Photovoltaic cell bending strength detection device
Technical field
The utility model is related to photovoltaic production field more particularly to a kind of photovoltaic cell bending strength detection devices.
Background technology
Photovoltaic cell the more is done the more thin by photovoltaic cell factory in order to reduce cost, and some manufacturers are to improve battery efficiency,
Processing, such as the PERC batteries such as it is passivated, slots in battery back electric field.Photovoltaic module manufacturer is in order to improve the work(of photovoltaic module
Rate, is gradually proposed the novel photovoltaic modules products such as half chip photovoltaic module, stacked tile type photovoltaic module, and the relevant technologies are also increasingly
Maturation, but be required in the production process of these photovoltaic module products using laser cutting technique original standard type photovoltaic electric
Pond piece is cut into several small pieces, affects the bending strength performance of battery, it is also possible to and cause photovoltaic module that the fragment rate of link is made,
Therefore, the test of photovoltaic cell bending strength is gradually paid close attention to by some batteries, component manufacturer.
Utility model content
In view of this, the utility model provides a kind of photovoltaic cell bending strength detection device.
Specifically, the utility model is achieved by the following technical solution:A kind of photovoltaic cell bending strength inspection is provided
Device is surveyed, including bottom girder, the top beam parallel with bottom girder, is vertically installed on bottom girder to support the support component of photovoltaic cell upwards
And extend downwardly to apply pressure to the pressure assembly of photovoltaic cell upper surface from top beam, the top beam is equipped with and the pressure group
The upper hopper chute that part is slidably matched, the bottom girder are equipped with the gliding groove being slidably matched with the support component, the pressure assembly
Bar is rolled equipped with the strip crimped with photovoltaic cell surface.
Further, the support component is equipped with the strip rolling rod crimped with photovoltaic cell surface, the rolling bar
Circular cross section is equipped with rolling rod.
Further, the support component includes a pair of support column perpendicular to the bottom girder and is installed at the top of support column
Support plate, the support column is L-shaped, and bottom is fastened in the gliding groove, and the rolling rod is located at the support plate
Top.
Further, the pressure assembly is consolidated including a pair of perpendicular to the top beam and the fixed link extended downwardly and connection
Due to the lower platen of the bottom of fixed, the rolling bar is located at the bottom of the lower platen.
Further, the support column is equipped with mutual corresponding through-hole.
Further, the photovoltaic cell bending strength detection device further includes positioning bar, and the positioning bar is in L
Type, one end horizontally pass through the through-hole on the support column, the other end extend vertically upwards more than the support plate with
Block the lateral edges of photovoltaic cell.
Further, the photovoltaic cell bending strength detection device further includes gag lever post, and one end of the gag lever post connects
It is connected in the support plate, the other end is equipped with the gear-stopping bar for extending upwardly beyond the rolling rod.
The utility model can make support component, pressure assembly realize the displacement of horizontal direction, detection by bottom girder, top beam
When pressure position on photovoltaic cells can be adjusted flexibly as needed, and rolling rod, rolling bar are the thin of circular cross-section
Stock can form whole face with photovoltaic cell surface and contact so that battery surface is pressurized uniformly, is not easily broken, is conducive to improve
The accuracy of detection.
Description of the drawings
Fig. 1 is the structure diagram of the utility model photovoltaic cell bending strength detection device.
Fig. 2 is the position view of the utility model photovoltaic cell bending strength detection device and photovoltaic cell.
Specific embodiment
Here exemplary embodiment will be illustrated in detail, example is illustrated in the accompanying drawings.Following description is related to
During attached drawing, unless otherwise indicated, the same numbers in different attached drawings represent the same or similar element.Following exemplary embodiment
Described in embodiment do not represent all embodiments consistent with the utility model.On the contrary, they be only with such as
The example of the consistent device and method of some aspects be described in detail in the appended claims, the utility model.
It is only merely for the purpose of description specific embodiment in the term that the utility model uses, and is not intended to be limiting this reality
With novel.In " one kind " of the utility model and singulative used in the attached claims, " described " and "the"
It is intended to include most forms, unless context clearly shows that other meanings.It is also understood that term used herein " and/
Or " refer to and any or all may be combined comprising one or more associated list items purposes.
Such as Fig. 1, the utility model provides a kind of photovoltaic cell bending strength detection device, including bottom girder 10 and bottom girder 10
Parallel top beam 20, be vertically installed on bottom girder 10 support component 30 to support photovoltaic cell A upwards and from top beam 20 to
Lower extension is to apply pressure to the pressure assemblies 40 of photovoltaic cell A upper surfaces.
The bottom girder 10 is horizontally disposed, and surface is equipped with the gliding groove 11 set upward, is slided for the support component 30,
And the outer surface of bottom girder 10 is equipped with the scale that extends along 11 length direction of gliding groove, and position is slided for record support component 30
It puts.The top beam 20 is mutually parallel with the bottom girder 10, and the length of top beam 20 is slightly less than the length of the bottom girder 10, and top beam
The upper hopper chute set downward 21 also is provided on 20, for being slided, and also set on the outer surface of top beam 20 for the pressure assembly 40
There is the scale extended along 21 length direction of upper hopper chute.
The support component 30 includes a pair of support column 31 perpendicular to the bottom girder 10 and is installed on 31 top of support column
Support plate 32, the support column 31 is L-shaped, and bottom is fastened in the gliding groove 11, to realize sliding horizontal, and each
Mutual corresponding through-hole 33 is additionally provided on support column 31, the support plate 32 is fixed on the top of the support column 31, and supports
The top of plate 32 is equipped with strip rolling rod 34, and the rolling rod 34 has circular cross section.The pressure assembly 40 includes one
To perpendicular to the top beam 20 and the fixed link 41 extended downwardly and the lower platen 42 for being connected and fixed on 41 bottom of fixed link,
The top of the lower platen 42 is fixedly connected with the bottom of the fixed link 41, and the bottom of lower platen 42 is equipped with strip and horizontal stroke
Section is circular rolling bar 43, for rolling and pressing in the upper surface of photovoltaic cell A.
As shown in Fig. 2, the rolling rod 34 of the support component 30 and the rolling bar 43 of the pressure assembly 40 are located at respectively
The above and below of photovoltaic cell A to be detected is respectively used to support and push the surface of photovoltaic cell A, the support component 30
Rolling rod 34 be used to support photovoltaic cell A, the rolling bar 43 of the pressure assembly 40 makes photovoltaic electric then for pressing downwards
A degree of flexural deformation occurs for pond A, consequently facilitating the bending strength of detection battery A.Moreover, the support component 30, applying
Press component 40 that can realize horizontal sliding along upper hopper chute 21, the gliding groove 11 on the bottom girder 10 and top beam 20 respectively, so as to carry out
The adjustment of pressure position, meets and the pressure at photovoltaic cell A different locations is tested.
In addition, the utility model photovoltaic cell bending strength detection device further includes positioning bar 50 and gag lever post 60, institute
State positioning bar 50 it is L-shaped, one end horizontally passes through the through-hole 33 on the support column 31, and the other end prolongs vertically upward
The support plate 32 is extended over to block the lateral edges of photovoltaic cell A;One end of the gag lever post 60 is connected to the support plate
On 32, the other end is equipped with the gear-stopping bar 61 for extending upwardly beyond the rolling rod 34, for withstanding the opposite side of photovoltaic cell A
Edge, thus by the collective effect with positioning bar 50, it can be achieved that being positioned to the position in the both direction of photovoltaic cell A.
The utility model photovoltaic cell bending strength detection device can be made support component 30, be applied by bottom girder 10, top beam 20
Component 40 is pressed to realize the displacement of horizontal direction, operating personnel according to detection can need that its applying on photovoltaic cell A is adjusted flexibly
Position is pressed, and rolling rod 34, rolling bar 43 are the elongate rod of circular cross-section, can form whole face with photovoltaic cell A surfaces
Contact so that battery A surfaces are pressurized uniformly, are not easily broken, and are conducive to improve the accuracy of detection.
The above is only the preferred embodiment of the utility model only, is not intended to limit the utility model, all at this
The spirit of utility model and any modification, equivalent substitution, improvement and etc. within principle, done, should be included in the utility model
Within the scope of protection.