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A correlation analysis of determined material parameters was performed to reveal dependence on the age.
In this work, the use of continuous indentation test and inverse FE modelling method to determine the nonlinear material parameters was systematically investigated.
A group of unified material parameters was extracted by the model from the stress-stretch curves obtained at different strain rates.
The numerical implementation of the model into a finite element scheme and the determination of model material parameters was described in detail in [Eng. Fract. Mech. 71 (2004) 401].
Following this, an extensive numerical modelling study, incorporating the proposed standardised material parameters, was carried out to investigate the effect of production route (cold-formed and hot-finished) and material grade (austenitic, duplex and ferritic) on the flexural buckling behaviour and design of stainless steel square, rectangular and circular hollow section compression members.
In both groups, the relationship between the mechanical and material parameters was evaluated with linear regression analysis for the two donors separately.
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Other material parameters are obtained from [27].
The effect of material parameters is analyzed.
The material parameters are listed as Tables 2 and 3.
The following material parameters are used for the analysis.
For comparability of results equivalent material parameters are used throughout.
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