Issue 39
M. Romano et alii, Frattura ed Integrità Strutturale, 39 (2016) 226-247; DOI: 10.3221/IGF-ESIS.39.22 246 https://www.gruppofrattura.it/ocs/index.php/cigf/IGF22/paper/view/10914/10241. [22] Valentino, P., Sgambitterra, E., Furgiuele, F., Romano, M., Ehrlich, I., Gebbeken, N., Mechanical characterization of basalt woven fabric composites: numerical and experimental investigation, Frattura ed Integrità Strutturale (Fracture and Structural Integrity), 8(28) (2014) 1-11. DOI:10.3221/IGF-ESIS.28.01. [23] Ottawa, P., Romano, M., Wagner, M., Ehrlich, I., Gebbeken, N., The influence of ondulation in fabric reinforced composites on dynamic properties in a mesoscopic scale in composites reinforced with fabrics on the damping behavior, in: DYNAmore GmbH (Ed.), Proceedings of the 11. LS- DYNA Forum, Ulm, (2012) 171-172. http://www.dynamore.de/de/download/papers/ls-dyna-forum-2012 [24] Romano, M., Micklitz, M., Olbrich, F., Bierl, R., Ehrlich, I., Gebbeken, N., Experimental investigation of damping properties of unidirectionally and fabric reinforced plastics by the free decay method, Journal of Achievements in Materials and Manufacturing Engineering (JAMME), 63/2 (2014) 65-80. http://www.journalamme.org/vol63_2/6323.pdf [25] Romano, M., Micklitz, M., Olbrich, F., Bierl, R., Ehrlich, I., Gebbeken, N., Experimental investigation of damping properties of unidirectionally and fabric reinforced plastics by the free decay method, in: Meran, C. (ed.): Proceedings of the 15th International Materials Symposium (IMSP'2014). Pamukkale University, Denizli, (2014) 665-679. http://imsp.pau.edu.tr/IMSP2014_Proceedings_Final_security.pdf [26] Romano, M., Charakterisierung von gewebeverstärkten Einzellagen aus kohlenstofffaserverstärktem Kunststoff (CFK) mit Hilfe einer mesomechanischen Kinematik sowie strukturdynamischen Versuchen, University of the Bundeswehr Munich, Department of Civil Engineering and Environmental Sciences, Neubiberg, (2016). http://athene-forschung.unibw.de/doc/112760/112760.pdf [27] Bronstein, I. N., Semendajew, K. A., Taschenbuch der Mathematik, seventh edition, Verlag Harri Deutsch, Frankfurt am Main, (2008). [28] Papula, L., Mathematische Formelsammlung für Ingenieure und Naturwissenschaftler, ninth edition, Vieweg+Teubner, Wiesbaden, (2006). [29] Büsching, F., Combined Dispersion and Reflection Effects at Sloping Structures, Proceedings of ICPMRDT- International Conference on Port and Marine R&D and Technology, Singapore, I (2001) 410-418. [30] Jones, R. M., Mechanics of composite materials, second edition, Taylor & Francis, Philadelphia, (1999). [31] Moser, K., Faser-Kunststoff-Verbund, Entwurfs- und Berechnungsgrundlagen, VDI-Verlag, Düsseldorf, (1992). [32] Schürmann, H., Konstruieren mit Faser-Kunststoff-Verbunden, Springer-Verlag, Berlin/Heidelberg/New York, (2005). [33] Stellbrink, K., Micromechanics of Composites, Hanser-Verlag, München/Wien, (1996). [34] N. N., ANSYS 14.0 Help, Helpsystem of ANSYS Workbench Version 14.0.1, SAS IP Inc., Canonsburg, (2011). [35] Barbero, E. J., Introduction to Composite Materials Design, second edition, CRC Press - Taylor & Francis Group, Boca Raton/London/New York, (2011). [36] Barbero, E. J., Luciano, R., Micromechanics Formulas for the Relaxation Tensor of linear Viscoelastic Composites with Transversely Isotropic Fibers, International Journal of Solid Structures, 32 (1995) 1859-1872. [37] Chamis, C. C., Simplified Composite Micromechanics Equations for Hygral, Thermal and Mechanical Properties, NASA Technical Memorandum 83320 (1983) 1-10. [38] Chamis, C. C., Simplified Composite Micromechanics Equations for Hygral, Thermal and Mechanical Properties, SAMPE Quarterly, (1984) 14-23. [39] Tsai, S. W., Hahn, H. T., Introduction to Composite Materials, Technomic, (1980). [40] Foye, R. L., The transverse Poisson's ratio of composites, Journal of Composites Materials, 6 (1972) 293-295. S YMBOLS AND N OMENCLATURE The symbols and the nomenclature are indicated in alphanumerical order: 1, 2, 3 local principal directions 0, 1 states before and after deformation a analytical A amplitude, area c composite CFRP carbon fiber reinforced plastic D domain of definition
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