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A comparison between active and passive piezoelectric elements for damage detection in fiber-reinforced composite laminates
Barbezat, M., Brunner, A. J., Flüeler, P., Huber, C., & Kornmann, X. (2003). A comparison between active and passive piezoelectric elements for damage detection in fiber-reinforced composite laminates. In International conference on advanced technology in experimental mechanics. ATEM`03. International conference on advanced technology in experimental mechanics 2003. The second asian conference on experimental mechanics (ACEM2) (p. (5 pp.). sine nomine.
A review of approaches for mitigating effects from variable operational environments on piezoelectric transducers for long-term structural health Monitoring
Brunner, A. J. (2023). A review of approaches for mitigating effects from variable operational environments on piezoelectric transducers for long-term structural health Monitoring. Sensors, 23(18), 7979 (19 pp.). https://doi.org/10.3390/s23187979
A status report on delamination resistance testing of polymer-matrix composites
Brunner, A. J., Blackman, B. R. K., & Davies, P. (2008). A status report on delamination resistance testing of polymer-matrix composites. Engineering Fracture Mechanics, 75(9), 2779-2794. https://doi.org/10.1016/j.engfracmech.2007.03.012
A study of acoustic emission-rate behavior in glass fiber-reinforced plastics
Brunner, A. J., Nordstrom, R., & Flüeler, P. (1995). A study of acoustic emission-rate behavior in glass fiber-reinforced plastics. Journal of Acoustic Emission, 13, 67-77.
AE in polymeric composites
Sause, M. G. R., & Brunner, A. J. (2022). AE in polymeric composites. In C. U. Grosse, M. Ohtsu, D. G. Aggelis, & T. Shiotani (Eds.), Springer tracts in civil engineering. Acoustic emission testing. Basics for research - applications in engineering (pp. 621-661). https://doi.org/10.1007/978-3-030-67936-1_21
AFM investigation of epoxy fracture surfaces indicating nanoplasticity
Haba, D., Barbezat, M., & Brunner, A. J. (2015). AFM investigation of epoxy fracture surfaces indicating nanoplasticity. In Vol. 4. Proceedings of the international conference. Nanomaterials: applications and properties (p. 01MAN01 (4 pp.).
Acoustic emission (AE) signal classification from tensile tests on plywood and layered wood
Ritschel, F., Sause, M. G. R., Brunner, A. J., & Niemz, P. (2014). Acoustic emission (AE) signal classification from tensile tests on plywood and layered wood (p. Fr.3.A.2 (7 pp.). Presented at the 31st conference of the European working group on acoustic emission (EWGAE). .
Acoustic emission analysis and acousto-ultrasonics for damage detection in GFRP adhesive joints
Brunner, A. J., Terrasi, G. P., Vallée, T., & Keller, T. (2008). Acoustic emission analysis and acousto-ultrasonics for damage detection in GFRP adhesive joints (pp. 100-105). Presented at the 28th European conference on acoustic emission etsting, European working group on acoustic emission (EWGAE). EWGAE, Cracow UT.
Acoustic emission analysis and micro-mechanical interpretation of Mode I fracture toughness tests on composite materials
Bohse, J., Krietsch, T., Chen, J. H., & Brunner, A. J. (2000). Acoustic emission analysis and micro-mechanical interpretation of Mode I fracture toughness tests on composite materials. In J. G. Williams & A. Pavan (Eds.), ESIS publication: Vol. 27. Fracture of polymers, composites and adhesives (pp. 15-26). https://doi.org/10.1016/S1566-1369(00)80004-7
Acoustic emission analysis and synchrotron-based microtomography of glued shear strength samples from spruce wood
Niemz, P., Baensch, F., & Brunner, A. J. (2020). Acoustic emission analysis and synchrotron-based microtomography of glued shear strength samples from spruce wood. Bulletin of the Transilvania University of Braşov. Series II: Forestry • Wood Industry • Agricultural Food Engineering, 13(62)(1), 81-88. https://doi.org/10.31926/but.fwiafe.2020.13.62.1.7
Acoustic emission analysis and synchrotron-based microtomography on glued shear strength samples from spruce solid wood
Niemz, P., Baensch, F., Brunner, A. J., & Gaff, M. (2019). Acoustic emission analysis and synchrotron-based microtomography on glued shear strength samples from spruce solid wood. In X. Wang, U. H. Sauter, & R. J. Ross (Eds.), General Technical Report: Vol. FPL–GTR–272. Proceedings. 21st international nondestructive testing and evaluation of wood symposium (pp. 168-175). U.S. Department of Agriculture, Forest Service, Forest Products Laboratory.
Acoustic emission analysis for identification of damage mechanisms in fiber-reinforced polymer composites and structural integrity assessment: selected examples and challenges
Brunner, A. J. (2016). Acoustic emission analysis for identification of damage mechanisms in fiber-reinforced polymer composites and structural integrity assessment: selected examples and challenges. In Progress in acoustic emission XVIII (pp. 287-292). JSNDI & IIIAE.
Acoustic emission analysis of industrial plywood materials exposed to destructive tensile load
Ritschel, F., Zhou, Y., Brunner, A. J., Fillbrandt, T., & Niemz, P. (2014). Acoustic emission analysis of industrial plywood materials exposed to destructive tensile load. Wood Science and Technology, 48(3), 611-631. https://doi.org/10.1007/s00226-014-0628-1
Acoustic emission and synchrotron radiation X-ray tomographic in-situ microscopy of sub-macroscopic damage phenomena in wood
Ritschel, F., Zauner, M., Sanabria, S. J., Brunner, A. J., & Niemz, P. (2013). Acoustic emission and synchrotron radiation X-ray tomographic in-situ microscopy of sub-macroscopic damage phenomena in wood (pp. 434-441). Presented at the 18th international nondestructive testing and evaluation of wood symposium. .
Acoustic emission in delamination investigation
Bohse, J., & Brunner, A. J. (2008). Acoustic emission in delamination investigation. In S. Sridharan (Ed.), Woodhead Publishing series in composites science and engineering. Delamination behaviour of composites (pp. 217-277). https://doi.org/10.1533/9781845694821.2.217
Acoustic emission leak testing of pipes for pressurized gas using active fiber composite elements as sensors
Brunner, A. J., & Barbezat, M. (2007). Acoustic emission leak testing of pipes for pressurized gas using active fiber composite elements as sensors. Journal of Acoustic Emission, 25, 42-50.
Acoustic emission monitoring of adhesively bonded wood joints under quasistatic and cyclic fatigue mode II flexure loads using end-notch-flexure specimens
Brunner, A. J., Clerc, G., & Niemz, P. (2018). Acoustic emission monitoring of adhesively bonded wood joints under quasistatic and cyclic fatigue mode II flexure loads using end-notch-flexure specimens. In Conference proceedings Ewgae 2018 (p. (10 pp.). CETIM.
Acoustic emission monitoring of delamination growth in fiber-reinforced polymer-matrix composites
Brunner, A. J., & Barbezat, M. (2006). Acoustic emission monitoring of delamination growth in fiber-reinforced polymer-matrix composites. In E. E. Gdoutos (Ed.), Fracture of nano and engineering materials and structures. Proceedings of the 16th European conference of fracture (pp. 291-292). https://doi.org/10.1007/1-4020-4972-2_143
Acoustic emission monitoring of delamination growth in fibre-reinforced polymer-matrix composites
Brunner, A. J., & Barbezat, M. (2006). Acoustic emission monitoring of delamination growth in fibre-reinforced polymer-matrix composites. In E. E. Gdoutos (Ed.), Fracture of nano and engineering materials and structures. Proceedings of the 16th European conference of fracture (p. (8 pp.). Springer.
Acoustic emission monitoring of leaks in pipes for transport of liquid and gaseous media: a model experiment
Brunner, A. J., & Barbezat, M. (2006). Acoustic emission monitoring of leaks in pipes for transport of liquid and gaseous media: a model experiment. In R. Pullin, K. M. Holford, S. L. Evans, & J. M. Dulieu-Barton (Eds.), Advanced materials research: Vol. 13-14. Acoustic emission testing. European Working Group on Acoustic Emission (pp. 351-356). https://doi.org/10.4028/www.scientific.net/AMR.13-14.351
 

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