CN220173133U - Photovoltaic power generation support installation auxiliary device and photovoltaic power generation support installation platform thereof - Google Patents

Photovoltaic power generation support installation auxiliary device and photovoltaic power generation support installation platform thereof Download PDF

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Publication number
CN220173133U
CN220173133U CN202321698648.1U CN202321698648U CN220173133U CN 220173133 U CN220173133 U CN 220173133U CN 202321698648 U CN202321698648 U CN 202321698648U CN 220173133 U CN220173133 U CN 220173133U
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China
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power generation
photovoltaic power
bearing frame
transverse bearing
auxiliary device
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CN202321698648.1U
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Chinese (zh)
Inventor
袁丙青
张鑫
胡洋
王宇琴
胡肖军
刘辉
姚爽
黄志平
冯君海
冯志富
高光甫
崔立钊
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Northman Energy Technology Beijing Co ltd
Three Gorges New Energy Wan'an Power Generation Co ltd
PowerChina Jiangxi Electric Power Engineering Co Ltd
Original Assignee
Northman Energy Technology Beijing Co ltd
Three Gorges New Energy Wan'an Power Generation Co ltd
PowerChina Jiangxi Electric Power Engineering Co Ltd
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Application filed by Northman Energy Technology Beijing Co ltd, Three Gorges New Energy Wan'an Power Generation Co ltd, PowerChina Jiangxi Electric Power Engineering Co Ltd filed Critical Northman Energy Technology Beijing Co ltd
Priority to CN202321698648.1U priority Critical patent/CN220173133U/en
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E10/00Energy generation through renewable energy sources
    • Y02E10/50Photovoltaic [PV] energy

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Abstract

The utility model relates to a photovoltaic power generation support installation auxiliary device and a photovoltaic power generation support installation platform thereof, wherein the photovoltaic power generation support installation auxiliary device comprises: a plurality of auxiliary supporting frames and a first operation plane which is erected on the auxiliary supporting frames in a penetrating way; the auxiliary supporting frame comprises a transverse bearing frame and supporting upright posts arranged at two ends close to the transverse bearing frame; two ends of the transverse bearing frame are provided with two suspension hooks; each suspension hook comprises a rod part, a first curved hook part and a second curved hook part; the first curved hook part is positioned at the upper end part of the rod part; the second hook part is positioned at the lower end part of the rod part; the two ends of the transverse bearing frame are hung on the second hook parts of the two hanging hooks; a support column comprising an adjustable portion and a column portion; the adjustable portion sets up in the top of stand portion, and stand portion is fixed in photovoltaic power generation construction subaerial. The height of each supporting point is adjusted according to the terrain of the installation area, so that the photovoltaic power generation support is suitable for installation of photovoltaic power generation supports with any height, and stable leveling of an operation plane is ensured.

Description

Photovoltaic power generation support installation auxiliary device and photovoltaic power generation support installation platform thereof
Technical Field
The utility model relates to the field of photovoltaics, in particular to a photovoltaic power generation bracket installation auxiliary device and a photovoltaic power generation bracket installation platform thereof.
Background
Solar energy is a clean energy source. The direct conversion of solar energy into electrical energy by means of photovoltaic power stations is an efficient way of utilizing solar energy. The agricultural light complementation is also called photovoltaic agriculture, which is characterized in that the solar photovoltaic power generation has no pollution and zero emission, and is combined with a high-tech greenhouse, and a photovoltaic solar power generation device is paved on part or all of the sunny side of the greenhouse. The agricultural and optical complementary photovoltaic power generation project has power generation capacity, can provide a proper growth environment for crops, edible fungi and livestock breeding, and can bring better economic benefit and social benefit.
The distance between the support of the agricultural light complementary photovoltaic power generation project and the ground is generally more than 2 meters, the installation and construction difficulties are high, and the risk coefficient is also larger. The complex and flexible assembly of the commonly used scaffold is not strong, and the scaffold is only suitable for leveling the ground, can not be used for building more complex ground, and has slow construction progress and potential safety hazard in the construction process. Therefore, the urgent need is that a structural member is light and easy to assemble and disassemble, convenient to move, and capable of adjusting the height of each supporting point according to the terrain and changing the length of the supporting point so as to be conveniently applied to the installation of the photovoltaic power generation bracket with any height.
Disclosure of Invention
Aiming at the technical problems in the prior art, the utility model provides the photovoltaic power generation support installation auxiliary device, which can adjust the height of each supporting point according to the topography of an installation area, namely change the length of a supporting rod so as to adapt to the installation of the photovoltaic power generation support with any height, thereby improving the stability of an installation platform; meanwhile, the structural member is light, easy to assemble and disassemble and convenient to move.
Photovoltaic power generation support installs auxiliary device includes: the photovoltaic power generation system comprises a plurality of auxiliary supporting frames and first operation planes which are arranged on the auxiliary supporting frames in a penetrating manner, wherein the first operation planes are used for forming an operation platform for construction staff to build photovoltaic power generation equipment; the auxiliary supporting frame comprises a transverse bearing frame and supporting upright posts arranged at positions close to two ends of the transverse bearing frame; two ends of the transverse bearing frame are also provided with two suspension hooks; each suspension hook comprises a rod part, a first curved hook part and a second curved hook part; the first hook part is positioned at the upper end part of the rod part and is used for being hung on an inclined beam of the photovoltaic power generation bracket; the second hook part is positioned at the lower end part of the rod part and is used for being connected with the transverse bearing frame; the two ends of the transverse bearing frame are respectively hung on the second hook parts of the two hanging hooks; and the support columns, each of the support columns including an adjustable portion and a column portion; the adjustable part is arranged at the top end of the column part, and the column part is fixed on the photovoltaic power generation construction ground.
According to the photovoltaic power generation support installation auxiliary device, the arrangement position of the hanging hooks on the transverse bearing frame is located on the inner side of the arrangement position of the supporting upright posts on the transverse bearing frame.
The photovoltaic power generation support installation auxiliary device is characterized in that a plurality of auxiliary support frames are further penetrated and provided with a second operation plane, so that an operation platform for construction staff to build photovoltaic power generation equipment is formed.
The photovoltaic power generation support installation auxiliary device is characterized in that the first operation plane and the second operation plane are symmetrically arranged at two ends of the transverse bearing frames penetrating through the auxiliary support frames in a left-right symmetry mode, and the first operation plane and the second operation plane are respectively located at the same side, and the hanging hooks are close to the inner sides of the transverse bearing frames.
According to the photovoltaic power generation support installation auxiliary device, the adjustable portion comprises the studs arranged on the transverse bearing frame and the threaded sleeves correspondingly arranged on the supporting upright posts, and the length of the supporting upright posts is adjusted through rotation of the studs and the threaded sleeves.
The photovoltaic power generation support mounting auxiliary device is characterized in that the stud is fixed on the transverse bearing frame through the U-shaped fixing ring; the U-shaped fixing ring comprises U-shaped steel, a connecting steel plate and nuts; and clamping the U-shaped steel on the transverse bearing frame, and fastening the U-shaped steel on the transverse bearing frame through the connecting steel plate and the nut.
The photovoltaic power generation support mounting auxiliary device is characterized in that the bending directions of the first bending hook part and the second bending hook part are opposite.
The photovoltaic power generation bracket installation auxiliary device is characterized in that the lengths of the rod parts of the two suspension hooks are different, and the rod parts are used for respectively adapting to the vertical distance from the two ends of the oblique beam of the photovoltaic power generation bracket to the bearing frame.
The utility model also provides a photovoltaic power generation bracket mounting platform which comprises a photovoltaic power generation bracket assembly and the bracket mounting auxiliary device fixed on the photovoltaic power generation bracket assembly, wherein the bracket mounting platform comprises the plurality of bracket mounting auxiliary devices.
The photovoltaic power generation support mounting platform as described above, the photovoltaic power generation support assembly includes: the pile bodies are arranged on the photovoltaic power generation construction ground and are arranged in a row at intervals; the anchor ear is of an annular structure with a clamping device and is sleeved on the upper part of each pile body; the lower end of the front upright post is fixed on the pile body through the anchor ear; the lower end of the rear upright post is fixed on the pile body through the anchor ear; the lower end of the inclined beam is arranged at the upper end of the front upright post, and the upper end of the inclined beam is arranged at the upper end of the rear upright post; one end of the front diagonal brace is connected with the diagonal beam, and the other end of the front diagonal brace is connected with the lower end of the front upright post and used for supporting the diagonal beam; one end of the rear diagonal brace is connected with the diagonal beam, and the other end of the rear diagonal brace is connected with the lower end of the rear upright post and used for supporting the diagonal beam; the upper end part of the suspension hook is suspended on the inclined beam; two supporting columns of each auxiliary supporting frame are oppositely erected on two sides of the pile body, the height of each supporting column is adjusted to enable each transverse bearing frame to be kept at the same height, and the transverse bearing frames transversely lean against the side face of the pile body.
As described above, the front upright post and the rear upright post are relatively fixed on two sides of the pile body through the anchor ear.
The photovoltaic power generation support installation auxiliary device provided by the utility model can adjust the height of each supporting point according to the topography of the installation area, namely, the length of the supporting rod is changed, so that the device is suitable for installing the photovoltaic power generation support with any height, and the stability of the installation platform is improved. In addition, the photovoltaic power generation support installation auxiliary device provided by the utility model has the advantages of light structural parts, simplicity in assembly and disassembly and convenience in movement.
Drawings
Preferred embodiments of the present utility model will be described in further detail below with reference to the attached drawing figures, wherein:
fig. 1 is a schematic structural view of an auxiliary supporting frame of a photovoltaic power generation rack installation auxiliary device according to an embodiment of the present utility model;
FIG. 2 is an assembled schematic view of a photovoltaic power generation rack mounting aid according to one embodiment of the present utility model;
FIG. 3 is an enlarged schematic view of portion A according to FIG. 1;
FIG. 4 is a schematic view of a photovoltaic power generation rack mounting platform according to an embodiment of the present utility model after installation; and
fig. 5 is a schematic perspective view of a photovoltaic power generation rack mounting platform according to an embodiment of the present utility model after the mounting is completed.
Detailed Description
For the purpose of making the objects, technical solutions and advantages of the embodiments of the present utility model more apparent, the technical solutions of the embodiments of the present utility model will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present utility model, and it is apparent that the described embodiments are some embodiments of the present utility model, but not all embodiments of the present utility model. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
In the following detailed description, reference is made to the accompanying drawings, which form a part hereof, and in which is shown by way of illustration specific embodiments of the utility model. In the drawings, like reference numerals describe substantially similar components throughout the different views. Various specific embodiments of the utility model are described in sufficient detail below to enable those skilled in the art to practice the teachings of the utility model. It is to be understood that other embodiments may be utilized or structural, logical, or electrical changes may be made to embodiments of the present utility model.
The utility model provides a photovoltaic power generation support installation auxiliary device, which can adjust the height of each supporting point according to the terrain of an installation area, namely change the length of a supporting rod so as to be suitable for installing a photovoltaic power generation support with any height, improve the stability of an installation platform and be better suitable for the terrain of the installation area. In addition, the photovoltaic power generation support installation auxiliary device provided by the utility model has the advantages of light structural parts, simplicity in assembly and disassembly and convenience in movement.
The technical scheme of the utility model is further described by the specific embodiments. It should be understood by those skilled in the art that the following descriptions are only for convenience in understanding the technical solutions of the present utility model and should not be used to limit the scope of the present utility model.
Fig. 1 is a schematic structural view of an auxiliary support frame of a photovoltaic power generation rack installation auxiliary device according to an embodiment of the present utility model, and fig. 2 is an assembled schematic view of a photovoltaic power generation rack installation auxiliary device according to an embodiment of the present utility model. Referring to fig. 1 and 2, the photovoltaic power generation stand mounting auxiliary device 100 includes: the photovoltaic power generation device comprises a plurality of auxiliary supporting frames and a first operation plane 104 which is arranged on the auxiliary supporting frames in a penetrating mode, and an operation platform for building photovoltaic power generation equipment by constructors is formed. The auxiliary supporting frame comprises a transverse bearing frame 101 and supporting columns 102 arranged at positions close to two ends of the transverse bearing frame 101. Two hanging hooks 103 are also arranged at two ends of the transverse bearing frame 101; each of the suspension hooks 103 includes a lever portion 1031, a first hook portion 1032, and a second hook portion 1033; the first hook 1032 is located at the upper end of the rod 1031 and is used for being hung on an oblique beam of the photovoltaic power generation bracket; the second hook portion 1033 is located at the lower end portion of the lever portion 1031, and is used for being connected to the transverse bearing frame 101. In some embodiments, the first and second hooks 1032, 1033 are curved in opposite directions. The lengths of the rod portions 1031 of the two suspension hooks 103 are different, so as to respectively adapt to the vertical distance from the two ends of the oblique beam of the photovoltaic power generation bracket to the bearing frame. The installation position of the suspension hooks 103 on the transverse bearing frame 101 is located inside the installation position of the support upright 102 on the transverse bearing frame 101.
Both ends of the transverse load-bearing frame 101 are respectively suspended on the second hook portions 1033 of the two suspension hooks 103. In addition, two support columns 102 are included, each of the support columns 102 including an adjustable portion 1021 and a column portion 1022 (see fig. 3); wherein the adjustable portion 1021 is provided at the top end of the column portion 1022, and the column portion 1022 is fixed on the photovoltaic power generation construction floor. In some embodiments, as shown in fig. 2, a second working plane is further formed on a plurality of the auxiliary supporting frames. The first working plane 104 and the second working plane are symmetrically arranged at two ends of the transverse bearing frame 101 penetrating through the plurality of auxiliary supporting frames, and the first working plane and the second working plane are respectively positioned at the same side, and the hanging hooks 103 are close to the inner side of the transverse bearing frame 101. Through the first operation plane and the second operation plane can independently form or make up respectively and form the operating platform that constructor built photovoltaic power generation equipment, make things convenient for constructor to walk and construction on operating platform.
Fig. 3 is a partially enlarged schematic view according to a portion a in fig. 1. Because the distance between the support of the agricultural light complementary type photovoltaic power generation project and the ground is generally more than 2 meters, the installation and construction difficulties are high, and the risk coefficient is also larger. The conventional scaffold is not strong in assembly complexity and flexibility, is mainly suitable for leveling the ground, cannot be used for building more complicated ground, causes slow construction progress, and has potential safety hazards in the construction process. In some embodiments, the adjustable portion 1021 includes a stud disposed on the lateral load-bearing frame 101 and a threaded sleeve correspondingly disposed on the support post, the stud being secured to the lateral load-bearing frame 101 by a U-shaped securing ring; the U-shaped fixing ring comprises U-shaped steel 1023, a connecting steel plate 1024 and a nut 1025; the U-shaped steel is clamped on the transverse bearing frame 101, and the U-shaped steel is fastened on the transverse bearing frame 101 through the connecting steel plates 1024 and the nuts 1025. Then, through the rotation of the stud and the threaded sleeve, the length of the supporting upright post 102 is adjusted, so that the length of each supporting upright post 102 is respectively adapted to the vertical distance between the first operation plane 104 and the second operation plane and the photovoltaic power generation construction ground, the height of each supporting point can be adjusted according to the topography, and the length of each supporting point is changed, so that the supporting point can be conveniently applied to the installation of the photovoltaic power generation support with any height.
Fig. 4 is a schematic structural view of a photovoltaic power generation rack mounting platform according to an embodiment of the present utility model after the mounting is completed. Fig. 5 is a schematic perspective view of a photovoltaic power generation rack mounting platform according to an embodiment of the present utility model after the mounting is completed.
Referring to fig. 4 and 5, the utility model further provides a photovoltaic power generation bracket mounting platform, which comprises a photovoltaic power generation bracket assembly 200 and the bracket mounting auxiliary device fixed on the photovoltaic power generation bracket assembly 200, wherein the bracket mounting platform comprises a plurality of bracket mounting auxiliary devices.
In some embodiments, the photovoltaic power generation stand assembly 200 includes: pile body 201, anchor ear 202, front upright 203, rear upright 204, diagonal beam 205, front diagonal brace 206 and rear diagonal brace 207. The pile body 201 is arranged on the photovoltaic power generation construction ground, and the pile bodies 201 are arranged in a row at intervals. The anchor ear 202 is an annular structure with a clamping device, and is sleeved on the upper portion of each pile body 201. The lower end of the front upright 203 is fixed on the pile body 201 through the anchor ear 202. The lower end of the rear pillar 204 is fixed on the pile body 201 through the anchor ear 202. The front upright 203 and the rear upright 204 are relatively fixed on two sides of the pile body 201 through the anchor ear 202.
The lower end of the inclined beam 205 is erected on the upper end of the front upright 203, and the higher end of the inclined beam 205 is erected on the upper end of the rear upright 204. One end of the front diagonal brace 206 is connected to the diagonal beam 205, and the other end is connected to the lower end of the front pillar 203, so as to support the diagonal beam 205. One end of the rear diagonal brace 207 is connected to the diagonal beam 205, and the other end is connected to the lower end of the rear pillar 204, so as to support the diagonal beam 205. Wherein the upper end of the suspension hook 103 is suspended on the oblique beam 205; the two supporting columns 102 of each auxiliary supporting frame are oppositely erected on two sides of the pile body 201, the height of each supporting column 102 is adjusted to enable each transverse bearing frame 101 to be kept at the same height, and the transverse bearing frames 101 transversely lean against the side faces of the pile body 201.
The photovoltaic power generation support installation auxiliary device provided by the utility model can adjust the height of each supporting point according to the topography of the installation area, namely, the length of the supporting rod is changed, so that the device is suitable for installing the photovoltaic power generation support with any height, and the stability of the installation platform is improved. In addition, the photovoltaic power generation support installation auxiliary device provided by the utility model has the advantages of light structural parts, simplicity in assembly and disassembly and convenience in movement.
The above embodiments are provided for illustrating the present utility model and not for limiting the present utility model, and various changes and modifications may be made by one skilled in the relevant art without departing from the scope of the present utility model, therefore, all equivalent technical solutions shall fall within the scope of the present disclosure.

Claims (11)

1. A photovoltaic power generation support installation auxiliary device, characterized by comprising:
the photovoltaic power generation system comprises a plurality of auxiliary supporting frames and first operation planes which are arranged on the auxiliary supporting frames in a penetrating manner, wherein the first operation planes are used for forming an operation platform for construction staff to build photovoltaic power generation equipment;
the auxiliary supporting frame comprises a transverse bearing frame and supporting upright posts arranged at positions close to two ends of the transverse bearing frame;
two ends of the transverse bearing frame are also provided with two suspension hooks;
each suspension hook comprises a rod part, a first curved hook part and a second curved hook part; the first hook part is positioned at the upper end part of the rod part and is used for being hung on an inclined beam of the photovoltaic power generation bracket; the second hook part is positioned at the lower end part of the rod part and is used for being connected with the transverse bearing frame;
the two ends of the transverse bearing frame are respectively hung on the second hook parts of the two hanging hooks; and
the support columns each comprise an adjustable portion and a column portion; the adjustable part is arranged at the top end of the column part, and the column part is fixed on the photovoltaic power generation construction ground.
2. The photovoltaic power generation rack installation auxiliary device according to claim 1, wherein the setting position of the suspension hook on the lateral load-bearing frame is located inside the setting position of the support column on the lateral load-bearing frame.
3. The photovoltaic power generation bracket installation auxiliary device according to claim 1, wherein a plurality of auxiliary supporting frames are further penetrated and provided with a second operation plane, so that an operation platform for building photovoltaic power generation equipment by constructors is formed.
4. The photovoltaic power generation rack installation auxiliary device according to claim 3, wherein the first operation plane and the second operation plane are symmetrically arranged at two ends of a transverse bearing frame penetrating and erecting a plurality of auxiliary supporting frames in a left-right mode, and the first operation plane and the second operation plane are respectively positioned at the same side, and the hanging hooks are close to the inner sides of the transverse bearing frames.
5. The photovoltaic power generation rack installation auxiliary device according to claim 2, wherein the adjustable portion includes a stud provided on the lateral load-bearing rack and a threaded sleeve provided correspondingly on the support column, and the length of the support column is adjusted by rotation of the stud and the threaded sleeve.
6. The photovoltaic power generation bracket installation auxiliary device according to claim 5, wherein the stud is fixed on the transverse bearing frame through a U-shaped fixing ring; the U-shaped fixing ring comprises U-shaped steel, a connecting steel plate and nuts; and clamping the U-shaped steel on the transverse bearing frame, and fastening the U-shaped steel on the transverse bearing frame through the connecting steel plate and the nut.
7. The photovoltaic power generation rack mounting auxiliary device according to claim 1, wherein the first and second hooking portions are bent in opposite directions.
8. The photovoltaic power generation rack installation auxiliary device according to claim 1, wherein the lengths of the rod portions of the two suspension hooks are different to respectively adapt to the vertical distance from both ends of the oblique beam of the photovoltaic power generation rack to the bearing frame.
9. A photovoltaic power generation rack mounting platform comprising a photovoltaic power generation rack assembly and the rack mounting aid secured to the photovoltaic power generation rack assembly, wherein the rack mounting platform comprises a plurality of the rack mounting aids of any one of claims 1-8.
10. The photovoltaic power generation rack mounting platform of claim 9, wherein the photovoltaic power generation rack assembly comprises:
the pile bodies are arranged on the photovoltaic power generation construction ground and are arranged in a row at intervals;
the anchor ear is of an annular structure with a clamping device and is sleeved on the upper part of each pile body;
the lower end of the front upright post is fixed on the pile body through the anchor ear;
the lower end of the rear upright post is fixed on the pile body through the anchor ear;
the lower end of the inclined beam is arranged at the upper end of the front upright post, and the upper end of the inclined beam is arranged at the upper end of the rear upright post;
one end of the front diagonal brace is connected with the diagonal beam, and the other end of the front diagonal brace is connected with the lower end of the front upright post and used for supporting the diagonal beam; and
one end of the rear diagonal brace is connected with the diagonal beam, and the other end of the rear diagonal brace is connected with the lower end of the rear upright post and used for supporting the diagonal beam;
the upper end part of the suspension hook is suspended on the inclined beam; two supporting columns of each auxiliary supporting frame are oppositely erected on two sides of the pile body, the height of each supporting column is adjusted to enable each transverse bearing frame to be kept at the same height, and the transverse bearing frames transversely lean against the side face of the pile body.
11. The photovoltaic power generation bracket mounting platform of claim 10, wherein the front and rear posts are relatively secured to both sides of the pile body by the anchor ear.
CN202321698648.1U 2023-06-30 2023-06-30 Photovoltaic power generation support installation auxiliary device and photovoltaic power generation support installation platform thereof Active CN220173133U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202321698648.1U CN220173133U (en) 2023-06-30 2023-06-30 Photovoltaic power generation support installation auxiliary device and photovoltaic power generation support installation platform thereof

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202321698648.1U CN220173133U (en) 2023-06-30 2023-06-30 Photovoltaic power generation support installation auxiliary device and photovoltaic power generation support installation platform thereof

Publications (1)

Publication Number Publication Date
CN220173133U true CN220173133U (en) 2023-12-12

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Country Status (1)

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CN (1) CN220173133U (en)

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