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Corrosion suppression and strengthening of the Al-10Zn alloy by adding silica nanorods.
AbdElRhiem, Eman; Barakat, Yosry F; Abdelaziz, Shereen M; Mostafa, M M; Nada, R H; Mohamed, Saad G.
Afiliação
  • AbdElRhiem E; Mining and Metallurgy Engineering Department, Tabbin Institute for Metallurgical Studies (TIMS), Tabbin, Helwan 109, Cairo, 11421, Egypt. eman_tims@yahoo.com.
  • Barakat YF; Physics Department, Faculty of Education, Ain Shams University, Heliopolis, Roxy, P.O. Box 5101, Cairo, 11771, Egypt. eman_tims@yahoo.com.
  • Abdelaziz SM; Mining and Metallurgy Engineering Department, Tabbin Institute for Metallurgical Studies (TIMS), Tabbin, Helwan 109, Cairo, 11421, Egypt.
  • Mostafa MM; Physics Department, Faculty of Education, Ain Shams University, Heliopolis, Roxy, P.O. Box 5101, Cairo, 11771, Egypt.
  • Nada RH; Physics Department, Faculty of Education, Ain Shams University, Heliopolis, Roxy, P.O. Box 5101, Cairo, 11771, Egypt.
  • Mohamed SG; Physics Department, Faculty of Education, Ain Shams University, Heliopolis, Roxy, P.O. Box 5101, Cairo, 11771, Egypt.
Sci Rep ; 14(1): 15644, 2024 Jul 08.
Article em En | MEDLINE | ID: mdl-38977732
ABSTRACT
Aluminum alloys have been widely studied because of their current engineering applications. Due to their high strength and lightweight, cracking can easily initiate on their surface, deteriorating their overall functional and structural properties and causing environmental attacks. The current study highlights the significant influence of incorporating 1 wt% silica nanostructure in aluminum-10 zinc alloys. The characteristics of the composites were examined using Vickers hardness, tensile, and electrochemical testing (OCP, Tafel, and EIS) at various artificial aging temperatures (423, 443, and 463 K). Silica nanorods may achieve ultrafine grains, increase hardness by up to 13.8%, increase σUTS values by up to 79% at 443 K, and improve corrosion rate by up to 89.4%, surpassing Al-10 Zn bulk metallics. We demonstrate that silica nanorods contribute to the creation of a superior nanocomposite that not only limits failure events under loading but also resists corrosion. Our findings suggest that silica nanocomposite can produce unique features for use in a variety of automotive, construction, and aerospace applications. This improvement can be attributed mainly to the large surface area of nano-silica particles, which alters the Al matrix. Microstructural, mechanical, and electrochemical studies revealed that the effects of structure refinement were dependent on nano-silica.
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Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2024 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2024 Tipo de documento: Article