Convenient assembly type hoisting belt for transporting photovoltaic components to the top of a mountain by cableway
By designing a convenient, modular lifting sling, and utilizing a ring hook connector and a matrix-style through-hole structure, the problem of adjusting the length of the lifting sling in mountainous construction was solved, improving the flexibility and stability of lifting and increasing construction efficiency.
Patent Information
- Application Number
- CN202522133510.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-09
- Publication Date
- 2026-08-25
- Estimated Expiration
- 2035-10-09
AI Technical Summary
In mountainous construction, existing technologies struggle to provide a hoisting sling that can be flexibly assembled on-site and whose length can be easily adjusted to meet the hoisting requirements of different materials and equipment.
A convenient assembly lifting sling was designed, including a sling body, an annular hook sling connecting base and wear-resistant and anti-slip pads. The length of the sling can be adjusted by the annular hook sling connecting head mechanism and the matrix arrangement of through holes, and the structure is ensured to be firm by connecting bolts and fastening nuts.
It enables simple on-site assembly and secure hoisting of lifting slings, improves the efficiency of transporting materials up and down mountains, and adapts to the length requirements of different hoisted objects.
Smart Images

Figure CN224677620U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to a simple cableway for transporting photovoltaic modules in mountainous areas, and particularly to a convenient assembly-type hoisting mechanism for transporting photovoltaic modules to mountaintops via the cableway. Background Technology
[0002] When constructing a solar power project that integrates agriculture and photovoltaics in mountainous areas, complex and varied terrain with significant elevation changes is frequently encountered. Before the initial construction roads are fully prepared, it is necessary to transport some construction materials to the mountaintop. This is typically achieved by setting up pillars at the mountaintop and base, and then constructing a simple cableway between the pillars. Construction materials and equipment are suspended from the cableway using hoisting slings, and transported to the mountaintop via the cableway. Since the materials and equipment being transported vary in size and shape, various hoisting slings of different lengths and specifications are required on-site to meet the different hoisting requirements. Developing a hoisting sling that can be flexibly assembled on-site and whose length can be easily adjusted has become a challenging problem that needs to be solved on-site. Summary of the Invention
[0003] This invention provides a convenient, modular hoisting sling for transporting photovoltaic modules to mountaintops via cableway, solving the technical problem of how to develop a hoisting sling that can be flexibly assembled on-site and whose length can be easily adjusted.
[0004] This utility model solves the above technical problems through the following technical solution: A convenient, modular hoisting sling for transporting photovoltaic modules to mountaintops via cableway includes a sling body, an annular hook sling connecting base, and wear-resistant and anti-slip pads. An annular hook sling is fixedly connected to the annular hook sling connecting base, and the annular hook sling and the annular hook sling together form an annular hook connector mechanism. The sling body has matrix-arranged through holes spaced apart, the annular hook sling connecting base has matrix-arranged through holes, and the wear-resistant and anti-slip pads have matrix-arranged through holes. A first annular hook connector mechanism is connected to one end of the sling body, and a second annular hook connector mechanism can be selectively connected to other matrix-arranged through holes on the sling body, thereby forming hoisting slings of different lengths.
[0005] Each of the matrix-arranged through holes between the first and second annular hook connectors is connected to an anti-wear and anti-slip pad, and connecting bolts and fastening nuts are provided between the anti-wear and anti-slip pad and the sling body.
[0006] A third annular hook connector mechanism is connected to the other end of the sling body, and a second annular hook connector mechanism and a fourth annular hook connector mechanism are connected to the middle part of the sling body.
[0007] One end of the sling body, the ring hook connecting the base and the anti-wear and anti-slip pad are stacked together and then fixed together by connecting bolts and fastening nuts.
[0008] This utility model is easy to assemble on site, and can be dragged and hoisted securely, greatly improving the efficiency of transporting materials up and down mountains for construction. During application, due to differences in the size, hoisting height and weight of the object being hoisted, hoisting straps of suitable length can be assembled on site according to the goods being transported. Attached Figure Description
[0009] Figure 1 This is a schematic diagram of the structure of this utility model; Figure 2 is a structural schematic diagram of the sling body 1 of this utility model; Figure 3 is a structural schematic diagram of the anti-wear and anti-slip pad 3 of this utility model; Figure 4 This is a structural schematic diagram of the annular hook connector mechanism of this utility model; Figure 5 This is a diagram showing the connection relationship between the anti-wear and anti-slip pad 3 and the sling body 1 of this utility model; Figure 6 This is a schematic diagram of the structure of this utility model, in which both the upper and lower ends are provided with ring-shaped slings. Detailed Implementation
[0010] The present invention will now be described in detail with reference to the accompanying drawings: A convenient, modular hoisting sling for transporting photovoltaic modules to a mountaintop via a cableway includes a sling body 1, an annular hook sling connecting base 6, and wear-resistant and anti-slip pads 3. An annular hook sling 5 is fixedly connected to the annular hook sling connecting base 6, forming an annular hook connector mechanism. The sling body 1 has matrix-arranged through holes 2 spaced apart, typically four arranged in a square. The annular hook sling connecting base 6 has matrix-arranged through holes 7, and the wear-resistant and anti-slip pads 3 have matrix-arranged anti-slip pad through holes 4. 2. The anti-slip pad block matrix arrangement through holes 4 and the base matrix arrangement through holes 7 are both arranged in a square of four and are set accordingly; a first ring hook connector mechanism 10 is connected to one end of the sling body 1, and a second ring hook connector mechanism 11 can be selectively connected to other body matrix arrangement through holes 2 on the sling body 1 to form slings of different lengths; on site, based on the object to be lifted, the length of the sling to be used is estimated, the second ring hook connector mechanism 11 is assembled on the corresponding body matrix arrangement through hole 2 on the sling body 1, and then the assembled sling is used to fix the object to be lifted.
[0011] Each of the matrix-arranged through holes 2 between the first annular hook connector mechanism 10 and the second annular hook connector mechanism 11 is connected with an anti-wear and anti-slip pad 3. A connecting bolt 8 and a fastening nut 9 are provided between the anti-wear and anti-slip pad 3 and the sling body 1. The anti-wear and anti-slip pad 3 makes the hoisted item and the sling more tightly connected.
[0012] A third annular hook connector mechanism 12 is connected to the other end of the sling body 1, and a second annular hook connector mechanism 11 and a fourth annular hook connector mechanism 13 are connected to the middle part of the sling body 1 respectively; thus forming a form with annular hooks at both the top and bottom, the two annular hooks at the top are connected to the hook, and another set of suspended items can be connected to the two annular hooks at the bottom.
[0013] One end of the sling body 1, the ring hook connecting the base 6 and the anti-wear and anti-slip pad 3 are stacked together and then fixed together by the connecting bolt 8 and the fastening nut 9. After the three are connected by the connecting bolt and the fastening nut, the structure is more solid.
Claims
1. A convenient assembly-type hoisting sling for transporting photovoltaic modules to a mountaintop via a cableway, comprising a sling body (1), an annular hook sling connecting base (6), and anti-wear and anti-slip pads (3), wherein an annular hook sling (5) is fixedly connected to the annular hook sling connecting base (6), and the annular hook sling connecting base (6) and the annular hook sling (5) form an annular hook connecting head mechanism, characterized in that, The sling body (1) is provided with matrix-arranged through holes (2) at intervals, the annular hook belt connecting base (6) is provided with matrix-arranged through holes (7), the anti-slip pad block (3) is provided with matrix-arranged through holes (4), the sling body (1) is connected to one end of the sling body (1) with a first annular hook connecting head mechanism (10), and the second annular hook connecting head mechanism (11) can be selectively connected to other matrix-arranged through holes (2) on the sling body (1), thereby forming slings of different lengths for lifting.
2. The convenient assembly hoisting belt for transporting photovoltaic modules to a mountaintop via cableway according to claim 1, characterized in that, Each body matrix arrangement through hole (2) between the first ring hook connector (10) and the second ring hook connector (11) is connected with an anti-wear and anti-slip pad (3), and a connecting bolt (8) and a fastening nut (9) are provided between the anti-wear and anti-slip pad (3) and the sling body (1).
3. The convenient assembly hoisting belt for transporting photovoltaic modules to a mountaintop via cableway according to claim 1, characterized in that, A third annular hook connector mechanism (12) is connected to the other end of the sling body (1), and a second annular hook connector mechanism (11) and a fourth annular hook connector mechanism (13) are connected to the middle part of the sling body (1).
4. A convenient assembly hoisting belt for transporting photovoltaic modules to a mountaintop via a cableway, as described in claim 1 or 2, characterized in that... After the sling body (1), the ring hook connecting base (6), and the anti-wear and anti-slip pad (3) are stacked together, they are fixed together by connecting bolts (8) and fastening nuts (9).