FABRICATION AND CHARACTERIZATION OF HYBRID COMPOSITE ALUMINUM FOAM FOR STRUCTURAL APPLICATIONS

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Autori principali: Mr. G. SIVA RAM, G. CHANDU, G. NIVAS, CH. PRASANTH, P. PAVAN KUMAR, M. CHAITANYA
Natura: Recurso digital
Pubblicazione: Zenodo 2025
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author Mr. G. SIVA RAM
G. CHANDU
G. NIVAS
CH. PRASANTH
P. PAVAN KUMAR
M. CHAITANYA
author_facet Mr. G. SIVA RAM
G. CHANDU
G. NIVAS
CH. PRASANTH
P. PAVAN KUMAR
M. CHAITANYA
contents <p>The mechanical behaviour of an <a href="https://ijetrm.com/issues/files/Apr-2025-20-1745122200-APR42.pdf" target="_blank" rel="noopener">aluminium</a> metal matrix composite foam structure under quasi-static uniaxial<br>compressive loading (compressive strength, energy absorption behaviour, stress-strain characteristic behaviour)<br>has been studied in this work. The aluminium alloy Al 7075 is used in the foam structure, and it is reinforced with<br>weight SiC (1%, 2%, 3%, 4%, 5%), B4C (5%, 4%, 3%, 2%, 1%) particles. Using a high-resolution optical zoom<br>microscope image, the microstructural surface morphology of the manufactured metallic foam samples was also<br>examined for the aforementioned composition. The analysis included pore size, porosity percentage, and<br>distribution, as well as cell wall thickness. For all characterisation investigations, wire EDM was used to cut<br>samples with dimensions of 3 cm x 2 cm x 2 cm from the As-cast ingot, which had a diameter of 5 cm and a<br>length of 10 cm</p>
format Recurso digital
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publishDate 2025
publisher Zenodo
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spellingShingle FABRICATION AND CHARACTERIZATION OF HYBRID COMPOSITE ALUMINUM FOAM FOR STRUCTURAL APPLICATIONS
Mr. G. SIVA RAM
G. CHANDU
G. NIVAS
CH. PRASANTH
P. PAVAN KUMAR
M. CHAITANYA
<p>The mechanical behaviour of an <a href="https://ijetrm.com/issues/files/Apr-2025-20-1745122200-APR42.pdf" target="_blank" rel="noopener">aluminium</a> metal matrix composite foam structure under quasi-static uniaxial<br>compressive loading (compressive strength, energy absorption behaviour, stress-strain characteristic behaviour)<br>has been studied in this work. The aluminium alloy Al 7075 is used in the foam structure, and it is reinforced with<br>weight SiC (1%, 2%, 3%, 4%, 5%), B4C (5%, 4%, 3%, 2%, 1%) particles. Using a high-resolution optical zoom<br>microscope image, the microstructural surface morphology of the manufactured metallic foam samples was also<br>examined for the aforementioned composition. The analysis included pore size, porosity percentage, and<br>distribution, as well as cell wall thickness. For all characterisation investigations, wire EDM was used to cut<br>samples with dimensions of 3 cm x 2 cm x 2 cm from the As-cast ingot, which had a diameter of 5 cm and a<br>length of 10 cm</p>
title FABRICATION AND CHARACTERIZATION OF HYBRID COMPOSITE ALUMINUM FOAM FOR STRUCTURAL APPLICATIONS
url https://doi.org/10.5281/zenodo.15250227