General framework for the identification of constitutive parameters from full-field measurements in linear elasticity

被引:122
作者
Avril, S. [1 ]
Pierron, F. [1 ]
机构
[1] LMPF ENSAM, F-51006 Chalons Sur Marne, France
关键词
material identification; linear elasticity; finite element model; virtual fields method; finite element updating; uncertainty estimation;
D O I
10.1016/j.ijsolstr.2006.12.018
中图分类号
O3 [力学];
学科分类号
08 ; 0801 ;
摘要
In this paper, several approaches available in the literature for identifying the constitutive parameters of linear elastic materials from full-field measurements are presented and their sensitivity to a white noise added to the data is compared. The first investigated approach is the virtual fields method (VFM). It is shown that the uncertainty of the parameters identified with the VFM when a white noise is added to the data depends on the choice of a relevant set of virtual fields. Optimal virtual fields exist, thus minimizing the uncertainty and providing the "maximum likelihood solution". The other approaches investigated in this paper are based on finite element model updating (FEMU). It is proved that FEMU approaches actually yield equations similar to the ones derived from the VFM, but with nonoptimal sets of virtual fields. Therefore, the FEW approaches do not provide the "maximum likelihood solution". However, the uncertainty of FEW approaches varies dramatically with the cost function to minimize. On one hand, the FEMU approach based on the "displacement gap" minimization yields equations which are very close to the ones of the VFM approach and therefore, its uncertainty is almost the same as the VFM one. On the other hand, it is shown that other approaches based on the "constitutive equation gap" minimization or the "equilibrium gap" minimization provide biased solutions. For all the approaches, very fast algorithms, converging in only two iterations, have been devised. They are finally applied to real experimental data obtained on an orthotropic composite material. Results confirm the success of two methods: the VFM approach which provides the "maximum likelihood solution" and the FEW approach based on the "displacement gap" minimization. (C) 2006 Elsevier Ltd. All rights reserved.
引用
收藏
页码:4978 / 5002
页数:25
相关论文
共 42 条
[1]   A STUDY OF SAINT-VENANTS PRINCIPLE FOR COMPOSITE-MATERIALS BY MEANS OF INTERNAL-STRESS FIELDS [J].
ARIMITSU, Y ;
NISHIOKA, K ;
SENDA, T .
JOURNAL OF APPLIED MECHANICS-TRANSACTIONS OF THE ASME, 1995, 62 (01) :53-58
[2]  
*ASTM, 1993, ASTM D5379 STAND TES
[3]   Sensitivity of the virtual fields method to noisy data [J].
Avril, S ;
Grédiac, M ;
Pierron, F .
COMPUTATIONAL MECHANICS, 2004, 34 (06) :439-452
[4]  
Bard Y., 1974, Nonlinear Parameter Estimation
[5]  
Beck J.V., 1977, PARAMETER ESTIMATION
[6]   Experimental identification of a nonlinear model for composites using the grid technique coupled to the virtual fields method [J].
Chalal, H ;
Avril, S ;
Pierron, F ;
Meraghni, F .
COMPOSITES PART A-APPLIED SCIENCE AND MANUFACTURING, 2006, 37 (02) :315-325
[7]   Digital image correlation used to analyze the multiaxial behavior of rubber-like materials [J].
Chevalier, L ;
Calloch, S ;
Hild, F ;
Marco, Y .
EUROPEAN JOURNAL OF MECHANICS A-SOLIDS, 2001, 20 (02) :169-187
[8]   A finite element formulation to identify damage fields: the equilibrium gap method [J].
Claire, D ;
Hild, F ;
Roux, S .
INTERNATIONAL JOURNAL FOR NUMERICAL METHODS IN ENGINEERING, 2004, 61 (02) :189-208
[9]   Inverse problems as statistics [J].
Evans, SN ;
Stark, PB .
INVERSE PROBLEMS, 2002, 18 (04) :R55-R97
[10]  
Frederiksen PS, 1997, EUR J MECH A-SOLID, V16, P117