Aluminum material frame stacking apparatus

By designing an aluminum profile stacking equipment, automated feeding of aluminum profiles and positioning and stacking of the frames were achieved, solving the problems of high labor intensity and inaccurate positioning in existing technologies, and achieving higher production efficiency and safety.

CN119218757BActive Publication Date: 2025-12-09FOSHAN CBC AUTOMATION TECH CO LTD
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Patent Information

Application Number
CN202411312124.3
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-09-20
Publication Date
2025-12-09
Estimated Expiration
2044-09-20

AI Technical Summary

Technical Problem

The lack of dedicated stacking and framing equipment on existing aluminum profile production lines results in high labor intensity and low automation levels for manual operation, inaccurate stacking of material frames, which affects production efficiency and poses safety hazards.

Method used

An aluminum profile frame stacking device was designed, including a feeding component, a transfer component, a positioning component, and a stacking plate. These components enable automated feeding, frame positioning, and stacking of aluminum profiles, adapting to the stacking needs of frames of different sizes and quantities.

Benefits of technology

It improves the automation and accuracy of material frame stacking, reduces the labor intensity of workers, increases production efficiency, and enhances safety.

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Abstract

The application relates to the technical field of aluminum profile production equipment, and provides an aluminum profile frame stacking equipment which comprises a workbench and a stacking mechanism; a feeding assembly, a transfer assembly and a conveying device for conveying a material frame are installed on the workbench; a feeding clamp for placing aluminum profiles in the material frame on the conveying device is slidably assembled on the feeding assembly; the stacking mechanism comprises a positioning assembly, a placing assembly and a stacking plate slidably assembled on the workbench; the transfer assembly is used for discharging the material frame to the positioning assembly; a placing clamp for placing the material frame on the positioning assembly on the stacking plate is slidably assembled on the placing assembly; and the stacking plate can be lifted relative to the workbench. The application solves the problems that the existing material frame stacking has low automation degree and low accuracy, and has the advantages of compact structure, replacement of part of manual labor and high production efficiency.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of aluminum profile production equipment, in particular to an aluminum profile frame stacking equipment. BACKGROUND

[0002] In the process of aluminum profile extrusion production, stacking and framing is an important link, which aims to stack the produced finished aluminum profiles regularly for aging treatment. At present, most of the existing equipment on the aluminum profile production line does not have a special stacking and framing device, and relies on manual lifting of materials for framing. The material frame storing the profiles is hoisted to the profile sawing position by manual operation, and then the sawed profiles are manually loaded into the material frame one by one. During the framing process, the material spacer needs to be manually placed every time a layer of profiles is filled. After the material frame is filled with profiles, it is hoisted to the next process by manual operation. In order to improve production efficiency, the filled material frames are usually stacked together by manual operation and then sent to the aging furnace for treatment. However, when the material frames are stacked by manual operation, the lifting tool needs to be occupied for a long time, and the workers have a large labor intensity when stacking the material frames by using the lifting tool, which has a low degree of automation, greatly reduces the work efficiency, and the stacking position accuracy is not easy to control, which affects the stacking effect and even causes safety accidents. SUMMARY

[0003] Therefore, in order to solve the problem of low degree of automation and difficult to control accuracy of the existing material frame stacking, the present application provides an aluminum profile frame stacking equipment, and the specific technical scheme is as follows:

[0004] An aluminum profile frame stacking equipment, comprising a workbench and a stacking mechanism; a feeding assembly, a transfer assembly and a conveying device for conveying material frames are installed on the workbench, a feeding clamp for placing aluminum profiles in the material frames on the conveying device is slidingly assembled on the feeding assembly; the stacking mechanism comprises a positioning assembly, a placing assembly and a stacking plate slidingly assembled on the workbench, the transfer assembly is used for discharging the material frames to the positioning assembly, a placing clamp for placing the material frames on the positioning assembly on the stacking plate is slidingly assembled on the placing assembly, and the stacking plate can lift relative to the workbench.

[0005] The aluminum material frame stacking equipment sets the feeding assembly to complete the feeding operation of the aluminum profile, facilitates the placement of the aluminum profile in the frame for centralized transportation, sets the transfer assembly to complete the discharge and collection of the frame, facilitates the subsequent stacking of multiple frames, sets the positioning assembly to complete the transition of the frame between the transportation device and the stacking plate, positions the frame, improves the clamping accuracy of the frame by the subsequent placement clamps, and solves the problem of low automation and difficult control of accuracy of the existing frame stacking. The stacking plate on the workbench can adjust the placement height when the frame is stacked and placed, so as to adapt to frames of different sizes or different quantities, and improve the applicability of the equipment.

[0006] Further, the workbench is provided with a transportation guide rail; the transportation device comprises a transportation plate, multiple limiting frames, and a sliding block slidably arranged on the transportation guide rail, the transportation plate is installed on the sliding block, and multiple limiting frames are arranged on the upper surface of the transportation plate in a spaced manner, and each limiting frame is used for placing and limiting the frame.

[0007] Further, the feeding assembly comprises a feeding slide plate, a first driving structure, and a first track arranged on the workbench, the first track is located at the feeding end of the transportation device, the feeding slide plate is slidably connected to the first track, and the first driving structure is installed on the feeding slide plate and is used for controlling the lifting movement of the feeding clamp.

[0008] Further, the feeding clamp comprises a transmission member, a lifting member, and a first suction accessory, the transmission member is in transmission connection with the first driving structure, one end of the lifting member is slidably arranged on the transmission member, and the first suction accessory is detachably connected to the other end of the lifting member, and multiple suction cups for abutting and adsorbing the aluminum profile are arranged on the first suction accessory.

[0009] Further, the transfer assembly comprises a transfer slide plate, a second driving structure, a clamping member, and a second track arranged on the workbench, the second track is located at the discharge end of the transportation device, the transfer slide plate is slidably connected to the second track, the second driving structure is installed on the transfer slide plate, the second driving structure is in transmission connection with the clamping member and is used for controlling the lifting movement of the clamping member.

[0010] Further, the clamping member comprises a lifting block, a connecting block, and two clamping blocks for cooperating to clamp the frame, one end of the lifting block is in transmission connection with the second driving structure, the other end of the lifting block is fixedly connected to the connecting block, two clamping blocks are symmetrically arranged on both sides of the connecting block, and the clamping blocks can slide relative to the connecting block.

[0011] Further, a material distributing assembly is rotatably installed on the workbench, and is arranged between the feeding assembly and the transferring assembly, and a second suction device for clamping and adsorbing the aluminum profile is arranged on the material distributing assembly, and a plurality of suction cups are arranged on the second suction device.

[0012] Further, the positioning assembly comprises a positioning slide plate, a mounting member, a lifting cylinder, a positioning member and a locking structure for fixing the material frame, the positioning slide plate is slidably arranged on the workbench, the mounting member is detachably fixed on the positioning slide plate, the lifting cylinder is arranged on the mounting member, an output end of the lifting cylinder is in transmission connection with the positioning member and is used for controlling the lifting movement of the positioning member, and the locking structure is arranged on the top of the positioning member.

[0013] Further, the locking structure comprises a convex strip, a convex block and an abutting rod which is slidably inserted into the convex block, the convex strip is arranged at one end of the positioning member, the convex block is fixed at the other end of the positioning member, the convex strip is embedded into the bottom of one side wall of the material frame, and the abutting rod is used for abutting against the other side wall of the material frame.

[0014] Further, the placing assembly comprises a placing slide plate, a third driving structure, a placing clamp and a placing guide rail which is arranged above the conveying guide rail, the placing guide rail is installed on the workbench, the placing slide plate is slidably arranged on the placing guide rail, the third driving structure is installed on the placing slide plate, an output end of the third driving structure is in transmission connection with the placing clamp and is used for controlling the lifting movement of the placing clamp, and two clamping blocks for cooperatively clamping the material frame are symmetrically arranged on the placing clamp. BRIEF DESCRIPTION OF DRAWINGS

[0015] The application can be further understood from the following description taken in conjunction with the accompanying drawings. The components in the drawings are not necessarily to scale, emphasis instead being placed upon illustrating the principles of the embodiments. In different views, the same reference numerals designate corresponding parts.

[0016] Figure 1 is a structural schematic view of an aluminum profile frame stacking equipment according to an embodiment of the application;

[0017] Figure 2 is a structural schematic view of an aluminum profile frame stacking equipment according to an embodiment of the application;

[0018] Figure 3 is a structural schematic view of an aluminum profile frame stacking equipment according to an embodiment of the application;

[0019] Figure 4 is Figure 3 is a partial enlarged structural schematic view of A in FIG. 4;

[0020] Figure 5 Figure 4 is a structural schematic diagram of the aluminum material frame stacking equipment according to an embodiment of the present application;

[0021] Figure 6 Figure 1 is a structural schematic diagram of the fixing device of the aluminum material frame stacking equipment according to an embodiment of the present application;

[0022] Figure 7 Figure 2 is a structural schematic diagram of the fixing device of the aluminum material frame stacking equipment according to an embodiment of the present application;

[0023] Figure 8 Figure 3 is a structural schematic diagram of the fixing device of the aluminum material frame stacking equipment according to an embodiment of the present application.

[0024] BRIEF DESCRIPTION OF THE DRAWINGS

[0025] 1, workbench; 11, conveying guide rail; 12, feeding conveying belt; 2, feeding assembly; 21, feeding clamp; 211, transmission member; 212, lifting member; 213, first suction accessory; 22, feeding slide plate; 23, first driving structure; 24, first track; 3, transfer assembly; 31, transfer slide plate; 32, second driving structure; 33, clamping member; 331, lifting block; 332, connecting block; 333, clamping block; 34, second track; 4, conveying device; 41, conveying plate; 42, limiting frame; 43, sliding block; 5, positioning assembly; 51, positioning slide plate; 52, mounting member; 53, lifting cylinder; 54, positioning member; 55, locking structure; 551, convex strip; 552, convex block; 553, abutting rod; 6, placing assembly; 61, placing clamp; 611, clamping block; 62, placing slide plate; 63, third driving structure; 64, placing guide rail; 7, stacking plate; 8, material frame; 81, fixing device; 811, driving motor; 812, screw rod; 813, first fixing member; 8131, supporting block; 8132, sliding rod; 8133, sliding block; 8134, fitting block; 814, second fixing member; 815, fixing plate; 8151, adjusting track; 816, threaded shaft seat; 817, rotating shaft seat; 9, material distributing assembly; 91, second suction accessory. DETAILED DESCRIPTION

[0026] In order to make the objectives, technical solutions and advantages of the present application clearer, the present application will be further described in detail below with reference to the embodiments thereof. It should be understood that the specific embodiments described herein are merely used to explain the present application and do not limit the protection scope of the present application.

[0027] It should be noted that when an element is referred to as being "fixed to" another element, it can be directly attached to the other element or there may be an intervening element. When an element is referred to as being "connected to" another element, it can be directly connected to the other element or there may be an intervening element. The terms "vertical," "horizontal," "left," "right," and similar expressions used herein are for illustrative purposes only and do not represent the only possible implementation.

[0028] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention pertains. The terminology used herein in the description of the invention is for the purpose of describing particular embodiments only and is not intended to be limiting of the invention. The term "and / or" as used herein includes any and all combinations of one or more of the associated listed items.

[0029] In this invention, "first" and "second" do not represent a specific quantity or order, but are merely used to distinguish names.

[0030] like Figures 1-5 As shown, an aluminum profile material frame 8 stacking device according to an embodiment of the present invention includes a workbench 1 and a stacking mechanism; a feeding component 2, a transfer component 3 and a transport device 4 for transporting the material frame 8 are installed on the workbench 1, and a feeding clamp 21 for placing the aluminum profile into the material frame 8 on the transport device 4 is slidably mounted on the feeding component 2; the stacking mechanism includes a positioning component 5, a placement component 6 and a stacking plate 7 slidably mounted on the workbench 1, the transfer component 3 is used to discharge the material frame 8 to the positioning component 5, and a placement clamp 61 for placing the material frame 8 on the positioning component 5 into the stacking plate 7 is slidably mounted on the placement component 6, and the stacking plate 7 can move up and down relative to the workbench 1.

[0031] The aforementioned aluminum profile material frame 8 stacking equipment, through the feeding component 2, completes the feeding operation of aluminum profiles, facilitating the centralized transportation of aluminum profiles placed in the material frame 8; through the transfer component 3, completes the unloading and collection of material frames 8, facilitating the subsequent stacking of multiple material frames 8; through the positioning component 5, completes the transition of material frames 8 from the transport device 4 to the stacking plate 7, and positions the material frames 8, improving the clamping accuracy of the subsequent placement clamp 61 on the material frames 8, solving the problem of low automation and difficulty in controlling accuracy in existing material frame 8 stacking; through the stacking plate 7, the lifting movement of the stacking plate 7 on the worktable 1 can adjust the placement height of the material frames 8 during stacking, thereby adapting to material frames 8 of different sizes or quantities, improving the applicability of the equipment.

[0032] Specifically, the number of the stacking plates 7 is multiple, the multiple stacking plates 7 are installed side by side and spaced on the workbench 1, and each of the stacking plates 7 can move up and down relative to the workbench 1. The stacking operation of multiple material frames 8 can be simultaneously realized.

[0033] As shown in Figures 1-5 one of the embodiments, the workbench 1 is provided with a conveying rail 11; the conveying device 4 includes a conveying plate 41, multiple limiting frames 42, and a sliding block 43 slidably arranged on the conveying rail 11, the conveying plate 41 is installed on the sliding block 43, and the multiple limiting frames 42 are spaced and arranged on the upper surface of the conveying plate 41, each of the limiting frames 42 is used for placing and limiting the material frame 8. By arranging the limiting frames 42, the limiting of the material frame 8 on the conveying plate 41 is realized, the deviation or even falling of the material frame 8 during the conveying process is avoided, and the stability of the material frame 8 is improved.

[0034] Specifically, the conveying rail 11 is arranged in a horizontal direction.

[0035] As shown in Figures 1-5 one of the embodiments, the feeding assembly 2 includes a feeding slide plate 22, a first driving structure 23, and a first track 24 arranged on the workbench 1, the first track 24 is located at the feeding end of the conveying device 4, the feeding slide plate 22 is slidably connected to the first track 24, and the first driving structure 23 is installed on the feeding slide plate 22 and is used for controlling the lifting movement of the feeding clamp 21. In this way, by arranging the feeding slide plate 22, the sliding of the feeding slide plate 22 on the first track 24 can drive the feeding clamp 21 to reciprocate close to the material frame 8 on the conveying device 4, so as to realize the feeding of the aluminum profile in the material frame 8; by arranging the first driving structure 23, the lifting movement of the feeding clamp 21 is driven by the first driving structure 23, so that the feeding clamp 21 can reciprocate and abut against the aluminum profile, thereby realizing the clamping operation of the aluminum profile.

[0036] As shown in Figures 1-5 one of the embodiments, the feeding clamp 21 includes a transmission member 211, a lifting member 212, and a first suction member 213, the transmission member 211 is in transmission connection with the first driving structure 23, one end of the lifting member 212 is slidably arranged on the transmission member 211, and the first suction member 213 is detachably connected to the other end of the lifting member 212, and the first suction member 213 is provided with multiple suction cups for abutting and adsorbing the aluminum profile. The suction cup fixes the aluminum profile by generating a vacuum environment to generate suction force, and the fixing effect is very stable and reliable. The suction cup can also withstand certain external force and is not easy to loosen or slide, which can effectively ensure the safety and stability of the aluminum profile.

[0037] As shown in Figures 1-5As shown, in one of the embodiments, the transferring assembly 3 comprises a transferring slide plate 31, a second driving structure 32, a clamping piece 33, and a second track 34 arranged on the workbench 1 and located at the discharging end of the conveying device 4, the transferring slide plate 31 is slidingly connected to the second track 34, the second driving structure 32 is installed on the transferring slide plate 31, and the second driving structure 32 is drivingly connected to the clamping piece 33 and used to control the lifting movement of the clamping piece 33. In this way, by arranging the transferring slide plate 31, the sliding movement of the transferring slide plate 31 on the second track 34 can drive the clamping piece 33 to reciprocate away from the conveying device 4, so as to realize the discharging and transferring of the whole material frame 8; by arranging the second driving structure 32, the second driving structure 32 controls the lifting movement of the clamping piece 33, so that the clamping piece 33 can reciprocate against the material frame 8 to complete the clamping operation of the material frame 8, and then the adjustment of the placement position of the material frame 8 is realized, so as to improve the accuracy of the stacking and placement of the material frame 8.

[0038] As shown in the drawings, Figures 1-5 As shown, in one of the embodiments, the clamping piece 33 comprises a lifting block 331, a connecting block 332, and two clamping blocks 333 used to clamp the material frame 8, one end of the lifting block 331 is drivingly connected to the second driving structure 32, the other end of the lifting block 331 is fixedly connected to the connecting block 332, and the two clamping blocks 333 are respectively and symmetrically arranged on the two sides of the connecting block 332 and can slide relative to the connecting block 332.

[0039] As shown in the drawings, Figures 1-5 As shown, in one of the embodiments, the workbench 1 is also rotatably installed with a material separating assembly 9, the material separating assembly 9 is arranged between the feeding assembly 2 and the transferring assembly 3, the material separating assembly 9 is provided with a second suction member 91 used to clamp and adsorb the aluminum profile, and a plurality of suction cups are also arranged on the second suction member 91. When the operator finds that there is aluminum profile that does not meet the requirements of the finished product in the material frame 8, the material separating assembly 9 can be operated to transfer the unqualified aluminum profile in the material frame 8 out of the material frame 8; when the aluminum profile is qualified, the material separating assembly 9 can also be used for the alignment and arrangement of the aluminum profile in the material frame 8.

[0040] As shown in the drawings, Figures 1-5As shown, in one of the embodiments, the positioning assembly 5 comprises a positioning slide plate 51, a mounting piece 52, a lifting cylinder 53, a positioning piece 54, and a locking structure 55 for fixing the material frame 8, the positioning slide plate 51 is slidingly assembled on the workbench 1, the mounting piece 52 is detachably fixed on the positioning slide plate 51, the lifting cylinder 53 is arranged on the mounting piece 52, the output end of the lifting cylinder 53 is in transmission connection with the positioning piece 54 and is used for controlling the lifting movement of the positioning piece 54, and the locking structure 55 is arranged at the top of the positioning piece 54. By arranging the lifting cylinder 53, the lifting cylinder 53 drives the lifting movement of the mounting positioning piece 54, so as to adjust the placement height of the material frame 8 on the mounting positioning piece 54, which facilitates the subsequent transfer of the material frame 8 by the placement assembly 6, thereby improving the accuracy of the stacking and placement of the material frame 8.

[0041] As shown in the drawings, Figures 1-5 As shown, in one of the embodiments, the locking structure 55 comprises a convex strip 551, a convex block 552, and an abutting rod 553 slidingly inserted on the convex block 552, the convex strip 551 is arranged at one end of the positioning piece 54, the convex block 552 is fixed at the other end of the positioning piece 54, the convex strip 551 is embedded with the bottom of one side wall of the material frame 8, and the abutting rod 553 is used for abutting the other side wall of the material frame 8. The stability of the material frame 8 placed on the mounting positioning piece 54 is improved.

[0042] As shown in the drawings, Figures 1-5 As shown, in one of the embodiments, the placement assembly 6 comprises a placement slide plate 62, a third driving structure 63, a clamping piece placement clamp 61, and a placement guide rail 64 located above the transportation guide rail 11, the placement guide rail 64 is installed on the workbench 1, the placement slide plate 62 is slidingly assembled on the placement guide rail 64, the third driving structure 63 is installed on the placement slide plate 62, the output end of the third driving structure 63 is in transmission connection with the clamping piece placement clamp 61 and is used for controlling the lifting movement of the clamping piece placement clamp 61, and two clamping blocks 611 for cooperating with the clamping of the material frame 8 are symmetrically arranged on the clamping piece placement clamp 61. In this way, by arranging the placement slide plate 62, the sliding of the placement slide plate 62 on the placement guide rail 64 can drive the placement clamp 61 to reciprocate away from the positioning assembly 5, so as to realize the stacking and placement of the material frame 8 as a whole; by arranging the third driving structure 63, the third driving structure 63 controls the lifting movement of the placement clamp 61, so that the two clamping blocks 611 can reciprocally abut the material frame 8, complete the clamping operation of the material frame 8, and then realize the adjustment of the placement position of the material frame 8, thereby improving the accuracy of the stacking and placement of the material frame 8.

[0043] Specifically, the placement guide rail 64 is arranged in a horizontal direction.

[0044] As shown in the drawings, Figures 1-5As shown in the drawings, in one embodiment, the workbench 1 is further provided with a feeding conveyor belt 12, the surface of the feeding conveyor belt 12 is provided with suction holes, the feeding conveyor belt 12 is provided with ferromagnetic metal, the suction holes are arranged in a matrix, the ferromagnetic metal is provided as ferromagnetic wire, and the ferromagnetic metal is arranged alternately with the suction holes.

[0045] Further, the workbench 1 is provided with a suction device at a position corresponding to the bottom of the feeding conveyor belt 12, the suction device is provided with a vacuum groove and a magnet, the vacuum groove is arranged corresponding to the suction holes of the feeding conveyor belt 12, and the magnet is arranged corresponding to the ferromagnetic metal of the feeding conveyor belt 12. When transporting the aluminum profile, the vacuum groove can suck the aluminum profile on the conveying belt body through the suction holes, thereby facilitating the transportation of the aluminum profile and improving the stability of the aluminum profile during transportation.

[0046] As shown in the drawings, Figures 1-8 In one embodiment, the material frame 8 is provided with a fixing device 81 for fixing the aluminum profile, the fixing device 81 includes a driving motor 811, a lead screw 812, a first fixing member 813, a second fixing member 814, and a fixing plate 815 fixed to the bottom of the material frame 8, one end of the fixing plate 815 is provided with an adjusting track 8151, and the bottom of the first fixing member 813 is provided with a sliding base slidingly assembled on the adjusting track 8151.

[0047] As shown in the drawings, Figures 6-8 Further, the bottom of the first fixing member 813 is further provided with a threaded shaft seat 816, the other end of the fixing plate 815 is provided with a rotating shaft seat 817, the driving motor 811 is arranged on the fixing plate 815, the output end of the driving motor 811 is in transmission connection with the lead screw 812, one end of the lead screw 812 is rotatably inserted into the rotating shaft seat 817, and the other end of the lead screw 812 is in threaded connection with the threaded shaft seat 816. By arranging the driving motor 811, the driving motor 811 drives the rotation of the lead screw 812, thereby driving the first fixing member 813 to reciprocally slide through the threaded connection between the lead screw 812 and the threaded shaft seat 816, so that the first fixing member 813 can reciprocally move away from and close to the second fixing member 814, thereby adjusting the distance between the two, which is conducive to adapting to aluminum profiles of different sizes.

[0048] As shown in the drawings, Figures 6-8Further, the first fixing member 813 and the second fixing member 814 have the same structure, the first fixing member 813 comprises a supporting block 8131, a sliding rod 8132, a sliding block 8133 and an embedded block 8134, the sliding base is fixed at the bottom of the supporting block 8131, the sliding rod 8132 is arranged at the top of the supporting block 8131, the sliding rod 8132 is slidably connected with the sliding block 8133 at both ends, the embedded block 8134 is detachably arranged on each sliding block 8133, the embedded block 8134 is provided with an embedded part at the abutting position with the aluminum profile, the two embedded parts are oppositely arranged and the fixing space for fixing the aluminum profile is formed between the two embedded parts. By arranging the fixing space, the aluminum profile is fixed, the stability of the aluminum profile placed in the material frame 8 is improved, the deviation or even falling of the aluminum profile during the transportation of the material frame 8 is avoided, and the normal production and processing efficiency is avoided.

[0049] The technical features of the above-mentioned embodiments can be combined arbitrarily, in order to make the description simple, not all possible combinations of the technical features in the above-mentioned embodiments are described, however, as long as the combination of the technical features does not exist contradictory, it should be considered that it is within the scope of the present application.

[0050] The above-mentioned embodiments only express several embodiments of the present application, the description is more specific and detailed, but it should not be understood as the limitation of the scope of the present application. It should be pointed out that for ordinary skilled in the art, without departing from the concept of the present application, a number of modifications and improvements can be made, which belong to the protection scope of the present application. Therefore, the protection scope of the present application patent should be subject to the appended claims.

Claims

1. An aluminum profile material frame stacking device, characterized in that, include: A workbench is provided, on which a feeding assembly, a transfer assembly, and a transport device for transporting a material frame are installed. The feeding assembly is slidably fitted with a feeding clamp for placing aluminum profiles into the material frame on the transport device. A stacking mechanism includes a positioning component, a placement component, and a stacking plate slidably mounted on the worktable. The transfer component is used to discharge the material frame to the positioning component. The placement component is slidably mounted with a placement clamp for placing the material frame on the positioning component onto the stacking plate. The stacking plate can move up and down relative to the worktable. The feeding assembly includes a feeding slide plate, a first drive structure, and a first track mounted on the workbench. The first track is located at the feeding end of the transport device. The feeding slide plate is slidably connected to the first track. The first drive structure is mounted on the feeding slide plate and is used to control the lifting and lowering movement of the feeding clamp. The feeding clamp includes a transmission component, a lifting component, and a first suction component. The transmission component is drivenly connected to the first driving structure. One end of the lifting component is slidably mounted on the transmission component. The first suction component is detachably connected to the other end of the lifting component. The first suction component is provided with multiple suction cups for abutting and adsorbing the aluminum profile. The transfer assembly includes a transfer slide plate, a second driving structure, a clamping component, and a second track mounted on the workbench. The second track is located at the discharge end of the transport device. The transfer slide plate is slidably connected to the second track. The second driving structure is mounted on the transfer slide plate and is drivenly connected to the clamping component and used to control the lifting movement of the clamping component. The clamping component includes a lifting block, a connecting block, and two clamping blocks for cooperating to clamp the material frame. One end of the lifting block is drivenly connected to the second driving structure, and the other end of the lifting block is fixedly connected to the connecting block. The two clamping blocks are symmetrically arranged on both sides of the connecting block, and the clamping blocks can slide relative to the connecting block. The positioning assembly includes a positioning slide plate, a mounting component, a lifting cylinder, a positioning element, and a locking structure for fixing the material frame. The positioning slide plate is slidably mounted on the worktable. The mounting component is detachably fixed on the positioning slide plate. The lifting cylinder is mounted on the mounting component. The output end of the lifting cylinder is connected to the positioning element and is used to control the lifting movement of the positioning element. The locking structure is located on the top of the positioning element. The locking structure includes a protrusion, a protrusion, and an abutment rod slidably inserted into the protrusion. The protrusion is mounted on one end of the positioning element, and the protrusion is fixed to the other end of the positioning element. The protrusion is engaged with the bottom of one side wall of the material frame, and the abutment rod is used to abut against the other side wall of the material frame.

2. The aluminum profile material frame stacking equipment according to claim 1, characterized in that, The workbench is provided with a transport guide rail; the transport device includes a transport plate, multiple limiting frames and a slider that is slidably mounted on the transport guide rail. The transport plate is mounted on the slider, and the multiple limiting frames are spaced apart on the upper surface of the transport plate. Each limiting frame is used to place and limit the material frame.

3. The aluminum profile material frame stacking equipment according to claim 1, characterized in that, A material distribution component is also rotatably mounted on the worktable. The material distribution component is located between the feeding component and the transfer component. The material distribution component is provided with a second adsorption component for clamping and adsorbing the aluminum profile. The second adsorption component is also provided with a plurality of suction cups.

4. The aluminum profile material frame stacking equipment according to claim 2, characterized in that, The placement assembly includes a placement slide plate, a third drive structure, and a placement guide rail located above the transport guide rail. The placement guide rail is mounted on the worktable, the placement slide plate is slidably mounted on the placement guide rail, the third drive structure is mounted on the placement slide plate, and the output end of the third drive structure is connected to the placement clamp for controlling the lifting and lowering movement of the placement clamp. Two clamping blocks are symmetrically arranged on the placement clamp for cooperating to clamp the material frame.

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