Follow
Tiantian Li
Tiantian Li
Northeastern University, University of Cambridge, Stony Brook University, NIMS
Verified email at northeastern.edu
Title
Cited by
Cited by
Year
Bending behavior of sandwich composite structures with tunable 3D-printed core materials
T Li, L Wang
Composite Structures 175, 46-57, 2017
3712017
Lattice metamaterials with mechanically tunable Poisson’s ratio for vibration control
Y Chen, T Li, F Scarpa, L Wang
Physical Review Applied 7 (2), 024012, 2017
3312017
Exploiting negative Poisson's ratio to design 3D-printed composites with enhanced mechanical properties
T Li, Y Chen, X Hu, Y Li, L Wang
Materials & design 142, 247-258, 2018
2972018
Topology optimization of multi-material negative Poisson’s ratio metamaterials using a reconciled level set method
P Vogiatzis, S Chen, X Wang, T Li, L Wang
Computer-Aided Design 83, 15-32, 2017
2532017
3D printed hierarchical honeycombs with shape integrity under large compressive deformations
Y Chen, T Li, Z Jia, F Scarpa, CW Yao, L Wang
Materials & Design 137, 226-234, 2018
2492018
Mechanical properties of sandwich composites with 3d-printed auxetic and non-auxetic lattice cores under low velocity impact
S Hou, T Li, Z Jia, L Wang
Materials & Design 160, 1305-1321, 2018
1752018
Enhancing indentation and impact resistance in auxetic composite materials
T Li, F Liu, L Wang
Composites Part B: Engineering 198, 108229, 2020
1672020
An experimental investigation of the temperature effect on the mechanics of carbon fiber reinforced polymer composites
Z Jia, T Li, F Chiang, L Wang
Composites Science and Technology 154, 53-63, 2018
1632018
Hoberman-sphere-inspired lattice metamaterials with tunable negative thermal expansion
Y Li, Y Chen, T Li, S Cao, L Wang
Composite Structures 189, 586-597, 2018
992018
Harnessing out-of-plane deformation to design 3D architected lattice metamaterials with tunable Poisson’s ratio
T Li, X Hu, Y Chen, L Wang
Scientific Reports 7 (1), 8949, 2017
942017
Enhanced fracture toughness in architected interpenetrating phase composites by 3D printing
T Li, Y Chen, L Wang
Composites Science and Technology 167, 251-259, 2018
832018
Combination of stiffness, strength, and toughness in 3D printed interlocking nacre-like composites
F Liu, T Li, Z Jia, L Wang
Extreme Mechanics Letters 35, 100621, 2020
602020
Additive manufactured semi-plate lattice materials with high stiffness, strength and toughness
T Li, F Jarrar, RA Al-Rub, W Cantwell
International Journal of Solids and Structures 230, 111153, 2021
382021
The effect of material mixing on interfacial stiffness and strength of multi-material additive manufacturing
F Liu, T Li, X Jiang, Z Jia, Z Xu, L Wang
Additive Manufacturing 36, 101502, 2020
382020
Micostructure and magnetic properties in nanostructured Fe and Fe-based intermetallics produced by high-pressure torsion
A Hosokawa, H Ohtsuka, T Li, S Ii, K Tsuchiya
Materials Transactions 55 (8), 1286-1291, 2014
252014
Harnessing 3D printed residual stress to design heat-shrinkable metamaterials
Y Li, S Cao, T Li, L Wang
Results in Physics 11, 85-95, 2018
132018
An assessment of the J-integral test for a metallic foam
HC Tankasala, T Li, PE Seiler, VS Deshpande, NA Fleck
Journal of the Mechanics and Physics of Solids 141, 103958, 2020
92020
Effects of handedness ratio and handedness distribution on the mechanical properties of Bi-chiral mechanical metamaterials
T Li, Y Li
International Journal of Solids and Structures 254, 111947, 2022
52022
Prediction of the anisotropy of chiral mechanical metamaterials via micropolar modeling
T Li, Y Li
Journal of Applied Mechanics 89 (10), 101006, 2022
42022
Mechanical behaviors of three-dimensional chiral mechanical metamaterials
T Li, Y Li
Composites Part B: Engineering 270, 111141, 2024
22024
The system can't perform the operation now. Try again later.
Articles 1–20