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My research focuses on the development and application of theoretical, computational and experimental techniques to characterize the response of materials and structures to mechanical, thermal, and environmental loads. I am particularly interested in characterizing the mechanics of fatigue and fracture. My multidisciplinary research, which has been funded by the National Science Foundation, the National Institutes of Health, the Office of Naval Research, the United States Air Force, NASA and the Ohio and Minnesota Departments of Transportation has been applied to problems arising in civil engineering, mechanical and aerospace engineering, materials science, electromechanical systems, biological tissues and prosthetic design. I have published over ninety papers in the top refereed journals, including Science and Nature, and several of my research projects have been featured in the popular press, including the New York Times Science Times, American Scientist, Science News, Business Week, Financial Times, Geo, Pour La Science and Industry Week. My current research involves the design and testing of a new earthquake energy dissipation system for steel structures, size effects in concrete structures, the collapse of the I-35W Bridge in Minneapolis, bioinspired design of damage tolerant composites, reliability of microelectromechanical systems (MEMS) devices, structural testing of nanoscale biological and synthetic materials such as collagen fibrils and carbon nanotubes, and multiscale modeling of heterogeneous materials.
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PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICAno. 16 (2024): e2322415121-e2322415121
JOURNAL OF APPLIED MECHANICS-TRANSACTIONS OF THE ASMEno. 12 (2023)
JOURNAL OF APPLIED MECHANICS-TRANSACTIONS OF THE ASMEno. 1 (2023)
COMPUTER METHODS IN APPLIED MECHANICS AND ENGINEERING (2023): 116017-116017
JOURNAL OF ENGINEERING MECHANICSno. 9 (2022)
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