CN212402377U - Ejector pin type mesh belt for conveying solar panel - Google Patents

Ejector pin type mesh belt for conveying solar panel Download PDF

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Publication number
CN212402377U
CN212402377U CN202020775634.5U CN202020775634U CN212402377U CN 212402377 U CN212402377 U CN 212402377U CN 202020775634 U CN202020775634 U CN 202020775634U CN 212402377 U CN212402377 U CN 212402377U
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China
Prior art keywords
thimble
solar panel
spiral
rod
guipure
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CN202020775634.5U
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Chinese (zh)
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王洁
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Kansai Wire Netting Technology Kunshan Co ltd
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Kansai Wire Netting Technology Kunshan Co ltd
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Abstract

In order to solve present solar panel and the problem that many white points appear on the bottom guipure direct contact makes solar panel easily, influence solar panel's performance, the utility model provides a thimble type guipure for carrying solar panel, it includes: a spiral 1 and a force bone 2, the spiral 1 comprising: a plurality of left spiral 11 and right spiral 12 of assembling in turn, adjacent left spiral 11 with right spiral 12 through a power bone 2 interlude be connected, power bone 2 is the bending form, the crest 21 card of left spiral 11 and right spiral 12 is in the trough 22 groove of power bone 2, the trough 22 card of left spiral 11 and right spiral 12 is in the crest 21 groove of power bone 2, its characterized in that: the solar panel face that is close to of guipure is equipped with several rows of thimble 3, through set up several thimble 3 on the guipure, solar panel and the contact of thimble 3, and indirect and guipure contact for the great reduction of white point number on the solar panel plays the guard action to solar panel.

Description

Ejector pin type mesh belt for conveying solar panel
Technical Field
The utility model relates to a solar panel technical field, it is comparatively specific, involve a top formula guipure for on solar panel.
Background
Need place the solar panel below in with the guipure and transport when transporting solar panel, general guipure is in the transportation, solar panel and the underlying guipure direct contact, because solar panel self characteristic makes many white points appear on the solar panel after the contact easily, influences solar panel's performance, whether has a novel guipure, can reduce the contact point of solar panel and guipure during the transportation and become the problem that needs to solve at present.
SUMMERY OF THE UTILITY MODEL
In view of this, in order to solve present solar panel and the underlying guipure direct contact, because solar panel self characteristic makes a lot of white dots appear on the solar panel after the contact easily, influences solar panel's performance, whether have a novel guipure, can reduce the problem of the contact point of solar panel and guipure during the transportation, the utility model provides a thimble type guipure for carry solar panel for through set up several thimbles on the guipure, solar panel and thimble contact, and indirect and guipure contact for the great reduction of white dot number on the solar panel plays the guard action to solar panel.
A thimble-type mesh belt for transporting a solar panel, comprising: a spiral 1 and a force bone 2, the spiral 1 comprising: a plurality of left spiral 11 and right spiral 12 of assembling in turn, adjacent left spiral 11 with right spiral 12 through a power bone 2 interlude be connected, power bone 2 is the bending form, the crest 21 card of left spiral 11 and right spiral 12 is in the trough 22 groove of power bone 2, the trough 22 card of left spiral 11 and right spiral 12 is in the crest 21 groove of power bone 2, its characterized in that: the solar panel that is close to of guipure is equipped with several rows of thimble 3, and two liang of parallels of left and right thimbles 3 are just on same straight line, and two liang of parallels of upper and lower thimble 3 are just on same straight line, and thimble 3 includes pole setting 31 and down tube 32, and pole setting 31 and down tube 32 integrated into one piece, the pole setting 31 and the junction of down tube 32 form an angle A.
Furthermore, the body of the thimble 3 is a round rod, and the diameter of the thimble 3 is 1.5-1.7 mm.
Further, one end of the upright rod 31 is connected to the spiral 1, the other end of the upright rod is connected to the diagonal rod 32, one end of the diagonal rod 32 is connected to the spiral 1, the other end of the diagonal rod 32 is connected to the diagonal rod 32, and an angle A formed at the joint of the upright rod 31 and the diagonal rod 32 is smaller than 90 degrees.
Furthermore, the number of the thimbles 3 is generally 2-4 rows according to the number of the upper thimbles 3 and the lower thimbles 3 in one row, and the spacing distance between two adjacent rows of thimbles 3 is the same.
Furthermore, a solar panel contact point 33 is arranged at the joint of the vertical rod 31 and the inclined rod 32, and the distance between adjacent solar panel contact points 33 is 175-185 mm.
Furthermore, the material of the thimble 3 is stainless steel, preferably 2080 stainless steel, and compared with the stainless steel 314, the 2080 stainless steel thimble 3 causes the white spots on the solar panel to be relatively light when the solar panel contact point 33 contacts the solar panel.
Furthermore, both ends of the thimble 3 are welded on the spiral thread 1, preferably by spot welding.
Furthermore, the welding distance between the two ends of the thimble 3 is generally 3 wave crests 21 of the force rib 2.
Furthermore, two force ribs 2 are arranged between the upper and lower adjacent thimbles 3.
The utility model has the advantages that: the utility model discloses a set up several thimbles 3 on the guipure, solar panel and the contact of thimble 3, and indirect and guipure contact for the great reduction of white point number on the solar panel plays the guard action to solar panel.
Drawings
Fig. 1 is a schematic structural view of the ejector pin type mesh belt for conveying a solar panel of the present invention.
Fig. 2 is a side view of the ejector pin type mesh belt for conveying a solar panel according to the present invention.
Fig. 3 is a structural diagram of a force rib of the ejector pin type mesh belt for conveying a solar panel according to the present invention.
Description of the main elements
Spiral thread 1
Left spiral 11
Right spiral 12
Bone-strengthening bone 2
Wave crest 21
Trough of wave 22
Thimble 3
Vertical rod 31
Diagonal rod 32
Solar panel contact point 33
The following detailed description of the invention will be further described in conjunction with the above-identified drawings.
Detailed description of the preferred embodiment 1
Fig. 1 is a schematic structural view of a thimble type mesh belt for conveying a solar panel according to the present invention; fig. 2 is a side view of the ejector pin type mesh belt for conveying solar panels according to the present invention; fig. 3 is a structural diagram of a force rib of the ejector pin type mesh belt for transporting a solar panel according to the present invention.
A thimble-type mesh belt for transporting a solar panel, comprising: a spiral 1 and a force bone 2, the spiral 1 comprising: a plurality of left spiral 11 and right spiral 12 of equipment in turn, adjacent left spiral 11 and right spiral 12 are through a power bone 2 interlude and are connected, power bone 2 is curved, the crest 21 card of left spiral 11 and right spiral 12 is in the trough 22 groove of power bone 2, the trough 22 card of left spiral 11 and right spiral 12 is in the crest 21 groove of power bone 2, the solar panel face that is close to of guipure is equipped with several rows of thimble 3, control every two liang of parallel of thimble 3 and on same straight line, thimble 3 is located the middle part of right spiral 12, two liang of parallel of upper and lower thimble 3 are on same straight line, thimble 3 includes pole setting 31 and down tube 32, pole setting 31 and down tube 32 integrated into one piece, pole setting 31 and down tube 32 junction form an angle A.
The body of the thimble 3 is a round rod, and the diameter of the thimble 3 is 1.5-1.7 mm.
One end of the upright rod 31 is connected to the spiral 1, the other end of the upright rod is connected to the diagonal rod 32, one end of the diagonal rod 32 is connected to the spiral 1, the other end of the diagonal rod is connected to the diagonal rod 32, and an angle A formed at the joint of the upright rod 31 and the diagonal rod 32 is smaller than 90 degrees.
The number of the thimbles 3 is 2-4 rows according to the number of the upper thimbles 3 and the lower thimbles 3, and the spacing distance between two adjacent rows of thimbles 3 is the same.
A solar panel contact point 33 is arranged at the joint of the vertical rod 31 and the inclined rod 32, and the distance between adjacent solar panel contact points 33 is 175-185 mm.
The thimble 3 is made of stainless steel, preferably 2080 stainless steel, and compared with the stainless steel 314, the 2080 stainless steel thimble 3 causes the white spots on the solar panel to be relatively light when contacting the solar panel with the solar panel contact point 33.
Two ends of the thimble 3 are welded on the right spiral 12, preferably in a spot welding mode.
The welding distance between the two ends of the thimble 3 is generally 3 wave crests 21 of the force rib 2.
Two force ribs 2 are arranged between the upper and lower adjacent thimbles 3 at intervals.
The utility model has the advantages that: the utility model discloses a set up several thimbles 3 on the guipure, solar panel and the contact of thimble 3, and indirect and guipure contact for the great reduction of white point number on the solar panel plays the guard action to solar panel.
Detailed description of the preferred embodiment 2
A thimble-type mesh belt for transporting a solar panel, comprising: a spiral 1 and a force bone 2, the spiral 1 comprising: a plurality of left spiral 11 and right spiral 12 of equipment in turn, adjacent left spiral 11 and right spiral 12 are through a power bone 2 interlude and are connected, power bone 2 is curved, the crest 21 card of left spiral 11 and right spiral 12 is in the trough 22 groove of power bone 2, the trough 22 card of left spiral 11 and right spiral 12 is in the crest 21 groove of power bone 2, the solar panel face that is close to of guipure is equipped with several rows of thimble 3, thimble 3 is located the middle part of left spiral 11, two liang of parallels of thimble 3 are just on same straight line about, thimble 3 includes pole setting 31 and down tube 32, pole setting 31 and down tube 32 integrated into one piece, pole setting 31 and down tube 32 junction form an angle A.
The body of the thimble 3 is a round rod, and the diameter of the thimble 3 is 1.5-1.7 mm.
One end of the upright rod 31 is connected to the spiral 1, the other end of the upright rod is connected to the diagonal rod 32, one end of the diagonal rod 32 is connected to the spiral 1, the other end of the diagonal rod is connected to the diagonal rod 32, and an angle A formed at the joint of the upright rod 31 and the diagonal rod 32 is smaller than 90 degrees.
The number of the thimbles 3 is 2-4 rows according to the number of the upper thimbles 3 and the lower thimbles 3, and the spacing distance between two adjacent rows of thimbles 3 is the same.
A solar panel contact point 33 is arranged at the joint of the vertical rod 31 and the inclined rod 32, and the distance between adjacent solar panel contact points 33 is 175-185 mm.
The thimble 3 is made of stainless steel, preferably 2080 stainless steel, and compared with the stainless steel 314, the 2080 stainless steel thimble 3 causes the white spots on the solar panel to be relatively light when contacting the solar panel with the solar panel contact point 33.
And two ends of the thimble 3 are welded on the left spiral line 11, preferably in a spot welding mode.
The welding distance between the two ends of the thimble 3 is generally 3 wave crests 21 of the force rib 2.
Two force ribs 2 are arranged between the upper and lower adjacent thimbles 3 at intervals.
The utility model has the advantages that: the utility model discloses a set up several thimbles 3 on the guipure, solar panel and the contact of thimble 3, and indirect and guipure contact for the great reduction of white point number on the solar panel plays the guard action to solar panel.

Claims (9)

1. A thimble-type mesh belt for transporting a solar panel, comprising: a thread (1) and a force bone (2), the thread (1) comprising: a plurality of left spiral (11) and right spiral (12) of assembling in turn, adjacent left spiral (11) are connected through a power bone (2) interlude with right spiral (12), power bone (2) are crooked form, crest (21) card of left spiral (11) and right spiral (12) is in trough (22) groove of power bone (2), trough (22) card of left spiral (11) and right spiral (12) is in crest (21) groove of power bone (2), its characterized in that: the solar panel that is close to of guipure is equipped with several rows of thimble (3), and two liang of parallels of left and right sides thimble (3) just are on same straight line, and two liang of parallels of upper and lower thimble (3) just are on same straight line, and thimble (3) include pole setting (31) and down tube (32), pole setting (31) and down tube (32) integrated into one piece, and pole setting (31) and down tube (32) junction form an angle A.
2. The thimble-type belt according to claim 1, wherein: the body of the thimble (3) is a round rod, and the diameter of the thimble is 1.5-1.7 mm.
3. The thimble-type belt according to claim 1, wherein: one end of the vertical rod (31) is connected to the spiral line (1), the other end of the vertical rod is connected with the diagonal rod (32), one end of the diagonal rod (32) is connected to the spiral line (1), the other end of the diagonal rod is connected with the diagonal rod (32), and an angle A formed at the connection position of the vertical rod (31) and the diagonal rod (32) is smaller than 90 degrees.
4. The thimble-type belt according to claim 1, wherein: the number of the thimbles (3) is 2-4 rows according to the number of the upper thimbles and the lower thimbles (3), and the spacing distance between two adjacent rows of thimbles (3) is the same.
5. The thimble-type belt according to claim 1, wherein: a solar panel contact point (33) is arranged at the joint of the vertical rod (31) and the inclined rod (32), and the distance between adjacent solar panel contact points (33) is 175-185 mm.
6. The thimble-type belt according to claim 1, wherein: the thimble (3) is made of stainless steel.
7. The thimble-type belt according to claim 1, wherein: two ends of the thimble (3) are welded on the spiral line (1).
8. The thimble-type belt according to claim 1, wherein: the welding distance of the two ends of the thimble (3) is generally the wave crest (21) of 3 force bones (2).
9. The thimble-type belt according to claim 1, wherein: two force ribs (2) are arranged between the upper thimble (3) and the lower thimble (3).
CN202020775634.5U 2020-05-12 2020-05-12 Ejector pin type mesh belt for conveying solar panel Active CN212402377U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202020775634.5U CN212402377U (en) 2020-05-12 2020-05-12 Ejector pin type mesh belt for conveying solar panel

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202020775634.5U CN212402377U (en) 2020-05-12 2020-05-12 Ejector pin type mesh belt for conveying solar panel

Publications (1)

Publication Number Publication Date
CN212402377U true CN212402377U (en) 2021-01-26

Family

ID=74376463

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202020775634.5U Active CN212402377U (en) 2020-05-12 2020-05-12 Ejector pin type mesh belt for conveying solar panel

Country Status (1)

Country Link
CN (1) CN212402377U (en)

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