22 Chambers Street
Princeton, NJ 08544-0708
United States
Princeton University
Phase-field, Cohesive Zone Model, Large deformation, LEFM theory, Fracture, Finite-element
Phase-field, Cohesive Zone Model, Large deformation, LEFM theory, Fracture, Finite-element, Cement Paste, Elastomer
Multi-Material Additive Manufacturing, Tough Hard-Soft Architected Cementitious Composites, Fracture Toughness, Finite-Element, Phase-Field and Cohesive Zone Model Framework
Architected materials, Cementitious composites, Bio-inspired interface, Suture, fracture toughness
Low-embodied-carbon concrete, Global warming potential, PARTICLE PACKING, Aggregate optimization, Gradation
3DCP, modeling, extrusion, mechanics, fracture, layer, printing, workflow, robotics, design, programming, customization
Load-Rate Sensitivity, Flat Interface, Layered Materials, 3D-Printed Materials, Fracture Toughness, Cohesive Strength
Channels, Parametric Modeling, Toolpath Generation, Biologically Inspired, 3D-Printing, concrete, cement, vascular network, Software
Robotic additive manufacturing, Path Generation Framework (PGF), Path Planning, Online path generation, Unknown environment