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Simulation of Energy Dissipation During Impacts with Hyperelastic Elements

Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The aim of this article is to analyze the possibility of energy dissipation during the impact a pedestrian by a vehicle. The energy created during the impact will be dissipated by element of protection made of a hyperdeformable material. Energy intensive structures are able to take over the kinematic energy during impact, which is equivalent to the work of their destruction (crushing, breaking). This has the effect of increasing pedestrian safety during the accident to fulfillment of the regulation of the European Parliament and Council Regulation (WE) No 78/2009 of 14 January 2009 with all amendments. Ensuring the safety and reduce pedestrian injuries during an accident is very important. Presented in work method of analysis of polyurethane materials, hyperdeformable with using the Finite Element Method can demonstrate how important it is to conduct researches to increase security. Exercising studies of materials using the FEM can verify used materials, and thus, drawing conclusions and present proposals for the use of new materials with improved properties. To describe the properties of the foam will be used previously known theories: hyperelstic materials and properties of elastic-plastic materials, including volumetric plastic deformations. The results of experimental studies will enable determine the model of to the foam and use it in calculations using the Finite Element Method of ABAQUS system. Explicit calculation of the dynamic module of the ABAQUS system is used to simulate impact of a bumper with protective element in the under-bumper beam to the pedestrian, will be analyzed the degree of energy dissipation. Simulation will allow an assessment of the effectiveness pedestrian protection - the operation of protection element.
Rocznik
Strony
64--75
Opis fizyczny
Bibliogr. 6 poz., il., wykr.
Twórcy
autor
  • Warsaw University of Technology. Institute of Machine Design Fundamental
autor
  • Warsaw University of Technology. Institute of Machine Design Fundamentals
Bibliografia
  • Boczkowska, A., Babski, K., Osiński, J., Żach, P., 2008, Modeling compression characteristics and properties of polyurethane materials used in the construction machinery (original title in Polish: Modelowanie charakterystyki przy ściskaniu oraz właściwości użytkowe materiałów poliuretanowych stosowanych w budowie maszyn), Polimery 7/8, tom LIE, 544-550.
  • Deshpande, V. S., Fleck, N. A., 2000, Isotropic Constitutive Model for Metallic Foams, Journal of the Mechanics and Physics of Solids, 48, 1253-1276.
  • Dudziak, M., Mielniczuk, J., 2001, Non-classical models of the materials in machine design (original title in Polish: Nieklasyczne modele materiałów w projektowaniu maszyn), Wydawnictwo Instytutu Technologii Eksploatacji, Radom.
  • Ogden, R. W., 1972, Proc. R. Soc., London, Ser. A, 326 (1567), 565.
  • Ogden, R. W., 2003, Nonlinear Elasticity with Application to Material Modeling, Institute of Fundamental Technological Research, Polish Academy of Sciences, Lecture Notes 6, Warsaw.
  • Ward, I. M., 1971, Mechanical Properties of Solid Polymers John Wiley & Sons, London, New York, pp. 375.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-22ad4add-e67b-4097-9404-96d2b52a16e0
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