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Tiantian Li
Tiantian Li
Northeastern University, University of Cambridge, Stony Brook University, NIMS
Bestätigte E-Mail-Adresse bei northeastern.edu
Titel
Zitiert von
Zitiert von
Jahr
Bending behavior of sandwich composite structures with tunable 3D-printed core materials
T Li, L Wang
Composite Structures 175, 46-57, 2017
3722017
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
2982018
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
2552017
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
2522018
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
1762018
Enhancing indentation and impact resistance in auxetic composite materials
T Li, F Liu, L Wang
Composites Part B: Engineering 198, 108229, 2020
1702020
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
1672018
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
952017
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
852018
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
622020
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
Mechanical behaviors of three-dimensional chiral mechanical metamaterials
T Li, Y Li
Composites Part B: Engineering 270, 111141, 2024
42024
Prediction of the anisotropy of chiral mechanical metamaterials via micropolar modeling
T Li, Y Li
Journal of Applied Mechanics 89 (10), 101006, 2022
42022
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