Analytical Solution for Bending Steel Concrete Composite Plates considering the Shear Deformation Effect

Authors

  • Dao Ngoc Tien Hanoi Architectural University, Vietnam
  • Nguyen Xuan Tung University of Transport and Communications, Ha Noi, Vietnam
  • Nguyen Ngoc Lam University of Transport and Communications, Ha Noi, Vietnam
Volume: 14 | Issue: 5 | Pages: 16090-16094 | October 2024 | https://doi.org/10.48084/etasr.7801

Abstract

This paper deals with an analytical approach to the static behavior of Steel Concrete Composite (SCC) slabs. The Classical Plate Theory (CPT) and Refined Plate Theory (RPT) are considered when constructing governing equations describing the behavior of steel concrete plates. The displacement fields are represented by trigonometric series to find the exact solution by applying Navier's approach. Various numerical examples have been compared with the considered ones showing their high accuracy. The influence of plate parameters such as the thickness of steel and concrete layers on displacement was investigated in detail.

Keywords:

Steel Concrete Composite (SCC) plates, analytical solution, refined plate

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References

J. Singh and A. Kumar, "Vibration and the Buckling Response of Functionally Graded Plates According to a Refined Hyperbolic Shear Deformation Theory," Mechanics of Composite Materials, vol. 59, no. 4, pp. 725–742, Sep. 2023.

A. W. de Q. R. Reis, R. B. Burgos, and M. F. F. de Oliveira, "Nonlinear Dynamic Analysis of Plates Subjected to Explosive Loads," Latin American Journal of Solids and Structures, vol. 19, Jan. 2022, Art. no. e422.

L. Kurpa, T. Shmatko, and A. Linnik, "Buckling Analysis of Functionally Graded Sandwich Plates Resting on an Elastic Foundation and Subjected to a Nonuniform Loading," Mechanics of Composite Materials, vol. 59, no. 4, pp. 645–658, Sep. 2023.

N. T. Hiep, D. S. Dan, N. D. Diem, and D. N. Tien, "NURBS-based Isogeometric Analysis and Refined Plate Theory Application on a Functionally Graded Plate Subjected to Random Loads," Engineering, Technology & Applied Science Research, vol. 13, no. 2, pp. 10243–10248, Apr. 2023.

R. Abdikarimov, M. Amabili, N. Vatin, and B. Eshmatov, “Nonlinear vibrations and dynamic stability of viscoelastic anisotropic fiber reinforced plates,” Magazine of Civil Engineering, vol. 118, no. 2, 2023, Art. no. 11811.

D. T. Thuy, L. N. Ngoc, D. N. Tien, and H. V. Thanh, "An Analytical Solution for the Dynamics of a Functionally Graded Plate resting on Viscoelastic Foundation," Engineering, Technology & Applied Science Research, vol. 13, no. 1, pp. 9926–9931, Feb. 2023.

H. D. Ta and P.-C. Nguyen, “Perturbation based stochastic isogeometric analysis for bending of functionally graded plates with the randomness of elastic modulus,” Latin American Journal of Solids and Structures, vol. 17, no. 7, Sep. 2020, Art. no. e306.

A. Babiker, Y. M. Abbas, M. I. Khan, and J. M. Khatib, "Kinetic response of reinforced concrete slabs to high-velocity projectile impact-robust numerical and statistical driven modeling techniques," Latin American Journal of Solids and Structures, vol. 21, no. 3, Feb. 2024, Art. no. e536.

T. T. Nguyen, T. S. Le, T. T. Tran, and Q. H. Pham, "Buckling analysis of functionally graded porous variable thickness plates resting on Pasternak foundation using ES-MITC3," Latin American Journal of Solids and Structures, vol. 21, no. 2, Jan. 2024, Art. no. e524.

M. A. Eltaher, O. A. Aleryani, A. Melaibari, and A. A. Abdelrahman, "Bending and Vibration of a Bio-Inspired Bouligand Composite Plate Using the Finite-Element Method," Mechanics of Composite Materials, vol. 59, no. 6, pp. 1199–1216, Jan. 2024.

P. B. Thang and L. V. Anh, “Structural analysis of steel-concrete composite beam bridges utilizing the shear connection model,” Transport and Communications Science Journal, vol. 72, no. 7, pp. 811–823, Sep. 2021.

T. D. Nhiem, Report on solutions, design and construction techniques to strengthen Thang Long bridge deck. Technological solutions to repair and strengthen Thang Long bridge deck. Ha Noi, Vietnam: University of Transport and Communications, 2020

X.-B. Luu and S.-K. Kim, "Finite Element Modeling of Interface Behavior between Normal Concrete and Ultra-High Performance Fiber-Reinforced Concrete," Buildings, vol. 13, no. 4, Apr. 2023 Art. no. 950.

N. H. Cuong and N. D. Quang, “Experimental study on flexural behavior of prestressed and non-prestressed textile reinforced concrete plates,” Transport and Communications Science Journal, vol. 71, no. 1, pp. 37–45, Jan. 2020.

D. L. Nguyen, H. V. Le, T. B. N. Vu, V. T. Nguyen, and N. T. Tran, "Evaluating fracture characteristics of ultra-high-performance fiber-reinforced concrete in flexure and tension with size impact," Construction and Building Materials, vol. 382, Jun. 2023, Art. no. 131224.

H. D. Ta and H. C. Noh, "Analytical solution for the dynamic response of functionally graded rectangular plates resting on elastic foundation using a refined plate theory," Applied Mathematical Modelling, vol. 39, no. 20, pp. 6243–6257, Oct. 2015.

P. M. Phuc, “Using phase field and third-order shear deformation theory to study the effect of cracks on free vibration of rectangular plates with varying thickness,” Transport and Communications Science Journal, vol. 71, no. 7, pp. 853–867, Sep. 2020.

Q. H. Pham, T. T. Tran, and P. C. Nguyen, "Dynamic response of functionally graded porous-core sandwich plates subjected to blast load using ES-MITC3 element," Composite Structures, vol. 309, Apr. 2023, Art. no. 116722.

T. D. Hien, N. D. Hung, N. T. Hiep, G. V. Tan, and N. V. Thuan, "Finite Element Analysis of a Continuous Sandwich Beam resting on Elastic Support and Subjected to Two Degree of Freedom Sprung Vehicles," Engineering, Technology & Applied Science Research, vol. 13, no. 2, pp. 10310–10315, Apr. 2023.

B. Pu, X. Wang, W. Li, and J. Feng, "Analytical Model Formulation of Steel Plate Reinforced Concrete Walls against Hard Projectile Impact," Applied Sciences, vol. 12, no. 1, Jan. 2022, Art. no. 518.

A. M. Olajumoke and M. Dundu, “Dynamic performance of steel plate-strengthened reinforced concrete slabs in bending,” in Advances in Engineering Materials, Structures and Systems: Innovations, Mechanics and Applications, 1st ed., London: England & Wales, 2019, p. 6.

M. Ghalehnovi, M. Yousefi, A. Karimipour, J. de Brito, and M. Norooziyan, "Investigation of the Behaviour of Steel-Concrete-Steel Sandwich Slabs with Bi-Directional Corrugated-Strip Connectors," Applied Sciences, vol. 10, no. 23, Jan. 2020, Art. no. 8647.

M. Zhou, J. Wang, J. Nie, and Q. Yue, "Experimental study and model of steel plate concrete composite members under tension," Journal of Constructional Steel Research, vol. 185, Oct. 2021, Art. no. 106818.

R. P. Shimpi and H. G. Patel, "A two variable refined plate theory for orthotropic plate analysis," International Journal of Solids and Structures, vol. 43, no. 22, pp. 6783–6799, Nov. 2006.

J. N. Reddy, Mechanics of Laminated Composite Plates and Shells: Theory and Analysis, 2nd ed. Boca Raton, Florida, United States: CRC Press, 2003.

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How to Cite

[1]
Tien, D.N., Tung, N.X. and Lam, N.N. 2024. Analytical Solution for Bending Steel Concrete Composite Plates considering the Shear Deformation Effect . Engineering, Technology & Applied Science Research. 14, 5 (Oct. 2024), 16090–16094. DOI:https://doi.org/10.48084/etasr.7801.

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