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http://hdl.handle.net/10397/119671
| Title: | Large deflection analysis of thin-walled members with functionally graded materials along the thickness direction | Authors: | Abdelrahman, AHA Gao, WL Lotfy, S Li, G Liu, SW |
Issue Date: | 10-Apr-2026 | Source: | Steel and composite structures, 10 Apr. 2026, v. 59, no. 1, p. 55-80 | Abstract: | While functionally graded materials (FGMs) offer significant potential for optimizing structural elements, thin-walled members featuring non-uniform material distributions encounter complex buckling modes due to inherent cross-sectional asymmetry. Addressing the challenge of efficiently modeling these behaviors, this paper introduces a computational framework combining advanced cross-sectional analysis with a large deflection beam-column formulation. First, a novel “functionally graded segments method” is developed for thin-walled open sections with FGMs graded along the thickness direction. This algorithm robustly computes crucial cross-sectional properties, specifically capturing the shear center coordinates and Wagner coefficients resulting from material gradients. Subsequently, a new warping line finite element is formulated that explicitly integrates these nonsymmetric FGM section properties. Through a series of validation examples, the proposed method demonstrates remarkable accuracy in predicting large-deflection responses, offering a computationally efficient alternative to complex shell or solid finite element models. This research provides a versatile tool specifically designed for the advanced analysis and design of open-section thin-walled members utilizing FGMs. | Keywords: | Functionally graded Large deflection Open-sections Section properties Thin-walled |
Publisher: | Techno Press | Journal: | Steel and composite structures | ISSN: | 1229-9367 | EISSN: | 1598-6233 | DOI: | 10.12989/scs.2026.59.1.055 | Rights: | Copyright © 2026 Techno Press This is the accepted version of the following article: Abdelrahman, A. ha, Gao, W. L., Lotfy, S., Li, G., & Liu, S. W. (2026). Large deflection analysis of thin-walled members with functionally graded materials along the thickness direction. Steel and Composite Structures, 59(1), 55-80, which has been published in https://doi.org/10.12989/scs.2026.59.1.055. |
| Appears in Collections: | Journal/Magazine Article |
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