Suivre
NGUYEN TRUNG KIEN
NGUYEN TRUNG KIEN
Autres nomsTrung-Kien Nguyen, TK Nguyen
Professor of Mechanics, CIRTech Institute, HUTECH University
Adresse e-mail validée de hutech.edu.vn - Page d'accueil
Titre
Citée par
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Année
A review of continuum mechanics models for size-dependent analysis of beams and plates
HT Thai, TP Vo, TK Nguyen, SE Kim
Composite Structures 177, 196-219, 2017
3672017
Analysis of functionally graded sandwich plates using a new first-order shear deformation theory
HT Thai, TK Nguyen, TP Vo, J Lee
European Journal of Mechanics-A/Solids 45, 211-225, 2014
3212014
First-order shear deformation plate models for functionally graded materials
TK Nguyen, K Sab, G Bonnet
Composite Structures 83 (1), 25-36, 2008
3092008
Finite element model for vibration and buckling of functionally graded sandwich beams based on a refined shear deformation theory
TP Vo, HT Thai, TK Nguyen, A Maheri, J Lee
Engineering structures 64, 12-22, 2014
2912014
Vibration and buckling analysis of functionally graded sandwich beams by a new higher-order shear deformation theory
TK Nguyen, TTP Nguyen, TP Vo, HT Thai
Composites Part B: Engineering 76, 273-285, 2015
2442015
Static and free vibration of axially loaded functionally graded beams based on the first-order shear deformation theory
TK Nguyen, TP Vo, HT Thai
Composites Part B: Engineering 55, 147-157, 2013
2312013
A quasi-3D theory for vibration and buckling of functionally graded sandwich beams
TP Vo, HT Thai, TK Nguyen, F Inam, J Lee
Composite Structures 119, 1-12, 2015
2152015
A new inverse trigonometric shear deformation theory for isotropic and functionally graded sandwich plates
VH Nguyen, TK Nguyen, HT Thai, TP Vo
Composites Part B: Engineering 66, 233-246, 2014
2022014
Static behaviour of functionally graded sandwich beams using a quasi-3D theory
TP Vo, HT Thai, TK Nguyen, F Inam, J Lee
Composites Part B: Engineering 68, 59-74, 2015
1842015
Static and vibration analysis of functionally graded beams using refined shear deformation theory
TP Vo, HT Thai, TK Nguyen, F Inam
Meccanica 49, 155-168, 2014
1692014
An analytical solution for buckling and vibration analysis of functionally graded sandwich beams using a quasi-3D shear deformation theory
TK Nguyen, TP Vo, BD Nguyen, J Lee
Composite Structures 156, 238-252, 2016
1372016
Size-dependent behavior of functionally graded sandwich microbeams based on the modified couple stress theory
HT Thai, TP Vo, TK Nguyen, J Lee
Composite Structures 123, 337-349, 2015
1352015
An analytical method for the vibration and buckling of functionally graded beams under mechanical and thermal loads
LC Trinh, TP Vo, HT Thai, TK Nguyen
Composites Part B: Engineering 100, 152-163, 2016
1292016
Vibration and buckling optimization of functionally graded porous microplates using BCMO-ANN algorithm
VT Tran, TK Nguyen, H Nguyen-Xuan, MA Wahab
Thin-Walled Structures 182, 110267, 2023
1192023
A new higher-order shear deformation theory for static, buckling and free vibration analysis of functionally graded sandwich beams
TK Nguyen, BD Nguyen
Journal of Sandwich Structures & Materials 17 (6), 613-631, 2015
1192015
Size-dependent vibration of bi-directional functionally graded microbeams with arbitrary boundary conditions
LC Trinh, TP Vo, HT Thai, TK Nguyen
Composites Part B: Engineering 134, 225-245, 2018
1002018
Static and vibration analysis of isotropic and functionally graded sandwich plates using an edge-based MITC3 finite elements
TK Nguyen, VH Nguyen, T Chau-Dinh, TP Vo, H Nguyen-Xuan
Composites Part B: Engineering 107, 162-173, 2016
972016
A quasi-3D hyperbolic shear deformation theory for functionally graded plates
HT Thai, TP Vo, TQ Bui, TK Nguyen
Acta Mechanica 225, 951-964, 2014
972014
Shear correction factors for functionally graded plates
TK Nguyen, K Sab, G Bonnet
Mechanics of Advanced Materials and Structures 14 (8), 567-575, 2007
902007
Analytical solution for vibration and buckling of functionally graded sandwich beams using various quasi-3D theories
AI Osofero, TP Vo, TK Nguyen, J Lee
Journal of Sandwich Structures & Materials 18 (1), 3-29, 2016
862016
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