| Thursday, September 12th | ||||
| Location: | ||||
| Annenberg Auditorium | ||||
| THURSDAY, SEPTEMBER 12 | PAGE NO. | |||
| Robust Sensors for Structural Health Monitoring within Harsh Environments | ||||
| D. Senesky [Stanford University, USA] | ||||
| Advanced Sensor Technologies for US Military Warfighters’ Protection | ||||
| J. Zheng [PEO Soldier US ARMY, USA] | ||||
| Activities on Standardization of Civil SHM Methodologies in Europe | ||||
| H. Wenzel [Vienna Consulting Engineers, Austria] | ||||
| Coffee Break | ||||
| Location: Dohrmann Grove | ||||
| Location: | ||||
| HC 200-002 | ||||
| THURSDAY, SEPTEMBER 12 | PAGE NO. | |||
| A Sequential Statistical Time Series Framework for Vibration Based Structural Health Monitoring | ||||
| F. Kopsaftopoulos, S. Fassois [Stanford University, USA] | ||||
| Probabilistic Damage Detection in Beam Structures Based on the Neutral Axis | ||||
| D. Sigurdardottir, B. Glisic [Princeton University, USA] | ||||
| On the Impact of Engineering Prior Perception on Structural Health Diagnosis: Analysis of a Case Study | ||||
| C. Cappello1, F. Bruschetta1, D. Zonta1, S. Maestranzi1, R. Zandonini1, M. Pozzi2, B. Glisic3, D. Inaudi4, D. Posenato4 [1) University of Trento, Italy; 2) Carnegie Mellon University, USA; 3) Princeton University, USA; 4) Smartec SA, Switzerland] |
||||
| Dynamic Bayesian Network for Operational Modal Identification | ||||
| B. Li, A. D. Kiureghian [University of California, Berkeley, USA] | ||||
| Nonlinear Model-data Fusion for Post-Earthquake Assessment of Structures | ||||
| E. M. Hernandez, K. Erazo [University of Vermont, USA] | ||||
| Quantification of Pavement Condition by Tire/Road Noise Measurement | ||||
| Y. Zhang, J. G. McDaniel, R. Birken, M. L. Wang [Northeastern University, USA] | ||||
| Location: | ||||
| HC 200-030 | ||||
| THURSDAY, SEPTEMBER 12 | PAGE NO. | |||
| An Experimental Comparison of Modal-based SHM Techniques using Strain or Acceleration Measurements | ||||
| F. Santos1 2, B. Peeters1, H. Van der Auweraer1, L. G´oes2 [1) LMS, Belgium; 2) ITA, Brazil] |
||||
| Acoustic Wave Propagation and Scattering for Fault Detection in Honeycomb Composite Panels | ||||
| V. Hafiychuk1, V. Smelyanskiy1, D. Timucin1, S. Schuet1, K. Wheeler1, R. Tyson2, J. Walker3 [1) NASA Ames Research Center; 2)University of Alabama, USA; 3) NASA Marshall Space Flight Center, USA] |
||||
| Structural Health Monitoring as an Enabling Technology for Active Compliant Systems | ||||
| L. Lorenz1, K. Büchter1, O. Boegler1, U. Kling2, A. T. Isikveren2
[1) Future Technologies and Ecology of Aviation, Germany; 2) Bauhaus Luftfahrt e.V., Germany] |
||||
| Development of SHM System Using Multiple FBG Sensors for Solid Rocket Motor Composite Chamber | ||||
| T. Nakajima1, E. Sato, H. Tsuda2, A. Sato, N. Kawai3 [1) IHI Inspection & Instrumentation Co., Ltd, Japan; 2) Institute of Space and Astronautical Science, Japan; 3) , IHI Aerospace Co., Ltd., Japan] |
||||
| Proof-of-concept Study of Smart Panel for Space Structures | ||||
| T. Mizutani [Japan Aerospace Exploration Agency, Japan] | ||||
| Nonlinear Dynamic Behavior of Impact Damage in a Composite Skin-stiffener Structure | ||||
| T.H. Ooijevaar1 3, M.D. Rogge2, R. Loendersloot3, L. Warnet1, R. Akkerman1, A. de Boer3
[1) University of Twente, The Netherlands; 2) NASA Langley Research Center, USA; 3) University of Twente, USA] |
||||
| Location: | ||||
| HC 200-034 | ||||
| THURSDAY, SEPTEMBER 12 | PAGE NO. | |||
| Integration of Fiber Optic Platform and Electro-mechanical Sensors to Enhance Damage Detection Process | ||||
| M. Azarbayejani, L. Galvan, S. Salinas [UT- Pan, USA] | ||||
| A Structural Health Monitoring Approach for Damage Detection in Wind Turbines Tlades Based on Compressed Sensing Acquisition of Acoustic Emission Events | ||||
| A. Cattaneo, S. Taylor, G. Park, C. Farrar, D. Mascareñas [Los Alamos National Laboratory, USA] | ||||
| Probabilistic Risk Prediction for Aircraft Fatigue Life Management using SHM Systems Considering the Effect of Inspection Correlation | ||||
| M. Shiao1, Y-T. (Justin) Wu2, J. Chen1, A. Ghoshal1, J. Riddick1
[1) U.S. Army Research Laboratory, USA; 2) CompRel Inc., USA] |
||||
| Selection and Identification of a Shape Function for Modeling Degradation as a Gamma Process | ||||
| O. Saarela1, B. Nystad1, A. Taipale2, O. Ventä2
[1) Institutt for Energiteknikk, Norway; 2) VTT Technical Research Centre of Finland, Finland] |
||||
| Continuous Monitoring of an Aging PC Bridge by using Fiber-optic Strain Sensors Based on Time-series Analysis in Considering Environmental Effects | ||||
| J. Mizutani, M. Nishio, H. Katsuchi, H. Yamada [Yokohama National University, Japan] | ||||
| Fatigue Damage Prognosis of Single-edged Notch Beam using Piezoelectric Transducers | ||||
| S. I. Lim, Y. Liu, C. K. Soh [Nanyang Technological University, Singapore] | ||||
| Location: | ||||
| HC 200-203 | ||||
| WEDNESDAY, SEPTEMBER 11 | PAGE NO. | |||
| Verification of Joint Input-state Estimation by in Situ Measurements on a Footbridge | ||||
| K. Maes1, E. Lourens1, K.
Van Nimmen1, P.
Van den Broeck2, P. Guillaume3, G. De Roeck1, G. Lombaert1 [1) KU Leuven, Belgium; 2) KAHO Sint-Lieven, Belgium; 3) Vrije Universiteit Brussel, Belgium] |
||||
| Bayesian Regression Trees as Surrogate Models for
the Health Monitoring of Civil Infrastructure |
||||
| K. Worden, E. J.Cross [University of Sheffield, UK] | ||||
| Proton Radiation Sensitivity of Fiber Bragg Gratings for Particle Colliders | ||||
| M. Frövel1, D. Moya2, I. Vila2, E. Currás2, A. L. Virto2, J. G. Carrión1, J.M. Pintado1, J. García-López3, M. C. Jiménez3, Y. Morilla3, F. R. Palomo4 [1) Instituto Nacional de Técnica Aeroespacia, Spain; 2) Instituto de Física de Cantabria, Spain; 3) Centro Nacional de Aceleradore, Spain; 4) University of Sevilla, Spain] | ||||
| Vibration Data as a Tool for Continuous Monitoring of Cable Tensile Loads | ||||
| C. Rainieri, G. Fabbrocino [University of Molise, Italy] | ||||
| Vibration Monitoring of Operational Wind Turbine | ||||
| A. Jhinaoui1, L. Mevel2, J. Morlier3 [1) Cornis, France; 2) Inria, France; 3) Université de Toulouse, France] | ||||
| An Imaging Method for Impact Localization using Metal-core Miezoelectric Fiber Rosettes | ||||
| C. Zhang1, J. Qiu1, S. Shan1, Y. Wu1, N. Hu2
[1) Nanjing University of Aeronautics & Astronautics, China; 2) Chiba University, Japan] |
||||
| Location: | ||||
| HC 200-205 | ||||
| THURSDAY, SEPTEMBER 12 | PAGE NO. | |||
| Quantitative Detection of Shallow Corrosion Damage by Targeted Use of the Dispersive Behavior of Guided Wave Modes | ||||
| P. Jäckel12, F. Niese2, C. Boller12
[1) Saarland University, Germany; 2) Fraunhofer Institute for Nondestructive Testing, Germany] |
||||
| Scattering Measurements and In Situ Imaging with Sparse Guided Wave Arrays | ||||
| J. E. Michaels, X. Chen, T. E. Michaels [Georgia Institute of Technology, USA] | ||||
| Damage Identification for Composite Structures using a Cross-correlation Reverse-time Migration Technique | ||||
| J. He, F. Yuan [North Carolina State University, USA] | ||||
| Continuous Thickness Monitoring - Experience from the Field and Lessons Learned | ||||
| F. Cegla, A. Jarvis, A. Gajdacsi, P. Cawley [Imperial College, UK] | ||||
| Long Term Stability of Guided Wave Structural Health Monitoring Using Distributed Adhesively Bonded Piezoelectric Transducers | ||||
| V. Attarian, F. Cegla, P. Cawley [Imperial College, UK] | ||||
| Beamforming of Lamb Waves Using 2D Arrays a Comparative Study | ||||
| T. Stepinski, L. Ambrozinski, T. Uhl [AGH University of Science and Technology, Poland] | ||||
| location: | ||||
| HC 200-303 | ||||
| THURSDAY, SEPTEMBER 12 | PAGE NO. | |||
| Current practical applications of SHM in China | ||||
| H. Li [Harbin Institute Of Technology] | ||||
| Current Practice in SHM in Italy | ||||
| A. Del Grosso [U.niversity of Genova] | ||||
| Experiences in the Standardization of Fiber Optic Sensing Systems | ||||
| B. Glisic [Princeton University] | ||||
| SAMCO Recommendations for Dynamic Monitoring of Structures | ||||
| S. Thöns [BAM] | ||||
| Standardized Cyber-environments for SHM | ||||
| J. Lynch [University of Michigan] | ||||
| Session Discussion | ||||
| Location: | ||||
| HC 200-305 | ||||
| THURSDAY, SEPTEMBER 12 | PAGE NO. | |||
| Ultrasonic Guided Wave Based SHM of a Steel Shell Structure Under Different Operating Conditions | ||||
| C. Lissenden, A. Lesky, M. Soorgee [Pennsylvania State University, USA] | ||||
| Continuous Mode Conversion of Lamb Waves in Carbon Fiber Composite Plastics - Occurrence and Modelling | ||||
| B. Hennings, M. Neumann, R. Lammering [Helmut-Schmidt-University/University of the FederalArmed Forces, GERMANY] |
||||
| Ultrasonic Guided Wave Propagation in Cellular Composite Plates | ||||
| S. Hosseini, S. Duczek, U. Gabbert [Otto-von-Guericke-University Magdeburg, GERMANY] | ||||
| In-situ Guided-wave-based Health Monitoring for Train Bogie Structures: Technique Development and Application to Beijing-Shanghai High-speed Railway | ||||
| M. Hong1, Q. Wang2, Z. Su1, L. Cheng1, Y. Ni1 [1) The Hong Kong Polytechnic University, Hong Kong; 2) Nanjing University of Posts and Telecommunications, China] |
||||
| On the Structural Health Monitoring of Repaired Aerospace Structures | ||||
| S. Pavlopoulou1, K. Worden2, C. Soutis1 [1) University of Manchester, UK; 2) University of Sheffield, UK] | ||||
| Signal Processing System for Guided Wave-based SHM Technique | ||||
| P. Malinowski1, T. Wandowski1, W. Ostachowicz1,2, T. Luba, G. Borowik2, M. Rawski2, P. Tomaszewski2 [1) Institute of Fluid-Flow Machinery, Polish Academy of Sciences, POLAND; 2) Warsaw University of Technology, POLAND] |
||||
| Location: | ||||
| ART 2 | ||||
| THURSDAY, SEPTEMBER 12 | PAGE NO. | |||
| On the use of Solitary Waves for the Prediction of Structural Buckling of Simple Structures | ||||
| L. Cai, K. Li, P. Rizzo [University of Pittsburgh, USA] | ||||
| Crack Pattern Quantification for Advanced Visual Inspection of Concrete Structures | ||||
| A. Farhidzadeh, E. Dehghan-Niri, S. Salamone [University at Buffalo, USA] | ||||
| Leakage of Guided Waves in Embedded Waveguides of Arbitrary Cross Section | ||||
| M. Mazzotti1, A. Marzani2, I. Bartoli1, E. Viola2 [1) Drexel University, USA; 2) University of Bologna, ITALY] | ||||
| Bragg Grating and BOTDR Fiber Optic Principles applied for Real-time Structural Monitoring - The MONICO Project | ||||
| M. Bimpas, K. Loupos, A. Amditis, G. Kanellos, O.
Bursi, S. Frondistou, J. Meisner, D. Bairaktaris, B. Griffoni, A.
Orfanoudakis [Institute of Communication and Computer Systems, GREECE] |
||||
| Structural Condition Assessment of Bridges: Past, Present, and Future - A Portuguese Perspective | ||||
| Eloi Figueiredo [Catholic University of Portugal, PORTUGAL] | ||||
| The Role of SHM in Infrastructure Management | ||||
| A. Del Grosso [University of Genoa, ITALY] | ||||
| Location: | ||||
| ART 4 | ||||
| WEDNESDAY, SEPTEMBER 11 | PAGE NO. | |||
| Characterization of Fatigue Damage in Adhesively Bonded Lap Joints through Dynamic, Full-Spectral Interrogation of Fiber Bragg Grating Sensors | ||||
| S. Webb1, P. Shin1, K. Peters1, M. Zikry1, S. Schultz2, R. Selfridge2 [1) North Carolina State University, USA; 2) Brigham Young University, USA] |
||||
| Non-collinear Inspection for the Detection of Damage Precursors | ||||
| A. Croxford, J. Potter [University of Bristo, UKl] | ||||
| A Hybrid Data Driven Technique for Long Term Monitoring of Structures | ||||
| M. Malekzadeh, N. Catbas [University of Central Florida, USA] | ||||
| Damage Inspection of Structures by Space-Wavenumber and Time-Frequency Analyses | ||||
| P. Pai, H. Peng [University of Missouri, USA] | ||||
| Non-contact Nonlinear Ultrasound Scan of a CFRP Plate with Manufactured Damages | ||||
| C. Hedberg1, S. Andersson2, K. Haller2, S.-E. Hellbratt3 [1) Blekinge Institute of Technology, SWEDEN; 2) Acoustic Agree AB, SWEDEN; 3) Kockums AB, SWEDEN] |
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| Effect of Localized Plastic Deformation on Higher Harmonic Guided Wave Mode Generation in Plate | ||||
| Y. Liu, G. Choi, C. Lissenden, J. Rose [Pennsylvania State University, USA] | ||||
| Lunch at the Oval | ||||
| Location: The Oval | ||||
| location: | ||||
| TBA | ||||
| Panelists: | ||||
| D. Powell | [NCSA] | Open Source Software for Asset and Maintenance Management | ||
| R. Veit-Egerer | [VCE] | Results of the CEN WS-63 on Aging of Structures | ||
| B. Frankenstein | [IZFP] | SHM Measurements at Hot Pipes in Thermal Power Plants | ||
| A. Krimotat | [SC Solutions] | Monitoring-based Performance Modeling of Long-Span Bridges | ||
| L. Mevel | [INRIA] | Current Practice in SHM in France | ||
| Y. Xia | [HK Polytechnic] | Experience of implementation of SHM in supertall buildings | ||
| J. Ou | [Dalian Inst. Of Tech] | Design Guideline of SHM for Bridges in China | ||
| J. M. Lau | [HDB Singapore] | TBA | ||
| THURSDAY, SEPTEMBER 12 | PAGE NO. | |||
| Charles Farrar | ||||
| Location: TBD | ||||
| Location: | ||||
| HC 200-002 | ||||
| THURSDAY, SEPTEMBER 12 | PAGE NO. | |||
| Probabilistic Learning and Planning for Optimal Management of Wind Farms | ||||
| M. Memarzadeh, M. Pozzi, J. Zico Kolter [Carnegie Mellon University, USA ] | ||||
| Reliability-Oriented Optimization of Replacement Strategies for Monitored Composite Panels for Aircraft Structures | ||||
| G. Cottone1, D. Straub1, S. Gollwitzer2, U. Heckenberger3 [1) Universität München, Germany; 2) RCP gmbH, Germany; 3) EADS Innovation Works, Germany] |
||||
| Reliability-Based Condition Assessment of Bridge Deck Using Long-Term Monitoring Data | ||||
| Y.Q. Ni, K.C. Lin [The Hong Kong Polytechnic University, Hong Kong] | ||||
| Understanding Environmental Effect on Building Vibration for Structural Health Monitoring Using Event Detection and Causal Analysis | ||||
| Y. Zheng1, L. Zhang1, P. Zhang2, H. Young Noh2 [1) Tsinghua University, China; 2) Carnegie Mellon University, USA] | ||||
| An Approach to Fault Detection Using a Unified Linear Gaussian Framework | ||||
| R. Fuentes, A. Halfpenny, E. Cross, R. Barthorpe, K. Worden [University of Sheffield, USA] | ||||
| Automatic Damage Classification using Wavelet Classifier Based on Principal Component Analysis | ||||
| F. Gharibnezhad, L.E. Mujica, J.Rodellar, C.P. Fritzen [Barcelona Tech. , Spain] | ||||
| Location: | ||||
| HC 200-030 | ||||
| THURSDAY, SEPTEMBER 12 | PAGE NO. | |||
| Reconfigurable Architecture Based on Programmable System on Chip and Versatile Interface for Multi Sensors Instrumentations Applied to SHM: Case of an ATR72 Wing Panels | ||||
| H. Boukabache1,2, S. Zedek1,2, C. Escriba1,2, J. Y. Fourniols1,2 [1) CNRS / LAAS, France; 2) Université de Toulouse / UPS / INSA / INP / ISAE / LAAS, France] |
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| Structural Health Monitoring-Based Methodologies for Managing Uncertainty in Aircraft Structural Life Assessment | ||||
| R. Bond1, S. Underwood2, D. E. Adams1, J. J. Cummins3 [1) Purdue University, USA; 2) GE Global Research, USA; 3) NAVAIR, USA] |
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| Assessment of Fibre Optic Sensor Architectures for Structural Health Monitoring | ||||
| B. Rocha1, D. Barazanchy1, R. Sevenois1, H. Guo1, G. Xiao1, N. Mrad2 [1) National Research Council Canada, Canada; 2) DRDC, Canada] |
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| Simulation Studies of Spectral Subtraction Based Temperature Compensation of FBG Sensor for Structural Health Monitoring Based on Principal Component Analysis | ||||
| P. Chelliah1, A. Deniz1, C. Keulen2, G. Bektas1, T. Boz1, F. Melemez1, C. Ozturk1, A. Suleman2, M. Yildiz1 [1) Sabanci University, Turkey; 2) University of Victoria, Canada] |
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| Research on Spatial Filter Based Structural Imaging Method and the Evaluation Research on Complex Composite Structures | ||||
| Q. Lei, Y. Shenfang, L. Bin, M. Hanfei [Nanjing University of Aeronautics and Astronautics, China] | ||||
| Application of the Triple Correlation Analysis to Damage Detection of Structures | ||||
| A. Klepka1, M. Strączkiewicz1, W. J. Staszewski1, F. Aymerich2 [1) AGH University of Science and Technology, Poland; 2) Universityof Cagliari, Italy] |
||||
| Location: | ||||
| HC 200-034 | ||||
| THURSDAY, SEPTEMBER 12 | PAGE NO. | |||
| Identifying Pipe Degradation In a Highly Dynamic Environment Using Singular Value Decomposition | ||||
| C. Liu, J. B. Harley, D. W. Greve, M. Bergés, I. J. Oppenheim [Carnegie Mellon University, USA] | ||||
| A Proposal for Exteriori-Interiori Integrated Structural Health Monitoring Framework | ||||
| S. Chen1, H. Chung2, Y. Park1, D. M. Boyajian3 [1) University of North Carolina at Charlotte, USA; 2) Acellent Technology, USA; 3) Taylor University, USA] |
||||
| Multi-sensing Strategy for SHM in Civil Engineering: Case Study of a Structural Element With Carbon Fiber Reinforcement | ||||
| A. Belisario, C. Codreanu, S. Zedek, T. Camps, R.l Francois, C. Escriba, J.Y. Fourniols [CNRS / LAAS, France] | ||||
| Development of Smart Pultruded Composite Materials with Embedded Fiber Bragg Gratings for In-situ Strain Monitoring | ||||
| X. Chapeleau1, M. Drissi-Habti1, L. Quétel2, T. Robin3 [1) UNAM, France; 2) IDIL, France, 3) iXFiber, France] | ||||
| Multidisciplinary Health Monitoring of A Steel Bridge Deck Structure | ||||
| L. Pahlavan, R. Pijpers, J. Paulissen, H. Hakkesteegt, R. Jansen [TNO, the Netherlands] | ||||
| Application of SHM using an Autonomous Sensor Network | ||||
| R. Loendersloot1, F. B.A. Schiphorst1, T. G.H. Basten2, T. Tinga1 [1) University of Twente, the Netherlands; 2) TNO, the Netherlands] |
||||
| Location: | ||||
| HC 200-203 | ||||
| THURSDAY, SEPTEMBER 12 | PAGE NO. | |||
| Aluminum Nitride High Temperature Strain Sensors | ||||
| F. T. Goericke, A. P. Pisano [UC Berkeley, USA] | ||||
| MEMS Piezoelectric Energy Harvesters for Harsh Environment Sensing | ||||
| Y.J. Lai1, W.C. Li1, C.M. Lin1, V. V.
Felmetsger2, D. G. Senesky3, A. P. Pisano2 [1) UC Berkeley, USA; 2) OEM Group Incorporated, USA; 3) Stanford University, USA] |
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| Optical MEMS Pressure Sensors for Geothermal Well Monitoring | ||||
| W. Challener1, S. Palit1, R. Jones2, L. Airey2, R. Craddock2, A. Knobloch1 [1) General Electric Global Research, USA; 2) General Electric Measurement & Control, USA] |
||||
| Development of High Performance BS-PT Based Piezoelectric Transducer for Structural Health Monitoring of High-Temperature Polymer-Matrix Composite Structures | ||||
| Y.H. Li, S. J. Kim, R. Nardari, D. Oropeza, F.K. Chang [Stanford University, USA] | ||||
| Development and Verification of an Aerothermal Thermal Protection System Heat Shield Instrumentation Plug for Flight on Mars Science Laboratory | ||||
| E. R. Martinez [NASA Ames Research Center, USA] | ||||
| Health Monitoring of Composite Structures Using Carbon Nanotubes | ||||
| Cas Cheung1, Amrita Kumar1, David C. Zhang1, Franklin Li1, Irene Li1, Erik T. Thostenson2, Gerard Gallo2 [1) Acellent Technologies Inc., USA; 2) University of Delaware, USA] |
||||
| Location: | ||||
| HC 200-205 | ||||
| THURSDAY, SEPTEMBER 12 | PAGE NO. | |||
| A Small, Light and Low-power Passive Node Sensor for SHM of Composite Panels | ||||
| L. De Marchi1, A. Perelli1, N. Testoni1, A. Marzani1, D. Brunelli2, L. Benini1 [1) University of Bologna, Italy; 2) Univeristy of Trento, Italy] |
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| Embedded Inductively Coupled Sensors for Composite SHM | ||||
| C. Zhong, A. J. Croxford, P. D. Wilcox [University of Bristol, United Kingdom] | ||||
| Guided Wave Scattering for In Situ Health Monitoring of Slotted Fuel Flow Vents in Integral Stiffeners | ||||
| C. Doherty, W.K. Chiu [Monash University, Australia] | ||||
| Cognitive Structural Health Monitoring and Its Key Technology | ||||
| L. Yu, J. Wang, Y. Zhang [Northwestern Polytechnical University, China] | ||||
| Minimum Sensor Density for Quantitative Damage Imaging | ||||
| C. H. Wang, L.R. F. Rose [RMIT University, Australia] | ||||
| Monitoring Impact On Line with a Miniaturized Device for Composite Structures | ||||
| S. Yuan, L. Qiu, W. Qian, H. Mei, P. Liu [Nanjing University of Aeronautics and Astronautics, China] |
||||
| Location: | ||||
| HC 200-303 | ||||
| THURSDAY, SEPTEMBER 12 | PAGE NO. | |||
| Optimizing Mode Tuning of Guided Waves and PWAS Electromechanical Impedance for Power Efficient SHM systems | ||||
| A. Kamal, B. Lin, V. Giurgiutiu [University of South Carolina, USA] | ||||
| Effect of Bonding Layer on Admittances of PWASs Bonded on Thin Slender Substrates: Correlation between Measurements and Simulation | ||||
| H. Huang, M.M. Islam [University of Texas at Arlington, USA] | ||||
| Analytical Modeling of Proof-Mass Piezoelectric Wafer Active Sensor for Symmetric Lamb Waves Tuning | ||||
| T. Kamas, V. Giurgiutiu, B. Lin [University of South Carolina, USA] | ||||
| Integration of Health Monitoring and Control of Building Structures due to Earthquake | ||||
| J. Shan1, T.Y. Yang2, W. Shi1 [1) Tongji University, China; 2) University of California, Santa Barbara, USA] | ||||
| FEM Model Calibration of Sports Arena Stand, Using Monitoring Data | ||||
| A. Zhivaev1, G.i Boldyrev2 [1) Research and Production Company (NPP) Geotek Ltd., Russia; 2) Penza State University of Architecture and Construction, Russia] |
||||
| Scenario Based Approach to Structural Damage Detection and Its Value in a Risk and Reliability Perspective | ||||
| M.K. Hovgaard1, J.B. Hansen2, R. Brincker2 [1) Rambøll Denmark, Denmark; 2) Aarhus University, Denmark] | ||||
| Location: | ||||
| HC 200-305 | ||||
| THURSDAY, SEPTEMBER 12 | PAGE NO. | |||
| Nonlinear Guided Waves for Thermal Stress Measurement in Constrained Solids | ||||
| C. Nucera, F.L. di Scalea [University of California, San Diego, USA] | ||||
| Analysis of Wave Propagation in Rib-Stiffened and Isogrid Panels for Structural Health Monitoring | ||||
| B. Cooper1, D. Doyle2, W. Reynolds2 [1) New Mexico Tech, USA; 2) Air Force Research Laboratory, USA] | ||||
| Progress in Structural Health Monitoring Technology and System for the Large Crane in China | ||||
| K.Q. Ding, Z. Na, Z.J. Wang [China Special Equipment Inspection and Research Institute, China] | ||||
| A Novel Time-Domain Technique for Damage Detection Applied to SHM Using Savitzky-Golay Filter | ||||
| M.A. de Oliveira1, J.V. Filho2, V. Lopes Junior2, D.J. Inman3 [1) Federal Institute of Education of Mato Grosso, Brazil; 2)Universidade Estadual Paulista, Brazil; 3) University of Michigan, USA] |
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| Quantitative Crack Monitoring Using Diffracted Lamb Waves | ||||
| C. Du1, Z. Wu2, Y. Wang1, X. Qing1 [1) Beijing Aeronautical Science and Technology Research Institute of COMAC, China; 2) Dalian University of Technology, China] |
||||
| Location: | ||||
| ART 2 | ||||
| THURSDAY, SEPTEMBER 12 | PAGE NO. | |||
| Combined MEMS Acoustic Emission and Strain Sensors for On Chip Data Fusion | ||||
| H. Saboonchi, D. Ozevin [University of Illinois at Chicago, USA] | ||||
| Non-Contact Ultrasonic Guided Wave Inspection of Rails | ||||
| S. Mariani1, T.V. Nguyen1, R.R. Phillips1, P. Kijanka2, F.L. di Scalea1, W.J. Staszewski2
[1) University of California, San Diego, USA; 2) AGH University of Science and Technology, Poland] |
||||
| Hyperbolic Signature Extraction of Deeper Rebar Layer in Concrete Bridge Decks using GPR | ||||
| X. Wei, Y. Zhang [Georgia Institute of Technology, USA] | ||||
| Air-coupled Ultrasonic NDT of Solids using a
Focused Electrical Spark Source |
||||
| X. Dai, J. Zhu, M.R. Haberman [The University of Texas at Austin, USA] | ||||
| Multiple Cross Validated Sensing System for damage monitoring in Civil Structural Components | ||||
| P.A. Vanniamparambil, F. Khan, R. Carmi, S. Rajaram, E. Schwartz, M. Bolhassani, A. Hamid, A. Kontsos, I. Bartoli [Drexel University, USA] | ||||
| Feasibility for Energy Harvesting from Surface
Bonded/Embedded Piezo- Patches in Addition to Structural Health Monitoring |
||||
| N. Kaur, S. Bhalla [Indian Institute of Technology (IIT) Delhi, India] | ||||
| Location: | ||||
| APT 4 | ||||
| WEDNESDAY, SEPTEMBER 11 | PAGE NO. | |||
| Characterization of CFRP Laminates: Linear and Nonlinear Acoustic Measurements of As-Fabricated Materials | ||||
| D. Barnard1, S. Chakrapani2, A. Subramanian2, L. Bond1 [1) Center for Nondestructive Evaluation, USA; 2) Iowa State University, USA] |
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| Uncertainty Quantification of Multiscale Composite Damage Initiation and Progression | ||||
| J. Johnston, L. Borkowski, A. Chattopadhyay [Arizona State University, USA] | ||||
| Damage Precursor Investigation of Fiber Reinforced Composite Materials under Dynamic Cyclic Loads | ||||
| A.J. Hall1, R.E. Brennan IV2, A. Ghoshal1, M. Coatney1, R. Haynes1, N. Bradley1, V. Weiss1, J. Tzeng2 [1) Vehicle Technology Directorate; 2) Weapons and Materials Research Directorate, U.S. Army Research Laboratory, USA] |
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| Overview of the use of Acoustic Emission and Electrical Resistivity for Damage Detection in Ceramic and Polymer Matrix Composites | ||||
| G.N. Morscher, E. Maillet, C. Baker [University of Akron, USA] | ||||
| Monitoring Transverse Matrix Cracking in Composite Laminates using Ultrasonic Guided Waves | ||||
| C. Larrosa, F.K. Chang [Stanford University, USA] | ||||
| Nonlinear Ultrasonic Time Reversal Imaging for Closed Crack Location in Metallic Structures | ||||
| W. Zhang, W. Qu, L. Xiao [Wuhan University, China] | ||||
| Coffee Break | ||||
| Location: Dohrmann Grove | ||||
| THURSDAY, SEPTEMBER 12 | PAGE NO. | |||
| TBA | ||||
| Chair: TBA |
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| Panelists: TBA | ||||
| Location: TBA | ||||