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Researchers Enhance Energy Absorption in 3D Printed Octet-plate

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Researchers Enhance Energy Absorption in 3D Printed Octet-plate

Researchers in Canada have published the findings of their experiments into 3D printed octet-plate lattice structures with tunable absorption properties.

Compression experiments of pyrolytic carbon cubic+octet

Compression experiments of pyrolytic carbon cubic+octet

Pyrolytic carbon (PC) cubic+octet plate-nanolattices are the

Pyrolytic carbon (PC) cubic+octet plate-nanolattices are the

Fabrication of polymeric lattice structures for optimum energy

Fabrication of polymeric lattice structures for optimum energy

Genesis Essentia concept car boasts 3D printed

Genesis Essentia concept car boasts 3D printed

Prediction and experimental validation approach to improve

Prediction and experimental validation approach to improve

Stiff and strong, lightweight bi-material sandwich plate-lattices

Stiff and strong, lightweight bi-material sandwich plate-lattices

Tunable Energy Absorption Characteristics of Architected

Tunable Energy Absorption Characteristics of Architected

Polymers, Free Full-Text

Polymers, Free Full-Text

3D printed meta-sandwich structures: Failure mechanism, energy

3D printed meta-sandwich structures: Failure mechanism, energy

3D printed octet plate-lattices for tunable energy absorption

3D printed octet plate-lattices for tunable energy absorption

Free boundary effects and representative volume elements in 3D

Free boundary effects and representative volume elements in 3D