Literature DB >> 34209717

The Influence of Different Length Aluminum Foam Filling on Mechanical Behavior of a Square Thin-Walled Column.

Michał Rogala1, Mirosław Ferdynus1, Katarzyna Gawdzińska2, Paweł Kochmański3.   

Abstract

The demand for lightweight, strong structural profiles is currently high in the transport industry, mechanical engineering, and construction. Therefore, it is important to evaluate their properties, especially mechanical properties. The main objective of this paper is to determine energy absorption coefficients and evaluate the crush resistance of thin-walled aluminum profiles using numerical simulation and empirical verification. This paper presents the compression results of testing of thin-walled aluminum profiles filled with a porous material (cast aluminum foam). The numerical analysis was conducted using the software Abaqus/CAE. Aluminum material data were obtained from a static tensile test performed on a Shimadzu machine. The experiment was performed on an Instron CEAST 9450HES dynamic hammer. Profiles with three shapes of crush initiators filled with aluminum foam measuring 40 mm-200 mm in 20 mm increments were numerically tested. A sample with a concave initiator filled with foams of 40 mm, 60 mm, 80 mm, and 120 mm in length was used to verify the numerical analyses. Energy absorption coefficients were determined from the analyses. The results of both analyses were tabulated to show the percentage differences. The study showed an increase in the Crush Load Efficiency (CLE) index by up to 33% for samples with the same crush initiator. In addition, it was noted that the use of porous fill does not increase the value of initiating Peak Crushing Force (PCF), which indicates the generation of much smaller overloads dangerous for vehicle passengers.

Entities:  

Keywords:  aluminum foam; dynamic crush; energy absorber; foam filling; porous structures; thin-walled structures

Year:  2021        PMID: 34209717     DOI: 10.3390/ma14133630

Source DB:  PubMed          Journal:  Materials (Basel)        ISSN: 1996-1944            Impact factor:   3.623


  1 in total

1.  Determining the Effect of Rock Strength Parameters on the Breakout Area Utilizing the New Design of the Undercut/Breakout Anchor.

Authors:  Józef Jonak; Robert Karpiński; Andrzej Wójcik; Michał Siegmund; Marek Kalita
Journal:  Materials (Basel)       Date:  2022-01-23       Impact factor: 3.623

  1 in total

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