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NDT Canada 2011 |Website| by NDT.net

Smart Materials & Structures / NDT in Aerospace / NDT in Canada 2011, November 2-4, Montreal

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Keywords Authors & Institutions
Table of Contents
58 Articles in
Issue: 2012-02      Search  
Title / Author(s) / Keywords
SMA Heat Engines: Advancing from a Scientific Curiosity to a Practical Reality
A. Browne3
Vehicle Development Research Lab; General Motors Company6, Warren, MI, USA
heat engine, energy harvesting, SMA

Inspection of Plastics and Fiber Composites with X- and THz-Radiation
U. Ewert212
BAM Federal Institute for Materials Research and Testing1301, Berlin, Germany

Inspiration, Adaptations, Technical Innovations and Design Similarities, Provided by Observations of Nature?s Creations and Evolutionary Development Processes
B. Kulfan
Boeing (retired); Kulfan, Bainbridge Island, USA
NDT-wide, Biotech

Remote NDT as a new possibility to perform NDT on In-Service aircraft by using the Online Maintenance Assistance (OMA) tool
H. Speckmann6
NDT and Testing Technology; Airbus Operations GmbH66, Bremen, Germany
NDT-wide, NDT-wide, Ultrasonic Testing (UT), Other Methods, remote inspection, maintenance, Remote in-service inspection, Remote NDT inspector, In-Service, Online Maintenance Assistance (OMA)

Assessment of Building Energy Efficiency with Smart Window Glazing Curtain Walls
J. Dussault, L. Gosselin, T. Galstian
aDepartment of Mechanical Engineering bDepartment of Physics, Physics Engineering and Optics; Laval University110, Quebec City, Quebec, Canada
Other Methods, heat transfer, Building energy efficiency, Energy load calculation, Smart Windows, Solar radiation

Electromechanical Properties and Acoustic Applications in High Sensitivity Porous Polypropylene Electrets
H. Kodama3, Y. Yasuno, T. Furukawa2, E. Fukada3
Laboratory of Piezoelectric Physics and Devices; Kobayasi Institute of Physical Research3, Tokyo, Japan
NDT-wide, transducer, Pizeoelectricity, Piezoelectric Polymer

Considerations on Structural Health Monitoring Reliability
C. Mandache18, M. Genest19, N. Mrad210
1aStructures and Materials Performance Laboratory, Institute for Aerospace Research bInstitute for Aerospace Research; National Research Council Canada (NRC)34, Ottawa, Ontario, Canada
2Department of National Defence (DND); Defence R&D Canada (DRDC)11, Ottawa, ON, Canada
NDT-wide, Other Methods, reliability, probability of detection, structural health monitoring. non-destructive inspection

Structural Health Monitoring of bonded composite lap-joint using piezoceramics
N. Quaegebeur115, P. Micheau12, P. Masson120, H. Belanger2
1GAUS, Mechanical Engineering Department; University of Sherbrooke40, Sherbrooke, Canada
2L-3 Communications; Military Aircraft Services, Mirabel, Quebec, Canada
NDT-wide, Ultrasonic Testing (UT), Structural Health Monitoring, piezoceramics guided waves

Health Monitoring of Concrete Beams using Digital Image Correlation Technique
F. Ghrib4, P. Wilbur
Department of Civil and Environmental Engineering; University of Windsor39, Windsor, Ontario, Canada
Visual and Optical Testing (VT/OT), Digital Image Correlation, inverse analysis, structural health monitoring

Piezoelectric Power Generation in Pneumatic Tires
N. Makki, R. Pop-Iliev
Faculty of Engineering and Applied Science; University of Ontario Institute of Technology (UOIT), Oshawa, Ontario, Canada
PZT, Piezoelectric, PVDF, tire, energy harvesting

A shear-mode piezoceramic device for energy harvesting applications
V. Kulkarni12, R. Mrad12, S. Prasad12, S. Nemana23
1Department of Mechanical & Industrial Engineering; University of Toronto41, Toronto, Canada
2Sensor Technology Limited3, Collingwood, ON, Canada

A comparative study on two families of integratable ultrasound transducers for structural health monitoring
K. Wu112, Z. Sun12, N. Mrad210
1Industrial Materials Institute; National Research Council of Canada (NRC)50, Boucherville, Quebec, Canada
2Defence R&D Canada (DRDC)11, Ottawa, ON, Canada
NDT-wide, Ultrasonic Testing (UT), Structural Health Monitoring, Ultrasound transducers

Assessment of a Novel Imaging Technique for Commercial Structural Health Monitoring and NDT Systems
P. Masson120, N. Mrad2,210
1GAUS, Mechanical Engineering Department; University of Sherbrooke40, Sherbrooke, Canada
2Department of National Defence (DND); Defence R&D Canada (DRDC)11, Ottawa, ON, Canada
Ultrasonic Testing (UT), piezoceramics, riveted plates, non-destructive testing, Damage imaging, structural health monitoring

Power Density Optimization of an Array of Piezoelectric Harvesters using a Genetic Algorithm
S. Paquin2, Y. St-Amant3
LSMI, Mechanical Engineering Department; Laval University110, Quebec City, Quebec, Canada
wideband vibrations, array of harvesters, Rayleigh-Ritz method, Piezoelectric energy harvesting, genetic algorithm optimization

Torque Capacity Enhancement of a Magnetorheological Fluid Clutch Using the Squeeze-Strengthen Effect
G. Routhier, Y. St-Amant3
LSMI, Mechanical Engineering Department; Laval University110, Quebec City, Quebec, Canada

Damping control of a PZT multilayer vibration using a negative impedance circuit
Y. Fukada12, G. Akhras18, H. Kodama23, M. Date22, E. Fukada23
1Centre for Smart Materials and Structures; Royal Military College of Canada (RMC)63, Kingston, Ontario, Canada
2Kobayasi Institute of Physical Research3, Tokyo, Japan
Other Methods, Piezoelectric materials, Negative impedance circuit, Damping

Electrical and optical properties of PZT thick films in high temperature flexible ultrasonic transducers for structural health monitoring and ndt
J. Shi15, M. Cheung1, S. Kruger216, C. Jen213
1Department of Electrical and Computer Engineering; McGill University16, Montreal, Quebec, Canada
2Industrial Materials Institute; National Research Council of Canada (NRC)50, Boucherville, Quebec, Canada

Time domain Spectral element fast solver for piezoelectric structures
R. Mohamed2, P. Masson20
GAUS, Mechanical Engineering Department; University of Sherbrooke40, Sherbrooke, Canada
NDT-wide, Other Methods, finite element method (FEM), guided waves, structural health monitoring, spectral element method

CNT composites for SHM: a literature review
C. Rainieri14, G. Fabbrocino14, M. Schulz22, V. Shanov2
1Structural and Geotechnical Dynamics Laboratory; University of Molise4, Termoli, Italy
2Nanoworld Laboratories; University of Cincinnati8, Cincinnati, Ohio, USA
Other Methods, Smart Materials, Structural Health Monitoring, carbon nanotubes

Resistance modelling of Shape Memory Alloy wires
H. Song, E. Kubica, R. Gorbet6
Department of Electrical and Computer Engineering; University of Waterloo18, Waterloo, Canada
Other Methods, model, electrical resistivity, shape memory alloys

 
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