Improved Thin-Walled Finite Curved Beam Elements

Author:

Kim Nam-Il1,Jeon Chan-Ki2

Affiliation:

1. Department of Architectural Engineering, Sejong University, 98 Kunja Dong, Kwangjin Ku, Seoul 143-747, Republic of Korea

2. Department of Urban Construction Engineering, University of Incheon, 12-1 Songdo-dong, Yeonsu-gu, Incheon 406-772, Republic of Korea

Abstract

The two- and three-noded spatially coupled thin-walled finite curved beam elements are presented on the basis of assumed strain fields. These elements consider the extensional/inextensional conditions along the centroid axis of curved beam. For curved beams with the extensional condition, the two-noded element is formulated from constant strain and linear curvature fields. And the strain is assumed as linear filed and curvatures are assumed to be third-order ones for the three-noded element. In addition the normal stress at an arbitrary point of symmetric and non-symmetric cross-sections is explicitly evaluated since strain and curvature functions are assumed independently. In order to illustrate the accuracy and the practical usefulness of the present assumed strain curved beam elements, the displacements and the normal stresses of curved beams are evaluated and compared with the previously published results and the solutions by the shell elements from SAP 2000. The emphasis is given in investigating the influence of inextensibility along the beam axis on the coupled behavior of curved beam with respect to the values of boundary condition, subtended angle, and slenderness ratio.

Funder

University of Incheon

Publisher

SAGE Publications

Subject

Mechanical Engineering

Cited by 4 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. The Out-of-plane Static Analysis of Thin-walled Curved H-beams;Transactions of FAMENA;2023

2. In-plane Displacements of Thin-walled Curved Beams;2022 7th International Conference on Smart and Sustainable Technologies (SpliTech);2022-07-05

3. On invariance of spatial isogeometric Timoshenko–Ehrenfest beam formulations for static analysis;Computer Methods in Applied Mechanics and Engineering;2022-05

4. A finite element model for static analysis of curved thin-walled beams based on the concept of equivalent layered composite cross section;Mechanics of Advanced Materials and Structures;2020-08-07

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