Journal of Composites Science | 卷:5 |
Influence of Heat Treatment on the Corrosion Behaviour of Aluminium Silver Nano Particle/Calcium Carbonate Composite | |
Stephen A. Akinlabi1  Sunday Adeniran Afolalu2  Omolayo Michael Ikumapayi3  Henry A. Benjamin3  Precious Ken-Ezihuo3  Esther T. Akinlabi4  Olayinka Oluwatosin Abegunde5  | |
[1] Department of Mechanical Engineering, Butterworth Campus, Walter Sisulu University, Mthatha 4960, South Africa; | |
[2] Department of Mechanical Engineering, Covenant University, Ota 112104, Nigeria; | |
[3] Department of Mechanical and Mechatronics Engineering, Afe Babalola University, Ado Ekiti 360101, Nigeria; | |
[4] Directorate, Pan African University for Life and Earth Sciences, Ibadan 200284, Nigeria; | |
[5] Materials Science, Energy and Nanoengineering, Mohammed VI Polytechnic University, Ben Guerir 43150, Morocco; | |
关键词: aluminium; composite; corrosion; reinforcement; stir casting; | |
DOI : 10.3390/jcs5100280 | |
来源: DOAJ |
【 摘 要 】
Corrosion is one of the leading sources of material failure and deterioration in society. Scholars have proposed different techniques to mitigate corrosion. This research study explores and validates one of these techniques. An Aluminium metal matrix (AMC) was produced using the stir casting method with various weight percentages of AgNp and CaCO3 reinforcements. Heat treatment was performed on the samples to enhance the metallurgical and corrosion properties of the materials. The corrosion rate of the AMC samples was tested in different corrosive media (neutral and acidic) with different concentrations using the weight loss analysis technique for several days. It was observed that the corrosion rate of the AMC relies on the nature of the electrolyte and the percentage concentration of this electrolyte. The heat treatment improves the corrosion resistance of the AMC samples. In addition, an increase in the % weight composition of the reinforcement (AgNp + CaCO3) results in a reduction in the corrosion rate of the AMC in both corrosive media. The optimal %weight composition was found to be 4% for the hybrid reinforcement of AgNp + CaCO3 and 6% for the CaCO3 reinforcement in both the untreated and heat-treated samples.
【 授权许可】
Unknown