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EWSHM 2014

7th European Workshop on Structural Health Monitoring (EWSHM 2014), July 8-11, 2014 in Nantes, France

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Table of Contents
302 Articles in
Issue: 2015-02
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Exhibitors (3)
TESTIA France.. 1
TESTIA GmbH.. 1
TWI Ltd (The W.. 1
Title / Author(s) / Keywords Session
Achievements and Prospects for Nanotechnologies and Nanosensors in SHM
An Innovative Nanosensor for Weigh-In-Motion Applications
B. Ghaddab1, V. Gaudefroy2, F. Michelis12, E. Ruiz-Hitzky3, P. Aranda3, C. Ruiz-García3, B. Lebental16
1IFSTTAR; University of Paris-EST13, Paris, France
2Nantes Angers le Mans University (LUNAM) 39, Bouguenais, France
3Materials Science Institute of Madrid; Spanish National Research Council (CSIC)17, Madrid, Spain
Sensors, Stress & strain, Piezoelectric sensors

Achievements and Prospects for Nanotechnologies and Nanosens...
Achievements and Prospects for Nanotechnologies and Nanosensors in SHM
Nanocomposite Based Structural Health Monitoring Approaches for Fibre Reinforced Polymers - On Doorstep to Industrial Relevance after Two Decades of Intense Research?
D. Fritsch1, C. Viets1, E. Mannov1, K. Schulte1,26, B. Fiedler1
1Institute for Polymers and Composites; Technische Universität Hamburg-Harburg (TUHH)15, Hamburg, Germany
2Physics Department; King Abdulaziz University8, Jeddah, Saudi Arabia
MEMS and nano agents, SHM and structural design, Energy SHM applications for wind turbines

Achievements and Prospects for Nanotechnologies and Nanosens...
Achievements and Prospects for Nanotechnologies and Nanosensors in SHM
Self-Powered Conformable Deformation Sensor Exploiting the Collective Piezoelectric Effect of Self-Organised GaN Nanowires
E. Pauliac-Vaujour1, S. Salomon1, J. Eymery2, E. Perez1
1Commissariat Energie Atomique (CEA-LETI)34, Grenoble, France
2Commissariat Energie Atomique (CEA, INAC), Grenoble cedex, France
NDT-wide, finite element modelling, system integration, piezoelectric GaN wires, flexible sensor, impact detection

Achievements and Prospects for Nanotechnologies and Nanosens...
Achievements and Prospects for Nanotechnologies and Nanosensors in SHM
Strain Sensors Based on Carbon Nanotube - Polymer Coatings
K. Grabowski3, P. Zbyrad2, A. Wilmański, T. Uhl28
aDepartment of Robotics and Mechatronic bDepartment of Ceramics and Refractories cDepartment of Robotics and Mechatronics; AGH- University of Science and Technology62, Krakow, Poland
Sensors, Stress & strain, SHM and maintenance

Achievements and Prospects for Nanotechnologies and Nanosens...
Achievements and Prospects for Nanotechnologies and Nanosensors in SHM
Wireless Flexible Strain Sensor Based on Carbon Nanotube Piezoresistive Networks for Embedded Measurement of Strain in Concrete
F. Michelis12, L. Bodelot2, C. Cojocaru22, J. Sorin1, Y. Bonnassieux2, B. Lebental1,16
1IFSTTAR; University of Paris-EST13, Paris, France
2aLaboratoire de Mécanique des Solides (LMS), bLaboratoire de Physique des Interfaces et Couches Minces (LPICM); Ecole Polytechnique -CNRS/IN2P33, Palaiseau, France
Wireless and smart sensors, Stress & strain, Durability

Achievements and Prospects for Nanotechnologies and Nanosens...
Acoustic Emission
A New Approach for Fatigue Crack Length Estimation Using the Acoustic Emission Technique in Structural Health Monitoring Applications
D. Gagar5, P. Foote6, P. Irving3
School of Applied Sciences; Cranfield University35, Cranfield, United Kingdom
Prognostic, Acoustic emission

Acoustic Emission
Acoustic Emission
Acoustic Emission Health Monitoring of Steel Bridges
P. Pahlavan1, J. Paulissen1, R. Pijpers1, H. Hakkesteegt2, R. Jansen1
1aDepartment of Process and Instrumentation Development bDepartment of Structural Dynamics cDepartment of Structural Reliability; TNO Science & Industry33, Delft, Netherlands
2Department of Distributed Sensor Systems; TNO2, The Hague, Netherlands
Acoustic Emission (AE), bridge deck, Fatigue Crack, Acoustic emission, Damage detection and localization, SHM and maintenance, Quasi-beamforming

Acoustic Emission
Acoustic Emission
Acoustic Emission-Based Identification and Classification of Frictional Wear of Metallic Surfaces
D. Baccar3, S. Schiffer2, D. Söffker16
Department Dynamics and Control; University of Duisburg-Essen17, Duisburg, Germany
Acoustic emission, Signal processing, Classification

Acoustic Emission
Acoustic Emission
Quantitative Damage Assessment of Hybrid Composite Wind Turbine Blades by Energy Based Acoustic Emission Source Location
D. Yoon12, B. Han2
Center for Safety Measurement (SMC); Korea Research Institute of Standards and Science (KRISS)63, Daejeon, South Korea
Acoustic Emission (AE), Source location, Wind Turbine Blades, hybrid composites, Quantitative damage assessment

Acoustic Emission
Acoustic Emission
Structural Health Monitoring of a Smart Composite Bridge Using Guided Waves and Acoustic Emission Techniques
N. Terrien13, F. Dhamene2, H. Zejli32, M. Habti4
1French Industrial and Mechanical Technical Centre (CETIM)5, Nantes, France
2Engineering control welding (ECW), Bièvre, France
3ALTEN, Boulogne-Bilancourt cedex, France
4French institute of science and technology for transport, spatial planning, development and networks (IFSTTAR)24, Bouguenais, France
Civil engineering SHM applications, Acoustic emission, Guided waves

Acoustic Emission
Acoustic Emission
Topological Imaging of Defects in Anisotropic Plates
S. Rodriguez1,22, M. Castaings111, M. Deschamps12, E. Ducasse32
1aI2M - UMR 5295 bCNRS, I2M - UMR 5295; University Bordeaux86, Talence, France
2Cooperative Research Centre for Advanced Composite Structures (CRC-ACS), Port Melbourne, Victoria, Australia
3I2M - UMR 5295; Arts et M´etiers ParisTech, Talence, France
Ultrasonic Testing (UT), ultrasonic imaging, Guided waves, anisotropic multilayered plates, FFT based methods, Topological imaging

Acoustic Emission
Advances in Monitoring with Ultrasonic Coda Waves
Closed Crack Detection in Concrete with Coda Wave Non-Linear Modulation
B. Hilloulin12, Y. Zhang22, O. Abraham231, F. Grondin13, A. Loukili15, O. Durand214, V. Tournat37
1aLUNAM, GeM, Ecole Centrale de Nantes bGeM, UMR-CNRS cLUNAM, Institut de Recherche en Génie Civil et Mécanique (GeM); University of Nantes 16, Nantes, France
2aIFSTTAR bIFSTTAR, GERS; Nantes Angers le Mans University (LUNAM) 39, Bouguenais, France
3LAUM, CNRS; Université du Maine23, Le Mans, France
Damage assessment, Ultrasonic for (seismic, acoustic) methods, Civil engineering SHM applications

Advances in Monitoring with Ultrasonic Coda Waves
Advances in Monitoring with Ultrasonic Coda Waves
Coda Wave Interferometry Used to Localize Compressional Load Effects in a Concrete Specimen
E. Niederleithinger145, C. Sens-Schönfelder22, S. Grothe13, H. Wiggenhauser166
1BAM Federal Institute for Materials Research and Testing1301, Berlin, Germany
2Helmholtz-Zentrum Potsdam; GeoForschungszentrum,GFZ4, Potsdam, Germany
Ultrasonic for (seismic, acoustic) methods, Source localization, Civil engineering SHM applications

Advances in Monitoring with Ultrasonic Coda Waves
Advances in Monitoring with Ultrasonic Coda Waves
Imaging of Early-Stage Cracking on Real-Size Concrete Structure from 4-Points Bending Test
Y. Zhang12, E. Larose14, T. Planes22, G. Moreau33, C. Rospars1
1aISTerre bLaboratoire Sols; Université Joseph Fourier de Grenoble6, Grenoble, France
2Department of Civil and Environmental Engineering; Colorado School of Mines (CSM)5, Golden/Co, USA
3Electricité de France (EDF) R&D49, Chatou, France
Damage detection and localization, Ultrasonic for (seismic, acoustic) methods, Interferometry

Advances in Monitoring with Ultrasonic Coda Waves
Advances in Monitoring with Ultrasonic Coda Waves
Monitoring and Imaging Based on Interferometric Concepts
C. Sens-Schönfelder12, E. Niederleithinger245, M. Gassenmeier1, K. Thiemann3, F. Köllner4
1Helmholtz-Zentrum Potsdam; GeoForschungszentrum,GFZ4, Potsdam, Germany
2BAM Federal Institute for Materials Research and Testing1301, Berlin, Germany
3K-UTEC AG , Sondershausen, Germany
4Geophysik und Geotechnik Leipzig GmbH (GGL), Leipzig, Germany
Acoustic emission

Advances in Monitoring with Ultrasonic Coda Waves
Advances in Monitoring with Ultrasonic Coda Waves
Monitoring of a Large Cracked Concrete Sample with Non-Linear Mixing of Ultrasonic Coda Waves
O. Abraham131, Y. Zahng1, X. Chapeleau14, O. Durand114, V. Tournat27
1IFSTTAR; Nantes Angers le Mans University (LUNAM) 39, Bouguenais, France
2LAUM, CNRS, UMR; Université du Maine23, Le Mans, France
Ultrasonic for (seismic, acoustic) methods, Signal processing, Civil engineering SHM applications

Advances in Monitoring with Ultrasonic Coda Waves
Aeronautics
Aircraft Fastener Defect Detection through Polar-Wavenumber Filtering of Full-Field Guided Wave Data
C. Haynes1, M. Todd110, J. Lee214
1Department of Structural Engineering; University of California, San Diego (UCSD)12, La Jolla, San Diego, CA, USA
2Engineering Institute; Chonbuk National University (CBNU)18, Jeonju, South Korea
Ultrasonic Testing (UT), signal processing, Guided waves, Aircraft SHM applications

Aeronautics
Aeronautics
An Online System for Remote SHM Operation with Content Adaptive Signal Compression
C. Westerkamp1, A. Hennewig1, H. Speckmann26, W. Bisle312, N. Colin4, M. Rafrafi52
1University of Applied Sciences Osnabrück, Osnabrück, Germany
2NDT and Testing Technology; TESTIA GmbH5, Bremen, Germany
3Airbus Operations GmbH66, Bremen, Germany
4Airbus France4, Bouguenais, France
5TESTIA France34, Toulouse, France
NDT-wide, signal processing, remote inspection, Sensors, Aerospace SHM applications

Aeronautics
Aeronautics
Challenges of an Industrialized Acousto-Ultrasonic Sensor System Installation on Primary Aircraft Structure
N. Dobmann2, M. Bach9, B. Eckstein8
Airbus Operations GmbH66, Bremen, Germany
Aircraft SHM applications

Aeronautics
Aeronautics
Damage Location in Thick Composite Material Based on Acoustic Emission and Wireless Nodes
C. Paget2, R. Patel
Airbus Operations4, Bristol, United Kingdom
Aircraft SHM applications, Acoustic emission, Wireless and smart sensors

Aeronautics
 
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