Application of artificial intelligence in geotechnical engineering: A state-of-the-art review A Baghbani, T Choudhury, S Costa, J Reiner Earth-Science Reviews 228, 103991, 2022 | 133 | 2022 |
Theory-guided machine learning for damage characterization of composites N Zobeiry, J Reiner, R Vaziri Composite Structures 246, 112407, 2020 | 112 | 2020 |
A study of energy dissipating mechanisms in orthogonal cutting of UD-CFRP composites X Yan, J Reiner, M Bacca, Y Altintas, R Vaziri Composite Structures 220, 460-472, 2019 | 91 | 2019 |
Progressive damage analysis of composite structures using higher-order layer-wise elements MH Nagaraj, J Reiner, R Vaziri, E Carrera, M Petrolo Composites Part B: Engineering 190, 107921, 2020 | 57 | 2020 |
Machine learning assisted characterisation and simulation of compressive damage in composite laminates J Reiner, R Vaziri, N Zobeiry Composite Structures 273, 114290, 2021 | 50 | 2021 |
Comparison of two progressive damage models for studying the notched behavior of composite laminates under tension J Reiner, T Feser, D Schueler, M Waimer, R Vaziri Composite Structures 207, 385-396, 2019 | 48 | 2019 |
Experimental and numerical analysis of drop-weight low-velocity impact tests on hybrid titanium composite laminates J Reiner, JP Torres, M Veidt, M Heitzmann Journal of Composite Materials 50 (26), 3605-3617, 2016 | 48 | 2016 |
Densification of timber: a review on the process, material properties, and application JP Cabral, B Kafle, M Subhani, J Reiner, M Ashraf Journal of Wood Science 68 (1), 20, 2022 | 46 | 2022 |
8.4 Structural Analysis of Composites With Finite Element Codes: An Overview of Commonly Used Computational Methods J Reiner, R Vaziri Comprehensive Composite Materials II, 61-84, 2018 | 37* | 2018 |
Compressive damage modeling of fiber-reinforced composite laminates using 2D higher-order layer-wise models MH Nagaraj, J Reiner, R Vaziri, E Carrera, M Petrolo Composites Part B: Engineering 215, 108753, 2021 | 33 | 2021 |
A progressive analysis of matrix cracking-induced delamination in composite laminates using an advanced phantom node method J Reiner, M Veidt, M Dargusch, L Gross Journal of Composite Materials 51 (20), 2933-2947, 2017 | 31 | 2017 |
A novel top surface analysis method for mode I interface characterisation using digital image correlation J Reiner, JP Torres, M Veidt Engineering Fracture Mechanics 173, 107-117, 2017 | 27 | 2017 |
A practical approach for the non-local simulation of progressive damage in quasi-isotropic fibre-reinforced composite laminates J Reiner Composite Structures 265, 113761, 2021 | 24 | 2021 |
Virtual characterization of nonlocal continuum damage model parameters using a high fidelity finite element model J Reiner, X Xu, N Zobeiry, R Vaziri, SR Hallett, MR Wisnom Composite Structures 256, 113073, 2021 | 24 | 2021 |
A stacked sublaminate-based damage-plasticity model for simulating progressive damage in composite laminates under impact loading J Reiner, N Zobeiry, R Vaziri Thin-Walled Structures 156, 107009, 2020 | 23 | 2020 |
Axial crush simulation of composites using continuum damage mechanics: FE software and material model independent considerations J Reiner, T Feser, M Waimer, A Poursartip, H Voggenreiter, R Vaziri Composites Part B: Engineering 225, 109284, 2021 | 21 | 2021 |
A Computational Investigation of Failure Modes in Hybrid Titanium Composite Laminates J Reiner University of Queensland, 2016 | 19 | 2016 |
Efficient finite element simulation of compression after impact behaviour in quasi-isotropic composite laminates J Reiner, N Zobeiry, R Vaziri Composites Communications 28, 100967, 2021 | 16 | 2021 |
Constitutive material model for the compressive behaviour of engineered bamboo J Goonewardena, M Ashraf, J Reiner, B Kafle, M Subhani Buildings 12 (9), 1490, 2022 | 13 | 2022 |
Machine learning guided alloy design of high-temperature NiTiHf shape memory alloys UMHU Kankanamge, J Reiner, X Ma, SC Gallo, W Xu Journal of Materials Science 57 (41), 19447-19465, 2022 | 12 | 2022 |