Accurate prediction of failure of solar cell arrays requires accuracy in the computation of thermally induced stresses. This was accomplished by using the finite element technique. Improved procedures for stress calculation were introduced together with failure criteria capable of describing a wide range of ductile and brittle material behavior. The stress distribution and associated failure mechanisms in the N-interconnect junction of two solar cell designs were then studied. In such stress and failure analysis, it is essential to know the thermomechanical properties of the materials involved. Measurements were made of properties of materials suitable for the design of lightweight arrays: microsheet-0211 glass material for the solar cell f...
AbstractSnow loading poses a significant problem to the integrity of photovoltaic (PV) modules. The ...
In recent studies the mechanical reliability of encapsulated solar cells was numerically investigate...
A test program was developed to determine the nature and source of the flaw controlling the fracture...
A systematic approach is presented for the design of solar cell arrays to eliminate mechanical failu...
A thermoelastic stress analysis procedure is reported for predicting the thermally induced stresses ...
The Space Station Freedom photovoltaic solar array blanket assembly is comprised of several layers o...
A sample module was assembled to model a portion of a flexible extendable solar array, a type that p...
The interconnection of silicon solar cells by soldering causes thermomechanical stress due to differ...
We present a set of thermomechanical design rules to support and accelerate future (PV) module devel...
Within the following work mechanical and thermo-mechanical studies on embedded solar cells were carr...
The interconnection of silicon solar cells is commonly realized by soldering copper ribbons or wires...
Within this contribution several 3D finite- element- models have been created in order to simulate p...
The accelerated stress test results obtained on all terrestrial solar cells since the inception of t...
Research on the reliability of terrestrial solar cells was performed to identify failure/degradation...
AbstractThis case study deals with the assessment of different metallization layouts on the reliabil...
AbstractSnow loading poses a significant problem to the integrity of photovoltaic (PV) modules. The ...
In recent studies the mechanical reliability of encapsulated solar cells was numerically investigate...
A test program was developed to determine the nature and source of the flaw controlling the fracture...
A systematic approach is presented for the design of solar cell arrays to eliminate mechanical failu...
A thermoelastic stress analysis procedure is reported for predicting the thermally induced stresses ...
The Space Station Freedom photovoltaic solar array blanket assembly is comprised of several layers o...
A sample module was assembled to model a portion of a flexible extendable solar array, a type that p...
The interconnection of silicon solar cells by soldering causes thermomechanical stress due to differ...
We present a set of thermomechanical design rules to support and accelerate future (PV) module devel...
Within the following work mechanical and thermo-mechanical studies on embedded solar cells were carr...
The interconnection of silicon solar cells is commonly realized by soldering copper ribbons or wires...
Within this contribution several 3D finite- element- models have been created in order to simulate p...
The accelerated stress test results obtained on all terrestrial solar cells since the inception of t...
Research on the reliability of terrestrial solar cells was performed to identify failure/degradation...
AbstractThis case study deals with the assessment of different metallization layouts on the reliabil...
AbstractSnow loading poses a significant problem to the integrity of photovoltaic (PV) modules. The ...
In recent studies the mechanical reliability of encapsulated solar cells was numerically investigate...
A test program was developed to determine the nature and source of the flaw controlling the fracture...