Multifunctional conveying and storing device for aluminum profiles
By adjusting the components and using a motor-driven bidirectional threaded rod system, the problems of aluminum profile conveying misalignment and cumbersome storage were solved, achieving precise positioning and multi-functional conveying and storage, thus improving production efficiency.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- CHANGZHOU KAIHONG ALUMINIUM IND CO LTD
- Filing Date
- 2025-06-27
- Publication Date
- 2026-05-15
AI Technical Summary
Existing aluminum profile conveying devices cannot effectively constrain the direction of travel of aluminum profiles, which makes them prone to deviation during conveying. Furthermore, manual adjustment is required when changing aluminum profiles with different structures, and storage after conveying is cumbersome.
The system employs an adjustment assembly and a motor-driven bidirectional threaded rod system. By adjusting the position of the tilting plate and rollers through the threaded sleeve and fixing block, it achieves precise positioning and guidance of aluminum profiles and integrates conveying, steering and storage functions.
It improves the accuracy and efficiency of aluminum profile conveying, reduces the need for manual adjustments, has a compact structure, occupies little space, and improves production efficiency.
Smart Images

Figure CN224241393U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of aluminum profile conveying devices, and more specifically, to a multifunctional conveying and storage device for aluminum profiles. Background Technology
[0002] Aluminum profiles are one of the most widely used non-ferrous metal structural materials in industry. Aluminum alloy profiles are widely used in aviation, aerospace, automotive, machinery manufacturing, shipbuilding, construction, decoration, and chemical industries. With the rapid development of science and technology and the industrial economy in recent years, the demand for aluminum alloy welded structural components has been increasing. However, the supporting equipment for conveying and storing aluminum profile structural components of various specifications in various fields has not been improved.
[0003] 1. Existing aluminum profile conveying devices cannot effectively constrain the direction of travel of aluminum profiles during conveying, which makes the aluminum profiles prone to deviation during conveying, thus affecting the conveying position of the aluminum profiles;
[0004] 2. After replacing the aluminum profile with a different structure (for example, the new structure has a convex corner), it is expected that it can rotate a certain angle when it enters the next stage through the conveyor belt to facilitate operations such as packing. At this time, it is necessary for a person to stand next to it and make adjustments continuously.
[0005] 3. Currently, aluminum profiles are mostly stored manually after being transported, which is quite cumbersome. A multi-functional transport and storage device for aluminum profiles is needed to solve this problem. Utility Model Content
[0006] The purpose of this invention is to provide a multifunctional conveying and storage device for aluminum profiles to solve the problems mentioned in the background art.
[0007] To achieve the above objectives, this utility model provides the following technical solution: a multifunctional conveying and storage device for aluminum profiles, comprising a first support leg located at the bottom of the entire device, the first support leg being fixedly connected to each other by a crossbeam, a first conveying device mounted on the upper end of the first support leg, at least two sets of adjusting components mounted on the first conveying device, a feeding box fixedly mounted on one side of the first conveying device, a second conveying device disposed below the feeding box, and channel openings communicating with the first and second conveying devices respectively provided on the side and bottom ends of the feeding box;
[0008] A fixing frame is installed on the adjusting component, a motor is installed on one side of the fixing frame, a bidirectional threaded rod is installed at the output end of the motor, and a threaded sleeve is threadedly connected to the bidirectional threaded rod, with the threaded sleeves symmetrically distributed on both sides of the bidirectional threaded rod.
[0009] By adopting the above technical solution, when the bidirectional threaded rod rotates around its axis, the component that engages with the left-hand thread (such as a threaded sleeve) will move to the left along the rod body, while the component that engages with the right-hand thread will move to the right. By changing the direction of rotation, the two components can move towards each other or in opposite directions.
[0010] A fixing block is fixedly installed on the threaded sleeve, and a slot is opened on the fixing frame. An inclined plate is installed through the slot by the fixing block, and a frame is fixedly installed on the inclined plate.
[0011] Connecting blocks are installed at the upper and lower ends of the frame. The connecting blocks are rotatably connected by a rotating shaft and bearings. Rollers for positioning and guiding the aluminum profile are installed on the rotating shaft.
[0012] By adopting the above technical solution, after adjusting the position of the tilt plate and roller of each set of adjustment components according to the size and structure of the aluminum profile, the function of front-end positioning and rear-end fine adjustment of the aluminum profile on the conveyor belt can be realized.
[0013] A slider is fixedly installed at the bottom end of the threaded sleeve, and a sliding groove is provided inside the fixing frame. The sliding groove is slidably connected to the slider at the bottom end of the threaded sleeve.
[0014] By adopting the above technical solution, the slider can cooperate with the sliding, so that the single-rod sliding of the threaded sleeve on the threaded rod becomes a double-limit synchronous sliding. The advantage is that if the threaded rod deviates in angle after long-term operation, the corresponding slider that moves synchronously in the groove will be deviated and jammed. At this time, the operator is reminded to check the level of the threaded rod, which can correct the error in time and reduce inaccurate delivery.
[0015] Secondly, it can distribute the force on the threaded rod during operation, making the overall structure more stable and ensuring the accuracy of delivery during long-term operation.
[0016] Furthermore, the second conveying device of this utility model has several storage boxes placed on it, and a second support leg is fixedly installed at the bottom of the second conveying device.
[0017] Furthermore, the material feeding slide is provided in the channel opening at the side end of the feeding box of the present invention, and the material feeding slide is connected to the tail end of the first conveying device.
[0018] Furthermore, the storage box of this utility model is fixedly installed with a partition, which divides the storage box into a storage cavity for placing aluminum profiles.
[0019] Furthermore, the first conveying device of this utility model has a panel fixedly installed on its front side. The panel controls the motor, the first conveying device, and the second conveying device. Through electrical connection, it can perform simple start-up and forward / reverse functions.
[0020] Furthermore, the material feeding ramp described in this utility model is a fixed inclined plate fixedly installed on the feeding box. The fixed inclined plate has a groove to facilitate the sliding of the aluminum profile. A material discharge channel is installed on one side of the groove, and a baffle is provided on one side of the material discharge channel.
[0021] Compared with the prior art, the present invention has the following beneficial effects:
[0022] 1. This utility model discloses a multi-functional conveying and storage device for aluminum profiles. The first conveying device conveys the aluminum profiles to be conveyed to the unloading channel of the unloading box. Then, a storage box for storing the aluminum profiles is placed on the second conveying device at the bottom of the unloading box. The position of the aluminum profiles is adjusted by setting an adjustment component. The position of the rollers on the inclined plate is adjusted according to the size of the aluminum profile by the motor drive on the adjustment component, so as to ensure that the aluminum profiles are constrained to the set travel direction on the first conveying device, thereby improving the conveying accuracy.
[0023] 2. This utility model can provide the same or different setting methods for different adjustment components at the front and rear ends of the first conveying device. It can be set to a unified mode or a special mode at the rear end according to the actual structure of the aluminum profile, and can cleverly use blocking and transformation functions for aluminum profiles with irregular structures.
[0024] 3. This utility model integrates conveying, guiding control, steering storage and packing conveying into one unit. The overall structure is compact, occupies little space, and is flexible and convenient to adjust, which greatly improves production efficiency. Attached Figure Description
[0025] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0026] Figure 1 This is a structural schematic diagram based on the present invention;
[0027] Figure 2 This is a utility model Figure 1 Enlarged structural diagram at point A;
[0028] Figure 3 This is a schematic diagram of the structure of the adjustment component in this utility model;
[0029] Figure 4 This is a schematic diagram of the internal structure of the feeding box in this utility model.
[0030] Figure label:
[0031] 1. First support leg; 2. Crossbeam; 3. First conveying device; 4. Adjustment component; 5. Panel; 6. Feed box; 7. Feed ramp; 8. Storage box; 9. Partition; 10. Second conveying device; 12. Second support leg; 13. Inclined plate; 14. Frame; 15. Connecting block; 16. Rotating shaft; 17. Roller; 18. Motor; 19. Bidirectional threaded rod; 20. Threaded sleeve; 21. Fixing block; 22. Slider; 23. Slide groove; 24. Slot; 25. Fixing frame; 26. Fixing inclined plate; 27. Groove; 28. Discharge channel; 29. Baffle. Detailed Implementation
[0032] like Figures 1-4 The multifunctional conveying and storage device for aluminum profiles shown includes a first support leg 1, which is located at the bottom of the entire device. The first support legs 1 are fixedly connected to each other by a crossbeam 2. A first conveying device 3 is installed on the upper end of the first support leg 1. At least two sets of adjusting components 4 are installed on the first conveying device 3. A feeding box 6 is fixedly installed on one side of the first conveying device 3. A second conveying device 10 is arranged below the feeding box 6. The side and bottom ends of the feeding box 6 are respectively provided with channel openings communicating with the first conveying device 3 and the second conveying device 10.
[0033] A fixing frame 25 is installed on the adjusting component 4. A motor 18 is installed on one side of the fixing frame 25. A bidirectional threaded rod 19 is installed at the output end of the motor 18. A threaded sleeve 20 is threadedly connected to the bidirectional threaded rod 19, and the threaded sleeves 20 are symmetrically distributed on both sides of the bidirectional threaded rod 19.
[0034] A fixing block 21 is fixedly installed on the threaded sleeve 20. A slot 24 is provided on the fixing frame 25, and an inclined plate 13 is installed through the slot 24 via the fixing block 21. A frame 14 is fixedly installed on the inclined plate 13. Connecting blocks 15 are installed at the upper and lower ends of the frame 14. The connecting blocks 15 are rotatably connected to each other through a rotating shaft 16 and a bearing. A roller 17 for positioning and guiding the aluminum profile is installed on the rotating shaft 16. A slider 22 is fixedly installed at the bottom end of the threaded sleeve 20. A sliding groove 23 is provided in the fixing frame 25. The sliding groove 23 is slidably connected to the slider 22 at the bottom end of the threaded sleeve 20.
[0035] The second conveying device 10 has several storage boxes 8 placed on it, and a second support leg 12 is fixedly installed at the bottom of the second conveying device 10.
[0036] A material discharge ramp 7 is provided in the channel opening at the side end of the material discharge box 6, and the material discharge ramp 7 is connected to the tail end of the first conveying device 3.
[0037] A partition 9 is fixedly installed on the storage box 8, and the partition 9 divides it into storage cavities for placing aluminum profiles.
[0038] A panel 5 is fixedly installed on the front of the first conveying device 3, and the panel 5 controls the motor 18, the first conveying device 3, and the second conveying device 10.
[0039] The material feeding ramp 7 is a fixed inclined plate 26 fixedly installed on the material feeding box 6. The fixed inclined plate 26 has a groove 27 that facilitates the sliding of aluminum profiles. A material discharge channel 28 is installed on one side of the groove 27, and a baffle 29 is provided on one side of the material discharge channel 28.
[0040] Work process:
[0041] 1. Install the corresponding number of adjustment components 4 on the first conveying device 3 according to the actual situation, and adjust the settings according to the structural characteristics of the aluminum profile itself: drive the rotation of the bidirectional threaded rod 19 by the motor 18, and drive the threaded sleeve 20 to adjust the position of the roller on the inclined plate 13, so as to ensure that the aluminum profile is in the set position on the first conveying device 3 during the conveying process.
[0042] In the above process, the setting method of the different adjustment components 4 at the front and rear ends of the first conveying device 3 can be set to a unified mode or a special mode at the rear end according to the actual structure of the aluminum profile; in general, a unified mode setting at the front and rear is sufficient, so that the aluminum profile can move forward in a unified and stable manner along the specified path.
[0043] In special modes, for example, if the profile structure has a convex angle, but it is desired to rotate a certain angle to facilitate operations such as boxing when it enters the next stage via the conveyor belt, the front adjustment component 4 can be set to assist in precise guidance and transmission. In the rear adjustment component 4, the position of the roller on the inclined plate 13 can be adjusted to a special blocking and guiding position, so that the aluminum profile makes an angle rotation before sliding down into the unloading ramp at the tail end of the first conveyor device 3. This targeted and ingenious use can greatly reduce the workload of operators and improve production efficiency.
[0044] 2. The first conveying device 3 conveys the aluminum profiles to be conveyed to the unloading ramp 7 of the unloading box 6. Then, by placing a storage box 8 for storing the aluminum profiles on the second conveying device at the bottom of the unloading box 6, the entire device can convey and store aluminum profiles at the same time, freeing up labor and improving the efficiency of aluminum profile processing.
Claims
1. A multifunctional conveying and storage device for aluminum profiles, characterized in that: Includes a first support leg (1), which is located at the bottom of the entire device. The first support legs (1) are fixedly connected to each other by a crossbeam (2). A first conveying device (3) is installed on the upper end of the first support leg (1). At least two sets of adjusting components (4) are installed on the first conveying device (3). A feeding box (6) is fixedly installed on one side of the first conveying device (3). A second conveying device (10) is provided below the feeding box (6). The side and bottom ends of the feeding box (6) are respectively provided with channel openings that communicate with the first conveying device (3) and the second conveying device (10). A fixing frame (25) is installed on the adjusting component (4). A motor (18) is installed on one side of the fixing frame (25). A bidirectional threaded rod (19) is installed at the output end of the motor (18). A threaded sleeve (20) is threadedly connected to the bidirectional threaded rod (19), and the threaded sleeves (20) are symmetrically distributed on both sides of the bidirectional threaded rod (19). A fixing block (21) is fixedly installed on the threaded sleeve (20), and a slot (24) is opened on the fixing frame (25). An inclined plate (13) is installed through the slot (24) via the fixing block (21). A frame (14) is fixedly installed on the inclined plate (13). The frame (14) is equipped with connecting blocks (15) at the upper and lower ends. The connecting blocks (15) are rotatably connected by a rotating shaft (16) and a bearing. The rotating shaft (16) is equipped with a roller (17) for positioning and guiding the aluminum profile. A slider (22) is fixedly installed at the bottom end of the threaded sleeve (20), and a groove (23) is provided in the fixing frame (25). The groove (23) is slidably connected to the slider (22) at the bottom end of the threaded sleeve (20).
2. The multifunctional conveying and storage device for aluminum profiles according to claim 1, characterized in that: The second conveying device (10) has several storage boxes (8) placed on it, and a second support leg (12) is fixedly installed at the bottom of the second conveying device (10).
3. A multifunctional conveying and storage device for aluminum profiles according to claim 2, characterized in that: A material discharge ramp (7) is provided in the channel opening at the side end of the material discharge box (6), and the material discharge ramp (7) is connected to the tail end of the first conveying device (3).
4. A multifunctional conveying and storage device for aluminum profiles according to claim 2, characterized in that: The storage box (8) is fixedly installed with a partition (9), which is divided into a storage cavity for placing aluminum profiles.
5. A multifunctional conveying and storage device for aluminum profiles according to claim 1, characterized in that: The first conveying device (3) has a panel (5) fixedly installed on its front side. The panel (5) controls the motor (18), the first conveying device (3), and the second conveying device (10).
6. A multifunctional conveying and storage device for aluminum profiles according to claim 3, characterized in that: The material feeding ramp (7) is a fixed inclined plate (26) fixedly installed on the feeding box (6). The fixed inclined plate (26) has a groove (27) to facilitate the sliding of aluminum profiles. A discharge channel (28) is installed on one side of the groove (27), and a baffle (29) is provided on one side of the discharge channel (28).