Photovoltaic support punching and cutting integrated equipment

By designing integrated photovoltaic bracket punching and cutting equipment, the problems of low efficiency and low precision caused by the separate cutting and punching of photovoltaic brackets in the existing technology are solved, and efficient and accurate photovoltaic bracket processing is achieved.

CN120644995APending Publication Date: 2025-09-16JIANGSU YONGFANG TECH GRP CO LTD

Patent Information

Application Number
CN202511102946.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-08-07
Publication Date
2025-09-16

AI Technical Summary

Technical Problem

In the existing photovoltaic bracket processing process, cutting and punching operations are performed separately, resulting in low efficiency, low precision and poor consistency.

Method used

A photovoltaic bracket punching and cutting integrated equipment is designed, which includes a positioning component, a punching component and a cutting component. The punching and cutting components driven by a hydraulic press can realize the simultaneous processing of multiple groups of photovoltaic brackets, and the limiting components and guide frames are combined to perform precise positioning and guiding output.

Benefits of technology

It realizes efficient and precise integrated processing of photovoltaic brackets, improves production efficiency and product quality, reduces multiple positioning errors, and ensures the accuracy of cutting and punching.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses photovoltaic support punching and cutting integrated equipment, and relates to the technical field of photovoltaic support machining, the photovoltaic support punching and cutting integrated equipment comprises a machine base, the machine base is used for stable bearing during photovoltaic support punching and cutting, and a guide rail is fixedly installed on the side of the top of the machine base. According to the photovoltaic support punching and cutting integrated equipment, after a photovoltaic support profile is positioned by a worker, a first hydraulic machine is started to drive a punching plate to slide on a telescopic frame, so that a punching piece moves downwards in the telescopic frame, and the photovoltaic support profile extending below the punching piece is punched; a worker starts a first hydraulic machine to enable the driving end of the hydraulic machine to drive the positioning block and the connecting block to move on the telescopic frame along with the punching plate, at the moment, the multiple punching rods conduct punching on the photovoltaic support profiles, the multiple punching rods and the positioning grooves are arranged correspondingly, so that the multiple sets of photovoltaic support profiles can be machined at the same time, the punching efficiency is improved, and the production efficiency is improved. Errors caused by multiple times of positioning are reduced, and the product quality is improved.
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Description

Technical Field

[0001] The present invention relates to the technical field of photovoltaic bracket processing, and in particular to integrated punching and cutting equipment for photovoltaic brackets. Background Art

[0002] With the growing global demand for clean energy and increasing environmental awareness, photovoltaic power generation, as a clean, renewable energy source, has experienced rapid development. As a key infrastructure for photovoltaic power generation systems, photovoltaic brackets, used to support photovoltaic panels, have also seen a significant increase in demand. To meet the demands of large-scale photovoltaic power station construction and improve the production efficiency and quality of photovoltaic brackets, photovoltaic bracket punching and cutting equipment has emerged.

[0003] With the development of industrialization, the use of various photovoltaic brackets is increasing. During the processing of photovoltaic brackets, the photovoltaic brackets often need to be cut or punched. At present, most of the operations are to cut and punch the photovoltaic brackets separately, which is difficult to complete in one go. In the traditional production of photovoltaic brackets, manual punching and cutting have problems such as low efficiency, low precision, and poor consistency. Summary of the Invention

[0004] To achieve the above objectives, the present invention is implemented through the following technical solutions: an integrated photovoltaic bracket punching and cutting device, comprising: a machine base, the machine base is used to stably bear the load during the punching and cutting of the photovoltaic bracket, a guide rail is fixedly installed on the side of the top of the machine base, the guide rail is symmetrically arranged with the machine base as the center, and a conveying assembly is fixedly installed between adjacent surfaces of the guide rail, the conveying assembly is provided with two groups, and the two groups of the conveying assemblies are fixedly installed on the surface of the machine base close to the guide rail; A positioning assembly is used for anti-bias positioning of the photovoltaic bracket, and the positioning assembly is fixedly mounted on the surface of the top of the base away from the guide rail; A punching assembly is used for punching multiple groups of photovoltaic brackets at the same time. A top frame is fixedly installed on the top of the punching assembly, and the punching assembly is fixedly installed between the positioning assembly and the opposite surface of the guide rail; The cutting assembly is used to cut the photovoltaic bracket into sections after punching. The cutting assembly is slidably mounted on the surface of the guide rail. When processing the photovoltaic bracket, the staff will place multiple sets of photovoltaic bracket profiles in the positioning assembly so that the photovoltaic bracket profiles are erected inside the positioning assembly and the cutting assembly. The staff will push the photovoltaic bracket profiles under the punching assembly and then start the punching assembly to punch holes in the photovoltaic bracket profiles. After punching, the staff will push the photovoltaic bracket profiles under the cutting assembly to cut the punched photovoltaic bracket profiles. After cutting, the photovoltaic bracket profiles are transported toward the conveying assembly to facilitate the output of the processed photovoltaic bracket profiles.

[0005] Preferably, the positioning assembly includes a protective platform, a positioning frame fixedly mounted on the outer surface of the protective platform, a lifting frame fixedly mounted on the outer surface of the positioning frame, and a limiting member fixedly mounted on the outer surface of the lifting frame. The limiting members are provided in two groups, and the two groups of limiting members are symmetrically arranged around the positioning frame. The staff places the photovoltaic support profile in the limiting member to guide and position multiple groups of photovoltaic support profiles. At this time, the photovoltaic support profile passes through the limiting member and extends into the interior of the punching assembly to prevent the photovoltaic support profile from deviating during processing and affecting the accuracy of punching and cutting.

[0006] Preferably, the protective platform, the positioning frame and the lifting frame are all fixedly mounted on the top of the machine base, and the limiting member is fixedly mounted on the top of the positioning frame via the lifting frame.

[0007] Preferably, the limiting member comprises a sleeve block, a limiting plate fixedly mounted on the bottom of the sleeve block, support plates fixedly mounted on both sides of the bottom of the limiting plate, a limiting block fixedly mounted between opposing surfaces of the support plates, and a positioning groove formed on the surface of the limiting block. Workers insert multiple sets of photovoltaic support profiles through the interior of the support plates and secure the photovoltaic support profiles within the limiting blocks. The positioning grooves formed within the limiting blocks align with the sides of the photovoltaic support profiles, facilitating positioning of the multiple sets of photovoltaic support profiles.

[0008] Preferably, the punching assembly includes a stabilizing frame fixedly mounted on the top of the machine base, with a first hydraulic press fixedly mounted inside the stabilizing frame. Two first hydraulic presses are provided, each with a stamping plate fixedly mounted at the bottom. Telescopic frames are movably mounted on both sides of the bottom of the stamping plate, and a punching piece is fixedly mounted in the middle of the bottom of the stamping plate. After the staff positions the photovoltaic support profile, they start the first hydraulic press to drive the stamping plate to slide on the telescopic frame, so that the punching piece descends inside the telescopic frame to punch the photovoltaic support profile extending below the punching piece.

[0009] Preferably, the punching member includes a positioning block, a connecting block fixedly mounted at the bottom of the positioning block, and three connecting blocks are provided, each of which has a punching rod fixedly mounted at the bottom. A staff member activates the first hydraulic press so that the hydraulic press drive end drives the positioning block and the connecting block to move along with the stamping plate on the telescopic frame. At this time, multiple punching rods punch holes in the photovoltaic support profile. Multiple punching rods are arranged corresponding to the positioning slots to facilitate the simultaneous processing of multiple groups of photovoltaic support profiles, thereby accelerating punching efficiency, reducing errors caused by multiple positioning, and improving product quality.

[0010] Preferably, the cutting assembly includes a mounting frame, a horizontal plate fixedly mounted at the bottom of the mounting frame, sliders fixedly mounted on both sides of the bottom of the horizontal plate, and a second hydraulic press fixedly mounted on the top of the mounting frame. Two second hydraulic presses are provided, and a laminating plate is fixedly mounted at the bottom of each of the two second hydraulic presses. Adjustment rods extend through both sides of the interior of the laminating plate, and a cutting piece is movably mounted at the bottom of each adjustment rod. The staff adjusts the position of the slider on the guide rail to adjust the cutting distance of the photovoltaic bracket profile, and then activates the second hydraulic press, causing the adjustment rod to drive the cutting piece to move within the mounting frame to cut the photovoltaic bracket profile on the horizontal plate.

[0011] Preferably, the slider is slidably mounted on the outer surface of the guide rail, the cutting piece is movably mounted inside the mounting frame, and the cutting piece is adapted to the transverse plate.

[0012] Preferably, the cutting member comprises a telescopic rod, a connecting plate fixedly mounted at the bottom of the telescopic rod, a cutting blade fixedly mounted in the middle of the bottom of the connecting plate, and a segmented cutting blade fixedly mounted at the bottom of the cutting blade. The second hydraulic press drives the cutting blade of the connecting plate below the telescopic rod to punch downward, at which time the segmented cutting blade at the bottom of the cutting blade cuts the photovoltaic support profile. The segmented cutting blades are arranged in multiple segments. When cutting the photovoltaic support profile, the segmented cutting blades contact different photovoltaic support profiles to avoid uneven force during cutting.

[0013] Preferably, the conveying assembly includes a guide frame, and the guide frames are provided with two, and side connecting plates are fixedly installed on both sides of the outer surfaces of the two guide frames, and inner slides are fixedly installed inside the side connecting plates, and a top block is fixedly installed on the top of the inner slide, and a receiving plate is fixedly installed on the top of the top block, and slot plates are fixedly installed on both sides of the top of the receiving plate, and mounting grooves are provided on both sides of the outer surface of the slot plate, and a rotating rod is rotatably installed between the opposite surfaces of the mounting grooves. The staff adjusts the position of the inner slide in the guide frame according to the length of the photovoltaic bracket profile to be cut, so that after the photovoltaic bracket profile is punched and cut, it is pushed to the surface of the rotating rod, and the photovoltaic bracket profile is guided and output, which is convenient for the discharge work after processing.

[0014] The present invention provides an integrated punching and cutting device for photovoltaic brackets. It has the following beneficial effects: 1. The photovoltaic bracket punching and cutting integrated equipment, when processing the photovoltaic bracket, the staff will place multiple groups of photovoltaic bracket profiles in the positioning component, so that the photovoltaic bracket profiles are erected inside the positioning component and the cutting component, the staff will push the photovoltaic bracket profiles to the bottom of the punching component, and then start the punching component to make the punching component punch holes in the photovoltaic bracket profiles, after punching, the staff will push the photovoltaic bracket profiles to the bottom of the cutting component to cut the punched photovoltaic bracket profiles, and after cutting, the photovoltaic bracket profiles are conveyed toward the conveying component to facilitate the output of the processed photovoltaic bracket profiles.

[0015] 2. The photovoltaic bracket punching and cutting integrated equipment allows staff to place the photovoltaic bracket profile in the limit piece to guide and position multiple groups of photovoltaic bracket profiles. At this time, the photovoltaic bracket profile passes through the limit piece and extends to the inside of the punching component to avoid the photovoltaic bracket profile from offsetting during processing and affecting the accuracy of punching and cutting; the staff passes multiple groups of photovoltaic bracket profiles through the inside of the support plate and makes the photovoltaic bracket profiles stuck in the inside of the limit block. The positioning grooves opened in the limit block fit the side of the photovoltaic bracket profile to facilitate the positioning of multiple groups of photovoltaic bracket profiles.

[0016] 3. The photovoltaic bracket punching and cutting integrated equipment, after the staff positions the photovoltaic bracket profile, starts the first hydraulic press to drive the stamping plate to slide on the telescopic frame, so that the punching part moves downward inside the telescopic frame to punch the photovoltaic bracket profile extending below the punching part; the staff starts the first hydraulic press so that the hydraulic press drive end drives the positioning block and the connecting block to move with the stamping plate on the telescopic frame. At this time, multiple punching rods punch the photovoltaic bracket profile. Multiple punching rods are arranged corresponding to the positioning grooves to facilitate the simultaneous processing of multiple groups of photovoltaic bracket profiles, so as to speed up the punching efficiency, reduce the errors caused by multiple positioning, and improve product quality.

[0017] 4. The integrated punching and cutting equipment for photovoltaic brackets is configured by the staff adjusting the position of the slider on the guide rail to adjust the cutting distance of the photovoltaic bracket profile, and then starting the second hydraulic press so that the adjustment rod drives the cutting piece to move in the mounting frame to cut the photovoltaic bracket profile on the horizontal plate; the second hydraulic press drives the cutting knife of the connecting plate under the telescopic rod to punch downward, and at this time the segmented cutting piece at the bottom of the cutting knife cuts the photovoltaic bracket profile, and the segmented cutting piece is arranged in multiple segments. When cutting the photovoltaic bracket profile, the segmented cutting piece contacts different photovoltaic bracket profiles to avoid uneven force during cutting.

[0018] 5. The photovoltaic bracket punching and cutting integrated equipment is used by the staff to adjust the position of the inner slide in the guide frame according to the length of the photovoltaic bracket profile to be cut, so that after the photovoltaic bracket profile is punched and cut, it is pushed to the surface of the rotating rod to guide the output of the photovoltaic bracket profile, which is convenient for the discharge work after processing. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] Figure 1 This is a schematic diagram of the external structure of a photovoltaic bracket punching and cutting integrated device of the present invention; Figure 2 This is a schematic diagram of the external structure of a photovoltaic support punching and cutting integrated device from another angle of the present invention; Figure 3 This is a schematic diagram of the connection structure between the positioning component and the punching component of the present invention; Figure 4 It is a structural schematic diagram of the positioning assembly of the present invention; Figure 5 It is an enlarged structural schematic diagram of the limiting member of the present invention; Figure 6 It is a structural schematic diagram of the punching assembly of the present invention; Figure 7 It is a structural schematic diagram of the cross section of the punching assembly of the present invention; Figure 8 It is a structural schematic diagram of the cutting assembly of the present invention; Figure 9 It is a structural schematic diagram of the cutting piece of the present invention; Figure 10 It is a structural schematic diagram of the conveying component of the present invention.

[0020] In the figure: 1. Top frame; 2. Cutting assembly; 21. Second hydraulic press; 22. Adjusting rod; 23. Mounting frame; 24. Horizontal plate; 25. Cutting piece; 251. Telescopic rod; 252. Connecting plate; 253. Cutting knife; 254. Segmented cutting blade; 26. Slider; 27. Laminating plate; 3. Conveying assembly; 31. Mounting groove; 32. Slot plate; 33. Attaching plate; 34. Inner slide; 35. Side plate; 36. Guide frame; 37. Top block; 38. Rotating rod; 4. Punching assembly; 41. Stabilizing frame; 42. First hydraulic press; 43. Punching plate; 44. Telescopic frame; 45. Punching part; 451. Punching rod; 452. Positioning block; 453. Connecting block; 5. Positioning assembly; 51. Lifting frame; 52. Limiting part; 521. Sleeve block; 522. Limiting plate; 523. Support plate; 524. Limiting block; 525. Positioning groove; 53. Protective platform; 54. Positioning frame; 6. Machine base; 7. Guide rail. DETAILED DESCRIPTION

[0021] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments 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] The first embodiment, as Figures 1 to 10 As shown, the present invention provides a technical solution: an integrated punching and cutting device for a photovoltaic bracket, comprising: a base 6, which is used for stable bearing during punching and cutting of the photovoltaic bracket, a guide rail 7 is fixedly installed on the side of the top of the base 6, the guide rail 7 is symmetrically arranged with the base 6 as the center, and a conveying assembly 3 is fixedly installed between adjacent surfaces of the guide rail 7, and the conveying assembly 3 is provided with two groups, and the two groups of the conveying assemblies 3 are fixedly installed on the surface of the base 6 on the side close to the guide rail 7; Preferably, the conveying assembly 3 includes a guide frame 36, of which two are provided. Side connecting plates 35 are fixedly installed on both sides of the outer surfaces of the two guide frames 36. An inner slide 34 is fixedly installed inside the side connecting plates 35. A top block 37 is fixedly installed on the top of the inner slide 34. A receiving plate 33 is fixedly installed on the top of the top block 37. A slot plate 32 is fixedly installed on both sides of the top of the receiving plate 33. Both sides of the outer surface of the slot plate 32 are provided with mounting grooves 31. A rotating rod 38 is rotatably installed between the opposite surfaces of the mounting grooves 31. The staff adjusts the position of the inner slide 34 in the guide frame 36 according to the length of the photovoltaic support profile to be cut, so that after the photovoltaic support profile is punched and cut, it is pushed to the surface of the rotating rod 38, guiding the photovoltaic support profile for output, and facilitating the discharge work after processing.

[0023] A positioning component 5, which is used for anti-bias positioning of the photovoltaic bracket, and is fixedly mounted on the surface of the top of the base 6 away from the guide rail 7; Punching assembly 4, which is used for punching multiple groups of photovoltaic brackets at the same time. The top of the punching assembly 4 is fixedly installed with the top frame 1, and the punching assembly 4 is fixedly installed between the positioning assembly 5 and the opposite surface of the guide rail 7; The cutting assembly 2 is used to cut the photovoltaic bracket into sections after punching. The cutting assembly 2 is slidably mounted on the surface of the guide rail 7. When processing the photovoltaic bracket, the staff places multiple groups of photovoltaic bracket profiles in the positioning assembly 5 so that the photovoltaic bracket profiles are erected inside the positioning assembly 5 and the cutting assembly 2. The staff pushes the photovoltaic bracket profiles to the bottom of the punching assembly 4, and then starts the punching assembly 4 so that the punching assembly 4 punches holes in the photovoltaic bracket profiles. After punching, the staff pushes the photovoltaic bracket profiles to the bottom of the cutting assembly 2 to cut the punched photovoltaic bracket profiles. After cutting, the photovoltaic bracket profiles are conveyed toward the conveying assembly 3 to facilitate the output of the processed photovoltaic bracket profiles.

[0024] The second embodiment, based on the first embodiment, see Figures 3 to 7 As shown, preferably, the positioning assembly 5 includes a protective platform 53, a positioning frame 54 is fixedly mounted on the outer surface of the protective platform 53, a lifting frame 51 is fixedly mounted on the outer surface of the positioning frame 54, and a limiting member 52 is fixedly mounted on the outer surface of the lifting frame 51. The limiting members 52 are provided in two groups, and the two groups of limiting members 52 are symmetrically arranged around the positioning frame 54. The staff places the photovoltaic support profile in the limiting member 52 to guide and position multiple groups of photovoltaic support profiles. At this time, the photovoltaic support profile passes through the limiting member 52 and extends into the interior of the punching assembly 4 to prevent the photovoltaic support profile from deviating during processing and affecting the accuracy of punching and cutting.

[0025] Preferably, the protective platform 53 , the positioning frame 54 and the lifting frame 51 are all fixedly mounted on the top of the machine base 6 , and the limiting member 52 is fixedly mounted on the top of the positioning frame 54 through the lifting frame 51 .

[0026] Preferably, the limiting member 52 includes a sleeve 521, a limiting plate 522 fixedly mounted on the bottom of the sleeve 521, support plates 523 fixedly mounted on both sides of the bottom of the limiting plate 522, and a limiting block 524 fixedly mounted between opposing surfaces of the support plate 523. The surface of the limiting block 524 is provided with a positioning groove 525. When a worker inserts multiple sets of photovoltaic support profiles through the interior of the support plate 523 and secures them within the limiting block 524, the positioning grooves 525 provided in the limiting block 524 align with the sides of the photovoltaic support profiles, facilitating the positioning of the multiple sets of photovoltaic support profiles.

[0027] Preferably, the punching assembly 4 includes a stabilizing frame 41, which is fixedly mounted on the top of the machine base 6. A first hydraulic press 42 is fixedly mounted inside the stabilizing frame 41. Two first hydraulic presses 42 are provided, and a stamping plate 43 is fixedly mounted at the bottom of each of the two first hydraulic presses 42. Telescopic frames 44 are movably mounted on both sides of the bottom of the stamping plate 43, and a punching piece 45 is fixedly mounted in the middle of the bottom of the stamping plate 43. After the staff positions the photovoltaic support profile, they start the first hydraulic press 42 to drive the stamping plate 43 to slide on the telescopic frame 44, so that the punching piece 45 descends inside the telescopic frame 44 to punch the photovoltaic support profile extending below the punching piece 45.

[0028] Preferably, the punching member 45 includes a positioning block 452, a connecting block 453 fixedly mounted at the bottom of the positioning block 452. Three connecting blocks 453 are provided, and a punching rod 451 is fixedly mounted at the bottom of each of the three connecting blocks 453. The staff starts the first hydraulic press 42 so that the hydraulic press drive end drives the positioning block 452 and the connecting block 453 to move along with the stamping plate 43 on the telescopic frame 44. At this time, multiple punching rods 451 punch the photovoltaic support profile. The multiple punching rods 451 are correspondingly arranged with the positioning slots 525 to facilitate the simultaneous processing of multiple groups of photovoltaic support profiles, thereby accelerating punching efficiency, reducing errors caused by multiple positioning, and improving product quality.

[0029] The third embodiment, based on the first and second embodiments, see Figures 8 and 9 As shown, preferably, the cutting assembly 2 includes a mounting frame 23, a horizontal plate 24 is fixedly mounted on the bottom of the mounting frame 23, sliders 26 are fixedly mounted on both sides of the bottom of the horizontal plate 24, and a second hydraulic press 21 is fixedly mounted on the top of the mounting frame 23. Two second hydraulic presses 21 are provided, and a laminating plate 27 is fixedly mounted on the bottom of the two second hydraulic presses 21. Adjustment rods 22 are passed through both sides of the interior of the laminating plate 27, and a cutting piece 25 is movably mounted on the bottom of the adjustment rod 22. The staff adjusts the position of the slider 26 on the guide rail 7 to adjust the cutting distance of the photovoltaic support profile, and then starts the second hydraulic press 21 so that the adjustment rod 22 drives the cutting piece 25 to move in the mounting frame 23 to cut the photovoltaic support profile on the horizontal plate 24.

[0030] Preferably, the slider 26 is slidably mounted on the outer surface of the guide rail 7 , and the cutting member 25 is movably mounted inside the mounting frame 23 , and the cutting member 25 is adapted to the transverse plate 24 .

[0031] Preferably, the cutting member 25 includes a telescopic rod 251, a connecting plate 252 fixedly mounted at the bottom of the telescopic rod 251, a cutting blade 253 fixedly mounted in the middle of the bottom of the connecting plate 252, and a segmented cutting blade 254 fixedly mounted at the bottom of the cutting blade 253. The second hydraulic press 21 drives the cutting blade 253 of the connecting plate 252 below the telescopic rod 251 to punch downward, at which time the segmented cutting blade 254 at the bottom of the cutting blade 253 cuts the photovoltaic support profile. The segmented cutting blade 254 is arranged in multiple segments. When cutting the photovoltaic support profile, the segmented cutting blade 254 contacts different photovoltaic support profiles to avoid uneven force during cutting.

[0032] During use, when processing the photovoltaic bracket, the staff places multiple groups of photovoltaic bracket profiles in the positioning component 5 so that the photovoltaic bracket profiles are erected inside the positioning component 5 and the cutting component 2. The staff pushes the photovoltaic bracket profile to the bottom of the punching component 4, and then starts the punching component 4 to allow the punching component 4 to punch holes in the photovoltaic bracket profile. After punching, the staff pushes the photovoltaic bracket profile to the bottom of the cutting component 2 to cut the punched photovoltaic bracket profile. After cutting, the photovoltaic bracket profile is conveyed in the direction of the conveying component 3 to facilitate the output of the processed photovoltaic bracket profile.

[0033] The staff places the photovoltaic bracket profile in the limiter 52 to guide and position multiple groups of photovoltaic bracket profiles. At this time, the photovoltaic bracket profile passes through the limiter 52 and extends to the inside of the punching assembly 4 to avoid the photovoltaic bracket profile from being offset during processing and affecting the accuracy of punching and cutting.

[0034] The staff passes multiple groups of photovoltaic bracket profiles through the inside of the support plate 523 and makes the photovoltaic bracket profiles stuck inside the limit block 524. The positioning grooves 525 opened in the limit block 524 fit together with the side edges of the photovoltaic bracket profiles to facilitate the positioning of multiple groups of photovoltaic bracket profiles.

[0035] After the staff positions the photovoltaic support profile, they start the first hydraulic press 42 to drive the stamping plate 43 to slide on the telescopic frame 44, so that the punching piece 45 moves downward inside the telescopic frame 44 to punch the photovoltaic support profile extending below the punching piece 45.

[0036] The staff starts the first hydraulic press 42 so that the driving end of the hydraulic press drives the positioning block 452 and the connecting block 453 to move along with the stamping plate 43 on the telescopic frame 44. At this time, multiple punching rods 451 punch holes in the photovoltaic bracket profile. Multiple punching rods 451 are arranged corresponding to the positioning grooves 525 to facilitate the simultaneous processing of multiple groups of photovoltaic bracket profiles, thereby speeding up the punching efficiency, reducing errors caused by multiple positioning, and improving product quality.

[0037] The staff adjusts the position of the slider 26 on the guide rail 7 to adjust the cutting distance of the photovoltaic bracket profile, and then starts the second hydraulic press 21 so that the adjustment rod 22 drives the cutting piece 25 to move in the mounting frame 23 to cut the photovoltaic bracket profile on the cross plate 24.

[0038] The second hydraulic press 21 drives the cutting knife 253 of the connecting plate 252 under the telescopic rod 251 to punch downward. At this time, the segmented cutting blade 254 at the bottom of the cutting blade 253 cuts the photovoltaic bracket profile, and the segmented cutting blade 254 is arranged in multiple segments. When cutting the photovoltaic bracket profile, the segmented cutting blade 254 contacts different photovoltaic bracket profiles to avoid uneven force during cutting.

[0039] The staff adjusts the position of the inner slide 34 in the guide frame 36 according to the length of the photovoltaic bracket profile to be cut, so that after the photovoltaic bracket profile is punched and cut, it is pushed to the surface of the rotating rod 38 to guide the output of the photovoltaic bracket profile, which is convenient for the discharge work after processing.

[0040] It should be noted that, in this document, relational terms such as first and second, etc., are used only 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 terms "comprises," "comprising," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or device comprising a series of elements includes not only those elements, but also other elements not explicitly listed, or elements inherent to such process, method, article, or device. In the absence of further limitations, an element defined by the phrase "comprising a..." does not exclude the presence of additional identical elements in the process, method, article, or device comprising the element.

[0041] While embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions, and variations may be made to these embodiments without departing from the principles and spirit of the invention, and that the scope of the invention is defined by the appended claims and their equivalents.

Claims

1. A photovoltaic bracket punching and cutting integrated equipment, characterized in that: include: A machine base (6) is used for stably bearing when punching and cutting a photovoltaic bracket. A guide rail (7) is fixedly installed on the side of the top of the machine base (6). The guide rail (7) is symmetrically arranged with the machine base (6) as the center. A conveying assembly (3) is fixedly installed between adjacent surfaces of the guide rail (7). The conveying assembly (3) is provided with two groups. The two groups of the conveying assemblies (3) are fixedly installed on the surface of the machine base (6) on the side close to the guide rail (7); A positioning assembly (5), the positioning assembly (5) is used for anti-bias positioning of the photovoltaic bracket, and the positioning assembly (5) is fixedly mounted on a surface of the top of the base (6) away from the guide rail (7); A punching assembly (4), the punching assembly (4) is used for punching multiple groups of photovoltaic brackets simultaneously, a top frame (1) is fixedly mounted on the top of the punching assembly (4), and the punching assembly (4) is fixedly mounted between the positioning assembly (5) and the opposite surface of the guide rail (7); A cutting assembly (2) is used for cutting the photovoltaic bracket into sections after punching, and the cutting assembly (2) is slidably mounted on the surface of the guide rail (7).

2. The photovoltaic bracket punching and cutting integrated equipment according to claim 1, characterized in that: The positioning assembly (5) includes a protective platform (53), a positioning frame (54) is fixedly mounted on the outer surface of the protective platform (53), a lifting frame (51) is fixedly mounted on the outer surface of the positioning frame (54), and a limiting member (52) is fixedly mounted on the outer surface of the lifting frame (51), and two groups of the limiting members (52) are provided, and the two groups of the limiting members (52) are symmetrically arranged with the positioning frame (54) as the center.

3. The photovoltaic bracket punching and cutting integrated equipment according to claim 2, characterized in that: The protective platform (53), the positioning frame (54) and the lifting frame (51) are all fixedly mounted on the top of the machine base (6), and the limiting member (52) is fixedly mounted on the top of the positioning frame (54) through the lifting frame (51).

4. The photovoltaic bracket punching and cutting integrated equipment according to claim 3, characterized in that: The limiting member (52) comprises a sleeve block (521), a limiting plate (522) is fixedly mounted on the bottom of the sleeve block (521), support plates (523) are fixedly mounted on both sides of the bottom of the limiting plate (522), a limiting block (524) is fixedly mounted between opposite surfaces of the support plates (523), and a positioning groove (525) is provided on the surface of the limiting block (524).

5. The photovoltaic bracket punching and cutting integrated equipment according to claim 1, characterized in that: The punching assembly (4) includes a stabilizing frame (41), which is fixedly mounted on the top of the machine base (6). A first hydraulic press (42) is fixedly mounted inside the stabilizing frame (41). Two first hydraulic presses (42) are provided. A punching plate (43) is fixedly mounted on the bottom of each of the two first hydraulic presses (42). Telescopic frames (44) are movably mounted on both sides of the bottom of the punching plate (43). A punching member (45) is fixedly mounted in the middle of the bottom of the punching plate (43).

6. The photovoltaic bracket punching and cutting integrated equipment according to claim 5, characterized in that: The punching member (45) comprises a positioning block (452), a connecting block (453) being fixedly mounted on the bottom of the positioning block (452), three connecting blocks (453) being provided, and a punching rod (451) being fixedly mounted on the bottom of each of the three connecting blocks (453).

7. The photovoltaic bracket punching and cutting integrated equipment according to claim 1, characterized in that: The cutting assembly (2) includes a mounting frame (23), a horizontal plate (24) is fixedly mounted on the bottom of the mounting frame (23), sliders (26) are fixedly mounted on both sides of the bottom of the horizontal plate (24), a second hydraulic press (21) is fixedly mounted on the top of the mounting frame (23), two second hydraulic presses (21) are provided, and a bonding plate (27) is fixedly mounted on the bottom of the two second hydraulic presses (21), and an adjusting rod (22) is passed through both sides of the inside of the bonding plate (27), and a cutting member (25) is movably mounted on the bottom of the adjusting rod (22).

8. The photovoltaic bracket punching and cutting integrated equipment according to claim 7, characterized in that: The slider (26) is slidably mounted on the outer surface of the guide rail (7), and the cutting piece (25) is movably mounted inside the mounting frame (23). The cutting piece (25) is adapted to the transverse plate (24).

9. The photovoltaic bracket punching and cutting integrated equipment according to claim 8, characterized in that: The cutting member (25) comprises a telescopic rod (251), a connecting plate (252) is fixedly mounted on the bottom of the telescopic rod (251), a cutting knife (253) is fixedly mounted in the middle of the bottom of the connecting plate (252), and a segmented cutting blade (254) is fixedly mounted on the bottom of the cutting knife (253).

10. The photovoltaic bracket punching and cutting integrated equipment according to claim 1, characterized in that: The conveying assembly (3) includes a guide frame (36), and two guide frames (36) are provided. Side connecting plates (35) are fixedly installed on both sides of the outer surfaces of the two guide frames (36), an inner slide plate (34) is fixedly installed inside the side connecting plates (35), a top block (37) is fixedly installed on the top of the inner slide plate (34), a receiving plate (33) is fixedly installed on the top of the receiving plate (33), and groove plates (32) are fixedly installed on both sides of the top of the receiving plate (33), and mounting grooves (31) are provided on both sides of the outer surface of the groove plate (32), and a rotating rod (38) is rotatably installed between the opposite surfaces of the mounting groove (31).

Citation Information

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