2018
DOI: 10.5599/jese.493
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Effect of Fe, Ni, and Cr on the corrosion behaviour of hyper-eutectic Al-Si automotive alloy under different pH conditions

Abstract: Effect of Fe, Ni and Cr on the corrosion behaviour of hyper-eutectic Al-Si automotive alloy was studied. The test of corrosion behaviour at different environmental pH 1, 3, 5, 7, 9, 11 and 13

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Cited by 3 publications
(2 citation statements)
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“…The results observed in H2SO4 media are ascribed to the high aggressive attack of sulphide ions, leading to the disruption of passive films formed on the metal surfaces. However, the corrosion rate is slightly lower than that observed at the earlier stage of immersion, suggesting that the passive films formed on the surface of the experimental samples are stable [17,18]. In the case of alkaline solution, the higher corrosion rate at the initial stage could be due to the segregation of copper oxide formed in the matrix.…”
Section: Gravimetric Analysis Of Corrosion Effectmentioning
confidence: 72%
“…The results observed in H2SO4 media are ascribed to the high aggressive attack of sulphide ions, leading to the disruption of passive films formed on the metal surfaces. However, the corrosion rate is slightly lower than that observed at the earlier stage of immersion, suggesting that the passive films formed on the surface of the experimental samples are stable [17,18]. In the case of alkaline solution, the higher corrosion rate at the initial stage could be due to the segregation of copper oxide formed in the matrix.…”
Section: Gravimetric Analysis Of Corrosion Effectmentioning
confidence: 72%
“…Thermal conductivity of pure aluminium is around 210 W/m k. Addition of a variety of alloying elements like Si, Cu, Mg stay in solid solution distorts the lattice of the Al matrix and reduces the thermal transportation of electrons. On the other hand, Si-rich intermetallic increase with the Si contents and boost the scattering of electrons and phonons [13,26].…”
Section: Age-hardening Behavior Isochronal Ageingmentioning
confidence: 99%