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The aim of Hopkins’ research is to enable the design, analysis, and fabrication of sophisticated flexible structures that possess extraordinary capabilities (e.g., significant shape and size mutability, elastic energy storage and release utility, high motion path repeatability, actuation simplicity, kinematic and dynamic complexity). His approach for designing these structures is unique in that it utilizes geometric shapes, which represent the rigorous mathematics of physics, to visually guide designers through the creative process of concept generation. These shapes enable designers to rapidly conceptualize and compare every concept that satisfies any given set of desired kinematic, elastomechanic, and dynamic design requirements before selecting the optimal concept.
The aim of Hopkins’ research is to enable the design, analysis, and fabrication of sophisticated flexible structures that possess extraordinary capabilities (e.g., significant shape and size mutability, elastic energy storage and release utility, high motion path repeatability, actuation simplicity, kinematic and dynamic complexity). His approach for designing these structures is unique in that it utilizes geometric shapes, which represent the rigorous mathematics of physics, to visually guide designers through the creative process of concept generation. These shapes enable designers to rapidly conceptualize and compare every concept that satisfies any given set of desired kinematic, elastomechanic, and dynamic design requirements before selecting the optimal concept.
研究兴趣
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2024 IEEE 37TH INTERNATIONAL CONFERENCE ON MICRO ELECTRO MECHANICAL SYSTEMS, MEMSpp.709-712, (2024)
IEEE-ASME TRANSACTIONS ON MECHATRONICSno. 99 (2024): 1-3
arxiv(2024)
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John A. Mccullough, Brandon T. Peterson, Alexander M. Upfill-Brown,Thomas J. Hardin,Jonathan B. Hopkins,Nelson F. Soohoo,Tyler R. Clites
IEEE JOURNAL OF TRANSLATIONAL ENGINEERING IN HEALTH AND MEDICINE (2024): 314-327
crossref(2024)
JOURNAL OF MICROELECTROMECHANICAL SYSTEMSno. 1 (2024): 6-8
JOURNAL OF MECHANICAL DESIGNno. 12 (2023)
SMART MATERIALS AND STRUCTURESno. 3 (2023)
Robert Panas,Frederick Sun,Amin Farzaneh, John Cortes,Logan Bekker, Hilary Johnson,Julie Mancini,Andrew Pascall,Jonathan Hopkins
Research Square (Research Square) (2023)
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