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Reinforcing bars modelling using a rod-solid interface element without the need for mesh compatibility

delete2021-12-01
delete5
PRE
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R
R. Durand *
M
Márcio Muniz de Farias
D
Dorival M. Pedroso
G
Günther Meschke
DOI:10.1016/j.finel.2021.103634delete
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Abstract

Abstract

En 中文
This paper presents a finite element methodology for modelling solid media with any number of straight or curved reinforcing bars (rebars). The formulation can handle rebars arbitrarily located within a 2D or 3D finite element mesh without the need for nodal compatibility. A new continuous rod-solid interface (or joint) element is developed to connect bulk elements to the rebars, including a method that directly considers the relative displacements. An arbitrary constitutive model can be used in conjunction with the proposed interface element to represent slip behaviour. In this regard, we also present a cyclic nonlinear constitutive model. Unlike existing embedded approaches, the proposed method allows for the direct application of boundary conditions at reinforcements' endpoints, including tip bearing. The formulation is verified by comparing with literature examples and analytical solutions. In all cases, excellent agreement is observed. The approach can be conveniently applied to the study of complex reinforced concrete structures or any solid medium where reinforcing bars improve its mechanical properties.
Keywords:
Reinforced concrete
Finite elements
Interface elements
Reinforcement
Embedded elements
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Journal

Finite Elements in Analysis and Design cover
Finite Elements in Analysis and Design
IF:
3.5
Papers:
2.6K
Citations:
5.1K

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U
universidade de brasilia
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University of Queensland
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ruhr university bochum
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