Effect of foam-filling on collapse mode transition of thin-walled circular columns under axial compression: Analytical, numerical and experimental studies

Author:

Yang FanORCID,Fan Hualin,Meguid S.A.

Funder

National Natural Science Foundation of China

Fundamental Research Funds for the Central Universities

Natural Sciences and Engineering Research Council of Canada

Publisher

Elsevier BV

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science,Civil and Structural Engineering

Reference36 articles.

1. On the crashworthiness performance of thin-walled energy absorbers: recent advances and future developments;Baroutaji;Thin Walled Struct,2017

2. Collapsible impact energy absorbers: an overview;Alghamdi;Thin Walled Struct,2001

3. Axial crushing of hollow and foam filled tubes: an overview;Pandarkar;Sadhana,2016

4. Static and dynamic crushing of circular aluminium extrusions with aluminium foam filler;Hanssen;Int J Impact Eng,2000

5. Quasi-static axial compression of thin-walled circular aluminium tubes;Guillow;Int J Mech Sci,2001

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1. Axial Impact Performances of Composite Aluminum Foam Tubes;Advanced Engineering Materials;2024-08-20

2. Energy absorbing characteristics of pressurized filled tubes under quasi-static loading;Mechanics of Advanced Materials and Structures;2024-08-12

3. Crashworthiness analysis of novel cactus-inspired multi-cell structures under axial crushing;International Journal of Mechanical Sciences;2024-04

4. Crashworthiness analysis of empty and foam-filled circular tubes with functionally graded thickness;Journal of the Brazilian Society of Mechanical Sciences and Engineering;2024-03-12

5. Energy performance of metallic tubular systems under reverse complex loading paths;Journal of the Mechanical Behavior of Materials;2024-01-01

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