A thermodynamic framework for additive manufacturing, using amorphous polymers, capable of predicting residual stress, warpage and shrinkage P Sreejith, K Kannan, KR Rajagopal International Journal of Engineering Science 159, 103412, 2021 | 57 | 2021 |
A thermodynamic framework for the additive manufacturing of crystallizing polymers. Part I: A theory that accounts for phase change, shrinkage, warpage and residual stress P Sreejith, K Kannan, KR Rajagopal International Journal of Engineering Science 183, 103789, 2023 | 20 | 2023 |
An efficient mode-of-deformation dependent rate-type constitutive relation for multi-modal cyclic loading of elastomers K Srikanth, P Sreejith, K Arvind, K Kannan, M Pandey International Journal of Plasticity 163, 103517, 2023 | 14 | 2023 |
A thermodynamic framework for additive manufacturing of crystallizing polymers, Part II: simulation of the printing of a stent P Sreejith, K Srikanth, K Kannan, KR Rajagopal International Journal of Engineering Science 184, 103790, 2023 | 5 | 2023 |
A semi-analytical inverse method to obtain the hyperelastic potential using experimental data V Kulwant, K Arvind, D Prasad, P Sreejith, KV Mohankumar, K Kannan Journal of the Mechanics and Physics of Solids 181, 105431, 2023 | 4 | 2023 |
A new viscoelastic model for human brain tissue using Lode invariants based rate-type thermodynamic framework D Prasad, P Sreejith, K Kannan Applications in Engineering Science 15, 100130, 2023 | 1 | 2023 |
A Detailed Implementation of the AM theory in Abaqus P Sreejith, K Srikanth, K Kannan | | |