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  • (-) Keywords = fracture mechanics
  • (-) Journal ≠ Materials Science and Engineering A: Structural Materials: Properties, Microstructure and Processing
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A review on failure theories and simulation models for adhesive joints
Tserpes, K., Barroso-Caro, A., Carraro, P. A., Beber, V. C., Floros, I., Gamon, W., … Rajčić, V. (2021). A review on failure theories and simulation models for adhesive joints. Journal of Adhesion. https://doi.org/10.1080/00218464.2021.1941903
Novel micro-scale specimens for mode-dependent fracture testing of brittle materials: a case study on GaAs single crystals
Ast, J., Schwiedrzik, J. J., Rohbeck, N., Maeder, X., & Michler, J. (2020). Novel micro-scale specimens for mode-dependent fracture testing of brittle materials: a case study on GaAs single crystals. Materials and Design, 193, 108765 (11 pp.). https://doi.org/10.1016/j.matdes.2020.108765
Influence of osmolarity and hydration on the tear resistance of the human amniotic membrane
Bircher, K., Merluzzi, R., Wahlsten, A., Spiess, D., Simões-Wüst, A. P., Ochsenbein-Kölble, N., … Mazza, E. (2020). Influence of osmolarity and hydration on the tear resistance of the human amniotic membrane. Journal of Biomechanics, 98, 109419 (8 pp.). https://doi.org/10.1016/j.jbiomech.2019.109419
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
Thin-film engineering of mechanical fragmentation properties of atomic-layer-deposited metal oxides
Ruoho, M., Niemelä, J. P., Guerra-Nunez, C., Tarasiuk, N., Robertson, G., Taylor, A. A., … Utke, I. (2020). Thin-film engineering of mechanical fragmentation properties of atomic-layer-deposited metal oxides. Nanomaterials, 10(3), 558 (16 pp.). https://doi.org/10.3390/nano10030558
On the defect tolerance of fetal membranes
Bircher, K., Ehret, A. E., Spiess, D., Ehrbar, M., Simões-Wüst, A. P., Ochsenbein-Kölble, N., … Mazza, E. (2019). On the defect tolerance of fetal membranes. Interface Focus, 9(5), 20190010 (11 pp.). https://doi.org/10.1098/rsfs.2019.0010
The brittle-ductile transition of tungsten single crystals at the micro-scale
Ast, J., Schwiedrzik, J. J., Wehrs, J., Frey, D., Polyakov, M. N., Michler, J., & Maeder, X. (2018). The brittle-ductile transition of tungsten single crystals at the micro-scale. Materials and Design, 152, 168-180. https://doi.org/10.1016/j.matdes.2018.04.009
The effect of clamping conditions on tearing energy estimation for highly stretchable materials
Bernardi, L., Mazza, E., & Ehret, A. E. (2018). The effect of clamping conditions on tearing energy estimation for highly stretchable materials. Engineering Fracture Mechanics, 188, 300-308. https://doi.org/10.1016/j.engfracmech.2017.08.035
The suture retention test, revisited and revised
Pensalfini, M., Meneghello, S., Lintas, V., Bircher, K., Ehret, A. E., & Mazza, E. (2018). The suture retention test, revisited and revised. Journal of the Mechanical Behavior of Biomedical Materials, 77, 711-717. https://doi.org/10.1016/j.jmbbm.2017.08.021
Mixed-mode I/II fracture behavior of asymmetric composite joints
Shahverdi, M., Vassilopoulos, A. P., & Keller, T. (2016). Mixed-mode I/II fracture behavior of asymmetric composite joints. In F. Iacoviello, L. Susmel, D. Firrao, & G. Ferro (Eds.), Procedia structural integrity: Vol. 2. 21st European conference on fracture, ECF21, 20-24 June 2016, Catania, Italy (pp. 1886-1893). https://doi.org/10.1016/j.prostr.2016.06.237
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.).
Secondary crack formation as fracture mechanism in nanocomposites of epoxy and fullerene-like WS<small><SUB>2</SUB></small>
Haba, D., Barbezat, M., & Brunner, A. J. (2015). Secondary crack formation as fracture mechanism in nanocomposites of epoxy and fullerene-like WS2. In Vol. 4. Proceedings of the international conference. Nanomaterials: applications and properties (p. 02NNSA03 (3 pp.).
Non-intuitive fracture pattern of a failed crane-hanger: a fracture mechanics-based explanation
Piskoty, G., Michel, S. A., Valet, S., Koster, M., Sauder, M., & Schindler, H. J. (2015). Non-intuitive fracture pattern of a failed crane-hanger: a fracture mechanics-based explanation. Engineering Failure Analysis, 56, 307-319. https://doi.org/10.1016/j.engfailanal.2015.01.012
Enhanced design approach for reinforced notched beams
Jockwer, R., Frangi, A., Serrano, E., & Steiger, R. (2013). Enhanced design approach for reinforced notched beams. In R. Görlacher (Ed.), CIB-W18. Proceedings. Meeting 46 (pp. 69-84). Timber Scientific Publishing.
Fatigue behavior of notched steel beams reinforced with bonded CFRP plates: determination of prestressing level for crack arrest
Ghafoori, E., Schumacher, A., & Motavalli, M. (2012). Fatigue behavior of notched steel beams reinforced with bonded CFRP plates: determination of prestressing level for crack arrest. Engineering Structures, 45, 270-283. https://doi.org/10.1016/j.engstruct.2012.06.047
Fatigue strengthening of damaged metallic beams using prestressed unbonded and bonded CFRP plates
Ghafoori, E., Motavalli, M., Botsis, J., Herwig, A., & Galli, M. (2012). Fatigue strengthening of damaged metallic beams using prestressed unbonded and bonded CFRP plates. International Journal of Fatigue, 44, 303-315. https://doi.org/10.1016/j.ijfatigue.2012.03.006
A numerical and experimental study of aggregate-induced shrinkage cracking in cementitious composites
Idiart, A., Bisschop, J., Caballero, A., & Lura, P. (2012). A numerical and experimental study of aggregate-induced shrinkage cracking in cementitious composites. Cement and Concrete Research, 42(2), 272-281. https://doi.org/10.1016/j.cemconres.2011.09.013
Smaller is tougher
Beaber, A. R., Nowak, J. D., Ugurlu, O., Mook, W. M., Girshick, S. L., Ballarini, R., & Gerberich, W. W. (2011). Smaller is tougher. Philosophical Magazine, 91(7-9), 1179-1189. https://doi.org/10.1080/14786435.2010.487474
Analytical calculation of stress intensity factor of cracked steel I-beams with experimental analysis and 3D digital image correlation measurements
Ghafoori, E., & Motavalli, M. (2011). Analytical calculation of stress intensity factor of cracked steel I-beams with experimental analysis and 3D digital image correlation measurements. Engineering Fracture Mechanics, 78(18), 3226-3242. https://doi.org/10.1016/j.engfracmech.2011.09.012
Cyclic interlaminar crack growth in unidirectional and braided composites
Stelzer, S., Pinter, G., Wolfahrt, M., Brunner, A. J., & Noisternig, J. (2010). Cyclic interlaminar crack growth in unidirectional and braided composites. In W. Yao, J. Renard, & N. A. Himmel (Eds.), Fatigue behaviour of fiber reinforced polymers. Experiments and simulations (p. (17 pp.). DEStech Publications.