CN207318437U - Photovoltaic module flammability test test platform - Google Patents

Photovoltaic module flammability test test platform Download PDF

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Publication number
CN207318437U
CN207318437U CN201721154716.2U CN201721154716U CN207318437U CN 207318437 U CN207318437 U CN 207318437U CN 201721154716 U CN201721154716 U CN 201721154716U CN 207318437 U CN207318437 U CN 207318437U
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CN
China
Prior art keywords
photovoltaic module
screw
rack
shaped claw
test platform
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.)
Withdrawn - After Issue
Application number
CN201721154716.2U
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Chinese (zh)
Inventor
刘炘
徐敏伟
魏玥峰
龙飞
曾健
施跃中
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.)
YANGZHOU OPTO-ELECTRICAL PRODUCTS TESTING INSTITUTE
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YANGZHOU OPTO-ELECTRICAL PRODUCTS TESTING INSTITUTE
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Filing date
Publication date
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Priority to CN201721154716.2U priority Critical patent/CN207318437U/en
Application granted granted Critical
Publication of CN207318437U publication Critical patent/CN207318437U/en
Withdrawn - After Issue legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

Photovoltaic module flammability test test platform, is related to frock clamp field.Including rack, the bottom of rack is provided with traveling wheel, and photovoltaic module cross locating rack is provided with front side of rack, and the rotary drive mechanism that driving photovoltaic module cross locating rack rotates is provided with the rack.During test, photovoltaic module is installed on cross locating rack, photovoltaic module on cross locating rack can realize 360 ° of rotations under rotary drive mechanism driving while rotate the second handwheel can also realize that the photovoltaic module on cross locating rack highly adjusts by the second screw rod transmission, easy to light being smoothed out for experiment.

Description

Photovoltaic module flammability test test platform
Technical field
Frock clamp field is the utility model is related to, is specially a kind of photovoltaic module flammability test test platform.
Background technology
2016 end of the year new edition photovoltaic module safety certification standard IEC 61730-2:2016 issues, compare IEC61730-2: 2004 versions have newly increased partial test, light experiment(MST24)For one of which.
But the matched test platform for being used to position photovoltaic module of testing equipment is not equipped with and lighted in the prior art, is made Experiment process must be lighted to take time and effort, it is very inconvenient.
Utility model content
The purpose of this utility model is for the defects of background technology, there is provided a kind of photovoltaic module flammability test test Platform.
Realizing the technical solution of above-mentioned purpose is:Photovoltaic module flammability test test platform, it is characterised in that:Including machine Frame, the bottom of rack are provided with traveling wheel, and photovoltaic module cross locating rack is provided with front side of rack, is provided with the rack The rotary drive mechanism for driving photovoltaic module cross locating rack to rotate.
Further, the rotary drive mechanism includes fixed seat, and gear reducer and bearing block, bearing are provided with fixed seat Rotation axis is installed, the input terminal of gear reducer is connected with the first handwheel, and the output terminal of gear reducer and one end of rotation axis connect in seat Connect, the other end of rotation axis is connected with turntable, and the center of the photovoltaic module locating rack passes through in connecting seat and turntable Heart position connects.
Further, the circumferential direction of turntable is evenly equipped with multiple location holes, and one is provided with the bearing block and is matched somebody with somebody with location hole The pin hole of conjunction, the pin hole can be locked with any one location hole by axis pin.
Further, the second screw being vertically arranged, the upper end connection of the second screw are installed in rack by screw rodb base There is the second handwheel, the fixed seat is liftably connected on the second screw by the second feed screw nut.
Further, photovoltaic module cross locating rack is formed by crossbeam and vertical beam interconnection, is connected with crossbeam and horizontal stroke 3rd screw of Liangping row, one end of the 3rd screw are connected with the 3rd handwheel, and the both ends of crossbeam are slided respectively is provided with the first L-shaped Claw, the first L-shaped claw are also connected with the 3rd wire rod thread respectively at the same time, and the first annular knurl spiral shell is also associated with the first L-shaped claw Nail, the end of the first milled screw are connected with the first pressing plate, are formed between the first pressing plate and the front end face of crossbeam and are used to clamp light Lie prostrate the gap at component or so end;Fourth screw parallel with vertical beam is installed, one end of the 4th screw is connected with the 4th on vertical beam Handwheel, the both ends of vertical beam are slided respectively is provided with the second L-shaped claw, the second L-shaped claw at the same time also respectively with the 4th wire rod thread Connection, is also associated with the second milled screw on the second L-shaped claw, and the end of the second milled screw is connected with the second pressing plate, and second The gap for being used for clamping photovoltaic module upper and lower side is formed between pressing plate and the front end face of vertical beam.
Further, two groups of clutch shaft bearings are connected on the first L-shaped claw, two groups of clutch shaft bearings pass through first respectively Auxiliary block is connected on the first L-shaped claw and rotates respectively and is fitted on two adjacent sides of crossbeam;On second L-shaped claw Two groups of second bearings are connected to, two groups of second bearings are connected on the second L-shaped claw and divided by the second auxiliary block respectively It Zhuan Dong not be fitted on two adjacent sides of vertical beam.
Further, the 3rd screw and the thread rotary orientation of the 4th screw both sides are opposite.
Further, the traveling wheel is the universal wheel of strap brake.
The beneficial effects of the utility model:
During test, photovoltaic module is installed on cross locating rack, the photovoltaic module on cross locating rack is in rotation driving 360 ° of rotations can be realized under mechanism driving while rotate the second handwheel can also realize that cross positions by the second screw rod transmission Photovoltaic module on frame highly adjusts, easy to light being smoothed out for experiment.
The distance between the distance between first L-shaped claw of the utility model, second L-shaped claw can be adjusted freely Section so that flammability test test platform is suitable for the installation of the photovoltaic module of all sizes.
Brief description of the drawings
Fig. 1 is the structure diagram of the utility model;
Fig. 2 is the sectional view of the utility model;
Fig. 3 is the structure diagram that rotation axis is connected with turntable.
Embodiment
As shown in Figure 1, 2, 3, the utility model includes rack 1, and the bottom of rack 1 is provided with traveling wheel 2, and traveling wheel 2 is The universal wheel of strap brake, the front side of rack 1 are provided with photovoltaic module cross locating rack 3, and photovoltaic module cross locating rack 3 is by crossbeam 31 and 317 interconnection of vertical beam formed, be connected with threeth screw 32 parallel with crossbeam 31 on crossbeam 31, the one of the 3rd screw 32 End is connected with the 3rd handwheel 33, and the both ends of crossbeam 31 are slided respectively is provided with the first L-shaped claw 34, divides on the first L-shaped claw 34 Two groups of clutch shaft bearings 35 are not connected with, and two groups of clutch shaft bearings 35 are connected to the first L-shaped claw 34 by the first auxiliary block 36 respectively Go up and rotate and be fitted on crossbeam 31;Fourth screw 39 parallel with vertical beam 317 is installed on vertical beam 317, the 4th screw 39 One end is connected with the 4th handwheel 310, and the both ends of vertical beam 317 are slided respectively is provided with the second L-shaped claw 311, the second L-shaped claw Two groups of second bearings 312 are connected on 311, two groups of second bearings 312 are connected to second by the second auxiliary block 313 respectively On L-shaped claw 311 and rotation is fitted on vertical beam 317.
First L-shaped claw 34 is also threadedly coupled with the 3rd screw 32 respectively at the same time, and the is also associated with the first L-shaped claw 34 One milled screw 37, the end of the first milled screw 37 are connected with the first pressing plate 38, the front end face of the first pressing plate 38 and crossbeam 31 Between formed be used for clamp photovoltaic module or so end gap;Second L-shaped claw 34 at the same time also respectively with 39 screw thread of the 4th screw Connect, be also associated with the second milled screw 314 on the second L-shaped claw 34, the end of the second milled screw 314 is connected with the second pressure Plate 315, forms the gap for being used for clamping photovoltaic module upper and lower side between the second pressing plate 315 and the front end face of vertical beam 317.
In the present embodiment, the 3rd screw 32 and the thread rotary orientation of 39 both sides of the 4th screw are on the contrary, be easy to the first L-shaped claw Between 34, the spacing of the second L-shaped claw 34 adjusts.
The rotary drive mechanism 4 that driving photovoltaic module cross locating rack 3 rotates, rotary drive mechanism 4 are installed in rack 1 Including fixed seat 41, gear reducer 42 and bearing block 43 are installed in fixed seat 41, rotation axis 44 is installed in bearing block 43, slow down The input terminal of machine 42 is connected with the first handwheel 45, and the output terminal of gear reducer 42 is connected with one end of rotation axis 44, rotation axis 44 The other end is connected with turntable 46, and the center of photovoltaic module locating rack 3 is connected by the center of connecting seat 47 and turntable 46 Connect, the circumferential direction of turntable 46 is evenly equipped with four location holes 48, and four location holes 48 are arranged on cross central line and the longitudinal direction of turntable 46 On center line, a pin hole 49 coordinated with location hole 48 is provided with bearing block 43, pin hole 49 can be with any one positioning Hole 48 is locked by axis pin.
The second screw 5 being vertically arranged is installed by screw rodb base, the upper end of the second screw 5 is connected with second in rack 1 Handwheel 6, the fixed seat 41 are liftably connected on the second screw 5 by the second feed screw nut 7.
The utility model in use, the left and right ends of photovoltaic module are pressed on the first pressure by the first milled screw 37 Between plate 38 and crossbeam 31, the upper and lower ends of photovoltaic module are pressed on by the second pressing plate 315 by the second milled screw 314 and are erected Between beam 317.
And respectively can be by rotating the 3rd handwheel 33, the between the first L-shaped claw 34, between the second L-shaped claw 34 Four handwheels 310, then be driven by the 3rd screw 32, the 4th screw 39, realize that spacing is adjusted, to adapt to various sizes of photovoltaic group Part.
By rotating the first handwheel 45, gear reducer 4 and rotation axis 44 is driven to rotate, realization is fixed on photovoltaic module locating rack The angular adjustment of photovoltaic module on 3, after the completion of angular adjustment, location hole 48 is locked with respective pin hole 49 by axis pin.
By rotating the second handwheel 6, drive the second screw 5 to rotate, drive photovoltaic module locating rack 3 to move up and down, realize The adjusting of photovoltaic module upper-lower position.

Claims (8)

1. photovoltaic module flammability test test platform, it is characterised in that:Including rack, the bottom of rack is provided with traveling wheel, Photovoltaic module cross locating rack is provided with front side of rack, driving photovoltaic module cross locating rack is installed in the rack and is rotated Rotary drive mechanism.
2. photovoltaic module flammability test test platform according to claim 1, it is characterised in that:The rotary driving machine Structure includes fixed seat, and gear reducer and bearing block are provided with fixed seat, and rotation axis, the input terminal of gear reducer are provided with bearing block The first handwheel is connected with, the output terminal of gear reducer and one end of rotation axis connect, and the other end of rotation axis is connected with turntable, described The center of photovoltaic module locating rack is connected by the center of connecting seat and turntable.
3. photovoltaic module flammability test test platform according to claim 2, it is characterised in that:The circumferential direction of turntable is evenly distributed with There are multiple location holes, a pin hole coordinated with location hole is provided with the bearing block, the pin hole can be with any one Location hole is locked by axis pin.
4. photovoltaic module flammability test test platform according to claim 2, it is characterised in that:Pass through screw in rack Seat is provided with the second screw being vertically arranged, and the upper end of the second screw is connected with the second handwheel, and the fixed seat passes through second Stem nut is liftably connected on the second screw.
5. photovoltaic module flammability test test platform according to claim 1, it is characterised in that:Photovoltaic module cross is determined Position frame is formed by crossbeam and vertical beam interconnection, and threeth screw parallel with crossbeam, one end of the 3rd screw are connected with crossbeam The 3rd handwheel is connected with, the both ends of crossbeam are slided respectively is provided with the first L-shaped claw, and the first L-shaped claw is at the same time also respectively with the Three wire rod threads connect, and are also associated with the first milled screw on the first L-shaped claw, the end of the first milled screw is connected with first Pressing plate, forms the gap for being used for clamping photovoltaic module or so end between the first pressing plate and the front end face of crossbeam;It is provided with vertical beam Fourth screw parallel with vertical beam, one end of the 4th screw are connected with the 4th handwheel, and the both ends of vertical beam are slided respectively is provided with Two L-shaped claws, the second L-shaped claw are also connected with the 4th wire rod thread respectively at the same time, and the second rolling is also associated with the second L-shaped claw Flower screw, the end of the second milled screw are connected with the second pressing plate, are formed between the second pressing plate and the front end face of vertical beam and are used to press from both sides Fill the gap of photovoltaic module upper and lower side.
6. photovoltaic module flammability test test platform according to claim 1, it is characterised in that:
Two groups of clutch shaft bearings are connected on first L-shaped claw, two groups of clutch shaft bearings are connected to by the first auxiliary block respectively Rotate on first L-shaped claw and respectively and be fitted on two adjacent sides of crossbeam;Two are connected on second L-shaped claw Group second bearing, two groups of second bearings are connected on the second L-shaped claw by the second auxiliary block and rotated respectively and are fitted in respectively On two adjacent sides of vertical beam.
7. photovoltaic module flammability test test platform according to claim 5, it is characterised in that:3rd screw and the 4th The thread rotary orientation of screw both sides is opposite.
8. photovoltaic module flammability test test platform according to claim 1, it is characterised in that:The traveling wheel is band The universal wheel of brake.
CN201721154716.2U 2017-09-11 2017-09-11 Photovoltaic module flammability test test platform Withdrawn - After Issue CN207318437U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201721154716.2U CN207318437U (en) 2017-09-11 2017-09-11 Photovoltaic module flammability test test platform

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201721154716.2U CN207318437U (en) 2017-09-11 2017-09-11 Photovoltaic module flammability test test platform

Publications (1)

Publication Number Publication Date
CN207318437U true CN207318437U (en) 2018-05-04

Family

ID=62386562

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201721154716.2U Withdrawn - After Issue CN207318437U (en) 2017-09-11 2017-09-11 Photovoltaic module flammability test test platform

Country Status (1)

Country Link
CN (1) CN207318437U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107436339A (en) * 2017-09-11 2017-12-05 扬州光电产品检测中心 Photovoltaic module flammability test test platform

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107436339A (en) * 2017-09-11 2017-12-05 扬州光电产品检测中心 Photovoltaic module flammability test test platform
CN107436339B (en) * 2017-09-11 2023-06-09 扬州光电产品检测中心 Testing platform for flammability test of photovoltaic module

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