Please use this identifier to cite or link to this item: https://ptsldigital.ukm.my/jspui/handle/123456789/394100
Title: Multi-objective optimization of aluminum foam double tube subjected to oblique impact loading for automobile bumper beam
Authors: F. Djamaluddin
S. Abdullah
A.K. Arrifin
Z.M. Nopiah
Conference Name: International Conference on Recent Advances in Automotive Engineering and Mobility Research
Keywords: Aluminum Foam
Bumper Beam
Double Tube
Oblique impact
Conference Date: 16/12/2013
Conference Location: Kuala Lumpur
Abstract: This paper presents the multi-objective optimization of aluminum foam double circular tube under oblique load for various load angle and geometry parameters. Thin-walled metallic tubes are used in vehicle structures to absorb impact energy, such as in bumper beams. In this research, aluminum alloy AA6063 T6 foam filled tube which both end were clamped, at bottom as boundary condition and at the top of tube applied quasi-static force of load angle of 0?? to 30?? with respect to longitudinal direction of tubes. The finite element analysis using ABAQUS code was validated according to the relevant experimental data, and the deformation modes of the tubes were studied. Multi-objective optimization design of crush parameters such as minimum peak crushing force and maximum specific energy absorption were performed using particle swarm optimization algorithm. Different optimal designs for different angles of loading and geometries of double circular tubes was identified.
Pages: 93-97 p.
Call Number: TD195.T7.I546 2014 kat sem
Publisher: Switzerland : Trans Tech Publications Ltd., 2014.,Switzerland
Appears in Collections:Seminar Papers/ Proceedings / Kertas Kerja Seminar/ Prosiding

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