Hoisting device
By designing detachable lifting components and a lifting device with multiple sets of hanging notches, the problem of diversified lifting equipment for glass products of different sizes is solved, universal lifting of multi-size glass is achieved, transportation costs are reduced, and ease of operation and stability are improved.
Patent Information
- Application Number
- CN202422884213.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-26
- Publication Date
- 2025-10-28
- Estimated Expiration
- 2034-11-26
AI Technical Summary
Existing lifting equipment needs to be designed in different sizes according to the different sizes of glass products, resulting in equipment diversification, increased transportation costs and operational complexity.
A lifting device is designed, including a detachable lifting component and a storage component. Multiple sets of hanging notches are set at both ends of the main beam of the lifting component. By selecting different positions to hang the suspension parts, an adaptive accommodation space is formed. Combined with the adjustable storage component height and structural reinforcement, universal lifting of multiple sizes of glass can be achieved.
It improves the versatility and ease of operation of the lifting device, reduces the transportation cost caused by equipment diversification, and enhances the stability and convenience of lifting.
Smart Images

Figure CN223480592U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of hoisting equipment technology, and in particular to a hoisting device. Background Technology
[0002] When transporting glass products within the factory, forklifts are typically used for lifting and transporting, requiring specialized lifting equipment. Existing lifting equipment consists of simple beams, while different glass products usually have different dimensions. Therefore, different sized lifting devices need to be designed for different sizes of glass products to meet the lifting and transport requirements. However, this results in a large number of lifting devices of varying sizes needing to be installed within the factory, increasing transportation costs. Furthermore, the lifting positions of different lifting devices vary, requiring forklift operators to determine the appropriate lifting equipment for safe transport. Utility Model Content
[0003] The technical problem to be solved by this utility model is to provide a hoisting device that improves versatility and facilitates the transportation of glass products of different sizes.
[0004] To solve the above-mentioned technical problems, the technical solution adopted by this utility model is as follows:
[0005] A hoisting device includes a hoisting assembly and a storage assembly; the hoisting assembly is detachably mounted on the storage assembly; the hoisting assembly includes a main beam and a limiting assembly; the limiting assembly is provided at both ends of the main beam, and each limiting assembly includes at least two hook-up notches; the hook-up notches are used to hook up suspended components, so that two oppositely arranged suspended components form accommodating spaces with different spacings.
[0006] In an optional embodiment, the limiting component includes at least three sets of limiting frames; all the limiting frames are arranged sequentially and at equal intervals on the main beam, and the hook-up notch is formed between every two sets of adjacent limiting frames.
[0007] In an optional embodiment, a support tube is provided between two adjacent limiting frames located at the same end of the main beam; a snap-fit groove is formed between the adjacent support tubes, and the snap-fit groove is used to snap with the storage component.
[0008] In an optional embodiment, a connecting seat is provided on the main beam, the connecting seat being disposed between the two sets of limiting components; an interlocking tube is provided at the end of the connecting seat away from the main beam, the interlocking tube being used for connection with the transport equipment.
[0009] In an optional embodiment, at least one of the hoisting components is erected at different height positions of the storage components.
[0010] In an optional embodiment, the storage assembly includes two sets of opposing bottom beams; each bottom beam is provided with a vertical beam; the vertical beams are provided with crossbeams of different heights in the horizontal direction, and the crossbeams on the two sets of vertical beams are of the same height; the upper surface of the crossbeams is provided with a support seat, and the support seats on the two sets of crossbeams of the same height are arranged opposite each other; the hoisting assembly is mounted on the support seat.
[0011] In an alternative embodiment, at least two of the hoisting assemblies are mounted at the same height position as the storage assembly.
[0012] In an optional embodiment, a connecting beam is provided between the two sets of bottom beams; a connecting beam is provided between the two sets of vertical beams.
[0013] In an alternative embodiment, the height of the connecting beam between the two sets of vertical beams is the same as the height of the horizontal beam.
[0014] In an optional embodiment, a reinforcing plate is provided between the crossbeam and the vertical beam; a reinforcing plate is provided between the bottom beam and the vertical beam.
[0015] The beneficial effects of this utility model are as follows: by setting a detachable hoisting component on the storage component, the hoisting component can be stored and retrieved in a convenient manner; at the same time, by setting multiple sets of hanging notches at both ends of the main beam of the hoisting component, when hanging glass of different sizes, different positions of the hanging notches at both ends can be selected to set the suspension components, so that a receiving space adapted to the glass size is formed between the two oppositely set suspension components, thereby improving the versatility of the hoisting component and facilitating the transportation of glass products of different sizes. Attached Figure Description
[0016] Figure 1 This is a schematic diagram of the structure of a hoisting device according to an embodiment of the present utility model;
[0017] Figure 2 This is a schematic diagram of the structure of a hoisting component in a hoisting device according to an embodiment of the present utility model;
[0018] Figure 3 This is a schematic diagram of the structure of a hoisting device storing components according to an embodiment of the present utility model;
[0019] Label Explanation:
[0020] 1. Lifting assembly; 11. Main beam; 12. Limiting assembly; 121. Hanging notch; 122. Limiting frame; 123. Support pipe; 124. Clip groove; 13. Connecting seat; 14. Splicing pipe;
[0021] 2. Storage components; 21. Bottom beam; 22. Vertical beam; 23. Horizontal beam; 24. Support base; 25. Connecting beam; 26. Reinforcing plate. Detailed Implementation
[0022] To explain in detail the technical content, objectives, and effects of this utility model, the following description is provided in conjunction with the embodiments and accompanying drawings.
[0023] Please refer to Figures 1-3 A hoisting device includes a hoisting assembly 1 and a storage assembly 2. The hoisting assembly 1 is detachably mounted on the storage assembly 2. The hoisting assembly 1 includes a main beam 11 and a limiting assembly 12. Limiting assemblies 12 are respectively provided at both ends of the main beam 11, and each limiting assembly 12 includes at least two hook-up notches 121. The hook-up notches 121 are used to hook up suspension components, so that a receiving space with different spacing is formed between two oppositely arranged suspension components. By providing a detachable hoisting assembly 1 on the storage assembly 2, the storage and retrieval of the hoisting assembly 1 are facilitated. At the same time, by providing multiple sets of hook-up notches 121 at both ends of the main beam 11 of the hoisting assembly 1, when hoisting glass of different sizes, different positions of the hook-up notches 121 at both ends are selected for setting up suspension components, so that a receiving space adapted to the glass size is formed between two oppositely arranged suspension components, improving the versatility of the hoisting assembly 1 and facilitating the transportation of glass products of different sizes.
[0024] In some embodiments, the limiting assembly 12 includes at least three sets of limiting frames 122; all the limiting frames 122 are arranged sequentially and at equal intervals on the main beam 11, and a hook-up notch 121 is formed between every two adjacent sets of limiting frames 122. By arranging multiple sets of limiting frames 122 sequentially and at equal intervals on the main beam 11, that is, forming a hook-up notch 121 of the same size between every two adjacent sets of limiting frames 122, the suspension members can be hooked onto different hook-up notches 121, thereby achieving matching with glass of different sizes based on the hook-up positions of the suspension members at both ends.
[0025] In some embodiments, a support tube 123 is provided between two adjacent limiting frames 122 located at the same end of the main beam 11; a snap-fit groove 124 is formed between adjacent support tubes 123, which is used to snap-fit with the storage component 2. By providing a support tube 123 between two adjacent limiting frames 122 and forming a snap-fit groove 124 between adjacent support tubes 123, a snap-fit engagement can be formed between the snap-fit groove 124 and the support seat 24 on the storage component 2, thereby improving the stability of the hoisting component 1 in the placement state.
[0026] In some embodiments, a connecting seat 13 is provided on the main beam 11, and the connecting seat 13 is disposed between two sets of limiting components 12; a splicing tube 14 is provided at the end of the connecting seat 13 away from the main beam 11, and the splicing tube 14 is used to connect with transport equipment. By providing the connecting seat 13 and the splicing tube 14 in the middle of the main beam 11, it is convenient for transport vehicles such as forklifts to transport the lifting component 1 through the splicing tube 14.
[0027] In some embodiments, at least one hoisting assembly 1 is erected at different height positions of the storage assembly 2. That is, multiple sets of hoisting assemblies 1 can be stored on one storage assembly 2, and the multiple sets of hoisting assemblies 1 are set at different heights, making the storage and retrieval of the hoisting assemblies 1 more convenient.
[0028] In some embodiments, the storage assembly 2 includes two sets of opposing bottom beams 21; each bottom beam 21 is provided with a vertical beam 22; the vertical beams 22 are provided with crossbeams 23 of different heights in the horizontal direction, and the crossbeams 23 on the two sets of vertical beams 22 are of the same height; the upper surface of the crossbeams 23 is provided with a support seat 24, and the support seats 24 on the two sets of crossbeams 23 of the same height are arranged opposite to each other; the hoisting assembly 1 is mounted on the support seat 24. The storage assembly 2 is composed of the bottom beams 21, vertical beams 22 and crossbeams 23, and the support seat 24 is provided on the upper surface of the crossbeams 23, thereby effectively supporting the hoisting assembly 1.
[0029] In some embodiments, at least two hoisting assemblies 1 are mounted at the same height position of the storage assembly 2. That is, multiple sets of support seats 24 are provided on a set of oppositely arranged crossbeams 23, thereby enabling multiple sets of hoisting assemblies 1 to be placed at the same height.
[0030] In some embodiments, a connecting beam 25 is provided between the two sets of bottom beams 21; a connecting beam 25 is also provided between the two sets of vertical beams 22. By providing the connecting beam 25, the connection strength between the bottom beams 21 and the connection strength between the vertical beams 22 can be improved, thereby improving the overall support strength of the storage component 2.
[0031] In some embodiments, the height of the connecting beam 25 between the two sets of vertical beams 22 is the same as the height of the horizontal beam 23. By setting the height of the connecting beam 25 to the same height as the horizontal beam 23, the connecting beam 25 can simultaneously enhance the strength of the horizontal beam 23.
[0032] In some embodiments, a reinforcing plate 26 is provided between the crossbeam 23 and the vertical beam 22; a reinforcing plate 26 is also provided between the bottom beam 21 and the vertical beam 22. By providing the reinforcing plate 26, the connection strength between the crossbeam 23 and the vertical beam 22, as well as the connection strength between the bottom beam 21 and the vertical beam 22, can be improved.
[0033] The following embodiments are preferred embodiments of the above implementation methods.
[0034] Please refer to Figures 1 to 3 A hoisting device includes a hoisting component 1 and a storage component 2; the hoisting component 1 is detachably mounted on the storage component 2; the hoisting component 1 includes a main beam 11 and a limiting component 12; the two ends of the main beam 11 are respectively provided with limiting components 12, and each limiting component 12 includes at least two hook-up notches 121; the hook-up notches 121 are used to hook up suspended components, so that two oppositely arranged suspended components form a receiving space with different spacing.
[0035] Please refer to Figure 2 The limiting component 12 includes at least three sets of limiting frames 122; all the limiting frames 122 are arranged sequentially and at equal intervals on the main beam 11, with a hook-up notch 121 formed between every two adjacent sets of limiting frames 122; at the same time, a support tube 123 is provided between two adjacent limiting frames 122 located on the same end of the main beam 11; a snap-fit groove 124 is formed between adjacent support tubes 123, and the snap-fit groove 124 is used to snap-fit with the storage component 2; such as Figure 2 As shown, this embodiment includes ten sets of limiting components, with five in each set located at both ends of the main beam 11, forming four hook-up notches 121 at each end. Simultaneously, there are eight sets of support pipes 123, each set positioned between two support frames. The main beam 11 is a hollow, cylindrical metal structure, with end plates at both ends. To facilitate the transport of the hoisting assembly 1, a connecting seat 13 is provided on the main beam 11, positioned between two sets of limiting components 12. A splicing pipe 14 is provided at the end of the connecting seat 13 furthest from the main beam 11, for connection to transport equipment.
[0036] Please refer to Figure 3 At least one hoisting assembly 1 is erected at different height positions of the storage assembly 2. Specifically, the storage assembly 2 includes two sets of opposing bottom beams 21; each bottom beam 21 is provided with a vertical beam 22; horizontal beams 23 of different heights are provided in the horizontal direction of the vertical beams 22, and the horizontal beams 23 on the two sets of vertical beams 22 are at the same height; the upper surface of the horizontal beams 23 is provided with a support seat 24, and the support seats 24 on the two sets of horizontal beams 23 of the same height are oppositely arranged; the hoisting assembly 1 is mounted on the support seat 24; wherein, in an optional embodiment, the upper surface of the horizontal beams 23 is provided with multiple sets of support seats 24, so that multiple sets of hoisting assemblies 1 can be erected at the same height position of the storage assembly 2. Figure 3As shown, the storage component 2 in this embodiment has three sets of crossbeams 23 with different heights, and each set of crossbeams 23 is provided with two sets of support seats 24, that is, a total of 6 hoisting components 1 can be set on one storage component 2. According to actual needs, the height of the storage component 2 and the length of the crossbeams 23 can be adjusted so that the storage component 2 can meet different placement requirements. At the same time, a connecting beam 25 is provided between the two sets of bottom beams 21; a connecting beam 25 is provided between the two sets of vertical beams 22; and the height of the connecting beam 25 between the two sets of vertical beams 22 is the same as the height of the crossbeams 23; and a reinforcing plate 26 is provided between the crossbeams 23 and the vertical beams 22; a reinforcing plate 26 is provided between the bottom beams 21 and the vertical beams 22.
[0037] The above description is merely an embodiment of this utility model and does not limit the patent scope of this invention. Any equivalent modifications made based on the description and drawings of this utility model, or direct or indirect applications in related technical fields, are similarly included within the patent protection scope of this utility model.
Claims
1. A hoisting device, characterized in that, This includes hoisting components and storage components; The hoisting assembly can be detachably mounted on the storage assembly; The hoisting assembly includes a main beam and a limiting assembly; The limiting components are respectively provided at both ends of the main beam, and each limiting component includes at least two hook-up notches; The mounting notch is used to mount the suspension components, creating a space with different spacing between two oppositely positioned suspension components.
2. The hoisting device according to claim 1, characterized in that, The limiting assembly includes at least three sets of limiting frames; All the limiting frames are arranged sequentially and at equal intervals on the main beam, and the hook-up notch is formed between every two sets of adjacent limiting frames.
3. A hoisting device according to claim 2, characterized in that, A support tube is provided between two adjacent limiting frames located at the same end of the main beam; A snap-fit groove is formed between adjacent support tubes, and the snap-fit groove is used to snap into the storage component.
4. A hoisting device according to claim 1, characterized in that, A connecting seat is provided on the main beam, and the connecting seat is disposed between the two sets of limiting components; The end of the connecting seat away from the main beam is provided with a splicing tube, which is used to connect to the transportation equipment.
5. A hoisting device according to claim 1, characterized in that, At least one hoisting component is erected at different height positions of the storage components.
6. A hoisting device according to claim 5, characterized in that, The storage assembly includes two sets of opposing bottom beams; Each of the aforementioned bottom beams is provided with a vertical beam; The vertical beams are provided with horizontal beams of different heights in the horizontal direction, and the horizontal beams on the two sets of vertical beams are at the same height. The upper surface of the crossbeam is provided with a support seat, and the support seats on two sets of crossbeams of the same height are arranged opposite each other. The hoisting assembly is mounted on the support base.
7. A hoisting device according to claim 5 or 6, characterized in that, At least two of the hoisting components are mounted at the same height position as the storage components.
8. A hoisting device according to claim 6, characterized in that, A connecting beam is provided between the two sets of bottom beams; A connecting beam is provided between the two sets of vertical beams.
9. A hoisting device according to claim 8, characterized in that, The height of the connecting beam between the two sets of vertical beams is the same as the height of the horizontal beam.
10. A hoisting device according to claim 6, characterized in that, A reinforcing plate is provided between the horizontal beam and the vertical beam; A reinforcing plate is provided between the bottom beam and the vertical beam.