Cumulative Damage Model for Progress Stress Profiles: Difference between revisions
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{{Reference Example|{{Banner ALTA Reference Examples}}}} | {{Reference Example|{{Banner ALTA Reference Examples}}}} | ||
This example validates the results of a cumulative damage model for a ramp stress test in an ALTA standard folio. | |||
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We get the equation for C as: | We get the equation for ''C'' as: | ||
::<math>C = e^{-\alpha_{0}} \cdot A^{-\alpha_{2}} \cdot R^{-\alpha_{1}} \cdot | ::<math>C = e^{-\alpha_{0}} \cdot A^{-\alpha_{2}} \cdot R^{-\alpha_{1}} \cdot \frac{1}{1-\alpha_{1}} \cdot t^{1-\alpha_{1}}\,\!</math> | ||
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{| {{table}} | {| {{table}} | ||
! Time to Failure||Voltage Ramp Rate||Area||f(t)||log-f(t) | |||
|- | |- | ||
| 41||10||1||0.069249||-2.67004 | | 41||10||1||0.069249||-2.67004 | ||
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The total likelihood value is LKV = -2.67004 -2.36283--2.49568…= -1035.42696. | The total likelihood value is LKV = -2.67004 -2.36283--2.49568…= -1035.42696. | ||
We also can use the optimization tool in Excel to find the ML solutions for this data set. By using the GRG-nonlinear optimization method provided by the Solver in Excel, the result in Excel is the same as the result in ALTA. | We also can use the optimization tool in Excel to find the ML solutions for this data set. By using the GRG-nonlinear optimization method provided by the "Solver Add-in" program in Excel, the result in Excel is the same as the result in ALTA. | ||
[[Image: Cum Damage_Stress Profile_excel add in.png|center|600 px]] | |||
The following reliability plot shows that the predicted values (the line) from the model in ALTA can match the observed values (the points) very well. | |||
[[Image: Cum Damage Stress Profile plot.png|center|550 px]] |
Latest revision as of 18:23, 28 September 2015
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