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The S N results were then used to determine the material parameters necessary for the rolling contact fatigue model.
We present useful interpolation formulae for the essential material parameters necessary for accurate device simulation of the strained n-channel Si/SiGe material system.
This limits the number of the extra material parameters necessary to those needed for the specification of the micro-space, in the example presented to only one.
Tensile tests were carried out at elevated temperatures, in a range between 550 °C and 850 °C, at different strain rates, to identify the material parameters necessary for the calibration of the proposed damage model.
The material parameters necessary to fully define the isotropic and kinematic hardening components are determined through a series of strain controlled low cycle fatigue tests carried out at 923 K (650 °C) on smooth specimens of the IN100 alloy varying in their secondary and tertiary γ′ precipitate sizes while maintaining constant volume fractions.
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A reduction of the number of necessary material parameters for the parameters is made based upon the modified Stroh formalism.
In addition, only a minimal amount of straight-forward experimental characterization is required to determine the necessary material parameters in the model.
The temperature and concentration dependent diffusion model for NiSi have been developed and necessary material parameters for nickel-silicide and epitaxial-Si have been incorporated through the C-interpreter function.
where the LAME constants, λ, μ, and the thermal expansion constant α are the necessary material parameters.
The new formulas, in which the cell displacements are obtained employing the matrix method, include all necessary microstructural and material parameters, unlike those provided by existing models.
It is shown that the correction of numerical material parameters and the slow switching-on of source are necessary to ensure stable and convergent single-frequency simulations.
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