An Out-of-Plane Motion Compensation Strategy for Improving Material Parameter Estimation Accuracy with 2D Field Measurements

Experimental Mechanics - Tập 54 - Trang 1259-1268 - 2014
M. Z. Siddiqui1, M. F. Ahmed2
1Space and Upper Atmosphere Research Commission, Karachi, Pakistan
2University of New Brunswick, Fredericton, Canada

Tóm tắt

In-plane surface displacements, when measured with 2D Digital Image Correlation (2D-DIC), are very sensitive to out-of-plane displacement components. Any out-of-plane motion of the surface can pollute the measured field by introducing artificial displacements. These displacements are difficult to separate from the underlying response of the surface and thereby limit the application of 2D-DIC in inverse problems where the test specimen has significant motion in the out-of-plane direction. In the context of inverse problems, we propose to partially relax this condition of no out-of-plane motion in 2D-DIC. With this approach, only the out-of-plane rigid-body motion of the specimen surface, which is initially in-plane, needs to be avoided while the requirement of surface deformations to be primarily in-plane is essentially waived. Compensation, based on the pinhole camera model, for out-of-plane displacements of the surface in response to applied load is included within the error function of the minimization problem. The improvements in material parameter estimation, obtained by using the proposed compensation strategy, are demonstrated by an example. The proposed technique makes it possible to utilize 2D-DIC with a simple conventional lens for an increased number of inverse problems; and in the process avoiding the computational and experimental difficulties associated with 3D measurement methods as well as the high cost and magnification limitations of a telecentric lens.

Tài liệu tham khảo

Chu TC, Ranson WF, Sutton MA, Peters WH (1985) Applications of digital image-correlation techniques to experimental mechanics. Exp Mech 25(3):232–244 Sutton MA, Yan JH, Tiwari V, Schreier HW, Orteu JJ (2008) The effect of out-of-plane motion on 2D and 3D digital image correlation measurements. Opt Lasers Eng 46(10):746–757 Sutton MA, Orteu JJ, Schreier HW (2009) Image correlation for shape, motion and deformation measurements. Springer, New York Luo PF, Chao YJ, Sutton MA, Peters WH (1993) Accurate measurement of three-dimensional deformations in deformable and rigid bodies using computer vision. Exp Mech 33(2):123–132 Yoneyama S, Kitagawa A, Iwata S, Tani K, Kikuta H (2007) Bridge deflection measurement using digital image correlation. Exp Tech 31(1):34–40 Chasiotis I, Knauss WG (2002) A new microtensile tester for the study of MEMS materials with the aid of atomic force microscopy. Exp Mech 42(1):51–57 Hoefnagels JPM, Vossen BG, Tasan CC (2013) Electron micrographic digital image correlation: Method optimization and microstructural banding case study. In: Tom P (ed) Application of imaging techniques to mechanics of materials and structures, vol 4. Springer, New York, pp 71–77 Doumalin P, Bornert M (2000) Micromechanical applications of digital image correlation techniques. In: Jacquot P (ed) Interferometry in speckle light. Springer, New York, pp 67–74 Lord JD, Penn D, Whitehead P (2008) The application of digital image correlation for measuring residual stress by incremental hole drilling. Appl Mech Mater 13–14:65–73 Lubineau G (2008) Estimation of residual stresses in laminated composites using field measurements on a cracked sample. Compos Sci Technol 68(13):2761–2769 Poissant J, Barthelat F (2010) A novel “Subset Splitting” procedure for digital image correlation on discontinuous displacement fields. Exp Mech 50(3):353–364 Cho S, Chasiotis I, Friedmann TA, Sullivan JP (2005) Young’s modulus, Poisson’s ratio and failure properties of tetrahedral amorphous diamond-like carbon for MEMS devices. Micromech Microeng 15(4):728–735 Pan B, Qian K, Xie H, Asundi A (2009) Two-dimensional digital image correlation for in-plane displacement and strain measurement: a review. Meas Sci Technol 20(6):062001 Su C, Anand L (2003) A new digital image correlation algorithm for whole-field displacement measurement. Massachusetts Institute of Technology. http://hdl.handle.net/1721.1.3749. Accessed 31 Dec 2013 Hijazi A, Friedl A, Kähler CJ (2011) Influence of camera’s optical axis non-perpendicularity on measurement accuracy of two-dimensional digital image correlation. Jordan J Mech Ind Eng 5(4):373–382 Baere ID, Paepegem WV, Lammens N et al (2012) Experimentally induced errors in digital image correlation measurement of small strains with large gradients. In: Matikas TE, Aggelis DG (eds) Emerging technologies in non destructive testing V. CRC Press, Boca Raton, pp 441–446. doi:10.1201/b11837-80 Haddadi H, Belhabib S (2008) Use of rigid-body motion for the investigation and estimation of the measurement errors related to digital image correlation technique. Opt Lasers Eng 46(2):185–196 Tiwari V, Sutton MA, McNeill SR (2007) Assessment of high speed imaging systems for 2D and 3D deformation measurements: methodology development and validation. Exp Mech 47(4):561–579 Kashif SM, Toussaint E, Grediac M (2009) Optimization of a mechanical test on composite plates with the Virtual Fields Method. Struct Multidiscip Optim 38(1):71–82 Hild F, Roux S (2006) Digital image correlation: from displacement measurement to identification of elastic properties—a review. Strain 42(2):69–80 Pierron F, Grediac M (2012) The virtual fields method. Springer, New York Florentin E, Lubineau G (2010) Identification of the parameters of an elastic material model using the constitutive equation gap method. Comput Mech 46(4):521–531 Moussawi A, Lubineau G, Florentin E, Blaysat B (2013) The constitutive compatibility method for identification of material parameters based on full-field measurements. Comput Methods Appl Mech Eng 265:1–14 Blaysat B, Florentin E, Lubineau G, Moussawi A (2012) Dissipation Gap Method for full-field measurement based identification of elasto-plastic material parameters. Int J Numer Methods Eng 91(7):685–704 Kashif SM (2007) Onto some numerical issues in the Virtual Fields Method: Optimization of testing configuration and piecewise construction of virtual fields. PhD thesis, Universite BLAISE PASCAL Avril S, Bonnet M, Bretelle AS et al (2008) Overview of identification methods of mechanical parameters based on full-field measurements. Exp Mech 48(4):381–402 Nunes LCS, Castello DA, Matt CF et al (2007) Parameter estimation using digital image correlation and inverse problems. In: Alves M, Mattos HSC (eds) Mechanics of solids in Brazil, 1st edn. Brazilian society of mechanical sciences and engineering, Brazil, pp 433–443 Siddiqui MZ, Tariq F, Naz N (2011) Application of a two-step digital image correlation algorithm in determining Poisson’s ratio of metals and composites. International Astronautical Federation. http://www.iafastro.net/iac/archive/browse/IAC-11/C2/8/10236. Accessed 31 Dec 2013