Publication
Bioinspired Extreme Materials Laboratory
Harnessing behaviors of piezoelectric polymer composites for enhancing charge generation and bone-inspired materials with self-adaptable mechanical properties and self-healing
S. H. Kang October 2017, College of Engineering and Applied Science, University of Colorado-Denver, Denver, CO,
Design, Fabrication, and Characterization of Architected Materials for Energy Absorption and Vibration Propagation Control
S. H. Kang December 2016, Department of Mechanical Engineering, University of Maryland, Baltimore County, Baltimore, MD,
The Future of Vibration Energy Transfer in Solids and Structures: Needs and Opportunities
S. H. Kang Army Research Office Invited Workshop on the Future of Vibration Energy Transfer in Solids and Structures: Needs and Opportunities, Seattle, WA, October 2016,
S. H. Kang October 2016, Department of Mechanical and Manufacturing Engineering, University of Calgary, Calgary, AB, Canada,
Steering Behaviors of 3D Printed Materials and Structures
S. H. Kang August 2016, The United States Army Research Laboratory, Aberdeen, MD,
Design, Fabrication, and Characterization of Architected Materials for Energy Absorption and Tunable Vibration Propagation
S. H. Kang Under Armour, July 2016, Baltimore, MD,
Design, Fabrication, and Characterization of Architected Materials for Tunable Wave Propagation and Shape-Recoverable Energy-Absorption
S. H. Kang May 2016, Department of Mechanical and Materials Engineering, Portland State University, Portland, OR,
Architected Materials for Tunable Elastic Wave Propagation and Reversible Energy Absorption
S. H. Kang May 2016, Department of Mechanical Engineering, Stony Brook University, Stony Brook, NY,
Steering Interactions between Bioinspired Polymeric Fibrous Structures and Fluids
S. H. Kang June 2015, National Institute of Standards and Technology, Gaithersburg, MD,
3D Technologies and Their Applications for Architected Materials
S. H. Kang Greater Baltimore Committee Education and Workforce, May 2015, Baltimore, MD,
Steering Evaporation-Induced Self-Assembly of Nanopost Arrays by Interplay between Mechanics and Surface Chemistry
S. H. Kang Foundations of Nanoscience, April 2015, Snowbird, UT,
Design, Fabrication and Characterization of Architected Materials for Tunable Wave Propagation and Shape-Recoverable Energy-Absorption
2015 Mach Conference (keynote presentation of a session), April 2015, Annapolis, MD,
Harnessing Soft Materials for Functionality through Deformation and Instability
S. H. Kang 4th EITA Young Investigator Conference, August 2015, Cambridge, MA,
Harnessing Deformation and Instability of Soft Structured Materials for Tunable Structures and Devices
S. H. Kang February 2015, Department of Aeronautics and Astronautics, University of Washington, Seattle, WA,
Soft Structured Materials: Functionality through Deformation and Instability
S. H. Kang and K. Bertoldi Materials Research Society Meeting, April 2014, San Francisco, CA,