Title of article :
Physics of failure as a basis for solder elements reliability assessment in wind turbines
Author/Authors :
Erik E. Kostandyan، نويسنده , , John D. S?rensen، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2012
Pages :
8
From page :
100
To page :
107
Abstract :
Traditionally assessment of reliability of electrical components is done by classical reliability techniques using failure rates as the basic measure of reliability. In this paper a structural reliability approach is applied in order to include all relevant uncertainties and to give a more detailed description of the reliability. A physics of failure approach is applied. A SnAg solder component used in power electronics is used as an example. Crack propagation in the SnAg solder is modeled and a model to assess the accumulated plastic strain is proposed based on a physics of failure approach. Based on the proposed model it is described how to find the accumulated linear damage and reliability levels for a given temperature loading profile. Using structural reliability methods the reliability levels of the electrical components are assessed by introducing scale factors for stresses.
Keywords :
Wind turbine reliability , IGBT damage model , SnAg solders fatigue and damage model , Thermal aging , Structural reliability application , Physics of failure approach
Journal title :
Reliability Engineering and System Safety
Serial Year :
2012
Journal title :
Reliability Engineering and System Safety
Record number :
1188544
Link To Document :
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