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Numerical modeling of inverse problem of parameter identification for viscoelastic functionally graded materials/structures

Linlin Zhang (Department of Engineering Mechanics and State Key Laboratory of Structural Analysis for Industrial Equipment, Dalian University of Technology, Dalian, China)
Haitian Yang (Department of Engineering Mechanics and State Key Laboratory of Structural Analysis for Industrial Equipment, Dalian University of Technology, Dalian, China)

Engineering Computations

ISSN: 0264-4401

Article publication date: 8 June 2021

Issue publication date: 7 December 2021

133

Abstract

Purpose

This paper attempts to develop an efficient algorithm to solve the inverse problem of identifying constitutive parameters in VFG (viscoelastic functionally graded) materials/structures.

Design/methodology/approach

An adaptive recursive algorithm with high fidelity is developed to acquire the derivatives of displacements with respect to constitutive parameters, which are required for the accurate and stable gradient based inverse analysis. A two-step strategy is presented in the process of identification, by which the unknown parameters can be separately identified and the scale and complexity of the inverse VFG problem are reduced. At each step, the process of identification is treated as an optimization problem that is solved by the Levenberg–Marquardt method.

Findings

The solution accuracy of forward problems and derivatives of displacements can be stably achieved with different step sizes, and constitutive parameters of homogenous/regional-inhomogeneous VFG materials/structures can be effectively and accurately identified. By examining the reliability, resolution, impacts of reference information and noisy data, the effectiveness of the proposed approach is numerically verified via three numerical examples.

Originality/value

An adaptive recursive algorithm is developed for derivatives computing with high fidelity, providing a solid platform for the sensitivity analysis and thereby a two-step strategy in conjunction with Levenberg–Marquardt method is presented in the process of identification. Consequently, an effective algorithm is developed to identify constitutive parameters of homogenous/regional-inhomogeneous VFG materials/structures.

Keywords

Acknowledgements

The research leading to this paper is funded by the NSF [11972109, 11572068], NKBRSF [2015CB057804].

Citation

Zhang, L. and Yang, H. (2021), "Numerical modeling of inverse problem of parameter identification for viscoelastic functionally graded materials/structures", Engineering Computations, Vol. 38 No. 10, pp. 3809-3835. https://doi.org/10.1108/EC-08-2020-0426

Publisher

:

Emerald Publishing Limited

Copyright © 2021, Emerald Publishing Limited

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