A guide unloading device for aluminum profile processing

CN224618889UActive Publication Date: 2026-08-11CHENGDU AOLONG ALUMINUM CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-05-22
Publication Date
2026-08-11

AI Technical Summary

Technical Problem

[0003]挤压制成的铝型材通过传输带等进行传输,之后需要将其从传输带上卸下并装车转运,由于铝型材的长度较大,不方便快速将铝型材从传输带上向下导向卸料

Benefits of technology

1.本申请技术方案通过设置有两端高度均可以调整的导杆置于底座的上方,可以根据传输带高度和需要卸下的高度分别调整导杆的两端高度,使导杆倾斜置于传输带侧边之后,能够使铝型材从传输带上移下并置于导杆的表面向下导向滑去,实现快速卸料的目的。

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Abstract

This utility model relates to the field of aluminum profile unloading technology, and discloses a guiding unloading device for aluminum profile processing, including a base and guide rods. The guide rods are placed parallel to each other on top of the base, and multiple connecting rods are fixedly connected between the guide rods. A lifting rod is rotatably connected to one end of the bottom of the guide rod. A hollow rod is vertically fixed to the base surface at the bottom of the lifting rod. Side rods are welded to the base on both sides of the hollow rod. The bottom of the lifting rod can be slidably inserted into the interior of the hollow rod. A locking rod is threadedly connected to the upper surface of the front end of the hollow rod. This utility model's technical solution, by setting guide rods with adjustable height at both ends above the base, allows the height of both ends of the guide rods to be adjusted according to the height of the conveyor belt and the required unloading height. After the guide rods are tilted and placed on the side of the conveyor belt, the aluminum profiles can be moved off the conveyor belt and guided downwards on the surface of the guide rods, achieving the purpose of rapid unloading.
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Description

Technical Field

[0001] This utility model relates to the field of aluminum profile unloading technology, specifically a guide unloading device for aluminum profile processing. Background Technology

[0002] Aluminum profiles, also known as industrial aluminum extrusions or industrial aluminum alloy profiles, are alloy materials with aluminum as the main component. Aluminum rods are melted and extruded to obtain aluminum materials with different cross-sectional shapes. However, the mechanical properties and application fields of the industrial aluminum profiles produced vary depending on the proportion of alloys added. Generally speaking, industrial aluminum profiles refer to all aluminum profiles other than those used for building doors and windows, curtain walls, interior and exterior decoration, and building structures.

[0003] Extruded aluminum profiles are transported via conveyor belts, and then need to be unloaded from the conveyor belts and loaded onto trucks for transport. Due to the large length of the aluminum profiles, it is inconvenient to quickly guide and unload them from the conveyor belts. Therefore, we propose a guiding and unloading device for aluminum profile processing. Utility Model Content

[0004] The purpose of this utility model is to provide a guide unloading device for aluminum profile processing. By setting a guide rod with adjustable height at both ends above the base, the height of the two ends of the guide rod can be adjusted according to the height of the conveyor belt and the height to be unloaded. After the guide rod is tilted and placed on the side of the conveyor belt, the aluminum profile can be moved off the conveyor belt and placed on the surface of the guide rod to slide downwards, thereby achieving the purpose of rapid unloading and solving the problems mentioned in the background art.

[0005] To achieve the above objectives, this utility model provides the following technical solution: a guide unloading device for aluminum profile processing, comprising a base and guide rods. The guide rods are placed parallel to each other above the base, and multiple connecting rods are fixedly connected between the guide rods. A lifting rod is rotatably connected to one end of the bottom of the guide rod. A hollow rod is vertically fixed to the base surface at the bottom of the lifting rod. Side rods are welded to the base on both sides of the hollow rod. The bottom of the lifting rod can be slidably inserted into the interior of the hollow rod. A locking rod is threadedly connected to the upper surface of the front end of the hollow rod. The end of the locking rod penetrates into the interior of the hollow rod and abuts against the surface of the lifting rod. A support rod is rotatably connected to the bottom of the guide rod away from the lifting rod. A side groove is provided on the base surface below the support rod, and multiple parallel protrusions are evenly arranged on the surface of the side groove.

[0006] By adopting the above technical solution, after adjusting the height of both ends of the guide rod, the guide rod is placed on the side of the conveyor belt. The aluminum profile can be pushed to the top of the guide rod by a robotic arm or manually, and then guided down by gravity to unload the material, resulting in high unloading efficiency.

[0007] Optionally, a stop bar is provided on the surface of the guide bar above the support rod, and the stop bar is located above the end of the guide bar above the support rod.

[0008] By adopting the above technical solution, the aluminum profile will be blocked by the stop lever when it slides downward, thus preventing the aluminum profile from sliding down directly when it needs to be loaded onto the vehicle.

[0009] Optionally, a rubber sleeve is fixed to the outer ring of the stop lever, and the inner ring of the rubber sleeve is tightly attached to the outer surface of the stop lever.

[0010] By adopting the above technical solution, when the aluminum profile slides to the bottom, it will also have a buffering effect by contacting the stop bar through the rubber sleeve.

[0011] Optionally, the bottom of the stop lever is provided with a screw, and the guide rod surface at the bottom of the stop lever is provided with a screw groove, so that the stop lever can be detached and installed by screwing the screw into the screw groove.

[0012] By adopting the above technical solution, the stop bar can be removed. When there is no need to install it on the vehicle and the bottom of the guide bar is close to the ground, the stop bar can be removed and the aluminum profile can be slid directly to the ground.

[0013] Optionally, the front end surface of the lifting rod is provided with scale lines, which are evenly distributed on the surface of the lifting rod.

[0014] By adopting the above technical solution, it is convenient to simultaneously adjust the height of the two guide rods by means of the scale lines when adjusting the height of the lifting rod and the two guide rods.

[0015] Optionally, the base surface on the side of the side groove is provided with marking lines, which are aligned with the raised strips one by one.

[0016] By adopting the above technical solution, the marking line marks the convex strips at different positions, which makes it convenient to adjust the support rod to the side of the same convex strip and to adjust the bottom height of the two guide rods simultaneously.

[0017] Compared with the prior art, the beneficial effects of the technical solution of this application are as follows: 1. The technical solution of this application is to set up a guide rod with adjustable height at both ends, which is placed above the base. The height of the two ends of the guide rod can be adjusted according to the height of the conveyor belt and the height to be unloaded. After the guide rod is tilted and placed on the side of the conveyor belt, the aluminum profile can be moved off the conveyor belt and placed on the surface of the guide rod to slide downward, thereby achieving the purpose of rapid unloading.

[0018] 2. The technical solution of this application has a detachable stop bar on the upper surface of the lower end of the guide rod. The stop bar can block and buffer the sliding aluminum profile, and can also be removed for greater flexibility.

[0019] 3. The technical solution of this application has scale lines on the surface of the lifting rod and marking lines on the side of the side groove, which facilitates the synchronous adjustment of the height of the lifting rods on both sides and the synchronous adjustment of the bottom height of the guide rods on both sides. Attached Figure Description

[0020] Other features, objects, and advantages of this invention will become more apparent from the following detailed description of non-limiting embodiments with reference to the accompanying drawings: Figure 1 This is a schematic diagram of the overall structure of the guide unloading device for aluminum profile processing according to this utility model; Figure 2 This utility model relates to a guide unloading device for aluminum profile processing. Figure 1 Detailed structural diagram of point A in the diagram; Figure 3 This is a schematic diagram of the structure of the guide unloading device for aluminum profile processing after the stop bar has been removed.

[0021] In the diagram: 1. Base; 11. Side groove; 111. Raised strip; 112. Marking line; 2. Guide rod; 21. Lifting rod; 211. Scale line; 22. Support rod; 23. Connecting rod; 24. Screw groove; 3. Hollow rod; 31. Locking rod; 32. Side rod; 4. Stop rod; 41. Rubber sleeve; 42. Screw. Detailed Implementation

[0022] Please see Figure 1-3 This utility model provides a technical solution: a guide unloading device for aluminum profile processing, including a base 1 and guide rods 2. The guide rods 2 are placed parallel to each other above the base 1. Multiple connecting rods 23 are fixedly connected between the guide rods 2. The connecting rods 23 are connected between the two ends and the middle position of the guide rods 2, so that the two connecting rods 23 are connected into an integral structure.

[0023] The bottom left end of the guide rod 2 is rotatably connected to a lifting rod 21, and a hollow rod 3 is vertically fixed to the surface of the base 1 at the bottom of the lifting rod 21. Side rods 32 are welded to the base 1 on both sides of the hollow rod 3, so that the hollow rod 3 is stably fixed to the surface of the base 1 by the vertical rods. The bottom of the lifting rod 21 can slide into the interior of the hollow rod 3. When the height of the bottom of the lifting rod 21 is adjusted inside the hollow rod 3, the height of the left side of the guide rod 2 can be adjusted to match the height of the conveyor belt. In addition, the front end surface of the lifting rod 21 is provided with scale lines 211, which are evenly distributed on the surface of the lifting rod 21. When adjusting the height of the lifting rod 21, the scale lines 211 can be used to make synchronous adjustments.

[0024] A locking rod 31 is connected to the upper surface of the front end of the hollow rod 3 by a threaded connection. The front end of the locking rod 31 is provided with a handle to help drive the locking rod 31 to rotate with less effort. After the lifting rod 21 is adjusted into place, the locking rod 31 is tightened so that its end passes through the interior of the hollow rod 3 and abuts against the surface of the lifting rod 21, thereby locking the height of the lifting rod 21 and locking the height of the left side of the guide rod 2.

[0025] The bottom right end of the guide rod 2 is rotatably connected to a support rod 22, and the surface of the base 1 below the support rod 22 is provided with a side groove 11. The surface of the side groove 11 is evenly provided with multiple parallel protrusions 111. When the support rod 22 is supported by the side of different protrusions 111, the right side of the guide rod 2 can be supported at different heights to adapt to transport vehicles of different heights. When the guide rod 2 is not supported in the side groove 11, the right end of the guide rod 2 can be directly placed on the surface of the base 1 for support. Then the aluminum profile is pushed to the upper left side of the guide rod 2 and can be quickly guided to the right side and slid off under the action of gravity.

[0026] Marking lines 112 are provided on the surface of the base 1 on the side of the side groove 11. The marking lines 112 are aligned with the protrusions 111 one by one. The marking lines 112 can be used to easily support the support rods 22 at the bottom of the two guide rods 2 on the side of the protrusions 111 at the same position, so as to achieve the purpose of synchronous adjustment.

[0027] A stop bar 4 is also provided on the surface of the guide bar 2 above the support rod 22. The stop bar 4 is located above the end of the guide bar 2 above the support rod 22. A rubber sleeve 41 is fixed on the outer ring of the stop bar 4. The inner ring of the rubber sleeve 41 is close to the outer surface of the stop bar 4. When the aluminum profile slides to the right, it is buffered by the rubber sleeve 41 and comes into contact with the side of the stop bar 4, thus preventing the aluminum profile from sliding down directly and making it convenient to pick up the aluminum profile from below for loading.

[0028] To facilitate the direct support of the right end of the stop lever 4 on the surface of the base 1 and the direct guidance of the aluminum profile to the ground, a screw 42 is provided at the bottom of the stop lever 4. A screw groove 24 is provided on the surface of the guide rod 2 at the bottom of the stop lever 4. The stop lever 4 can be detached and installed by screwing the screw 42 into the screw groove 24. The stop lever 4 can be removed. When the right side of the guide rod 2 is supported on the surface of the base 1, the sliding aluminum profile can slide directly to the ground.

[0029] In use, place the base 1 to support the device on the side of the conveyor belt, and ensure that the guide rod 2 is perpendicular to the conveyor belt and close to its side. Loosen the locking rod 31 so that its end no longer touches the surface of the lifting rod 21, thereby adjusting the height of the left side of the guide rod 2 to match the height of the conveyor belt. Then, tighten the locking rod 31 so that it abuts against the outer surface of the lifting rod 21 to lock its height. Finally, rotate the support rod 22 so that its end supports the side of the protrusion 111 in the side groove 11 at a suitable position, thereby adjusting the height of the right side of the guide rod 2 to match the height of the conveyor belt. The height of the vehicle can be adjusted, or the right side of the guide rod 2 can be directly supported on the surface of the base 1. Then, with the help of a robotic arm or manually, the aluminum profile can be moved to the upper left side of the guide rod 2, so that it slides to the right under the guidance of gravity and the guide rod 2 and is eventually buffered and blocked on the side of the stop bar 4. Then, the aluminum profile can be picked up by a robotic arm or manually and loaded into the vehicle. When the right side of the guide rod 2 is directly supported on the surface of the base 1 and close to the ground without loading into the vehicle, the stop bar 4 can be rotated and removed. Then, there will be no stop bar 4 blocking the way, and the aluminum profile can slide directly to the ground.

Claims

1. A guide unloading device for aluminum profile processing, comprising a base (1) and a guide rod (2), characterized in that: The guide rods (2) are placed parallel to each other above the base (1). Multiple connecting rods (23) are fixed between the guide rods (2). A lifting rod (21) is rotatably connected to one end of the bottom of the guide rod (2). A hollow rod (3) is vertically fixed to the surface of the base (1) at the bottom of the lifting rod (21). Side rods (32) are welded to the base (1) on both sides of the hollow rod (3). The bottom of the lifting rod (21) can be slidably inserted into the interior of the hollow rod (3). A locking rod (31) is connected to the upper surface of the front end of the hollow rod (3) by a threaded connection. The end of the locking rod (31) penetrates into the interior of the hollow rod (3) and abuts against the surface of the lifting rod (21). The bottom of the guide rod (2) is rotatably connected to a support rod (22) at the end away from the lifting rod (21). The base (1) below the support rod (22) has a side groove (11) on its surface, and a plurality of parallel protrusions (111) are evenly arranged on the surface of the side groove (11).

2. The guide unloading device for aluminum profile processing according to claim 1, characterized in that: A stop bar (4) is provided on the surface of the guide rod (2) above the support rod (22), and the stop bar (4) is located above the end of the guide rod (2) above the support rod (22).

3. The guiding and unloading device for aluminum profile processing according to claim 2, characterized in that: The outer ring of the stop bar (4) is fitted with a rubber sleeve (41), and the inner ring of the rubber sleeve (41) is close to the outer surface of the stop bar (4).

4. The guiding and unloading device for aluminum profile processing according to claim 2, characterized in that: The bottom of the stop bar (4) is provided with a screw (42), and the surface of the guide rod (2) at the bottom of the stop bar (4) is provided with a screw groove (24). The stop bar (4) can be detachably installed by screwing the screw (42) into the screw groove (24).

5. The guide unloading device for aluminum profile processing according to claim 1, characterized in that: The front end surface of the lifting rod (21) is provided with scale lines (211), which are evenly distributed on the surface of the lifting rod (21).

6. The guiding and unloading device for aluminum profile processing according to claim 1, characterized in that: The base (1) on the side of the side groove (11) is provided with a marking line (112), which is aligned with the convex strip (111).