Optimization of the measurement of residual stresses by the incremental hole drilling method. Part I: Numerical correction of experimental errors by a configurable numerical–experimental coupling - Archive ouverte HAL Accéder directement au contenu
Article Dans Une Revue Composite Structures Année : 2022

Optimization of the measurement of residual stresses by the incremental hole drilling method. Part I: Numerical correction of experimental errors by a configurable numerical–experimental coupling

Résumé

The incremental hole drilling method is very effective in measuring the residual stress gradient in composite laminates. However, its reliability depends on the accuracy with which the calibration coefficients are determined. These coefficients are calculated using a finite element model. The samples’ features and the real experimental conditions must be taken into account in the simulation. Any mismatch can lead to inadequate calibration coefficients, thus introducing errors on residual stresses. Several calibration coefficients correction models exist for isotropic materials, but there is a lack of information on this subject concerning composite laminates. In this paper, the influence of three major experimental errors on the calibration coefficients is numerically investigated for composite laminates. The sensitivity of the coefficients to these errors is highlighted and a numerical correction method is proposed.
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Dates et versions

hal-04044920 , version 1 (24-03-2023)

Identifiants

Citer

A.S. Ibrahim Mamane, S. Giljean, M.-J. Pac, G. L’hostis. Optimization of the measurement of residual stresses by the incremental hole drilling method. Part I: Numerical correction of experimental errors by a configurable numerical–experimental coupling. Composite Structures, 2022, 294, pp.115703. ⟨10.1016/j.compstruct.2022.115703⟩. ⟨hal-04044920⟩
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