Purpose This study aims to investigate the behaviour of soft lattices, i.e. lattices capable of reaching large deformations, and the influence of the printing process on it. The authors focused on two cell topologies, the body-centred cubic (BCC) and the Kelvin, characterized by a bending-dominated behaviour relevant to the design of energy-absorbing applications. Design/methodology/approach The authors analysed the experimental and numerical behaviour of multiple BCC and Kelvin structures. The authors designed homogenous and graded arrays of different dimensions. The authors compared their technical feasibility with two three-dimensional-printed technologies, such as the fused filament fabrication and the selective laser sintering, ch...
This research focuses on the compression and tensile behavior of three-dimensional printed polymer l...
This study investigates the potential of functionally graded lattice structures (FGLs) fabricated by...
Lattice structures are currently of high interest, especially for lightweight design. They generally...
Lattice structures with triply periodic minimal surfaces (TPMS) built using flexible materials are s...
Lattice structures with triply periodic minimal surfaces (TPMS) built using flexible materials are s...
Lattice structures with triply periodic minimal surfaces (TPMS) built using flexible materials are s...
Lattice structures with triply periodic minimal surfaces (TPMS) built using flexible materials are s...
Lattice structures with triply periodic minimal surfaces (TPMS) built using flexible materials are s...
Learning from Nature and leveraging 3D printing, mechanical testing, and numerical modeling, this st...
Learning from Nature and leveraging 3D printing, mechanical testing, and numerical modeling, this st...
Learning from Nature and leveraging 3D printing, mechanical testing, and numerical modeling, this st...
Learning from Nature and leveraging 3D printing, mechanical testing, and numerical modeling, this st...
Learning from Nature and leveraging 3D printing, mechanical testing, and numerical modeling, this st...
Learning from Nature and leveraging 3D printing, mechanical testing, and numerical modeling, this st...
Emerging polymer 3D-printing technologies are enabling the design and fabrication of mechanically ef...
This research focuses on the compression and tensile behavior of three-dimensional printed polymer l...
This study investigates the potential of functionally graded lattice structures (FGLs) fabricated by...
Lattice structures are currently of high interest, especially for lightweight design. They generally...
Lattice structures with triply periodic minimal surfaces (TPMS) built using flexible materials are s...
Lattice structures with triply periodic minimal surfaces (TPMS) built using flexible materials are s...
Lattice structures with triply periodic minimal surfaces (TPMS) built using flexible materials are s...
Lattice structures with triply periodic minimal surfaces (TPMS) built using flexible materials are s...
Lattice structures with triply periodic minimal surfaces (TPMS) built using flexible materials are s...
Learning from Nature and leveraging 3D printing, mechanical testing, and numerical modeling, this st...
Learning from Nature and leveraging 3D printing, mechanical testing, and numerical modeling, this st...
Learning from Nature and leveraging 3D printing, mechanical testing, and numerical modeling, this st...
Learning from Nature and leveraging 3D printing, mechanical testing, and numerical modeling, this st...
Learning from Nature and leveraging 3D printing, mechanical testing, and numerical modeling, this st...
Learning from Nature and leveraging 3D printing, mechanical testing, and numerical modeling, this st...
Emerging polymer 3D-printing technologies are enabling the design and fabrication of mechanically ef...
This research focuses on the compression and tensile behavior of three-dimensional printed polymer l...
This study investigates the potential of functionally graded lattice structures (FGLs) fabricated by...
Lattice structures are currently of high interest, especially for lightweight design. They generally...