[1. Alghamdi A.A.A. (2001), Collapsible impact energy absorbers: an overview, Thin-Walled Struct, 39, 189-213.10.1016/S0263-8231(00)00048-3]Search in Google Scholar
[2.Darvizeh A., Meshkinzar A., Alitavol M., Rajabierhard R. (2017), Low velocity impact of empty and foam filled circumferentially grooved thick-walled circular tubes, Thin-Walled Struct., 110, 97-105.10.1016/j.tws.2016.09.002]Search in Google Scholar
[3. Ei-Sobky H., Singace A.A., Petsios R. . (2001), Mode of collapse and energy absorption characteristics of constrained frusta under axial impact loading. Int.J.Mech.Sci., 43, 743-757.10.1016/S0020-7403(00)00036-9]DOI öffnenSearch in Google Scholar
[4. Ferdynus M., Kotełko M.,Kral J. (2018) Energy absorption capability numerical analysis of thin-walled prismatic tubes with corner dents under axial impact, accepted for publication, Maintenance and Reliability, v.20 (2), 248-25510.17531/ein.2018.2.10]Search in Google Scholar
[5. Ferdynus M., Kotełko M., Mołdawa A. (2016), Prismatic tubular thin-walled members as energy absorbers, chapter in Statics, dynamics and stability of structures, (series of monographs) ed. by R.J. Mania, Lodz University of Technology, 4, 178-195.]Search in Google Scholar
[6. Hanssen A.C., Langseth M., Hopperstad O.S. (2000), Static and dynamic crushing of circular aluminium extrusions with aluminium foam filler, International Journal of Impact Engineering, 24(5), 475–507.10.1016/S0734-743X(99)00170-0]Search in Google Scholar
[7. Jones N. (2003), Structural Impact, Cambridge University Press.]Search in Google Scholar
[8. Jones N. (2010), Energy absorbing effectiveness factor, Int. J. of Impact Engineering, 37, 754-765.10.1016/j.ijimpeng.2009.01.008]Search in Google Scholar
[9. Kotełko M. (2010), Load-capacity and mechanisms of failure of thin-walled structures (in Polish), WNT, Warszawa.]Search in Google Scholar
[10. Mołdawa A., Kotełko M. (2016), Impact behaviour of spot-welded thin-walled frusta, Acta Mechanica et Automatica, 10 (4), 280-28410.1515/ama-2016-0043]Search in Google Scholar
[11. Sarkabiri B., Jahan A., Rezvani M. (2015), Multi-objective crash-worthiness optimization of thin-walled conical groove tubes filled with polyurethane foam, 3 rd Polish Congress of Mechanics, 21 st International Conference of Computer Methods in Mechanics, 947-948.]Search in Google Scholar
[12. Zhang X., Cheng G., Zhang H. (2009), Numerical investigations on a new type of energy-absorbing structure based on free inversion of tubes, Int. J. of Mechanical Sciences, 51, 64-76.10.1016/j.ijmecsci.2008.11.001]Search in Google Scholar
[13. Zhe Y., You Y., Wei Y., Huang Ch. (2017), Crushing behaviour of a thin-walled circular tube with internal gradient grooves fabricated by SLM 3D printing, Thin-Walled Struct., 111, 1-8.10.1016/j.tws.2016.11.004]Search in Google Scholar