Metamaterials—materials whose properties are primarily dictated by their internal microstructure, and not their chemical ...
A new academic review dissects how 3D printed concrete behaves in earthquakes and where the technology must improve to earn code approval.
Duke engineers created solid blocks that can reprogram stiffness on demand, enabling robots to change motion without ...
Abstract: Human fingers exhibit remarkable dexterity and adaptability through a combination of structures with varying stiffness levels, ranging from soft tissues (low stiffness) to tendons and ...
Nivalon Medical Technologies Inc. has successfully produced the world’s first fully patient-specific, motion-preserving ...