CN224212314U - A photovoltaic bracket hoisting auxiliary tool - Google Patents

A photovoltaic bracket hoisting auxiliary tool

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Publication number
CN224212314U
CN224212314U CN202521198163.5U CN202521198163U CN224212314U CN 224212314 U CN224212314 U CN 224212314U CN 202521198163 U CN202521198163 U CN 202521198163U CN 224212314 U CN224212314 U CN 224212314U
Authority
CN
China
Prior art keywords
photovoltaic
pulley
arc
photovoltaic bracket
vertical rod
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Active
Application number
CN202521198163.5U
Other languages
Chinese (zh)
Inventor
吕文虎
何敏
傅少奎
唐治华
傅泽坤
陈泽方
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Fuzhou One Sun Power Consulting Co ltd
Original Assignee
Fuzhou One Sun Power Consulting Co ltd
Filing date
Publication date
Application filed by Fuzhou One Sun Power Consulting Co ltd filed Critical Fuzhou One Sun Power Consulting Co ltd
Application granted granted Critical
Publication of CN224212314U publication Critical patent/CN224212314U/en
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Anticipated expiration legal-status Critical

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Abstract

本实用新型公开了一种光伏支架吊装辅助工具,用于辅助光伏支架与光伏支柱的吊装,包括立杆、固定组件、滑轮组件和绳索,所述固定组件设于所述立杆上,所述固定组件用于对所述立杆和所述光伏支柱进行固定,所述滑轮组件设于所述立杆的端部,所述滑轮组件用于悬吊所述光伏支架,所述绳索与所述滑轮组件连接,所述绳索用于控制所述滑轮组件吊起或者放下所述光伏支架。该光伏支架吊装辅助工具的结构简单、使用快捷方便,其能够满足复杂地形的应用需求,有效提高光伏支架吊装效率。

This utility model discloses a photovoltaic (PV) bracket hoisting auxiliary tool for assisting in the hoisting of PV brackets and PV pillars. It includes a pole, a fixing component, a pulley assembly, and a rope. The fixing component is mounted on the pole and used to secure the pole and the PV pillar. The pulley assembly is located at the end of the pole and used to suspend the PV bracket. The rope is connected to the pulley assembly and used to control the lifting or lowering of the PV bracket. This PV bracket hoisting auxiliary tool has a simple structure, is quick and easy to use, and can meet the application needs of complex terrain, effectively improving the hoisting efficiency of PV brackets.

Description

Photovoltaic support hoist and mount appurtenance
Technical Field
The utility model relates to the technical field of photovoltaic bracket installation and construction, in particular to a photovoltaic bracket hoisting auxiliary tool.
Background
In the engineering construction process of the photovoltaic power generation project, the photovoltaic bracket is an important part for supporting the solar module. In the implementation of large-scale centralized ground photovoltaic power generation engineering, a photovoltaic bracket is required to be assembled first, and then the assembled photovoltaic bracket is hung on a photovoltaic support. At present, the construction from the photovoltaic bracket to the photovoltaic support is mostly dependent on manual transportation or large-scale mechanical lifting, wherein the photovoltaic bracket has large weight, low manual transportation efficiency and high labor intensity, and is easy to injure personnel, the use cost of the large-scale mechanical lifting is high, and the application of the large-scale mechanical lifting is easy to be limited by site topography.
Disclosure of utility model
The utility model aims to solve the technical problems of high difficulty and low efficiency of the existing photovoltaic bracket hoisting construction by providing the photovoltaic bracket hoisting auxiliary tool.
In order to solve the technical problems, the technical scheme includes that the auxiliary tool for hoisting the photovoltaic support is used for assisting in hoisting the photovoltaic support and the photovoltaic support, the auxiliary tool comprises a vertical rod, a fixing assembly, a pulley assembly and a rope, the fixing assembly is arranged on the vertical rod and used for fixing the vertical rod and the photovoltaic support, the pulley assembly is arranged at the end part of the vertical rod and used for suspending the photovoltaic support, the rope is connected with the pulley assembly, and the rope is used for controlling the pulley assembly to hoist or put down the photovoltaic support.
Further, the bottom of pole setting is equipped with the base.
Further, the fixed assembly comprises at least two hoop members which are sequentially arranged along the length direction of the vertical rod.
Further, the at least two anchor ear pieces comprise an arc anchor ear piece and an annular anchor ear piece, wherein the arc anchor ear piece is arranged at the position of the vertical rod close to the bottom end, and the annular anchor ear piece is arranged above the arc anchor ear piece.
Further, the annular hoop member comprises a first arc member and a second arc member, wherein the first arc member is connected with the vertical rod, and the second arc member is movably connected with the first arc member.
Further, the first arc-shaped piece is in buckling connection with the second arc-shaped piece.
Further, a rubber pad is arranged on the hoop member.
Further, a cross rod is arranged at the top end of the vertical rod, and the pulley assembly is arranged on the cross rod.
Further, the pulley assembly comprises a fixed ring, a fixed pulley, a movable pulley and a lifting hook, wherein the fixed ring and the fixed pulley are both arranged on the vertical rod, the rope is sequentially wound on the fixed pulley and the movable pulley, one end of the rope is connected with the fixed ring, the lifting hook is arranged on the movable pulley, and the lifting hook is used for suspending the photovoltaic bracket.
Further, the vertical rod is a telescopic vertical rod.
The auxiliary tool for hoisting the photovoltaic bracket has the beneficial effects that the vertical rod and the photovoltaic support column can be fixed through the fixing component, and the pulley component is controlled to hoist or put down the photovoltaic bracket through manual or motor control rope winding and unwinding.
Drawings
Fig. 1 is a schematic structural diagram of a photovoltaic bracket hoisting auxiliary tool according to the present utility model under a view angle;
Fig. 2 is a schematic structural view of the photovoltaic bracket hoisting auxiliary tool shown in fig. 1 at another view angle.
Description of the reference numerals:
1. A vertical rod, a transverse rod and a horizontal rod;
2. A fixing assembly; 21, an arc-shaped hoop member, 22, an annular hoop member, 221, a first arc-shaped member, 222 and a second arc-shaped member;
3. Pulley assembly, 31, fixed ring, 32, fixed pulley, 33, movable pulley, 34, lifting hook;
4. A rope;
5. and (5) a base.
Detailed Description
In order to describe the technical contents, the achieved objects and effects of the present utility model in detail, the following description will be made with reference to the embodiments in conjunction with the accompanying drawings.
Please refer to fig. 1-2, a photovoltaic support hoisting auxiliary tool for assisting the hoisting of a photovoltaic support and a photovoltaic support, which comprises a vertical rod 1, a fixing component 2, a pulley component 3 and a rope 4, wherein the fixing component 2 is arranged on the vertical rod 1, the fixing component 2 is used for fixing the vertical rod 1 and the photovoltaic support, the pulley component 3 is arranged at the end part of the vertical rod 1, the pulley component 3 is used for suspending the photovoltaic support, the rope 4 is connected with the pulley component 3, and the rope 4 is used for controlling the pulley component 3 to hoist or put down the photovoltaic support.
The photovoltaic bracket lifting auxiliary tool has the beneficial effects that the vertical rod 1 and the photovoltaic support can be fixed through the fixing component 2, the pulley component 3 is controlled to lift or put down the photovoltaic bracket through manual or motor control rope 4 to retract and release, the structure of the photovoltaic bracket lifting auxiliary tool is simple, the use is quick and convenient, the application requirements of complex terrains can be met, and the photovoltaic bracket lifting efficiency is effectively improved.
Further, a base 5 is arranged at the bottom end of the vertical rod 1.
From the above description, the base 5 can increase the bearing area of the bottom end of the support column, enhance the stability of the support column, and further improve the reliability and stability of the auxiliary tool for hoisting the photovoltaic support.
Further, the fixing assembly 2 comprises at least two hoop members which are sequentially arranged along the length direction of the vertical rod 1.
From the above description, the hoop member can clamp the photovoltaic column, so as to ensure the reliability and stability of fixing the vertical rod 1 and the photovoltaic column, thereby improving the safety of the auxiliary tool for hoisting the photovoltaic bracket.
Further, the at least two anchor ear pieces include an arc anchor ear piece 21 and an annular anchor ear piece 22, the arc anchor ear piece 21 is located on the position that pole setting 1 is close to the bottom, the annular anchor ear piece 22 is located the top of arc anchor ear piece 21.
From the above description, the arc-shaped hoop member 21 can position the vertical rod 1 and the photovoltaic support, and the arc-shaped hoop member 21 can improve the reliability and stability of fixing the vertical rod 1 and the photovoltaic support.
Further, the annular hoop member 22 includes a first arc member 221 and a second arc member 222, the first arc member 221 is connected to the vertical rod 1, and the second arc member 222 is movably connected to the first arc member 221.
Further, the first arc-shaped member 221 is in snap connection with the second arc-shaped member 222.
As can be seen from the above description, the first arc-shaped member 221 and the second arc-shaped member 222 of the annular hoop member 22 can clamp the photovoltaic pillar after being connected in a snap-fit manner, and the annular hoop member 22 is convenient to operate and has high reliability.
Further, a rubber pad is arranged on the hoop member.
From the above description, the rubber pad on the hoop member can prevent the surface of the photovoltaic strut from being scratched.
Further, a cross rod 11 is arranged at the top end of the vertical rod 1, and the pulley assembly 3 is arranged on the cross rod 11.
Further, the pulley assembly 3 includes a fixed ring 31, a fixed pulley 32, a movable pulley 33 and a hook 34, the fixed ring 31 and the fixed pulley 32 are both disposed on the vertical rod 1, the rope 4 is sequentially wound on the fixed pulley 32 and the movable pulley 33, one end of the rope 4 is connected with the fixed ring 31, the hook 34 is disposed on the movable pulley 33, and the hook 34 is used for suspending the photovoltaic bracket.
As can be seen from the above description, the pulley assembly 3 can improve the stability of the lifting of the photovoltaic bracket and reduce the tension requirement of the lifting of the photovoltaic bracket.
Further, the vertical rod 1 is a telescopic vertical rod 1.
From the above description, the telescopic upright 1 is flexible and convenient to apply, and can adapt to different installation scenes and meet the application requirements of installing photovoltaic supports on photovoltaic supports with different sizes.
Example 1
Referring to fig. 1-2, a photovoltaic bracket hoisting auxiliary tool is provided for assisting in hoisting a photovoltaic bracket and a photovoltaic pillar, and comprises a vertical rod 1, a fixing component 2, a pulley component 3 and a rope 4, wherein the fixing component 2 is arranged on the vertical rod 1, the fixing component 2 is used for fixing the vertical rod 1 and the photovoltaic pillar, the pulley component 3 is arranged at the end part of the vertical rod 1, the pulley component 3 is used for suspending the photovoltaic bracket, the rope 4 is connected with the pulley component 3, and the rope 4 is used for controlling the pulley component 3 to hoist or put down the photovoltaic bracket.
The embodiment provides a light-weight, but quick assembly disassembly's photovoltaic support hoist and mount appurtenance, but this photovoltaic support hoist and mount appurtenance can accomplish the hoist and mount construction of photovoltaic support safely and reliably.
Referring to fig. 1 and 2, in the present embodiment, a base 5 is disposed at the bottom end of the upright 1. Specifically, the bottom welding of pole setting 1 has disc type base 5, and the support area of pole setting 1 can be increased to disc type base 5 to strengthen the stability that pole setting 1 supported.
In order to improve universality and flexibility of the photovoltaic bracket hoisting auxiliary tool, the vertical rod 1 of the embodiment is a telescopic vertical rod 1. Alternatively, the length of the telescopic pole 1 can be adjusted within 2-5 meters. The photovoltaic support hoisting auxiliary tool provided by the embodiment can adapt to different installation scenes, and meanwhile, the telescopic upright 1 is easier to transport.
Please refer to fig. 1 and fig. 2, in this embodiment, the fixing component 2 includes an arc-shaped hoop member 21 and an annular hoop sequentially disposed along a length direction of the upright 1, specifically, the arc-shaped hoop member 21 is disposed at a position of the upright 1 near the bottom end, and the annular hoop member 22 is disposed above the arc-shaped hoop member 21. In some alternative embodiments, the distance between the curved hoop member 21 and the bottom end of the pole 1 is 300mm, and the distance between the annular hoop member 22 and the bottom end of the pole 1 is 1800mm.
The stand is fixed with the photovoltaic pillar through the staple bolt to arc staple bolt spare 21, annular staple bolt spare 22 locate the well lower part position of pole setting 1, and annular staple bolt can press from both sides tight photovoltaic stand. The fixed subassembly 2 can effectively disperse the power that the stand bore to the bottom of photovoltaic pillar to improve the bearing support ability of stand, make the supporting effect of stand more stable.
The annular hoop can be a double-buckle hoop, and specifically, the annular hoop member 22 comprises a first arc member 221 and a second arc member 222, wherein the first arc member 221 is connected with the vertical rod 1, and the second arc member 222 is in buckle connection with the first arc member 221.
Preferably, rubber pads are arranged on the arc-shaped hoop piece 21 and the annular hoop piece 22 so as to prevent the hoops of the auxiliary tool for hoisting the photovoltaic bracket from scratching the galvanized steel pipe to form the photovoltaic upright post.
In this embodiment, the top end of the upright 1 is provided with a cross bar 11, and the pulley assembly 3 is arranged on the cross bar 11.
Referring to fig. 1, the pulley assembly 3 includes a fixed ring 31, a fixed pulley 32, a movable pulley 33 and a hook 34, wherein the fixed ring 31 and the fixed pulley 32 are both disposed on the upright 1, the rope 4 is sequentially wound on the fixed pulley 32 and the movable pulley 33, one end of the rope 4 is connected with the fixed ring 31, the hook 34 is disposed on the movable pulley 33, and the hook 34 is used for suspending the photovoltaic bracket.
The rope 4 can comprise a steel wire rope and a nylon rope, the movable pulley 33 and the fixed pulley 32 can be linked through the steel wire rope, so that the linkage of the pulley assembly 3 is smoother, the bearing capacity of the pulley assembly 3 is greater than or equal to 500kg, the lifting requirement of the photovoltaic bracket is met, and the rope has the characteristics of skid resistance and wear resistance. The nylon rope can be optionally wound and unwound by a motor or manually wound and unwound, wherein the tension requirement of the photovoltaic bracket hoisting can be reduced by the pulley assembly 3, and the photovoltaic bracket hoisting can be conveniently and rapidly completed in a semi-mechanized and semi-manual mode.
In summary, the auxiliary tool for hoisting the photovoltaic bracket provided by the utility model can fix the vertical rod 1 and the photovoltaic support column through the fixing component 2, and control the pulley component 3 to hoist or put down the photovoltaic bracket through manual or motor control rope 4 to retract.
The foregoing description is only illustrative of the present utility model and is not intended to limit the scope of the utility model, and all equivalent changes made by the specification and drawings of the present utility model, or direct or indirect application in the relevant art, are included in the scope of the present utility model.

Claims (10)

1. The utility model provides a photovoltaic support hoist and mount appurtenance for auxiliary photovoltaic support and the hoist and mount of photovoltaic pillar, its characterized in that, including pole setting, fixed subassembly, pulley assembly and rope, fixed subassembly is located in the pole setting, fixed subassembly is used for right the pole setting with the photovoltaic pillar is fixed, pulley assembly locates the tip of pole setting, pulley assembly is used for suspending in midair the photovoltaic support, the rope with pulley assembly connects, the rope is used for controlling pulley assembly lifts by crane or puts down the photovoltaic support.
2. The photovoltaic bracket lifting auxiliary tool according to claim 1, wherein the bottom end of the vertical rod is provided with a base.
3. The photovoltaic bracket lifting aid according to claim 1, wherein the fixing assembly comprises at least two hoop members arranged in sequence along the length direction of the vertical rod.
4. The photovoltaic bracket lifting auxiliary tool according to claim 3, wherein the at least two hoop members comprise an arc-shaped hoop member and an annular hoop member, the arc-shaped hoop member is arranged at a position of the vertical rod close to the bottom end, and the annular hoop member is arranged above the arc-shaped hoop member.
5. The photovoltaic bracket lifting auxiliary tool according to claim 4, wherein the annular hoop member comprises a first arc member and a second arc member, the first arc member is connected with the vertical rod, and the second arc member is movably connected with the first arc member.
6. The photovoltaic bracket lifting aid of claim 5, wherein the first arcuate member is snap-fit with the second arcuate member.
7. A photovoltaic bracket lifting aid according to claim 3, wherein the anchor ear is provided with a rubber pad.
8. The photovoltaic bracket lifting auxiliary tool according to claim 1, wherein a cross rod is arranged at the top end of the vertical rod, and the pulley assembly is arranged on the cross rod.
9. The photovoltaic bracket lifting aid according to claim 1, wherein the pulley assembly comprises a fixed ring, a fixed pulley, a movable pulley and a lifting hook, the fixed ring and the fixed pulley are arranged on the vertical rod, the rope is sequentially wound on the fixed pulley and the movable pulley, one end of the rope is connected with the fixed ring, the lifting hook is arranged on the movable pulley, and the lifting hook is used for suspending the photovoltaic bracket.
10. The photovoltaic bracket lifting aid of claim 1, wherein the pole is a telescoping pole.
CN202521198163.5U 2025-06-12 A photovoltaic bracket hoisting auxiliary tool Active CN224212314U (en)

Publications (1)

Publication Number Publication Date
CN224212314U true CN224212314U (en) 2026-05-08

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