CN212201219U - High support photovoltaic overhauls platform - Google Patents
High support photovoltaic overhauls platform Download PDFInfo
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- CN212201219U CN212201219U CN202020804248.4U CN202020804248U CN212201219U CN 212201219 U CN212201219 U CN 212201219U CN 202020804248 U CN202020804248 U CN 202020804248U CN 212201219 U CN212201219 U CN 212201219U
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Abstract
The utility model belongs to the technical field of maintenance tools, in particular to a high-support photovoltaic maintenance platform, which comprises a pipe hoop, a maintenance platform and a support frame, wherein the pipe hoop comprises a first arc-shaped pipe hoop and a second arc-shaped pipe hoop, two bolts are respectively connected with two sides of the first arc-shaped pipe hoop in a sliding way, two bolts are respectively connected with a first nut, two first nuts are respectively positioned at two sides of the second arc-shaped pipe hoop and fixedly connected with the second arc-shaped pipe hoop, the maintenance platform is in a strip shape and has a flat upper surface, the middle of the maintenance platform is hollow, one end of the maintenance platform is provided with an arc-shaped end surface matched with the second arc-shaped pipe hoop, the inner wall and the outer wall of the arc-shaped end surface are respectively welded with the second arc-shaped pipe hoop, the support frame comprises a short rod and a long rod, the upper side of the short rod is fixedly connected with the second arc-shaped pipe hoop, can be stably built in complex terrains, and is convenient for maintenance personnel to carry and install.
Description
Technical Field
The utility model belongs to the technical field of repair tools, concretely relates to high support photovoltaic overhauls platform.
Background
In the complementary project of farming light, the height of the lower edge of the photovoltaic module is 2.5 meters, and the height of the upper edge of the photovoltaic module is 3 meters. Because photovoltaic module majority is installed in the field, the soil is soft uneven, builds traditional maintenance platform and need dismantle earlier and carry to the job site equipment to 6 parts, and the platform total weight is about 25 kilograms, needs 12 people's transport, and very big extravagant maintenance operation personnel's physical power and activity time build traditional photovoltaic system and overhaul platform work efficiency low, physical consumption is big, and it is not high to build difficult firm security performance in the complicated topography. Especially, the operation is carried out in severe weather such as summer heat, cold winter and wind, the physical quality of the operators is tested, and the traditional photovoltaic system maintenance platform does not meet the requirements on operation efficiency and safety.
SUMMERY OF THE UTILITY MODEL
The utility model aims at: the photovoltaic maintenance platform is stable in structure, can be stably built in complex terrains, and is convenient for maintenance personnel to carry and install.
In order to realize the technical purpose, the utility model discloses a technical scheme as follows:
the utility model provides a high support photovoltaic overhauls platform, includes ferrule, maintenance platform and support frame, the ferrule includes first arc ferrule and second arc ferrule, equal sliding connection in first arc ferrule both sides has two bolts, two the bolt all is connected with first nut, two first nut is located second arc ferrule both sides and with second arc ferrule fixed connection, the maintenance platform is rectangular shape and upper surface level and smooth, the middle sky of maintenance platform, maintenance platform one end be equipped with second arc ferrule assorted arc terminal surface, the inner wall and the outer wall of arc terminal surface all with second arc ferrule welding, the support frame includes quarter butt and stock, quarter butt upside and second arc ferrule fixed connection, quarter butt lower extreme and stock fixed connection, the stock other end and maintenance platform fixed connection.
By adopting the technical scheme of the utility model, the first nut is fixedly connected with the second arc-shaped pipe hoop, and the pipe hoop can clamp the stand column in the photovoltaic assembly by screwing the bolt, so that the photovoltaic maintenance platform can be fixed in the air, the maintenance platform is convenient for operators to stand on the maintenance platform for maintenance, and the angle and the height can be conveniently adjusted by using the pipe hoop structure, so that the photovoltaic maintenance platform is suitable for maintenance under different conditions; the maintenance platform is in a strip shape, the upper surface of the maintenance platform is flat, and construction is conveniently carried out by standing on the maintenance platform; meanwhile, the middle of the maintenance platform is hollowed, so that the weight of the maintenance platform is reduced and the maintenance platform is convenient to carry; the arc-shaped end face is arranged, so that the contact area between the maintenance platform and a second arc-shaped pipe hoop is increased, the maintenance platform is connected with the second arc-shaped pipe hoop more tightly, the inner wall and the outer wall of the arc-shaped end face are both welded with the second arc-shaped pipe hoop, the maintenance platform is connected with the second arc-shaped pipe hoop more stably, the specific welding mode of the structure is that after the lower edge of one side of the arc-shaped end face of the maintenance platform is cut off along the hollowed edge, the inner wall of the arc-shaped end face is firstly welded with the second arc-shaped pipe hoop, then the cut part is welded and restored again, and finally the outer wall of the arc-shaped end face is welded with the second arc-; the short rod in the support frame is contacted with the upright post in the photovoltaic assembly, and the short rod, the long rod and the maintenance platform form a stable support structure through matching with the long rod, so that the stability of the structure is ensured; the utility model discloses stable in structure can stabilize and build in complicated topography, and the easy access personnel carry the installation.
Further inject, maintenance platform is equipped with the boss in the one side below that is located the arc terminal surface, the boss respectively with maintenance platform and second arc ferrule welding. By adopting the structure, the connection between the maintenance platform and the second arc-shaped pipe hoop is reinforced.
It is further defined that two of the bolts are each connected with a second nut located between the first and second arcuate pipe collars. By the structure, when the pipe clamp is disassembled, the bolt can be hung in the first arc-shaped pipe clamp, so that the pipe clamp is convenient to collect.
Further inject, second arc ferrule inner wall is equipped with and the short bar assorted recess, the short bar is fixed in the recess and with the welding of second arc ferrule. By means of the structure, the short rod is prevented from extending to the inner surface of the second arc-shaped pipe clamp, so that the contact area of the second arc-shaped pipe clamp and the stand column in the photovoltaic module is reduced, and the fixing capacity of the pipe clamp is affected.
Further limit, the welding of quarter butt downside has the arc piece with second arc ferrule assorted. Such structure uses the arc piece to increase the area of contact of the stand among stub and the photovoltaic module, has improved the stability of support frame.
Further limited, a gasket is arranged between the bolt and the first arc-shaped pipe hoop. By the structure, the stress area between the bolt and the first arc-shaped pipe clamp is increased, so that the structure is more stable.
Further defined, one of the two bolts is welded with a handle. Such structure, through the bolt that will weld the handle in advance with the dismantlement of second arc ferrule, can install the ferrule on the stand in photovoltaic module, twist and move the bolt that does not contain the handle and with ferrule one side pretension back, thoroughly lock the ferrule through the bolt that contains the handle, like this, need not use other mounting tools, convenient to use when using high support photovoltaic to overhaul the platform.
Further limit, first arc ferrule and second arc ferrule inner wall all are equipped with the skid resistant course. By means of the structure, the pipe clamp is fixed more stably, and the stability of the maintenance platform is improved.
Further defined, the bolt is a high strength 8.8 bolt. With the structure, the strength of the bolt is better, and the service life is longer.
Drawings
The present invention can be further illustrated by the non-limiting examples given in the accompanying drawings;
fig. 1 is a first schematic structural diagram of an embodiment of a high-support photovoltaic maintenance platform of the present invention;
FIG. 2 is an enlarged view of the structure at A in FIG. 1;
FIG. 3 is a schematic structural diagram II of an embodiment of a high-support photovoltaic maintenance platform of the present invention;
FIG. 4 is an enlarged view of the structure at B in FIG. 3;
fig. 5 is a third schematic structural view of an embodiment of a high-support photovoltaic maintenance platform of the present invention;
the main element symbols are as follows:
the pipe clamp comprises a pipe clamp 1, a first arc-shaped pipe clamp 11, a second arc-shaped pipe clamp 12, a groove 121, a bolt 13, a gasket 131, a first nut 14, a second nut 15, a handle 16, a maintenance platform 2, a reinforcing block 21, a support frame 3, a short rod 31, an arc-shaped block 311 and a long rod 32.
Detailed Description
In order to make the present invention better understood by those skilled in the art, the technical solutions of the present invention are further described below with reference to the accompanying drawings and examples.
Example 1
As shown in fig. 1-4, the utility model relates to a high-support photovoltaic maintenance platform, which comprises a pipe hoop 1, maintenance platform 2 and support frame 3, ferrule 1 includes first arc ferrule 11 and second arc ferrule 12, 11 equal sliding connection in both sides of first arc ferrule has two bolts 13, two bolts 13 all are connected with first nut 14, two first nuts 14 are located second arc ferrule 12 both sides and with second arc ferrule 12 fixed connection, maintenance platform 2 is rectangular shape and upper surface is level and smooth, the middle sky of maintenance platform 2, 2 one end of maintenance platform is equipped with the arc terminal surface with second arc ferrule 12 assorted, the inner wall and the outer wall of arc terminal surface all weld with second arc ferrule 12, support frame 3 includes quarter butt 31 and stock 32, quarter butt 31 upside and second arc ferrule 12 fixed connection, quarter butt 31 lower extreme and stock 32 fixed connection, the stock 32 other end and 2 fixed connection of maintenance platform.
By adopting the technical scheme of the utility model, because the first nut 14 is fixedly connected with the second arc-shaped pipe hoop 12, the pipe hoop 1 can clamp the upright post in the photovoltaic assembly by screwing the bolt 13, thus the photovoltaic maintenance platform can be fixed in the air, the maintenance platform 2 can be conveniently maintained by an operator standing on the maintenance platform, and the angle and the height can be conveniently adjusted by using the structure of the pipe hoop 1, so that the photovoltaic maintenance platform is suitable for maintenance under different conditions; the maintenance platform 2 is in a strip shape, the upper surface of the maintenance platform is flat, and construction can be conveniently carried out when the maintenance platform 2 stands on the maintenance platform; meanwhile, the middle of the maintenance platform 2 is hollowed, so that the weight of the maintenance platform 2 is reduced and the maintenance platform is convenient to carry; the arc-shaped end face is arranged, so that the contact area between the maintenance platform 2 and the second arc-shaped pipe hoop 12 is increased, the maintenance platform 2 and the second arc-shaped pipe hoop 12 are connected more tightly, the inner wall and the outer wall of the arc-shaped end face are both welded with the second arc-shaped pipe hoop 12, so that the maintenance platform 2 and the second arc-shaped pipe hoop 12 are connected more stably, the specific welding mode of the structure is that after the lower edge of one side of the arc-shaped end face of the maintenance platform 2 is cut off along the hollowed edge, the inner wall of the arc-shaped end face is firstly welded with the second arc-shaped pipe hoop 12, then the cut part is welded and restored again, and finally the outer wall of the arc-shaped end face is welded with the second arc; the short rod 31 in the support frame 3 is contacted with the upright post in the photovoltaic assembly, and the short rod 31, the long rod 32 and the maintenance platform 2 form a stable support structure through matching with the long rod 32, so that the stability of the structure is ensured; the utility model discloses stable in structure can stabilize and build in complicated topography, and the easy access personnel carry the installation.
Preferably, the maintenance platform 2 is provided with a reinforcing block 21 below one side of the arc-shaped end face, and the reinforcing block 21 is welded with the maintenance platform 2 and the second arc-shaped pipe hoop 12 respectively. With this configuration, the connection of the repair platform 2 to the second arcuate pipe clamp 12 is reinforced. In fact, other structures may be used to reinforce the connection of the service platform 2 to the second arcuate pipe clamp 12 as the case may be.
Preferably, a second nut 15 is connected to each of the two bolts 13, and the second nut 15 is located between the first arc pipe clamp 11 and the second arc pipe clamp 12. With the structure, when the pipe clamp 1 is disassembled, the bolt 13 can be hung in the first arc-shaped pipe clamp 11, and the pipe clamp is convenient to collect. In fact, other structures can be considered to be convenient for the collection of the bolt 13 according to specific situations.
Preferably, the inner wall of the second arc pipe clamp 12 is provided with a groove 121 matched with the short rod 31, and the short rod 31 is fixed in the groove 121 and welded with the second arc pipe clamp 12. With such a structure, the short rod 31 is prevented from extending out of the inner surface of the second arc-shaped pipe clamp 12, so that the contact area between the second arc-shaped pipe clamp 12 and the upright post in the photovoltaic module is reduced, and the fixing capability of the pipe clamp 1 is affected. In fact, other connection methods of the short rod 31 and the second arc pipe clamp 12 can be considered according to specific situations, so as to ensure the fixing capability of the pipe clamp 1.
Preferably, the arc-shaped blocks 311 matched with the second arc-shaped pipe clamp 12 are welded on the lower side of the short rod 31. With the structure, the contact area between the short rod 31 and the upright in the photovoltaic module is increased by using the arc blocks 311, and the stability of the support frame 3 is improved. In fact, other shapes and structures can be considered according to specific situations to improve the stability of the supporting frame 3.
Preferably, a gasket 131 is disposed between the bolt 13 and the first arc pipe clamp 11. With the structure, the stress area between the bolt 13 and the first arc-shaped pipe clamp 11 is increased, so that the structure is more stable. In fact, other structures can be used to improve the stability of the structure according to specific situations.
Preferably, the bolt 13 is a high strength 8.8 bolt. With the structure, the strength of the bolt 13 is better, and the service life is longer. In fact, other types of bolts may be considered as the case may be.
Preferably, the inner walls of the first arc-shaped pipe clamp 11 and the second arc-shaped pipe clamp 12 are both provided with an anti-skid layer. By means of the structure, the pipe hoop 1 is fixed more stably, and the stability of the maintenance platform is improved. In fact, other anti-slip structures may be used as the case may be.
Example 2
As shown in fig. 5, a high-support photovoltaic maintenance platform comprises a pipe hoop 1, a maintenance platform 2 and a support frame 3, wherein the pipe hoop 1 comprises a first arc-shaped pipe hoop 11 and a second arc-shaped pipe hoop 12, two bolts 13 are slidably connected to both sides of the first arc-shaped pipe hoop 11, the two bolts 13 are connected to first nuts 14, the two first nuts 14 are located on both sides of the second arc-shaped pipe hoop 12 and fixedly connected to the second arc-shaped pipe hoop 12, the maintenance platform 2 is in a strip shape and has a flat upper surface, the middle of the maintenance platform 2 is hollowed, one end of the maintenance platform 2 is provided with an arc-shaped end surface matched with the second arc-shaped pipe hoop 12, the inner wall and the outer wall of the arc-shaped end surface are welded to the second arc-shaped pipe hoop 12, the support frame 3 comprises a short rod 31 and a long rod 32, the upper side of the short rod 31 is fixedly connected to the second arc-shaped pipe hoop 12, the lower end of the short rod 31 is fixedly, one of the two bolts 13 has a handle 16 welded thereto. Such structure, through dismantling the bolt 13 that will weld have handle 16 in advance with second arc ferrule 12, can install ferrule 1 on the stand in photovoltaic module, twist and move the bolt 13 that does not contain handle 16 and with ferrule 1 one side pretension back, thoroughly lock ferrule 1 through bolt 13 that contains handle 16, like this, need not use other mounting tool, convenient to use when using high support photovoltaic maintenance platform.
The above embodiments are merely illustrative of the principles and effects of the present invention, and are not to be construed as limiting the invention. Modifications and variations can be made to the above-described embodiments by those skilled in the art without departing from the spirit and scope of the present invention. Accordingly, it is intended that all equivalent modifications or changes which may be made by those skilled in the art without departing from the spirit and technical spirit of the present invention be covered by the claims of the present invention.
Claims (9)
1. The utility model provides a high support photovoltaic overhauls platform which characterized in that: comprises a pipe hoop (1), a maintenance platform (2) and a support frame (3), wherein the pipe hoop (1) comprises a first arc-shaped pipe hoop (11) and a second arc-shaped pipe hoop (12), two bolts (13) are connected to two sides of the first arc-shaped pipe hoop (11) in a sliding manner, two bolts (13) are connected with first nuts (14), two first nuts (14) are positioned on two sides of the second arc-shaped pipe hoop (12) and fixedly connected with the second arc-shaped pipe hoop (12), the maintenance platform (2) is in a long strip shape and has a flat upper surface, the middle of the maintenance platform (2) is hollowed, one end of the maintenance platform (2) is provided with an arc-shaped end surface matched with the second arc-shaped pipe hoop (12), the inner wall and the outer wall of the arc-shaped end surface are welded with the second arc-shaped pipe hoop (12), the support frame (3) comprises a short rod (31) and a long rod (32), the upper side of the short rod (31) is fixedly connected with the second arc-shaped pipe hoop (12, the lower end of the short rod (31) is fixedly connected with the long rod (32), and the other end of the long rod (32) is fixedly connected with the maintenance platform (2).
2. The high support photovoltaic service platform of claim 1, wherein: maintenance platform (2) are located one side below of arc terminal surface and are equipped with boss (21), boss (21) respectively with maintenance platform (2) and second arc ferrule (12) welding.
3. The high support photovoltaic service platform of claim 1, wherein: and the two bolts (13) are connected with second nuts (15), and the second nuts (15) are positioned between the first arc-shaped pipe hoop (11) and the second arc-shaped pipe hoop (12).
4. The high support photovoltaic service platform of claim 1, wherein: the inner wall of the second arc-shaped pipe hoop (12) is provided with a groove (121) matched with the short rod (31), and the short rod (31) is fixed in the groove (121) and welded with the second arc-shaped pipe hoop (12).
5. The high support photovoltaic service platform of claim 1, wherein: and an arc-shaped block (311) matched with the second arc-shaped pipe hoop (12) is welded on the lower side of the short rod (31).
6. The high support photovoltaic service platform of claim 1, wherein: and a gasket (131) is arranged between the bolt (13) and the first arc-shaped pipe hoop (11).
7. The high support photovoltaic service platform of claim 1, wherein: one of the two bolts (13) is welded with a handle (16).
8. The high support photovoltaic service platform of claim 1, wherein: the inner walls of the first arc-shaped pipe hoop (11) and the second arc-shaped pipe hoop (12) are both provided with anti-skid layers.
9. The high support photovoltaic service platform of claim 1, wherein: the bolt (13) is an 8.8-grade high-strength bolt.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202020804248.4U CN212201219U (en) | 2020-05-14 | 2020-05-14 | High support photovoltaic overhauls platform |
Applications Claiming Priority (1)
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CN202020804248.4U CN212201219U (en) | 2020-05-14 | 2020-05-14 | High support photovoltaic overhauls platform |
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CN212201219U true CN212201219U (en) | 2020-12-22 |
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CN202020804248.4U Active CN212201219U (en) | 2020-05-14 | 2020-05-14 | High support photovoltaic overhauls platform |
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- 2020-05-14 CN CN202020804248.4U patent/CN212201219U/en active Active
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