Giảng Viên - Bài Báo khoa học ISI/SCOPUS - Năm 2025
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Tran, V. T., Nguyen, T. K., & Vo, T. P. (2025). A novel hybrid machine learning and optimization approach for stochastic free vibration analysis of graphene platelets reinforced functionally graded triply periodic minimal surface microplates. Engineering Analysis with Boundary Elements, 178, 106304.
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Nguyen, T. N., Nguyen, T. K., Bui, X. B., & Vo, T. P. (2025). Thermal buckling and vibration analysis of functionally graded thin-walled box beams using a higher-order shear deformation theory. Mechanics Based Design of Structures and Machines, 1-24.
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Tran, V. T., Nguyen, T. K., Nguyen, V. H., & Vo, T. P. (2025). Novel Computational Algorithms for Vibration, Buckling, and Transient Analysis of Porous Metal Foam Microplates. Journal of Vibration Engineering & Technologies, 13(3), 203.
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Bui, X. B., Nguyen, T. K., Do, T. T., & Vo, T. P. (2025). Vibration and buckling analysis of porous metal foam thin-walled beams with closed section. Mechanics Based Design of Structures and Machines, 53(1), 276-300.
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Lee, C., Ho, P. L., Natarajan, S., Le, C. V., & Yee, J. J. (2025). Polytree-based adaptive bubble-enriched smoothed polygonal finite element method for dual yield structural design. Engineering with Computers, 1-27.
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Ho, P. L., Lee, C., Le, C. V., Tran, D. T., Nguyen, P. H., & Yee, J. J. (2025). Dual Bubble-Enriched SFEM Approaches for Locking-Free Analysis of Structures Under Cyclic Loads. International Journal of Applied Mechanics, 17(3), 2550002.
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Nguyen, B. Q. V., Nguyen, T. H., & Le, V. C. (2025). An advanced machine learning-based mathematical equation for predicting compression index from readily-available soil physical properties. Geomechanics and Geoengineering, 1-17.
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Nguyen, P. H., Le, C. V., Ho, P. L., & Yee, J. J. (2025). Shakedown Analysis of Porous Mohr–Coulomb Materials: A Computational Homogenization Approach. International Journal of Geomechanics, 25(5), 04025057.
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Ho, P. L., Lee, C., Le, C. V., & Yee, J. J. (2025). Shakedown analysis of incompressible materials under cyclic loads: A locking-free CS-FEM-Q5 numerical approach. International Journal of Non-Linear Mechanics, 168, 104932.
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Thai, C. H., Hung, P. T., & Phung-Van, P. (2025). Naturally stabilized nodal integration of Chebyshev moving Kriging meshless approach for functionally graded triply periodic minimal surface plates. Engineering Analysis with Boundary Elements, 179, 106333.
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Hung, P. T., Thai, C. H., & Phung-Van, P. (2025). A novel meshfree method for free vibration behavior of the functionally graded carbon nanotube-reinforced composite plates using a new shear deformation theory. Computers & Mathematics with Applications, 189, 208-224.
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Hung, P. T., Thai, C. H., & Phung-Van, P. (2025). A moving Kriging meshfree vibration analysis of functionally graded porous magneto-electro-elastic plates reinforced with graphene platelets. Advances in Engineering Software, 203, 103885.
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Thai, C. H., Hung, P. T., Rabczuk, T., Nguyen-Xuan, H., & Phung-Van, P. (2025). A Chebyshev shear deformation model for laminated composite plates. Composite Structures, 360, 119045.
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Phung-Van, P., Hung, P. T., Tangaramvong, S., Nguyen-Xuan, H., & Thai, C. H. (2025). A novel Chebyshev-based both meshfree method and shear deformation theory for functionally graded triply periodic minimal surface flat plates. Computers & Structures, 309, 107660.
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Nguyen, L. B., Phung-Van, P., & Thai, C. H. (2025). Chebyshev polynomials in moving Kriging meshfree method for laminated composite plates. Finite Elements in Analysis and Design, 245, 104312.
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Nguyen, L. B., Hung, P. T., Nguyen-Xuan, H., Phung-Van, P., & Thai, C. H. (2025, February). A nonlocal meshfree approach for functionally graded triply periodic minimal surface plates at the nanoscale. In Structures (Vol. 72, p. 108212). Elsevier.