Novel retractable material receiving platform

CN224727722UActive Publication Date: 2026-09-08GUANGZHOU JINGXIN ELECTROMECHANICAL CO LTD +1
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Patent Information

Application Number
CN202522144304.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-10-10
Publication Date
2026-09-08
Estimated Expiration
2035-10-10

AI Technical Summary

Technical Problem

然而,当生产场景面临一些环境限制或者场地空间受限时,操作人员往往无法顺利进入指定取件区域开展作业,从而导致生产流程中断,影响整体生产效率

Benefits of technology

[0014] Compared with the prior art, the present invention has at least the following beneficial effects: The present invention proposes a practical new telescopic receiving platform, which can realize the automatic transport of items in a limited space, thereby greatly improving production efficiency and reducing labor costs.

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Abstract

This utility model discloses a novel telescopic receiving platform, comprising a frame, a first transmission structure, a lower bracket, a second transmission structure, and an upper bracket. The lower bracket is mounted on the frame via the first transmission structure, and the upper bracket is mounted on the lower bracket via the second transmission structure. The lower bracket can move relative to the frame under the action of the first transmission structure, and the upper bracket can move on the lower bracket under the action of the second transmission structure. The lower bracket is formed by splicing aluminum profiles. The first transmission structure includes a lower guide rail, a lower slider, and an extension drive cylinder. The lower slider is fixedly mounted on both sides of the frame, and the lower guide rail is fixedly mounted on both sides of the lower bracket. The lower guide rail and the lower slider are slidably connected. This utility model provides a novel telescopic receiving platform that enables automatic material handling in confined spaces, thereby significantly improving production efficiency and reducing labor costs.
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Description

Technical Field

[0001] This utility model relates to the field of telescopic receiving platform technology, and in particular to a practical new telescopic receiving platform. Background Technology

[0002] In the current automotive carpet production process, the unloading and picking of finished products mainly relies on manual operation. However, when the production environment faces certain environmental limitations or space constraints, operators often cannot smoothly enter the designated picking area to carry out their work, leading to production interruptions and affecting overall production efficiency. This existing technology, which mainly relies on manual operation, has the following drawbacks: First, the material handling operation is overly dependent on manual labor, which not only increases the company's labor costs, but also makes it difficult to guarantee the efficiency and quality of material handling due to the variability of manual operation. Second, when workers enter relatively complex or severely restricted working environments, they are prone to safety risks such as mechanical collisions and environmental hazards, making it difficult to guarantee operational safety. Third, the existing technology cannot achieve precise point-to-point material transfer within a limited distance, making it difficult to meet the requirements of precise and efficient material transfer paths in automated production systems.

[0003] Therefore, it is necessary to improve existing technologies. Utility Model Content

[0004] This utility model aims to at least partially solve one of the problems existing in the prior art. To this end, this utility model proposes a practical new telescopic receiving platform that can realize the automatic transport of items in a limited space.

[0005] The above objective is achieved through the following technical solution: A novel telescopic receiving platform includes a frame, a first transmission structure, a lower bracket, a second transmission structure, and an upper bracket. The lower bracket is mounted on the frame via the first transmission structure, and the upper bracket is mounted on the lower bracket via the second transmission structure. The lower bracket can move relative to the frame under the action of the first transmission structure, and the upper bracket can move on the lower bracket under the action of the second transmission structure. The lower bracket is formed by splicing aluminum profiles and is rectangular. The first transmission structure includes a lower guide rail, a lower slider and an extension drive cylinder. The lower slider is fixedly installed on both sides of the frame. The lower guide rail is fixedly installed on both sides of the lower bracket. The lower guide rail and the lower slider are slidably connected. The extension drive cylinder is fixedly installed on the frame, and a limiting member is provided on the end of the lower bracket away from the extension drive cylinder. The drive rod of the extension drive cylinder is connected to the limiting member.

[0006] In some embodiments, the second transmission structure includes a synchronization structure and a synchronization pulley tensioning assembly. The synchronization structure includes a first synchronization pulley, a second synchronization pulley, and a synchronization belt. The synchronization pulley tensioning assembly includes a first synchronization pulley fixing tensioning structure and a second synchronization pulley fixing tensioning structure. The first synchronization pulley fixing tensioning structure is disposed on one side of the limiting member and on the lower bracket. The first synchronization pulley is mounted on the first synchronization pulley fixing tensioning structure. The second synchronization pulley fixing tensioning structure is disposed on one side of the extended drive cylinder and on the frame. The second synchronization pulley is mounted on the second synchronization pulley fixing tensioning structure. The synchronization belt connects the first synchronization pulley and the second synchronization pulley.

[0007] In some embodiments, the synchronization structure further includes a lower belt fixing part and an upper belt fixing part, the lower belt fixing part being disposed on the frame, the upper belt fixing part being disposed on the upper bracket, and the synchronization belt passing through the lower belt fixing part and the upper belt fixing part respectively.

[0008] In some embodiments, the second transmission structure further includes an upper slide rail and an upper slider. The upper slider is provided on both sides of the upper bracket, and the upper slide rail is provided on the lower bracket. The upper slide rail and the upper slider are slidably connected.

[0009] In some embodiments, the upper bracket is provided with a plurality of connecting rods.

[0010] In some embodiments, the lower bracket is provided with a reinforcing connection.

[0011] In some embodiments, the frame is provided with a reinforcing bracket.

[0012] In some embodiments, the bottom of the frame is provided with a plurality of casters, and foot brakes are provided on the casters.

[0013] In some embodiments, handrails are provided on both sides of the frame.

[0014] Compared with the prior art, the present invention has at least the following beneficial effects: The present invention proposes a practical new telescopic receiving platform, which can realize the automatic transport of items in a limited space, thereby greatly improving production efficiency and reducing labor costs. Attached Figure Description

[0015] Figure 1This is a three-dimensional schematic diagram (extended state) of the telescopic receiving platform in the embodiment. Figure 2 This is a top view (extended state) of the telescopic receiving platform in the embodiment. Figure 3 This is a three-dimensional schematic diagram of the telescopic receiving platform in the embodiment (in the retracted state); Figure 4 This is a top view (retracted state) of the telescopic receiving platform in the embodiment. Figure 5 This is the front view of the telescopic receiving platform in the embodiment; Figure 6 This is a left view (receiving state) of the telescopic receiving platform in the embodiment. Figure 7 This is a left view (discharge state) of the telescopic receiving platform in the embodiment. Figure 8 This is a three-dimensional schematic diagram of the telescopic receiving platform (item placement) in the embodiment.

[0016] In the diagram: 1. Frame; 11. Reinforcing bracket; 12. Casters; 13. Handrail; 2. First transmission structure; 21. Lower guide rail; 22. Lower slider; 23. Extension drive cylinder; 231. Drive rod; 3. Lower bracket; 31. Limiting component; 32. Reinforcing connection; 4. Second transmission structure; 41. Synchronization structure; 411. First synchronous pulley; 412. Second synchronous pulley; 413. Synchronous belt; 414. Lower belt fixing part; 415. Upper belt fixing part; 42. Synchronous pulley tensioning assembly; 421. First synchronous pulley fixing and tensioning structure; 422. Second synchronous pulley fixing and tensioning structure; 43. Upper slide rail; 44. Upper slider; 5. Upper bracket; 51. Connecting rod. Detailed Implementation

[0017] The following embodiments illustrate the present invention, but the present invention is not limited to these embodiments. Modifications to the specific implementation of the present invention or equivalent substitutions for some technical features, without departing from the spirit of the present invention, should all be covered within the scope of the technical solution claimed by the present invention.

[0018] like Figures 1 to 5 As shown, this embodiment proposes a practical new telescopic receiving platform, including a frame 1, a first transmission structure 2, a lower bracket 3, a second transmission structure 4, and an upper bracket 5. The lower bracket 3 is mounted on the frame 1 via the first transmission structure 2, and the upper bracket 5 is mounted on the lower bracket 3 via the second transmission structure 4. The lower bracket 3 can move relative to the frame 1 under the action of the first transmission structure 2, and the upper bracket 5 can move on the lower bracket 3 under the action of the second transmission structure 4. The lower bracket 3 is formed by splicing aluminum profiles and is rectangular. The first transmission structure 2 includes a lower guide rail 21, a lower slider 22 and an extension drive cylinder 23. The lower slider 22 is fixedly arranged on both sides of the frame 1, and the lower guide rail 21 is fixedly arranged on both sides of the lower bracket 3. The lower guide rail 21 and the lower slider 22 are slidably connected. The extension drive cylinder 23 is fixedly installed on the frame 1. A limiting member 31 is provided on the end of the lower bracket 3 away from the extension drive cylinder 23. The drive rod 231 of the extension drive cylinder 23 is connected to the limiting member 31. When the drive rod 231 of the extension drive cylinder 23 extends, the lower bracket 3 moves as a whole, and then the upper bracket 5 moves together under the action of the second transmission structure 4.

[0019] This utility model proposes a practical new telescopic material receiving platform, which can realize the automatic transport of items in a limited space, thereby greatly improving production efficiency and reducing labor costs.

[0020] Furthermore, the second transmission structure 4 includes a synchronization structure 41 and a synchronization pulley tensioning assembly 42. The synchronization structure 41 includes a first synchronization pulley 411, a second synchronization pulley 412, and a synchronization belt 413. The synchronization pulley tensioning assembly 42 includes a first synchronization pulley fixing tensioning structure 421 and a second synchronization pulley fixing tensioning structure 422. The first synchronization pulley fixing tensioning structure 421 is disposed on one side of the limiting member 31 and on the lower bracket 3, and the first synchronization pulley 411 is mounted on the first synchronization pulley fixing tensioning structure 421. The second synchronization pulley fixing tensioning structure 422 is disposed on one side of the extended drive cylinder 23 and on the frame 1, and the second synchronization pulley 412 is mounted on the second synchronization pulley fixing tensioning structure 422. The synchronization belt 413 connects the first synchronization pulley 411 and the second synchronization pulley 412. Under the action of the synchronization structure 41, the power of the first transmission structure 2 can be transmitted to the second transmission structure 4. The synchronous pulley tensioning assembly 42 allows workers to adjust the tension of the first synchronous pulley 411 and the second synchronous pulley 412 at any time, ensuring the precise connection of the first synchronous pulley 411, the second synchronous pulley 412 and the synchronous belt 413.

[0021] Specifically, the synchronization structure 41 further includes a lower belt fixing part 414 and an upper belt fixing part 415. The lower belt fixing part 414 is disposed on the frame 1, and the upper belt fixing part 415 is disposed on the upper bracket 5. The synchronization belt 413 passes through the lower belt fixing part 414 and the upper belt fixing part 415 respectively. Since the lower belt fixing part 414 is fixed on the frame 1 and the upper belt fixing part 415 is fixed on the upper bracket 5, the upper bracket 5 can move with the lower bracket 3 under the power transmitted from the first transmission structure 2.

[0022] Furthermore, the second transmission structure 4 also includes an upper slide rail 43 and an upper slider 44. The upper slider 44 is respectively provided on both sides of the upper bracket 5, and the upper slide rail 43 is respectively provided on the lower bracket 3. The upper slide rail 43 and the upper slider 44 are slidably connected. Thus, the upper bracket 5 can slide smoothly on the lower bracket 3.

[0023] like Figure 6 and Figure 7 As shown, when the upper and lower molds open, the item can be transported out between them. When the upper and lower molds close, the lower bracket 3 and the upper bracket 5 are on the outside, thus avoiding the upper and lower molds. This not only reduces the workspace but also automates the receiving and transport of items at designated locations, thereby improving production efficiency and reducing labor costs.

[0024] like Figure 8 As shown, the upper bracket 5 is provided with several connecting rods 51. The connecting rods 51 make the upper bracket 5 a receiving rack, which can hold box items, panels, etc., and can hold various items according to the user's needs.

[0025] Furthermore, the lower bracket 3 is provided with a reinforcing connection part 32. The reinforcing connection part 32 makes the lower bracket 3 more robust and prevents it from deforming or being damaged due to the expansion and contraction of the upper bracket 5 or the placement of heavy objects.

[0026] Furthermore, a reinforcing bracket 11 is provided on the frame 1. The reinforcing bracket 11 can enhance the stability of the frame 1, especially when the telescopic receiving platform is in the extended receiving state, thus maintaining the balance of the entire machine.

[0027] Specifically, the bottom of the frame 1 is equipped with several casters 12, and foot brakes are installed on the casters 12. This allows the operator to move the telescopic receiving platform to a suitable location and fix it in place as needed.

[0028] Furthermore, handrails 13 are provided on both sides of the frame 1. The cooperation between the handrails 13 and the casters 12 makes it convenient for workers to push the telescopic receiving platform.

[0029] The above descriptions are merely some embodiments of this utility model. For those skilled in the art, various modifications and improvements can be made without departing from the inventive concept of this utility model, and these all fall within the protection scope of this utility model.

Claims

1. A novel telescopic receiving platform, characterized in that: The system includes a frame (1), a first transmission structure (2), a lower bracket (3), a second transmission structure (4), and an upper bracket (5). The lower bracket (3) is mounted on the frame (1) via the first transmission structure (2), and the upper bracket (5) is mounted on the lower bracket (3) via the second transmission structure (4). The lower bracket (3) can move relative to the frame (1) under the action of the first transmission structure (2), and the upper bracket (5) can move on the lower bracket (3) under the action of the second transmission structure (4). The lower bracket (3) is formed by splicing aluminum profiles and is rectangular. The first transmission structure (2) includes a lower guide rail (21), a lower slider (22) and an extension drive cylinder (23). The lower slider (22) is fixedly installed on both sides of the frame (1), and the lower guide rail (21) is fixedly installed on both sides of the lower bracket (3). The lower guide rail (21) and the lower slider (22) are slidably connected. The extension drive cylinder (23) is fixedly installed on the frame (1), and a limiting member (31) is provided on the end of the lower bracket (3) away from the extension drive cylinder (23). The drive rod (231) of the extension drive cylinder (23) is connected to the limiting member (31).

2. The novel telescopic receiving platform according to claim 1, characterized in that: The second transmission structure (4) includes a synchronization structure (41) and a synchronization pulley tensioning assembly (42). The synchronization structure (41) includes a first synchronization pulley (411), a second synchronization pulley (412), and a synchronization belt (413). The synchronization pulley tensioning assembly (42) includes a first synchronization pulley fixed tensioning structure (421) and a second synchronization pulley fixed tensioning structure (422). The first synchronization pulley fixed tensioning structure (421) is disposed on the side of the limiting member (31) and on the lower bracket (3). The first synchronization pulley (411) is mounted on the first synchronization pulley fixed tensioning structure (421). The second synchronization pulley fixed tensioning structure (422) is disposed on the side of the extended drive cylinder (23) and on the frame (1). The second synchronization pulley (412) is mounted on the second synchronization pulley fixed tensioning structure (422). The synchronization belt (413) is connected between the first synchronization pulley (411) and the second synchronization pulley (412).

3. A novel telescopic receiving platform according to claim 2, characterized in that: The synchronization structure (41) further includes a lower belt fixing part (414) and an upper belt fixing part (415). The lower belt fixing part (414) is disposed on the frame (1), and the upper belt fixing part (415) is disposed on the upper bracket (5). The synchronization belt (413) passes through the lower belt fixing part (414) and the upper belt fixing part (415) respectively.

4. A novel telescopic receiving platform according to claim 1, 2, or 3, characterized in that: The second transmission structure (4) further includes an upper slide rail (43) and an upper slider (44). The upper slider (44) is provided on both sides of the upper bracket (5), and the upper slide rail (43) is provided on the lower bracket (3). The upper slide rail (43) and the upper slider (44) are slidably connected.

5. A novel telescopic receiving platform according to claim 1, characterized in that: The upper bracket (5) is provided with several connecting rods (51).

6. A novel telescopic receiving platform according to claim 1, characterized in that: The lower bracket (3) is provided with a reinforcing connection part (32).

7. A novel telescopic receiving platform according to claim 1, characterized in that: A reinforcing bracket (11) is provided on the frame (1).

8. A novel telescopic receiving platform according to claim 7, characterized in that: The bottom of the frame (1) is provided with several casters (12), and foot brakes are provided on the casters (12).

9. A novel telescopic receiving platform according to claim 8, characterized in that: Handrails (13) are provided on both sides of the frame (1).