CN213863187U - Photovoltaic module transports tray - Google Patents

Photovoltaic module transports tray Download PDF

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Publication number
CN213863187U
CN213863187U CN202022714509.6U CN202022714509U CN213863187U CN 213863187 U CN213863187 U CN 213863187U CN 202022714509 U CN202022714509 U CN 202022714509U CN 213863187 U CN213863187 U CN 213863187U
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CN
China
Prior art keywords
groove
plate
connecting block
photovoltaic module
bottom plate
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CN202022714509.6U
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Chinese (zh)
Inventor
薛家祈
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Jiaxing Daming Industrial Co ltd
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Jiaxing Daming Industrial Co ltd
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Priority to CN202022714509.6U priority Critical patent/CN213863187U/en
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Abstract

The utility model relates to a transportation equipment technical field relates to a photovoltaic module transports tray, the utility model discloses a: the bottom plate is provided with a first groove and a first protrusion; the connecting block is arranged at the upper end of the bottom plate, a second groove and a second protrusion are arranged at the bottom of the connecting block, the second groove is connected with the first protrusion, the second protrusion is connected with the first groove, a third groove and a third protrusion are arranged at the top of the connecting block, and the third groove is perpendicular to the second groove; the middle plate is arranged at the upper end of the connecting block and provided with a groove IV and a convex IV, the groove IV is connected with the convex III, and the convex IV is connected with the groove III; the upper plate is fixed at the upper end of the middle plate and is arranged perpendicular to the middle plate; the bracket is formed by connecting the bottom plate, the connecting block, the middle plate and the bottom plate which are of a groove structure, so that the overall quality of the bracket is reduced; the rope is inserted into the groove in the middle plate and the groove in the upper plate, the rope is limited and does not slide on the photovoltaic glass, and the transportation stability is improved.

Description

Photovoltaic module transports tray
Technical Field
The utility model relates to a transportation equipment technical field relates to a photovoltaic module transports tray.
Background
Photovoltaic glass is a special type of glass that can be laminated into a solar cell to generate electricity from solar radiation and has associated current extraction means and cables. The light-transmitting and light-transmitting integrated lamp has the characteristics of attractive appearance, controllable light transmission, environmental protection and the like, and is very widely applied. Generally, photovoltaic glass is transported through the bracket, the photovoltaic glass is placed on the common bracket and then is limited and fixed through the rope, the bracket is shaken in the transportation process to enable the rope to slip on the glass, the rope cannot play a good pre-tightening effect to enable the photovoltaic glass to shake, collision and damage occur between the photovoltaic glass in serious conditions, and the cost is greatly improved.
To sum up, for solving the not enough among the prior art, need design a simple structure, fixed effectual photovoltaic module transports tray.
Disclosure of Invention
The utility model provides a solve prior art's problem, provide a photovoltaic module transports tray.
The purpose of the utility model can be realized by the following technical proposal: a photovoltaic module transfer tray comprising:
the bottom plate is provided with a first groove and a first protrusion;
the connecting block is arranged at the upper end of the bottom plate, a second groove and a second protrusion are arranged at the bottom of the connecting block, the second groove is connected with the first protrusion, the second protrusion is connected with the first groove, a third groove and a third protrusion are arranged at the top of the connecting block, and the third groove is perpendicular to the second groove;
the middle plate is arranged at the upper end of the connecting block and provided with a groove IV and a convex IV, the groove IV is connected with the convex III, and the convex IV is connected with the groove III;
the upper plate is fixed at the upper end of the middle plate and is perpendicular to the middle plate.
In a further improvement, the number of the bottom plates is more than two.
In a further improvement, the number of the bottom plates is three.
In a further improvement, a threaded hole is formed in the second groove of the connecting block, and the connecting block is connected with the bottom plate through the threaded hole; and a second threaded hole is formed in the third groove of the connecting block, and the connecting block is connected with the middle plate through a bolt through the second threaded hole.
In a further improvement, the upper end of the bottom plate is provided with a reinforcing rib, and the reinforcing rib is connected with the bottom plate and the upper plate.
In a further improvement, the bottom plate, the connecting blocks, the middle plate and the upper plate are made of wood materials.
In a further improvement, the bottom plate, the connecting block, the middle plate and the upper plate are made of aluminum materials.
In a further improvement, the upper plate is provided with a groove V.
Compared with the prior art, the photovoltaic module transferring tray is formed by connecting the bottom plate, the connecting block, the middle plate and the bottom plate which are of the groove structures, has simple structure and quick installation, reduces the overall quality of the tray, and reduces the production cost; the rope is inserted into the groove in the middle plate which is transversely arranged and the groove in the upper plate which is vertically arranged, the rope is not easy to slide in the limiting process of the photovoltaic glass, and the transportation stability of the photovoltaic glass is improved.
Drawings
FIG. 1 is a schematic structural diagram of the present invention
FIG. 2 is a schematic view showing the connection of the present invention
FIG. 3 is a schematic view of a connecting block
FIG. 4 is another view of the connection block
In the figure, 1-bottom plate, 11-groove I, 12-protrusion I, 2-connecting block, 21-groove II, 211-threaded hole I, 22-protrusion II, 23-groove III, 231-threaded hole II, 24-protrusion III, 3-middle plate, 31-groove IV, 32-protrusion IV, 4-upper plate, 41-groove V, 42-groove VI and 5-reinforcing rib.
Detailed Description
The technical solution of the present invention is further explained below with reference to the following embodiments and accompanying drawings 1 to 4.
Example 1
The base plate 1 is provided with a first groove 11 and a first convex part 12;
the connecting block 2 is arranged at the upper end of the bottom plate 1, a second groove 21 and a second convex part 22 are arranged at the bottom of the connecting block 2, the second groove 21 is connected with the first convex part 12, the second convex part 22 is connected with the first groove 11, a third groove 23 and a third convex part 24 are arranged at the top of the connecting block 2, and the third groove 23 and the second groove 21 are arranged vertically;
the middle plate 3 is arranged at the upper end of the connecting block 2, the middle plate 3 is provided with a groove IV 31 and a convex IV 32, the groove IV 31 is connected with a convex III 24, and the convex IV 32 is connected with a groove III 23;
and the upper plate 4 is fixed at the upper end of the middle plate 3, and the upper plate 4 is vertical to the middle plate 3.
As shown in fig. 1, 2, 3 and 4, the bottom plate 1 is provided with connecting blocks 2 arranged at intervals, the upper end of the middle plate 3 is provided with upper plates 4 arranged at intervals, the second groove 21 and the first projection 12 are connected by welding after being clamped and matched, the second projection 22 and the first groove 11 are connected by welding after being clamped and matched, the fourth groove 31 and the third projection 24 are connected by welding after being clamped and matched, and the fourth projection 32 and the third groove 23 are connected by welding after being clamped and matched; the third groove 23 and the second groove 21 are arranged vertically, so that the upper plate 1 and the middle plate 3 can be arranged in a staggered manner, and the mechanical compression resistance is better; the bottom plate 1, the connecting block 2, the middle plate 3 and the bottom plate 4 are connected in a groove structure, so that the structure is simple, the installation is quick, the overall quality of the bracket is reduced, and the production cost is reduced; after the photovoltaic panel is arranged above the upper plate 4, a rope transversely penetrates into a square hole formed by connecting four 32 convex parts of the middle plate 3 with the upper plate 4, the rope vertically penetrates into six 42 grooves in the upper plate 4, the rope is not easy to move in the square hole and the six 42 grooves, the rope pre-tightening position can be adjusted according to the actual size of the photovoltaic glass panel, the six 42 grooves of the different upper plates 4 and the square hole of the middle plate 3 penetrate, the rope cannot be moved greatly in the limiting process of pre-tightening the photovoltaic glass, the photovoltaic glass is enabled to be stable and immovable on the bracket, and the transportation stability of the photovoltaic glass is improved.
Example 2
The number of the bottom plates 1 is more than two. The single bottom plate 1 is supported by a single bottom surface, and a large-sized bottom area is needed; two bottom plates 1 are symmetrically arranged to realize the supporting function of two ends, the bottom area of a single bottom plate 1 can be reduced, and the supporting structures of the two ends are more stable.
Example 3
The number of the bottom plates 1 is three, and the number of the connecting blocks 2 is the same as that of the bottom plates 1. The three bottom plates 1 are formed by adding one bottom plate 1 between the bottom plates 1 at two ends, the middle bearing weak point is supported, the bearing capacity and the structural strength are improved compared with the two bottom plates 1, and the cost can be saved when the bearing effect is guaranteed due to the fact that the number of the three bottom plates is three.
Example 4
A threaded hole 211 is formed in the second groove 21 of the connecting block 2, and the connecting block 2 is connected with the bottom plate 1 through a bolt through the threaded hole 211; and a second threaded hole 231 is formed in the third groove 23 of the connecting block 2, and the connecting block 2 is connected with the middle plate 3 through a bolt through the second threaded hole 231.
As shown in fig. 3 and 4, the second groove 21 and the second protrusion 22 of the connecting block 2 are in fit connection with the first protrusion 12 and the first groove 11 of the bottom plate 1 to realize positioning, and the connecting block 2 is connected with the bottom plate 1 in a bolt connection fixed connection manner through a plurality of symmetrical threaded holes 211; three 23 of recess of connecting block 2, three 24 of convex part are connected with four 32 of convex part of intermediate lamella 3, four 31 cooperation of recess, realize the location, and the fixed connection mode of connecting block 2 and 3 bolted connection of intermediate lamella is connected to the screw hole two 231 of a plurality of symmetries of rethread, and bolted connection easy dismounting connects stably, has further improved connecting plate 2 and bottom plate 1 and intermediate lamella 3 joint strength.
Example 5
The upper end of the bottom plate 1 is provided with a reinforcing rib 5, and the reinforcing rib 5 is connected with the bottom plate 1 and the upper plate 4. As shown in fig. 1, the reinforcing rib 5 connects the upper end surface of the bottom plate 1 with the lower end surface of the upper plate 4 by welding, so that the overall structural strength of the bracket is improved, and the bearing capacity is improved.
Example 6
The bottom plate 1, the connecting block 2, the middle plate 3 and the upper plate 4 are made of wood materials. Wooden material is with low costs, and the bracket that timber was made is fit for short distance or land transportation, and the bracket is difficult to receive the condition that the humidity mildenes and rot, and the transportation article quality can obtain guaranteeing.
Example 7
The material of the bottom plate 1, the connecting block 2, the middle plate 3 and the upper plate 4 is made of aluminum. The aluminum product has corrosion resistant, the light good characteristics of matter, and the bracket dead weight that aluminium system material made is light, is fit for marine long distance's transportation, compares wooden bracket aluminium system bracket can not corrode to the bracket is isolated with transportation article and moist ground, has guaranteed the product quality of transportation article.
Example 8
The upper plate 4 is provided with a groove five 41. As shown in fig. 2, five grooves 41 on the upper plate 4 are arranged at intervals, and the concave-convex arrangement structure of the upper plate 4 can ensure the bearing strength and reduce the dead weight of the upper plate 4, thereby effectively reducing the weight of the whole bracket, loading more brackets in the transportation process to increase the transportation amount of articles, and reducing the transportation cost.
The foregoing has described in detail preferred embodiments of the present invention. It should be understood that numerous modifications and variations can be devised by those skilled in the art in light of the present teachings without departing from the inventive concepts. Therefore, the technical solutions that can be obtained by a person skilled in the art through logic analysis, reasoning or limited experiments based on the prior art according to the concepts of the present invention should be within the scope of protection defined by the claims.

Claims (8)

1. A photovoltaic module transfer tray, comprising:
the base plate (1), the base plate (1) is provided with a first groove (11) and a first convex part (12);
the connecting block (2) is arranged at the upper end of the bottom plate (1), a second groove (21) and a second convex part (22) are arranged at the bottom of the connecting block (2), the second groove (21) is connected with the first convex part (12), the second convex part (22) is connected with the first groove (11), a third groove (23) and a third convex part (24) are arranged at the top of the connecting block (2), and the third groove (23) and the second groove (21) are vertically arranged;
the middle plate (3) is arranged at the upper end of the connecting block (2), the middle plate (3) is provided with a groove IV (31) and a convex IV (32), the groove IV (31) is connected with the convex III (24), and the convex IV (32) is connected with the groove III (23);
the upper plate (4), upper plate (4) are fixed in intermediate lamella (3) upper end, upper plate (4) perpendicular intermediate lamella (3) set up.
2. A photovoltaic module transfer tray, according to claim 1, characterized in that said base plates (1) are provided in a number greater than two.
3. A photovoltaic module transfer tray according to claim 2, characterized in that the base plates (1) are provided in a number of three.
4. The photovoltaic module transfer tray as claimed in claim 1, wherein a threaded hole (211) is formed in the second groove (21) of the connecting block (2), and the connecting block (2) is connected with the bottom plate (1) through the threaded hole (211) in a bolt manner; and a threaded hole II (231) is formed in the groove III (23) of the connecting block (2), and the connecting block (2) is connected with the middle plate (3) through the threaded hole II (231).
5. The photovoltaic module transfer tray according to claim 1, wherein the bottom plate (1) is provided with a reinforcing rib (5) at the upper end, and the reinforcing rib (5) connects the bottom plate (1) and the upper plate (4).
6. Photovoltaic module transfer tray according to claim 1, characterized in that the material of the bottom plate (1), the connection blocks (2), the intermediate plate (3) and the upper plate (4) consists of a wooden material.
7. Photovoltaic module transfer tray according to claim 1, characterized in that the material of the base plate (1), the connection blocks (2), the intermediate plate (3) and the upper plate (4) consists of aluminium material.
8. Photovoltaic module transfer tray according to claim 1, characterized in that the upper plate (4) is provided with a groove five (41).
CN202022714509.6U 2020-11-21 2020-11-21 Photovoltaic module transports tray Active CN213863187U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202022714509.6U CN213863187U (en) 2020-11-21 2020-11-21 Photovoltaic module transports tray

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202022714509.6U CN213863187U (en) 2020-11-21 2020-11-21 Photovoltaic module transports tray

Publications (1)

Publication Number Publication Date
CN213863187U true CN213863187U (en) 2021-08-03

Family

ID=77035811

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202022714509.6U Active CN213863187U (en) 2020-11-21 2020-11-21 Photovoltaic module transports tray

Country Status (1)

Country Link
CN (1) CN213863187U (en)

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