Photovoltaic cant beam support hoisting device

By designing the photovoltaic inclined beam bracket hoisting device and connecting the inclined beam brackets with pulley components and ropes, the time-consuming and labor-intensive installation of the photovoltaic inclined beam brackets is solved, and rapid and labor-saving construction efficiency improvement and convenient disassembly are achieved.

CN223292172UActive Publication Date: 2025-09-02CHINA HYDROPOWER ELEVENTH ENG BUREAU (ZHENGZHOU) CO LTD +1
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Patent Information

Application Number
CN202422571086.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-24
Publication Date
2025-09-02
Estimated Expiration
2034-10-24

AI Technical Summary

Technical Problem

The existing photovoltaic inclined beam brackets are time-consuming and labor-intensive, and cannot be installed efficiently on concrete piles, resulting in inefficient construction efficiency.

Method used

A photovoltaic inclined beam bracket hoisting device is designed, and the inclined beam bracket is connected by pulling the pulley assembly and the inclined beam rises. By pulling the pulley assembly, the inclined beam bracket and the inclined beam are driven, and combined with the locking clamping and fixed clamping, the stable lifting and rapid installation of the inclined beam is achieved.

Benefits of technology

The rapid and labor-saving installation of inclined beams is achieved, construction efficiency is improved, and the structure is easy to disassemble and move to the next construction position.

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    Figure CN223292172U_ABST
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Abstract

The utility model discloses a photovoltaic cant beam support hoisting device which comprises the ground and a concrete pile vertically poured on the ground, a parallel stand column is arranged on one side of the concrete pile, a pulley assembly is arranged on the top of the stand column, a cant beam support is arranged on the concrete pile in a sleeved mode, an inclined cant beam is arranged on the cant beam support, and the cant beam is arranged on the cant beam. The pulley assembly is connected with the oblique beam through a rope, and the pulley assembly is pulled to drive the oblique beam support and the oblique beam to ascend. When the photovoltaic cant beam support hoisting device is used, a cant beam can be smoothly hoisted to a preset installation position, time and labor are saved in the hoisting process, the construction efficiency can be improved, in addition, the structure is convenient to disassemble, and practicability is high.
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Description

Technical Field

[0001] The utility model relates to the technical field of photovoltaic project construction, in particular to a photovoltaic inclined beam bracket hoisting device. Background Art

[0002] During the construction of photovoltaic projects, photovoltaic panels are usually set at an angle in order to better receive sunlight radiation; the inclination of the photovoltaic panels depends on the inclined beam support below.

[0003] In new energy photovoltaic projects such as agricultural photovoltaic and pastoral photovoltaic complementarity, the top of the concrete pile is relatively high, and the inclined beam support and photovoltaic panels need to be installed on the concrete pile.

[0004] The current construction method usually uses scaffolding, and uses manpower to lift the bracket onto the frame and install it. However, the inclined beam bracket weighs about 50kg each, which is heavy and time-consuming and labor-intensive during construction, and it cannot be efficiently installed on the concrete pile.

[0005] Therefore, there is an urgent need for a device that can be quickly installed to meet the requirements of efficient construction and save manpower and time costs. Utility Model Content

[0006] The purpose of the utility model is to solve the above problems and provide a photovoltaic inclined beam bracket lifting device that can smoothly hoist the inclined beam to a predetermined installation position, save time and labor during the hoisting process, and is conducive to improving construction efficiency. In addition, the structure is also easy to disassemble and has strong practicality.

[0007] To achieve the above-mentioned purpose, the technical solution of the utility model is: a photovoltaic inclined beam bracket lifting device, comprising the ground and a concrete pile cast vertically on the ground, a parallel column is provided on one side of the concrete pile, a pulley assembly is provided on the top of the column, an inclined beam bracket is provided on the concrete pile, an inclined beam bracket is provided on the inclined beam bracket, the pulley assembly is connected to the inclined beam by a rope, and pulling the pulley assembly drives the inclined beam bracket and the inclined beam to rise.

[0008] Preferably, the inclined beam bracket includes an inclined brace 1, an inclined brace 2, a vertical pole 1 and a vertical pole 2. The vertical pole 1 and the vertical pole 2 are vertically parallel to each other. The tops of the vertical pole 1 and the vertical pole 2 are fixedly connected to the inclined beam, and two locking hoops are provided between the bottoms. The bottom end of the inclined brace 1 is fixedly connected to the vertical pole 2, and the top end is fixedly connected to the inclined beam. The bottom end of the inclined brace 2 is fixedly connected to the vertical pole 1, and the top end is fixedly connected to the inclined beam.

[0009] Preferably, a transverse support rod and an intermediate support rod are further provided between the first vertical rod and the second vertical rod.

[0010] Preferably, a plurality of supports are provided on the surface of the inclined beam.

[0011] Preferably, the column includes a lower column and an upper column, a sleeve is provided at the top end of the lower column, and the upper column is plugged into the lower column at the sleeve.

[0012] Preferably, the lower column, the upper column and the sleeve are all provided with connecting holes, and the lower column and the upper column are connected to the sleeve through pins.

[0013] Preferably, a vertical crossbeam is provided on the top of the upper column, a sleeve is provided at one end of the crossbeam, the crossbeam is sleeved on the top of the upper column through the sleeve, the sleeve and the upper column are detachably connected by a pin, and the pulley assembly is provided at the end of the crossbeam.

[0014] Preferably, a fixing hoop is further provided on the lower column, and the fixing hoop includes a fixed part and a movable part. The fixed part is fixed to the circumference of the lower column, and the movable part is detachably connected to the fixed part. When the fixed part and the movable part are connected, they surround the concrete pile.

[0015] The utility model discloses a photovoltaic inclined beam bracket lifting device, including the ground and a concrete pile cast vertically on the ground, a parallel column is provided on one side of the concrete pile, a pulley assembly is provided on the top of the column, an inclined beam bracket is sleeved on the concrete pile, an inclined beam bracket is provided on the inclined beam bracket, the pulley assembly is connected to the inclined beam by a rope, and the pulley assembly is pulled to drive the inclined beam bracket and the inclined beam to rise; compared with the existing technology, the photovoltaic inclined beam bracket lifting device has the function of smoothly lifting the inclined beam to a predetermined installation position when in use, and saves time and labor during the lifting process, which is conducive to improving construction efficiency. In addition, the structure is also easy to disassemble, and has the beneficial effect of strong practicality. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 This is a schematic diagram of the overall structure of a photovoltaic inclined beam bracket lifting device of the utility model.

[0017] Figure 2 This is a structural schematic diagram of an inclined beam support in a photovoltaic inclined beam support hoisting device of the utility model.

[0018] Figure 3 This is a structural schematic diagram of the middle column of a photovoltaic inclined beam bracket lifting device of the utility model.

[0019] Figure 4 For this utility model Figure 3 Schematic diagram of the enlarged structure at point A in the middle.

[0020] Figure 5 For this utility model Figure 3 Schematic diagram of the enlarged structure at point B in the middle.

[0021] In the figure: 1. Ground; 2. Concrete pile; 3. Column; 31. Lower column; 32. Upper column; 33. Crossbeam; 331. Casing; 332. Pin; 34. Fixed clamp; 341. Fixed part; 342. Movable part; 35. Sleeve; 36. Connecting hole; 4. Pulley assembly; 5. Diagonal beam; 51. Diagonal brace 1; 52. Diagonal brace 2; 53. Vertical pole 1; 54. Vertical pole 2; 55. Horizontal support rod; 56. Middle support rod; 57. Locking clamp; 6. Support. DETAILED DESCRIPTION

[0022] The present invention will now be described in further detail with reference to the accompanying drawings, which are simplified schematic diagrams that illustrate the basic structure of the present invention in a schematic manner, and thus only show components related to the present invention.

[0023] Please refer to Figure 1-5 , a photovoltaic inclined beam bracket lifting device includes the ground 1 and a concrete pile 2 cast vertically on the ground 1, one side of the concrete pile 2 is provided with a parallel column 3, the top of the column 3 is provided with a pulley assembly 4, the concrete pile 2 is provided with an inclined beam bracket, and the inclined beam bracket is provided with an inclined inclined beam 5, the pulley assembly 4 is connected to the inclined beam 5 by a rope, wherein the rope can be a steel wire rope or other fastening rope. After the construction workers pull the rope of the pulley assembly, the inclined beam bracket and the inclined beam 5 rise, so that the inclined beam bracket and the inclined beam reach a predetermined height. The whole process can ensure vertical ascent, saving time and labor in construction, and helping to improve construction efficiency.

[0024] In this embodiment, the inclined beam bracket includes an inclined brace 1 51, an inclined brace 2 52, a vertical pole 1 53 and a vertical pole 2 54. The vertical pole 1 53 and the vertical pole 2 54 are vertically parallel to each other. The tops of the vertical pole 1 53 and the vertical pole 2 54 are fixedly connected to the inclined beam 5. Two openable locking hoops 57 are provided between the bottoms of the vertical pole 1 53 and the vertical pole 2 54. The bottom end of the inclined brace 1 51 is fixedly connected to the vertical pole 2 54, and the top end is fixedly connected to the inclined beam 5. The bottom end of the inclined brace 2 52 is fixedly connected to the vertical pole 1 51, and the top end is fixedly connected to the inclined beam 5.

[0025] In addition, a transverse support rod 55 and an intermediate support rod 56 for reinforcing stability are provided between the vertical rod 1 53 and the vertical rod 2 54 .

[0026] Please refer again Figure 2 The diagonal brace 1 51, the diagonal brace 2 52, the vertical pole 1 53, the vertical pole 2 54, the horizontal support rod 55 and the middle support rod 56 form an integral bracket, and the two locking hoops 57 between the vertical pole 1 53 and the vertical pole 2 54 not only play a limiting role, but also can fix the whole on the concrete pile 2.

[0027] During the hoisting construction, first insert the column 3 vertically into the ground, and move the inclined beam bracket to the concrete pile 2, then open the two locking hoops 57, so that the two locking hoops 57 are wrapped around the concrete pile 2 (not tightened), and then connect the top inclined beam to the pulley assembly 4 through a rope; then pull the traction rope of the pulley assembly to make the inclined beam bracket as a whole rise vertically along the concrete pile 2. When the inclined beam bracket rises to a predetermined height, tighten the two locking hoops 57 to fix the bracket as a whole tightly on the concrete pile 2.

[0028] The surface of the inclined beam 5 is provided with a plurality of supports 6, and the photovoltaic panel is fixed to the inclined beam at the supports 6 by screws, bolts, etc.

[0029] In order to further improve the applicability of the lifting device, the column 3 includes a lower column 31 and an upper column 32. The top of the lower column 31 is provided with a sleeve 35, and the upper column 32 is plugged into the lower column 31 at the sleeve 35. In addition, the lower column 31, the upper column 32 and the sleeve 35 are all provided with connecting holes 36, and the lower column 31 and the upper column 32 are connected on the sleeve 35 by pins; this setting can adjust the overall height of the column 3, and the whole is also easy to disassemble. After the lifting construction is completed, it is also easy to collect and move to the next construction position.

[0030] Furthermore, a vertical beam 33 is provided on the top of the upper column 32, and a sleeve 331 is provided at one end of the beam 33. The beam 33 is sleeved on the top of the upper column 32 through the sleeve 331. The sleeve 331 and the upper column 32 are detachably connected by a pin 332 for easy disassembly and assembly. The pulley assembly 4 is provided at the end of the beam 33.

[0031] Since the column is directly inserted into the ground, instability is likely to occur during hoisting. In order to further improve the overall stability of the column, a fixed clamp 34 is provided on the lower column 31. The fixed clamp 34 includes a fixed part 341 and a movable part 342. The fixed part 341 is fixed to the circumference of the lower column 31, and the movable part 432 is detachably connected to the fixed part 341. When the fixed part 341 and the movable part 342 are connected, they surround the concrete pile 2.

[0032] The fixed portion 341 and the movable portion 342 are both semicircular (half a hoop); before the column 3 is inserted into the ground 1, the fixed portion 341 and the movable portion 342 are separated. When the column is inserted into the ground, the movable portion 342 is connected to the fixed portion 341, so that the movable portion 342 and the fixed portion 341 form a hoop that surrounds the concrete pile 2; at this time, the column 3 is connected to the concrete pile 2 as a whole through the fixed hoop 34, which can greatly improve stability and ensure the stable rise of the inclined beam.

[0033] After the inclined beam 5 and the inclined beam bracket rise to the predetermined height, first lock and fix the two locking hoops 57, then remove the movable part 342, and then pull the column 3 (lower column 31) out of the ground, and disassemble the entire thing and move it to the next construction location, which is convenient to use.

[0034] Obviously, the above embodiments are merely examples for clarity of explanation and are not intended to limit the implementation methods. Those skilled in the art will readily appreciate that other variations or modifications based on the above descriptions are possible. It is not necessary and impossible to enumerate all implementation methods here. Obvious variations or modifications arising therefrom remain within the scope of protection of the present invention.

Claims

1. A photovoltaic inclined beam support hoisting device, comprising the ground and vertically cast concrete piles on the ground, characterized in that: A parallel column is provided on one side of the concrete pile, a pulley assembly is provided on the top of the column, an inclined beam bracket is provided on the concrete pile, an inclined beam is provided on the inclined beam bracket, the pulley assembly is connected to the inclined beam by a rope, and pulling the pulley assembly drives the inclined beam bracket and the inclined beam to rise.

2. The photovoltaic inclined beam support hoisting device according to claim 1, characterized in that: The inclined beam bracket includes an inclined brace 1, an inclined brace 2, a vertical pole 1 and a vertical pole 2. The vertical pole 1 and the vertical pole 2 are vertically parallel to each other. The tops of the vertical pole 1 and the vertical pole 2 are fixedly connected to the inclined beam, and two locking hoops are provided between the bottoms. The bottom end of the inclined brace 1 is fixedly connected to the vertical pole 2, and the top end is fixedly connected to the inclined beam. The bottom end of the inclined brace 2 is fixedly connected to the vertical pole 1, and the top end is fixedly connected to the inclined beam.

3. The photovoltaic inclined beam support hoisting device according to claim 2, characterized in that: A transverse support rod and an intermediate support rod are further provided between the first vertical rod and the second vertical rod.

4. The photovoltaic inclined beam support hoisting device according to any one of claims 1 to 3, characterized in that: A plurality of supports are provided on the surface of the inclined beam.

5. The photovoltaic inclined beam support hoisting device according to claim 1, characterized in that: The column comprises a lower column and an upper column. A sleeve is provided on the top of the lower column, and the upper column is plugged into the lower column at the sleeve.

6. The photovoltaic inclined beam support hoisting device according to claim 5, characterized in that: The lower column, the upper column and the sleeve are all provided with connecting holes, and the lower column and the upper column are connected on the sleeve through pins.

7. The photovoltaic inclined beam support hoisting device according to claim 6, characterized in that: A vertical beam is provided on the top of the upper column, and a sleeve is provided at one end of the beam. The beam is sleeved on the top of the upper column through the sleeve. The sleeve and the upper column are detachably connected by a pin, and the pulley assembly is provided at the end of the beam.

8. The photovoltaic inclined beam support hoisting device according to any one of claims 5 to 7, characterized in that: The lower column is also provided with a fixed hoop, which includes a fixed part and a movable part. The fixed part is fixed to the circumference of the lower column, and the movable part is detachably connected to the fixed part. When the fixed part and the movable part are connected, they surround the concrete pile.