PV Module withstand pressure ability testing machine / Solar panel deformation measurement testing equipment
USD $0.1 - $1 /Set
Min.Order:1 Set
PV Module withstand pressure ability testing machine / Solar panel deformation measurement testing equipment
Testing standard
It's conform IEC61215-2:2016 & IEC61730-2:2016 testing standard
Purpose
This test is to determine the ability of the module to withstand wind , snow , static or ice loads
The Technical Specifications
Static Mechanical Load Test Positive load | the maximum arrived +10000Pa |
Static Mechanical Load reverse load | the maximum arrived -6000Pa |
Staitc Mechanical Load Cycle times | free set |
Dynamic load test frequency | 7s±3s |
Dynamic load | 1000Pa,1000 cycles |
Pressure control accurate | 5% |
Pneumatic and force value feedback ways | low friction force cylinder,tensile pressure sensor |
Testing sample dimension | 2m×1m (can adjustable) |
Cylinder and sucker (with 2 type) | 1. one cyliner attched one sucker 2. one cylinder attached 4 sucker (according to the customer requirement to customized) |
Control ways | Computer control |
Electricity | 220V 50HZ |
Our testing Machine's advantage :
1. Dynamic and Static integration
2.Static model: the positive load can arrived to +10000 pa, the reverse load can arrived to -6000pa ( we are leader of the pv module fileds)
3.Software operation and control : Flexible operation
Testing Procedure
1.Equip the module so that the electrical continuity of the internal circuit can be monitored continuously during the test
2.Mount the module on a rigid structure using the method prescribed by the manufacturer including the mounting means (clips/clamps and any kind of fastener) and underlying support rails, if t here are different possibilities each mounting method needs to be evaluated separately , for all mounting methods , mount the module in a manner where the distance between fixing points is worst case, which is typically at the maximum distance. 3.On the front surface , gradually and uniformly apply the test load, load uniformity needs to be better than ±5% across the module with respect to the test load, maintain his load for 1h
4.Apply the same procedure as in step c to check back surface of the module or as uplift load to the front surface
5.Repeat step c and d for a total of three cycles