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Biochemical analysis and clinical treatment of blunt renal trauma
Schmidlin, F., Farshad, M., Bidaut, L., Barbezat, M., Becker, C., Niederer, P., & Graber, P. (1998). Biochemical analysis and clinical treatment of blunt renal trauma. Swiss Surgery, 4, 237-243.
Material characterization of the pig kidney in relation with the biomechnical analysis of renal trauma
Farshad, M., Barbezat, M., Flüeler, P., Schmidlin, F., Graber, P., & Niederer, P. (1999). Material characterization of the pig kidney in relation with the biomechnical analysis of renal trauma. Journal of Biomechanics, 32(4), 417-425. https://doi.org/10.1016/S0021-9290(98)00180-8
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.
Active fibre composites: sensors and actuators for smart composites & structures
Kornmann, X., Huber, C., Barbezat, M., & Brunner, A. J. (2004). Active fibre composites: sensors and actuators for smart composites & structures. In ECCM11. 11th European conference on composite materials from nano-scale interactions to engineering structures (p. B074 (9 pp.). sine nomine.
Epoxy-layered silicate nanocomposites as matrix in glass fibre reinforced composites
Kornmann, X., Rees, M., Thomann, Y., Necola, A., Barbezat, M., & Thomann, R. (2004). Epoxy-layered silicate nanocomposites as matrix in glass fibre reinforced composites. In ECCM11. 11th European conference on composite materials from nano-scale interactions to engineering structures (p. B073 (8 pp.). sine nomine.
Dünner, flexibler Sender-Empfänger auf PZT-Basis für Acousto- Ultrasonic-und niederfrequente Ultraschall-Anwendungen
Brunner, A. J., Barbezat, M., Huber, C., & Kornmann, X. (2004). Dünner, flexibler Sender-Empfänger auf PZT-Basis für Acousto- Ultrasonic-und niederfrequente Ultraschall-Anwendungen. In Berichtsband der DGZfP: Vol. 89-CD. Jahrestagung 2004. Zerstörungsfreie Materialprüfung. ZfP in Forschung, Entwicklung und Anwendung (p. (8 pp.). Deutsche Gesellschaft für zerstörungsfreie Prüfung e.V.
Active fiber composites for application as acoustic emission sensors: principles and characterization
Brunner, A. J., Barbezat, M., Flüeler, P., Kornmann, X., & Huber, C. (2004). Active fiber composites for application as acoustic emission sensors: principles and characterization. In Berichtsband der DGZfP: Vol. BB 90- CD. Proceedings BB 90-CD. 26th European conference on acoustic emission testing (pp. 549-556). DGfZP.
Composites from piezoelectric fibers as sensors and emitters for acoustic applications
Brunner, A. J., Barbezat, M., Flüeler, P., & Huber, C. (2004). Composites from piezoelectric fibers as sensors and emitters for acoustic applications. Journal of Acoustic Emission, 22, 127-137.
Integrated active fibre composites elements for structural health monitoring in glass fibre reinforced laminates
Barbezat, M., Brunner, A. J., Huber, C., Melnykowycz, M., Kornmann, X., & Flüeler, P. (2004). Integrated active fibre composites elements for structural health monitoring in glass fibre reinforced laminates. In P. de Wilde & C. Brebbia (Eds.), High performance structures and materials II. HPSM 2004. Second international conference on high performance structures and materials (pp. 13-22). WIT Press.
Optimization of active fiber composite (AFC) actuators
Huber, C., Barbezat, M., Brunner, A. J., & Kornmann, X. (2004). Optimization of active fiber composite (AFC) actuators. In H. Borgmann (Ed.), ACTUATOR 2004. 9th international conference on new actuators & 3rd international exhibition on smart actuators and drive systems (pp. 435-437). HVG Hanseatische Veranstaltungs-GmbH.
Acoustic emission sensor properties of active fibre composite elements compared with commercial acoustic emission sensors
Barbezat, M., Brunner, A. J., Flüeler, P., Huber, C., & Kornmann, X. (2004). Acoustic emission sensor properties of active fibre composite elements compared with commercial acoustic emission sensors. Sensors and Actuators A: Physical, 114(1), 13-20. https://doi.org/10.1016/j.sna.2004.01.062
Active fibre composites: optimization of the manufacturing process and their poling behavior
Huber, C., Spori, D. M., Melnykowycz, M. M., & Barbezat, M. (2005). Active fibre composites: optimization of the manufacturing process and their poling behavior. In W. D. Armstrong (Ed.), SPIE: Vol. 5761. Smart structures and materials 2005: active materials: behavior and mechanics (pp. 542-547). https://doi.org/10.1117/12.599498
Integration of active fiber composite (AFC) sensors/actuators into glass/epoxy laminates
Melnykowycz, M. M., Kornmann, X., Huber, C., Brunner, A. J., & Barbezat, M. (2005). Integration of active fiber composite (AFC) sensors/actuators into glass/epoxy laminates. In W. D. Armstrong (Ed.), Proceedings of SPIE: Vol. 5761. Smart structures and materials 2005: active materials: behavior and mechanics (pp. 221-232). https://doi.org/10.1117/12.599109
Epoxy-layered silicate nanocomposites as matrix in glass fibre-reinforced composites
Kornmann, X., Rees, M., Thomann, Y., Necola, A., Barbezat, M., & Thomann, R. (2005). Epoxy-layered silicate nanocomposites as matrix in glass fibre-reinforced composites. Composites Science and Technology, 65(14), 2259-2268. https://doi.org/10.1016/j.compscitech.2005.02.006
Strain energy density as a rupture criterion for the kidney: impact tests on porcine organs, finite element simulation, and a baseline comparison between human and porcine tissues
Snedeker, J. G., Barbezat, M., Niederer, P., Schmidlin, F. R., & Farshad, M. (2005). Strain energy density as a rupture criterion for the kidney: impact tests on porcine organs, finite element simulation, and a baseline comparison between human and porcine tissues. Journal of Biomechanics, 38(5), 993-1001. https://doi.org/10.1016/j.jbiomech.2004.05.030
The potential of active fiber composites made from piezoelectric fibers for actuating and sensing applications in structural health monitoring
Brunner, A. J., Barbezat, M., Huber, C., & Flüeler, P. H. (2005). The potential of active fiber composites made from piezoelectric fibers for actuating and sensing applications in structural health monitoring. Materials and Structures, 38(5), 561-567. https://doi.org/10.1007/BF02479548
Model for interlaminar normal stress in singly curved laminates
Kress, G., Roos, R., Barbezat, M., Dransfeld, C., & Ermanni, P. (2005). Model for interlaminar normal stress in singly curved laminates. Composite Structures, 69(4), 458-469. https://doi.org/10.1016/j.compstruct.2004.08.026
Acitve airfoil design and finite element analysis of smart structures for rotor blade applications
Melnykowycz, M., Martinez, M., Nitzsche, F., Barbezat, M., & Artemev, A. (2006). Acitve airfoil design and finite element analysis of smart structures for rotor blade applications. In M. Bernadou, J. Cagnol, & R. Ohayon (Eds.), 16th international conference on adaptive structures and technologies (ICAST) (pp. 182-189). DEStech publickations, Inc.
Damage detection in fiber-reinforced laminates using impedance testing with piezoelectric active fiber composite elements
Barbezat, M., Birchmeier, M., Santschi, Y., & Brunner, A. J. (2006). Damage detection in fiber-reinforced laminates using impedance testing with piezoelectric active fiber composite elements. In M. Bernadou, J. Cagnol, & R. Ohayon (Eds.), Sixteenth international conference on adaptive structures and technologies (pp. 109-116). DEStech publications, Inc.
Characterisation of active fibre composites with polypyrrole finger electrodes
Pini, N., Belloli, A., Schubach, H. R., Hack, E., Barbezat, M., & Ermanni, P. (2006). Characterisation of active fibre composites with polypyrrole finger electrodes. In Proceedings of ICAST2006: 17th international conference on adaptive structures and technologies (pp. 142-150). Institute of Applied Mechanics.
 

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