The Ohio State University
Thrust A: Interfacial Mechanisms
- Project #1 - Electro-Hydrostatic Actuation and Sensing (E-HAS), Marcelo Dapino
- Project #2 - Design, Modeling and Development of Self-Tuning Magnetorheological Fluid Based Engine Mounts, Greg Washington
- Project #3 - Comparative Design Tool for Examining the Feasibility and Performance of Smart Engine Mounts, Raj Singh
- Project #20 - Development of Interfacial Force Sensing Systems using Experimental and Computational Methods, Raj Singh
- Project #30 - Development of Smart Engine Mount Actuation Mechanism and Active Elastomers, Marcelo Dapino
- Project #31 - Adaptive Seat Belt System Using Smart Material Technologies, Marcelo Dapino
- Project #35 - Development of Contactless Torque Sensor, Marcelo Dapino
- Project #36 - Joining of Shape Memory Alloys and Structural Materials, Marcelo Dapino and Tim Frech
- Project #37 - Fuel Injector Design with Magnetostrictive Galfenol Alloys, Marcelo Dapino and Joseph Heremans
Thrust B: Adaptive NVH
- Project #7 - Multifunctional Composites with Embedded Sensing and Stiffness Control, Marcelo Dapino, Suresh Babu and John Lippold
- Project #21 - Panel Stiffness Control Using Embedded Actuators, Raj Singh and Marcelo Dapino
- Project #22 - Smart Material Database Compilation and Material Selection Tool Development (with Focus on Elastomers), Greg Washington
- Project #29 - Silent Gearbox Concepts, Raj Singh and Ahmet Kahraman
- Project #32 - Critical Assessment of Passive and Active Noise and Vibration Technology for Rotorcraft Gearboxes and Airframes, Raj Singh and Greg Washington
- Project #33 - Micro-Sensors for Sound Measurement, Marcelo Dapino
Texas A&M University
Thrust 1: Alloy Design and Processing
- Project #1.1 – Processing and Characterization of NiTiPd and NiTiPd-X Shape Memory Alloys for Aerospace and Space Exploration, Ibrahim Karaman
Thrust 2: Active Material Characterization and Model Development
- Project #2.1 – Ni-rich Shape Memory Alloy Fatigue Testing and Modeling, Dimitris Lagoudas
Thrust 3: Engineering Application Design and Performance Evaluation
- Project #3.1 – High Torque Shape Memory Alloy Motors, Jim Boyd
Project Proposals (password protected)
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