220
A. V. Basalin et al.
Bridgman, P. W. (1955). Studies in large plastic Flow and fracture (Russian translation). Moscow:
Izd. Inostr. Lit.
Caverzan, A., Cadoni, E., & di Prisco, M. (2012). Tensile behaviour of high performance
fibre-reinforced cementitious composites at high strain rates. International Journal of Impact
Engineering, 45, 28–38.
Chen, W., Lu, F., & Cheng, M. (2002). Tension and compression tests of two polymers under
quasistatic and dynamic loading. Polymer Testing, 21(2), 113–121.
Davidenkov, N. N., & Spiridonova, N. I. (1946). Analysis of the state of stress in the neck of a
tensile test specimen. Proceedings of ASTM, 46, 1147–1158.
Davies, R. M. (1948). A critical study of the Hopkinson pressure bar. Philosophical Transactions
of the Royal Society of London. Series A, Mathematical and Physical Sciences, 240, 375–457.
Del Vescovo, D., & Giorgio, I. (2014). Dynamic problems for metamaterials: Review of existing
models and ideas for further research. International Journal of Engineering Science, 80, 153–172.
dell’Isola, F., Andreaus, U., & Placidi, L. (2015). At the origins and in the vanguard of peridynamics, non-local and higher-gradient continuum mechanics: An underestimated and still topical
contribution of Gabrio Piola. Mathematics and Mechanics of Solids, 20(8).
dell’Isola, F., Della Corte, A., & Giorgio, I. (2016a). Higher-gradient continua: The legacy of Piola,
Mindlin, Sedov and Toupin and some future research perspectives. Mathematics and Mechanics
of Solids.
dell’Isola, F., Della Corte, A., Greco, L., & Luongo, A. (2016b). Plane bias extension test for
a continuum with two inextensible families of fibers: a variational treatment with Lagrange
multipliers and a perturbation solution. International Journal of Solids and Structures.
dell’Isola, F., Cuomo, M., Greco, L., & Della Corte, A. (2017). Bias extension test for pantographic
sheets: numerical simulations based on second gradient shear energies. Journal of Engineering
Mathematics.
dell’Isola, F., Giorgio, I., Pawlikowski, M., & Rizzi, N. (2016c). Large deformations of planar extensible beams and pantographic lattices: heuristic homogenization, experimental and numerical
examples of equilibrium. Proceedings of The Royal Society A, 472(2185).
dell’Isola, F., Seppecher, P., & Alibert, J. J. (2019). Pantographic metamaterials: An example of
mathematically driven design and of its technological challenges. Continuum Mechanics and
Thermodynamics, 31(4), 851–884.
dell’Isola, F., Seppecher, P., & Madeo A. (2012). How contact interactions may depend on the shape
of Cauchy cuts in Nth gradient continua: approach “à la D’Alembert”. Zeitschrift für angewandte
Mathematik und Physik, 63(6).
Dietrich, L., Miastkowski, J., & Szczepinski, W. (1970). Limiting capacity of the construction
elements. Warsaw: PWN. ((in Polish)).
Eskandari, H., & Nemes J. A. (2000). Dynamic testing of composite laminates with a tensile split
Hopkinson bar. Journal of Composite Materials.
Field J. E., Walley, S. M., Bourne, N. K., & Huntley, J. M. (1994). Experimental methods at high
strain rate. Journal de Physique, IV (C3), 3–22.
Gama, B. A., Lopatnikov, S. L., & Gillespie, J. W., Jr. (2004). Hopkinson bar experimental technique:
A critical review. Applied Mechanics Reviews. https://doi.org/10.1115/1.1704626
Ganzenmuller, G. C., Blaum, E., Mohrmann, D., Langhof, T., Plappert, D., Ledford, N., et al.
(2017). A simplified design for a Split-Hopkinson Tension Bar with long pulse duration. Procedia
Engineering, 197, 109–118.
Gerlach, R., Kettenbeil, C., & Petrinic, N. (2012). A new split Hopkinson tensile bar design.
International Journal of Impact Engineering, 50, 63–67.
Gerlach, R., Sathianathan, S. K., Siviour, C., & Petrinic, N. (2011). A novel method for pulse
shaping of Split Hopkinson tensile bar signals. International Journal of Impact Engineering, 38,
976–980.
Gilat, A., Schmid, T. E., & Walker, A. L. (2009). Full field strain measurement in compression and
tensile split Hopkinson bar experiments. Experimental Mechanics, 49, 291–302.
A. V. Basalin et al.
Bridgman, P. W. (1955). Studies in large plastic Flow and fracture (Russian translation). Moscow:
Izd. Inostr. Lit.
Caverzan, A., Cadoni, E., & di Prisco, M. (2012). Tensile behaviour of high performance
fibre-reinforced cementitious composites at high strain rates. International Journal of Impact
Engineering, 45, 28–38.
Chen, W., Lu, F., & Cheng, M. (2002). Tension and compression tests of two polymers under
quasistatic and dynamic loading. Polymer Testing, 21(2), 113–121.
Davidenkov, N. N., & Spiridonova, N. I. (1946). Analysis of the state of stress in the neck of a
tensile test specimen. Proceedings of ASTM, 46, 1147–1158.
Davies, R. M. (1948). A critical study of the Hopkinson pressure bar. Philosophical Transactions
of the Royal Society of London. Series A, Mathematical and Physical Sciences, 240, 375–457.
Del Vescovo, D., & Giorgio, I. (2014). Dynamic problems for metamaterials: Review of existing
models and ideas for further research. International Journal of Engineering Science, 80, 153–172.
dell’Isola, F., Andreaus, U., & Placidi, L. (2015). At the origins and in the vanguard of peridynamics, non-local and higher-gradient continuum mechanics: An underestimated and still topical
contribution of Gabrio Piola. Mathematics and Mechanics of Solids, 20(8).
dell’Isola, F., Della Corte, A., & Giorgio, I. (2016a). Higher-gradient continua: The legacy of Piola,
Mindlin, Sedov and Toupin and some future research perspectives. Mathematics and Mechanics
of Solids.
dell’Isola, F., Della Corte, A., Greco, L., & Luongo, A. (2016b). Plane bias extension test for
a continuum with two inextensible families of fibers: a variational treatment with Lagrange
multipliers and a perturbation solution. International Journal of Solids and Structures.
dell’Isola, F., Cuomo, M., Greco, L., & Della Corte, A. (2017). Bias extension test for pantographic
sheets: numerical simulations based on second gradient shear energies. Journal of Engineering
Mathematics.
dell’Isola, F., Giorgio, I., Pawlikowski, M., & Rizzi, N. (2016c). Large deformations of planar extensible beams and pantographic lattices: heuristic homogenization, experimental and numerical
examples of equilibrium. Proceedings of The Royal Society A, 472(2185).
dell’Isola, F., Seppecher, P., & Alibert, J. J. (2019). Pantographic metamaterials: An example of
mathematically driven design and of its technological challenges. Continuum Mechanics and
Thermodynamics, 31(4), 851–884.
dell’Isola, F., Seppecher, P., & Madeo A. (2012). How contact interactions may depend on the shape
of Cauchy cuts in Nth gradient continua: approach “à la D’Alembert”. Zeitschrift für angewandte
Mathematik und Physik, 63(6).
Dietrich, L., Miastkowski, J., & Szczepinski, W. (1970). Limiting capacity of the construction
elements. Warsaw: PWN. ((in Polish)).
Eskandari, H., & Nemes J. A. (2000). Dynamic testing of composite laminates with a tensile split
Hopkinson bar. Journal of Composite Materials.
Field J. E., Walley, S. M., Bourne, N. K., & Huntley, J. M. (1994). Experimental methods at high
strain rate. Journal de Physique, IV (C3), 3–22.
Gama, B. A., Lopatnikov, S. L., & Gillespie, J. W., Jr. (2004). Hopkinson bar experimental technique:
A critical review. Applied Mechanics Reviews. https://doi.org/10.1115/1.1704626
Ganzenmuller, G. C., Blaum, E., Mohrmann, D., Langhof, T., Plappert, D., Ledford, N., et al.
(2017). A simplified design for a Split-Hopkinson Tension Bar with long pulse duration. Procedia
Engineering, 197, 109–118.
Gerlach, R., Kettenbeil, C., & Petrinic, N. (2012). A new split Hopkinson tensile bar design.
International Journal of Impact Engineering, 50, 63–67.
Gerlach, R., Sathianathan, S. K., Siviour, C., & Petrinic, N. (2011). A novel method for pulse
shaping of Split Hopkinson tensile bar signals. International Journal of Impact Engineering, 38,
976–980.
Gilat, A., Schmid, T. E., & Walker, A. L. (2009). Full field strain measurement in compression and
tensile split Hopkinson bar experiments. Experimental Mechanics, 49, 291–302.
