The MITC4+ shell element and its performance Y Ko, PS Lee, KJ Bathe Computers & Structures 169, 57-68, 2016 | 111 | 2016 |
A new MITC4+ shell element Y Ko, PS Lee, KJ Bathe Computers & Structures 182, 404-418, 2017 | 103 | 2017 |
Performance of the MITC3+ and MITC4+ shell elements in widely-used benchmark problems Y Ko, Y Lee, PS Lee, KJ Bathe Computers & Structures 193, 187-206, 2017 | 71 | 2017 |
A new 4-node MITC element for analysis of two-dimensional solids and its formulation in a shell element Y Ko, PS Lee, KJ Bathe Computers & Structures 192, 34-49, 2017 | 58 | 2017 |
The MITC4+ shell element in geometric nonlinear analysis Y Ko, PS Lee, KJ Bathe Computers & Structures 185, 1-14, 2017 | 55 | 2017 |
A 6‐node triangular solid‐shell element for linear and nonlinear analysis Y Ko, PS Lee International Journal for Numerical Methods in Engineering 111 (13), 1203-1230, 2017 | 15 | 2017 |
A new 8-node element for analysis of three-dimensional solids Y Ko, KJ Bathe Computers & Structures 202, 85-104, 2018 | 14 | 2018 |
Inf-sup testing of some three-dimensional low-order finite elements for the analysis of solids Y Ko, KJ Bathe Computers & Structures 209, 1-13, 2018 | 9 | 2018 |
Shock response analysis of aluminum foam attached blast hardened bulkheads S Kim, Y Ko, PS Lee 대한조선학회 춘계학술대회, 2014, 2014 | 1 | 2014 |
Continuum mechanics-based shell elements with six degrees of freedom at each node− the MITC4/D and MITC4+/D elements Y Ko, KJ Bathe, X Zhang Computers & Structures 308, 107622, 2025 | | 2025 |
Insight into Newmark time integration parameters in non-linear dynamic problems YB Ko 한국과학기술원, 2013 | | 2013 |