Reversible Rigidity Control Using Low Melting Temperature Alloys
ORAL
Abstract
Inspired by nature, materials able to achieve rapid rigidity changes have important applications for human body protection in military and many other areas. This talk presents the fabrication and design of soft-matter technologies that exhibit rapid reversible rigidity control. Fabricated with a masked deposition technique, the soft-matter composite contains liquid-phase and phase-changing metal alloys embedded in a soft and highly stretchable elastomer. The composite material can reversibly change its rigidity by three orders of magnitude and sustain large deformation.
–
Authors
-
Wanliang Shan
Carnegie Mellon University
-
Tong Lu
Carnegie Mellon University
-
Carmel Majidi
Mechanical Engineering, Carnegie Mellon University, Carnegie Mellon University