Experimental characterization of the energy absorption of functionally graded foam filled tubes under axial crushing loads

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Abstract

This paper deals with the energy absorption characterization of functionally graded foam (FGF) filled tubes under axial crushing loads by experimental method. The FGF tubes are filled axially by gradient layers of polyurethane foams with different densities. The mechanical properties of the polyurethane foams are firstly obtained from axial compressive tests. Then, the quasi-static compressive tests are carried out for empty tubes, uniform foam filled tubes and FGF filled tubes. Before to present the experimental test results, a nonlinear FEM simulation of the FGF filled tube is carried out in ABAQUS software to gain more insight into the crush deformation patterns, as well as the energy absorption capability of the FGF filled tube. A good agreement between the experimental and simulation results is observed. Finally, the results of experimental test show that an FGF filled tube has excellent energy absorption capacity compared to the ordinary uniform foam-filled tube with the same weight.

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Ebrahimi, S., Vahdatazad, N., & Liaghat, G. (2018). Experimental characterization of the energy absorption of functionally graded foam filled tubes under axial crushing loads. Journal of Theoretical and Applied Mechanics (Bulgaria), 48(1), 76–89. https://doi.org/10.2478/jtam-2018-0007

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