around the circular shaft 21. Then, the connecting cylinder 22 drives the arc-shaped block 24 to move inside the arc-shaped groove 27 to squeeze the arc-shaped spring 25, causing the arc-shaped spring 25 to deform. Thus, the bracket detaches from the V-shaped plate 23 and slides down through the inclined plate 19. After that, the arc-shaped spring 25 releases its elastic potential energy to push the arc-shaped block 24 back to its original position, thereby driving the V-shaped plate 23 back to its original position.

[0040] During the cutting process, the generated debris falls into the inside of the aggregate box 10. When it is necessary to take out the debris, just pull the pull ring 16, so that the pull ring 16 drives the connecting rod 15 to move outwards, thereby driving the inclined plane block 14 to disengage from the inside of the card slot 12, causing the inclined plane block 14 to squeeze the return spring 17 and making the return spring 17 deform. When the inclined plane block 14 is completely received inside the square groove 13, the telescopic spring 9 releases its elastic potential energy to push the connecting block 11 outwards, thereby driving the aggregate box 10 outwards, facilitating the removal of the aggregate box 10.

[0041] It should be noted that in this article, relational terms such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the term "comprising", "including" or any other variant thereof is intended to cover non-exclusive inclusion, so that a process, method, article or device including a series of elements not only includes those elements, but also includes other elements not expressly listed, or also includes elements inherent to such process, method, article or device.

[0042] Although the embodiments of the present utility model have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principle and spirit of the present utility model. The scope of the present utility model is defined by the appended claims and their equivalents.

Claims

1. A grooving device for stent processing, comprising a base (1), characterized in that: Above the base (1), a table body (2) is fixedly installed. A horizontal groove (3) is provided on the upper side of the table body (2). An active block (6) is movably installed inside the horizontal groove (3). Above the active block (6), a cutting table (7) is fixedly installed. On the rear side of the base (1), a mounting plate (26) is fixedly installed. Above the rear end of the base (1), a long table (18) is fixedly installed. An inclined plate (19) is fixedly installed on the outer side of the long table (18). On the front side of the long table (18), a connecting table (20) is fixedly installed. A circular shaft (21) is fixedly installed between the inner side of the mounting plate (26) and the inner side of the connecting table (20). A connecting cylinder (22) is movably installed on the outer side of the circular shaft (21). Above the connecting cylinder (22), a V-shaped plate (23) is fixedly installed.

2. The grooving device for bracket processing according to claim 1, characterized in that: An aggregate box (10) is movably installed inside the cutting table (7). A slot (8) is provided on the front side of the cutting table (7). A connecting block (11) located inside the slot (8) is fixedly installed on the outer side of the aggregate box (10). A clamping groove (12) is provided on the outer side of the connecting block (11). A square groove (13) is provided on the outer side of the slot (8). An inclined plane block (14) extending into the clamping groove (12) is movably installed inside the square groove (13). A connecting rod (15) extending to the outside of the cutting table (7) is fixedly installed on the inner side of the inclined plane block (14). A pull ring (16) is fixedly installed on the outer side of the connecting rod (15).

3. The grooving device for bracket processing according to claim 2, characterized in that: A return spring (17) is elastically installed between the inner side of the square groove (13) and the inner side of the inclined plane block (14). The return spring (17) is movably connected to the outer side of the connecting rod (15).

4. A grooving device for bracket processing according to claim 2, characterized in that: A telescopic spring (9) is elastically installed on the inner side of the slot (8). The telescopic spring (9) is located on the inner side of the connecting block (11).

5. The grooving device for bracket processing according to claim 1, wherein: An arc-shaped block (24) is fixedly installed on the inner side of the V-shaped plate (23). An arc-shaped groove (27) is provided on the inner side of the connecting table (20). The arc-shaped block (24) is movably connected to the inside of the arc-shaped groove (27).

6. The grooving device for bracket processing according to claim 1, wherein: A servo motor (4) is fixedly installed on the front side of the table body (2). A threaded rod (5) extending into the horizontal groove (3) is fixedly installed on the inner side of the servo motor (4). The active block (6) is threadedly sleeved on the outer side of the threaded rod (5).

7. The grooving device for bracket processing according to claim 5, wherein: An arc-shaped spring (25) is elastically installed on the inner side of the arc-shaped groove (27). The arc-shaped spring (25) is located on the inner side of the arc-shaped block (24).