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Information Journal Paper

Title

Design and Fabrication of a Composite Energy Absorber

Pages

  1-12

Abstract

 In this paper, the Quasi-Static test and the damage of the thin-walled Composite cylinder were numerically simulated using ABAQUS. Then, a comparison was made between the results of this simulation and those obtained from experimental studies followed by their validation. In the next step, several parameters affecting the energy absorption rate including outer diameter-to-cylinder height ratio, thickness-to-outer diameter ratio, and angle of damage initiation mechanism were selected. They were optimized by modelling different states in ABAQUS. The number of tests is reduced by the design of experiments using response surface methodology and the optimal specimen is extracted by this software. Finally, optimum adsorbent is fabricated and tested. Considering enhanced energy absorption, increased mean reaction force, and reduced initial maximum force, the optimal design parameters include the inner diameter-to-cylinder height ratio of 0. 2, thickness-to-inner diameter ratio of 0. 1, and angle of damage initiation mechanism of 45° .

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  • Cite

    APA: Copy

    Shalian, Hamidreza, Alaee, Mohammad Hossein, ESKANDARI JAM, JAFAR, Heydari Beni, Mohsen, Eskandari Shahraki, Majid, & Asiaban, Naser. (2020). Design and Fabrication of a Composite Energy Absorber. INTERNATIONAL JOURNAL OF ADVANCED DESIGN AND MANUFACTURING TECHNOLOGY, 13(4), 1-12. SID. https://sid.ir/paper/765579/en

    Vancouver: Copy

    Shalian Hamidreza, Alaee Mohammad Hossein, ESKANDARI JAM JAFAR, Heydari Beni Mohsen, Eskandari Shahraki Majid, Asiaban Naser. Design and Fabrication of a Composite Energy Absorber. INTERNATIONAL JOURNAL OF ADVANCED DESIGN AND MANUFACTURING TECHNOLOGY[Internet]. 2020;13(4):1-12. Available from: https://sid.ir/paper/765579/en

    IEEE: Copy

    Hamidreza Shalian, Mohammad Hossein Alaee, JAFAR ESKANDARI JAM, Mohsen Heydari Beni, Majid Eskandari Shahraki, and Naser Asiaban, “Design and Fabrication of a Composite Energy Absorber,” INTERNATIONAL JOURNAL OF ADVANCED DESIGN AND MANUFACTURING TECHNOLOGY, vol. 13, no. 4, pp. 1–12, 2020, [Online]. Available: https://sid.ir/paper/765579/en

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