CN201885929U - Drawable hook type assembly fixing device - Google Patents

Drawable hook type assembly fixing device Download PDF

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Publication number
CN201885929U
CN201885929U CN2010206283302U CN201020628330U CN201885929U CN 201885929 U CN201885929 U CN 201885929U CN 2010206283302 U CN2010206283302 U CN 2010206283302U CN 201020628330 U CN201020628330 U CN 201020628330U CN 201885929 U CN201885929 U CN 201885929U
Authority
CN
China
Prior art keywords
solar module
drawable
bolt
thru
pull plate
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.)
Expired - Lifetime
Application number
CN2010206283302U
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Chinese (zh)
Inventor
吴旻
刘志刚
陈鑫
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.)
Changzhou EGing Photovoltaic Technology Co Ltd
Original Assignee
Changzhou EGing Photovoltaic Technology Co Ltd
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by Changzhou EGing Photovoltaic Technology Co Ltd filed Critical Changzhou EGing Photovoltaic Technology Co Ltd
Priority to CN2010206283302U priority Critical patent/CN201885929U/en
Application granted granted Critical
Publication of CN201885929U publication Critical patent/CN201885929U/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

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Abstract

The utility model discloses a drawable hook type assembly fixing device comprising a solar battery assembly to be tested, two longitudinal rods, two transverse rods, a supporting column, a drawable plate and long bolts, wherein the two transverse rods are parallelly and vertically arranged on the two longitudinal rods, longitudinal adjusting slots are arranged on the longitudinal rods, the long bolts are sheathed in the longitudinal adjusting slots, the transverse rods are sheathed on the long bolts by fixing holes arranged at two ends, the supporting column and the drawable plate are further sheathed on each long bolt, the adjusting slot and a U-shaped bracket slot are arranged on the drawable plate, the distance from the lower end surface of the drawable plate to the bottom of the support column is larger than the thickness of the solar battery assembly to be tested, the U-shaped bracket slot on the drawable plate hooks the fixing plate on an aluminium frame. The drawable hook type assembly fixing device can be simply and conveniently adjusted, and only the solar battery assembly needs to be carried by an operator during the whole testing process, so that the operation is portable, the labor intensity of the operator can be greatly lightened, and the working efficiency is improved.

Description

Pull pothook type assembly stationary installation
Technical field:
The utility model relates to static pressure testing device of solar cell assembly, relates in particular to solar module static pressure test pothook type assembly stationary installation.
Background technology:
Solar module must bear the pressure of strong wind and the gravity of ice and snow in long-term outdoor use, therefore the load performance that needs simulation truth test solar module, according to the IEC standard, for the safety coefficient of test suite, need solar module can bear pressure greater than 2400Pa for fitful wind; For the safety coefficient of test suite, need solar module can bear pressure greater than 5400Pa with respect to sleet.People must carry out the bearing capacity test to the solar module surface for this reason, the back side to solar module evenly applies 2400Pa pressure, the assembly front surface is evenly applied the pressure of 5400Pa, the pressurized solar module is carried out coherent detection and judgement, and meet the following conditions: 1. no intermittent breaking phenomena in the experimentation; 2. there is not serious open defect; 3. under the standard test condition peak power output pad value be no more than the test before 5%; 4. insulation resistance is preceding identical with experiment.
At present, the module testing shelf structure that solar module is tested usefulness as shown in Figure 1, it comprises two bar shaped steel pipes 1 and places framework 2, placing framework 2 is made up of a rectangle frame 21 and four support bars 22, support bar 22 is installed on four angles of rectangle frame 21, the interior rectangular area of rectangle frame 21 is greater than the area of solar module 3, the length of bar shaped steel pipe 1 is greater than the length of rectangle frame 21, during use bar shaped steel pipe 1 directly is placed on the rectangle frame 21, both sides at bar shaped steel pipe 1 all have slotted eye 11, and the position of slotted eye 11 is corresponding to the position of mounting hole 31 on the solar module 3 aluminium frames.When the glass of solar module 3 is tested, solar module 3 is directly placed on the test desktop, the glass of solar module is made progress, evenly exert pressure then.When the back side of solar module 3 is tested, because glass must be downwards, must the glass of solar module 3 is unsettled, need solar module 3 be fixed up with the module testing frame and exert pressure, preventing that the glass stress deformation is obstructed influences precision of test result.Concrete installation requirement is: the glass of solar module 3 is kept flat downwards, the mounting hole 31 that slotted eye 11 on the bar shaped steel pipe 1 is aimed on the aluminium frame, pass the back side that mounting hole 31 and slotted eye 11 are fixedly mounted on bar shaped steel pipe 1 on the aluminium frame of solar module 3 with bolt, and then the bar shaped steel pipe 1 that solar module 3 will be housed is placed on the rectangle frame 21, make the glass of solar module 3 unsettled downwards, can begin to carry out static pressure test, truth when ability analog solar battery component 3 uses out of doors like this, but because bar shaped steel pipe 1, solar module 3 and placement framework 2 are all heavier, and volume ratio is bigger, the each placement, carry all gruelling, and it is not easy to operate, not only operating process is too loaded down with trivial details to use this testing jig, and the running time is longer.
The utility model content:
In order more easily solar module to be carried out static pressure test, the utility model provides a kind of pull pothook type assembly stationary installation, not only uses lightly, and carrying, collection are convenient, can alleviate operator's labour intensity significantly.
The technical scheme that the utility model adopted is:
A kind of pull pothook type assembly stationary installation, it is characterized in that: it comprises solar module to be measured, longitudinal rod, transverse bar, support column, pull plate and thru-bolt, two longitudinal rods are parallel, contour, be horizontally fixed on the frame, spacing between two longitudinal rods is greater than the width of solar module to be measured, two transverse bars are installed on two longitudinal rods in parallel to each other, transverse bar is vertical with longitudinal rod, on longitudinal rod, be provided with vertical regulating tank, thru-bolt is sleeved in vertical regulating tank, two ends at transverse bar are provided with fixed orifice, transverse bar is sleeved on the thru-bolt by the fixed orifice that two ends are set, and support column is sleeved on the thru-bolt; On pull plate, be provided with regulating tank and U-shaped bracket, pull plate is sleeved on the thru-bolt by regulating tank, and be positioned at the upper end of support column, the lower surface of pull plate is to the distance of the support column bottom thickness greater than solar module to be measured, held the fixed head on the aluminium frame of solar module to be detected by the U-shaped bracket hook on the pull plate.
Owing to the intersecting parallels structure that the assembly stationary installation is designed to form by transverse bar and longitudinal rod, longitudinal rod is fixed on the frame, on longitudinal rod, be provided with vertical regulating tank, thru-bolt is sleeved in vertical regulating tank, the two ends of transverse bar are sleeved on the thru-bolt by fixed orifice, support column and pull plate all are sleeved on the thru-bolt, and pull plate can remove by relative thru-bolt by regulating tank.When applied voltage test is carried out in the front of solar module, unclamp the nut on the thru-bolt, regulate the spacing between two transverse bars, make it with solar components length direction to be measured shelve require corresponding, then pull plate is pushed the position parallel, screw the nut on the thru-bolt, manually lift solar module with longitudinal rod, the glass of solar module is made progress, back side aluminium frame directly is shelved on two transverse bars can carries out applied voltage test; After positive applied voltage test finishes, take out of solar module and overturn 180 °, the aluminium frame at the solar module back side is made progress, unclamp the nut on the thru-bolt, regulate the position of pull plate, make U-shaped bracket hook on the pull plate hold fixed head on the aluminium frame, at last the nut on the thru-bolt is screwed, solar module just is suspended on four pull plate lower surfaces like this, because the thickness of the distance of support column lower surface greater than solar module is arrived in the pull plate lower surface, therefore when applied voltage test was carried out at the back side of solar module, the glass deflection can not be subjected to any stopping, has guaranteed the accuracy of back side applied voltage test.
This solar module static pressure test pull pothook type assembly stationary installation, use adjusting simple and convenient, the maximum weight that the operator will carry in whole test process is exactly the weight of solar module, without any condiment, and volume does not increase simple and convenient yet, greatly alleviate labor intensity of operating personnel, also improved work efficiency.
Description of drawings:
Fig. 1, Fig. 2 are existing static pressure test assembly fixture structure synoptic diagram;
Fig. 3 treats the structural representation of pressurized state for the utility model is in;
Fig. 4 is the vertical view of Fig. 3; Fig. 3 is an A-A cut-open view among Fig. 4;
Fig. 5, Fig. 6 are the structural representation of transverse bar, and wherein Fig. 6 is a B-B cut-open view among Fig. 5;
Among the figure: 1-bar shaped steel pipe; 2-places framework; The 3-solar module; The 4-longitudinal rod; The 5-transverse bar; The 6-support column; The 7-pull plate; The 8-thru-bolt; The 11-slotted eye; The 21-rectangle frame; The 22-support bar; The 31-mounting hole; The vertical regulating tank of 41-; The 51-fixed orifice; The 71-regulating tank; 72-U shape bracket.
Embodiment:
Introduce embodiment of the present utility model in detail below in conjunction with accompanying drawing:
Embodiment 1: a kind of pull pothook type assembly stationary installation, as Fig. 2~shown in Figure 6, it comprises solar module 3 to be measured, longitudinal rod 4, transverse bar 5, support column 6, pull plate 7 and thru-bolt 8, two longitudinal rods 4 are parallel, contour, be horizontally fixed on the frame, spacing between two longitudinal rods 4 is greater than the width of solar module 3 to be detected, two transverse bars 5 are installed on two longitudinal rods 4 in parallel to each other, transverse bar 5 is vertical with longitudinal rod 4, on longitudinal rod 4, be provided with vertical regulating tank 41, thru-bolt 8 is sleeved in vertical regulating tank 41, be provided with fixed orifice 51 at the two ends of transverse bar 5, transverse bar 5 is sleeved on the thru-bolt 8 by the fixed orifice 51 that is arranged on two ends, and support column 6 is sleeved on the thru-bolt 8; On pull plate 7, be provided with regulating tank 71 and U-shaped bracket 72, pull plate 7 is sleeved on the thru-bolt 8 by regulating tank 71, and be positioned at the upper end of support column 6, the lower surface of pull plate 7 is to the distance of the support column 6 bottoms thickness greater than solar module 3 to be measured, holds fixed head on the solar module 3 aluminium frames to be detected by U-shaped bracket 72 hooks on the pull plate 7.
Concrete using method is as follows:
When the glass of solar module 3 is tested, to unclamp the nut on all thru-bolts 8, forward pull plate 7 to the orientation parallel and fixing with longitudinal rod 4, solar module 3 directly is shelved on the transverse bar 5, the glass of solar module 3 is made progress, evenly exert pressure then.After positive applied voltage test finishes, take out of solar module 3 and overturn 180 °, the aluminium frame at solar module 3 back sides is made progress, unclamp the nut on the thru-bolt 8, make pull plate 7 forward the position parallel to, make U-shaped bracket 72 hooks on the pull plate 7 hold fixed head on the aluminium frame, the nut on the thru-bolt 8 is screwed with transverse bar 5, solar module 3 just is suspended on four pull plate 7 lower surfaces like this, just normal applied voltage test.

Claims (1)

1. pull pothook type assembly stationary installation, it is characterized in that: it comprises solar module to be measured (3), longitudinal rod (4), transverse bar (5), support column (6), pull plate (7) and thru-bolt (8), two longitudinal rods (4) are parallel, contour, be horizontally fixed on the frame, spacing between two longitudinal rods (4) is greater than the width of solar module to be measured (3), two transverse bars (5) are installed on two longitudinal rods (4) in parallel to each other, transverse bar (5) is vertical with longitudinal rod (4), on longitudinal rod (4), be provided with vertical regulating tank (41), thru-bolt (8) is sleeved in vertical regulating tank (41), be provided with fixed orifice (51) at the two ends of transverse bar (5), transverse bar (5) is sleeved on the thru-bolt (8) by the fixed orifice (51) that is arranged on two ends, and support column (6) is sleeved on the thru-bolt (8); On pull plate (7), be provided with regulating tank (71) and U-shaped bracket (72), pull plate (7) is sleeved on the thru-bolt (8) by regulating tank (71), and be positioned at the upper end of support column (6), the lower surface of pull plate (7) is to the distance of support column (6) the bottom thickness greater than solar module to be measured (3), held the fixed head on the aluminium frame of solar module to be detected (3) by U-shaped bracket (72) hook on the pull plate (7).
CN2010206283302U 2010-11-29 2010-11-29 Drawable hook type assembly fixing device Expired - Lifetime CN201885929U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN2010206283302U CN201885929U (en) 2010-11-29 2010-11-29 Drawable hook type assembly fixing device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN2010206283302U CN201885929U (en) 2010-11-29 2010-11-29 Drawable hook type assembly fixing device

Publications (1)

Publication Number Publication Date
CN201885929U true CN201885929U (en) 2011-06-29

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN2010206283302U Expired - Lifetime CN201885929U (en) 2010-11-29 2010-11-29 Drawable hook type assembly fixing device

Country Status (1)

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CN (1) CN201885929U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102095636A (en) * 2010-11-29 2011-06-15 常州亿晶光电科技有限公司 Fixing device for pull hook assembly

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102095636A (en) * 2010-11-29 2011-06-15 常州亿晶光电科技有限公司 Fixing device for pull hook assembly
CN102095636B (en) * 2010-11-29 2014-01-08 常州亿晶光电科技有限公司 Fixing device for pull hook assembly

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Legal Events

Date Code Title Description
C14 Grant of patent or utility model
GR01 Patent grant
AV01 Patent right actively abandoned

Granted publication date: 20110629

Effective date of abandoning: 20140108

RGAV Abandon patent right to avoid regrant