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The effect of nano- and micron-scale filler modified epoxy matrix on glass-fiber reinforced polymer insulator component behavior
Burda, I., Barbezat, M., & Brunner, A. J. (2021). The effect of nano- and micron-scale filler modified epoxy matrix on glass-fiber reinforced polymer insulator component behavior. Proceedings of the Institution of Mechanical Engineers, Part L: Journal of Materials: Design and Applications. https://doi.org/10.1177/14644207211000775
Quantification approaches for fatigue crack resistance of thermoplastic tape layered composites with multiple delaminations
Khudiakova, A., Brunner, A. J., Wolfahrt, M., & Pinter, G. (2021). Quantification approaches for fatigue crack resistance of thermoplastic tape layered composites with multiple delaminations. Materials, 14(6), 1476 (24 pp.). https://doi.org/10.3390/ma14061476
Quasi-static and fatigue performance of bonded acetylated rubberwood (<em>Hevea brasiliensis</em>, Müll. Arg.)
Olaniran, S. O., Clerc, G., Cabane, E., Brunner, A. J., & Rüggeberg, M. (2021). Quasi-static and fatigue performance of bonded acetylated rubberwood (Hevea brasiliensis, Müll. Arg.). European Journal of Wood and Wood Products, 79, 49-58. https://doi.org/10.1007/s00107-020-01610-0
Fiber push-in failure in carbon fiber epoxy composites
Brunner, A. J., Schwiedrzik, J. J., Mohanty, G., & Michler, J. (2020). Fiber push-in failure in carbon fiber epoxy composites. In F. Iacoviello, A. Sedmak, L. Marsavina, B. Blackman, G. A. Ferro, V. Shlyannikov, … L. Banks-Sills (Eds.), Procedia structural integrity: Vol. 28. 1st virtual European conference on fracture - VECF1 (pp. 538-545). https://doi.org/10.1016/j.prostr.2020.10.063
Fracture mechanics characterization of polymer composites for aerospace applications
Brunner, A. J. (2020). Fracture mechanics characterization of polymer composites for aerospace applications. In P. Irving & C. Soutis (Eds.), Woodhead publishing series in composites science and engineering. Polymer composites in the aerospace industry (pp. 195-252). Elsevier.
Fracture mechanics test standards for fiber-reinforced polymer composites: suggestions for adapting them to Industry 4.0 and the digital age
Brunner, A. J. (2020). Fracture mechanics test standards for fiber-reinforced polymer composites: suggestions for adapting them to Industry 4.0 and the digital age. In F. Iacoviello, A. Sedmak, L. Marsavina, B. Blackman, G. A. Ferro, V. Shlyannikov, … L. Banks-Sills (Eds.), Procedia structural integrity: Vol. 28. 1st virtual European conference on fracture - VECF1 (pp. 546-554). https://doi.org/10.1016/j.prostr.2020.10.064
Delamination resistance of GFRP‐epoxy rods with nanoparticle‐ and microparticle‐modified matrix and its correlation with the fracture properties of epoxy nanocomposites
Burda, I., Barbezat, M., & Brunner, A. J. (2020). Delamination resistance of GFRP‐epoxy rods with nanoparticle‐ and microparticle‐modified matrix and its correlation with the fracture properties of epoxy nanocomposites. Fatigue and Fracture of Engineering Materials and Structures, 43, 292-307. https://doi.org/10.1111/ffe.13122
Application of fracture mechanics to engineering design of complex structures
Clerc, G., Brunner, A. J., Niemz, P., & van de Kuilen, J. W. (2020). Application of fracture mechanics to engineering design of complex structures. In F. Iacoviello, A. Sedmak, L. Marsavina, B. Blackman, G. A. Ferro, V. Shlyannikov, … L. Banks-Sills (Eds.), Procedia structural integrity: Vol. 28. 1st virtual European conference on fracture - VECF1 (pp. 1761-1767). https://doi.org/10.1016/j.prostr.2020.10.152
Feasibility study on Hartman–Schijve data analysis for mode II fatigue fracture of adhesively bonded wood joints
Clerc, G., Brunner, A. J., Niemz, P., & Van de Kuilen, J. W. G. (2020). Feasibility study on Hartman–Schijve data analysis for mode II fatigue fracture of adhesively bonded wood joints. International Journal of Fracture, 221, 123-140. https://doi.org/10.1007/s10704-019-00414-5
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
Towards predictor development for assessing structural integrity of components made from wood materials using Acoustic Emission monitoring and signal analysis
Baensch, F., & Brunner, A. J. (2019). Towards predictor development for assessing structural integrity of components made from wood materials using Acoustic Emission monitoring and signal analysis. In SMAR proceedings. Proceedings of SMAR 2019, fifth conference on smart monitoring, assessment and rehabilitation of civil structures (p. (8 pp.).
Drahtlose Übertragung von Schallemissionssignalen bei Strukturüberwachung: Anforderungen
Brunner, A. J., Kühnicke, H., Oemus, M., Schubert, L., & Trattning, H. (2019). Drahtlose Übertragung von Schallemissionssignalen bei Strukturüberwachung: Anforderungen. In NDT.net (p. (8 pp.).
Drahtlose Übertragung von Schallemissionssignalen bei Strukturüberwachung: Diskussion ausgewählter Aspekte
Brunner, A. J., Kühnicke, H., Oemus, M., Schubert, L., & Trattnig, H. (2019). Drahtlose Übertragung von Schallemissionssignalen bei Strukturüberwachung: Diskussion ausgewählter Aspekte. DGZfP-Berichtsband: Vol. 171. (p. (8 pp.). Presented at the DACH-Jahrestagung 2019. Zerstörungsfreie Materialprüfung.
Fiber-reinforced polymer composites test specimen design for selected damage mechanisms
Brunner, A. J. (2019). Fiber-reinforced polymer composites test specimen design for selected damage mechanisms. Proceedings of the Institution of Mechanical Engineers, Part L: Journal of Materials: Design and Applications, 233(3), 328-337. https://doi.org/10.1177/1464420718800347
Microscopic damage size in fiber-reinforced polymer-matrix composites: quantification approach via NDT-measurements
Brunner, A. J., Potstada, P., & Sause, M. G. R. (2019). Microscopic damage size in fiber-reinforced polymer-matrix composites: quantification approach via NDT-measurements. In P. M. G. P. Moreira & P. J. S. Tavares (Eds.), Procedia Structural Integrity: Vol. 17. 3rd international conference on structural integrity, ICSI 2019 (pp. 146-153). https://doi.org/10.1016/j.prostr.2019.08.020
Adhesive wood joints under quasi-static and cyclic fatigue fracture mode II loads
Clerc, G., Brunner, A. J., Josset, S., Niemz, P., Pichelin, F., & Van de Kuilen, J. W. G. (2019). Adhesive wood joints under quasi-static and cyclic fatigue fracture mode II loads. International Journal of Fatigue, 123, 40-52. https://doi.org/10.1016/j.ijfatigue.2019.02.008
Anwendung geführter Wellen aus der Überprüfung der Sensorkopplung für die Bestimmung von Prüfkörpereigenschaften und Schädigungsgrad
Clerc, G., Niemz, P., Brunner, A. J., & van de Kuilen, J. W. (2019). Anwendung geführter Wellen aus der Überprüfung der Sensorkopplung für die Bestimmung von Prüfkörpereigenschaften und Schädigungsgrad. In NDT.net (p. (8 pp.).
Fractography combined with unsupervised pattern recognition of acoustic emission signals for a better understanding of crack propagation in adhesively bonded wood
Clerc, G., Sause, M. G. R., Brunner, A. J., Niemz, P., & van de Kuilen, J. W. G. (2019). Fractography combined with unsupervised pattern recognition of acoustic emission signals for a better understanding of crack propagation in adhesively bonded wood. Wood Science and Technology, 53(6), 1235-1253. https://doi.org/10.1007/s00226-019-01136-6
Unsupervised pattern recognition of acoustic emission signals of adhesively bonded wood
Clerc, G., Sause, M. G. R., Brunner, A. J., Niemz, P., & Van de Kuilen, J. W. G. (2019). Unsupervised pattern recognition of acoustic emission signals of adhesively bonded 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. 619-626). U.S. Department of Agriculture, Forest Service, Forest Products Laboratory.
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.
 

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