Predictive Analysis of Water Wettability and Corrosion Resistance of Secondary AlSi10MnMg(Fe) Alloy Manufactured by Vacuum-Assisted High Pressure Die Casting

被引:2
作者
Kordijazi, Amir [1 ]
Behera, Swaroop K. [2 ]
Jamet, Arthur [3 ]
Fernandez-Calvo, Ana Isabel [4 ]
Rohatgi, Pradeep [5 ]
机构
[1] Univ Southern Maine, Dept Engn, Gorham, ME 04038 USA
[2] Univ Wisconsin, Dept Mat Sci & Engn, Milwaukee, WI 53211 USA
[3] Univ Nantes, Dept Mech Engn, F-44035 Nantes, France
[4] IK4 AZTERLAN, Aliendalde Auzunea 6, Durango 48200, Spain
[5] Univ Wisconsin, Dept Mat Sci & Engn, Milwaukee, WI 53211 USA
基金
美国国家科学基金会;
关键词
high pressure die casting; secondary alloy; contact angle; surface roughness; corrosion; predictive analysis; artificial neural network; CONTACT ANGLES; MECHANICAL-PROPERTIES; ALUMINUM; MICROSTRUCTURE; SURFACES;
D O I
10.1007/s40962-024-01327-3
中图分类号
TF [冶金工业];
学科分类号
0806 ;
摘要
In the present study, a predictive analysis was performed to investigate the effect of droplet size, section size and type of the primary and secondary AlSi10MnMg alloys manufactured by vacuum-assisted high pressure die casting on wettability of the cast samples with water, since wettability influences corrosion resistance. Additionally, corrosion resistance of samples was studied using a linear polarization experiment. Contact angle (CA) measurements were performed on the specimens using a goniometer. An Artificial Neural Network was then developed to predict the contact angle values as a function of the predictor variables. The developed model was able to predict unseen CA values with excellent accuracy with the Pearson correlation coefficient of 0.96 between the predicted and observed CA. The modeling results show that the type of alloy (primary or secondary) is the most significant factor affecting CA, where almost 80% of CA variation is the result of changing the type of alloy. Confocal microscopy images demonstrate that this is attributed to the change in the heterogeneity of the surface, which affects contact angle values. The corrosion studies reveal that corrosion resistance is dependent on the type of alloy and surface roughness. The primary alloy possesses more corrosion resistance than the secondary alloy. This is due to the larger fraction of intermetallic compounds in the microstructure of the secondary alloy, which serve as galvanic sites in the corrosion reaction accelerating corrosion rate. Moreover, the non-uniformity induced by larger surface roughness is detrimental to the corrosion resistance of the samples. These results indicate that the data-driven approach used in this research is very promising not only to predict the performance, but also to optimize and design high-performance corrosion resistant surfaces of cast aluminum alloys.
引用
收藏
页码:75 / 85
页数:11
相关论文
共 35 条
[1]  
Ahn Cheolmin, 2019, [Journal of Advanced Marine Engineering and Technology, 한국마린엔지니어링학회지], V43, P618, DOI [10.5916/jkosme.2019.43.8.618, 10.5916/jkosme.2019.43.8.618]
[2]  
Almansour A, 2015, INT J ACAD SCI RES, V3, P37
[3]  
ASTM G., 2004, STANDARD PRACTICE CA
[4]   Evaluation of the corrosion resistance of a new AlSi10MnMg(Fe) secondary alloy [J].
Berlanga, C. ;
Bakedano, A. ;
Perez de Ciriza, A. ;
Rivero, P. J. ;
Mendez, S. ;
Rodriguez, R. ;
Niklas, A. .
MATERIALS TODAY-PROCEEDINGS, 2019, 10 :312-318
[5]  
Bhushan B., 2013, Introduction to Tribology, DOI [10.1002/9781118403259, DOI 10.1002/9781118403259]
[6]   Electrochemical characteristics of intermetallic phases in aluminum alloys - An experimental survey and discussion [J].
Birbilis, N ;
Buchheit, RG .
JOURNAL OF THE ELECTROCHEMICAL SOCIETY, 2005, 152 (04) :B140-B151
[7]   Wettability of porous surfaces. [J].
Cassie, ABD ;
Baxter, S .
TRANSACTIONS OF THE FARADAY SOCIETY, 1944, 40 :0546-0550
[8]   A review of techniques for measurement of contact angles and their applicability on mineral surfaces [J].
Chau, T. T. .
MINERALS ENGINEERING, 2009, 22 (03) :213-219
[9]   An innovative process for dispersion of graphene nanoparticles and nickel spheres in A356 alloy using pressure infiltration technique [J].
Das, Sourav ;
Kordijazi, Amir ;
Akbarzadeh, Omid ;
Rohatgi, Pradeep K. .
ENGINEERING REPORTS, 2020, 2 (01)
[10]  
Hejazi V., 2014, WETTING SUPERHYDROPH