Influence of Lanthanum on Solidification, Microstructure, and Mechanical Properties of Eutectic Al-Si Piston Alloy

被引:0
作者
R. Ahmad
M. B. A. Asmael
机构
[1] Universiti Tun Hussein Onn Malaysia,Department of Manufacturing and Industrial Engineering, Faculty of Mechanical and Manufacturing Engineering
来源
Journal of Materials Engineering and Performance | 2016年 / 25卷
关键词
alloys; lanthanum; mechanical properties; microstructure; thermal analysis;
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中图分类号
学科分类号
摘要
The effects of Lanthanum (La) concentration on the solidification parameters of the α-Al, Al-Si, and Al-Cu phases and on the microstructure, tensile, and hardness properties of eutectic Al-Si-Cu-Mg alloy were systematically investigated. The solidification parameters were examined using computer-aided cooling curve thermal analysis (CA-CCTA). The cooling curve and microstructure analysis showed that La altered the Si structure. The nucleation and growth temperatures of eutectic Si decreased when 0.3 wt.% La was added, and a high depression temperature was obtained with 1.0 wt.% La. High amounts of La considerably modified the Si structure and decreased the area and aspect ratio by 69.9 and 51%, respectively. The thermal analysis result recorded a faster freezing time with the La addition and a 36% alteration in the secondary dendrite arm spacing. Two secondary or ternary La-rich intermetallic phases were formed with needle- and plate-like structures. Furthermore, the mechanical properties were investigated by hardness and tensile tests with different La concentrations. The addition of small amounts of La (0.1 wt.%) significantly improved the ultimate tensile strength and quality index of the Al-Si-Cu-Mg alloy. In addition, the hardness value of Al-11Si-Cu increased by 7-8% with the increasing amount of La added.
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页码:2799 / 2813
页数:14
相关论文
共 209 条
[1]  
Rios CT(2003)Intermetallic Compounds in the Al-Si-Cu System Acta Microsc 12 77-81
[2]  
Caram R(2003)Evaluation of the Effects of Variations in Chemical Composition on the Quality of Al-Si-Mg, Al-Cu, and Al-Zn-Mg Cast Aluminum Alloys J. Mater. Eng. Perform. 12 196-205
[3]  
Bolfarini C(2011)Eutectic Al-Si-Cu-Fe-Mn Alloys with Enhanced Mechanical Properties at Room and Elevated Temperature Mater. Des. 32 4333-4340
[4]  
Alexopoulos N(2011)Thermal Analysis and Microscopic Characterization of the Piston Alloy AlSi13Cu4Ni2Mg Intermetallics 19 486-492
[5]  
Pantelakis SG(2005)Influence of Silicon Morphology and Mechanical Properties of Piston Alloys Mater. Manuf. Process. 20 777-791
[6]  
Wang E(2007)The Effect of Fe-Rich Intermetallics on the Weibull Distribution of Tensile Properties in a Cast Al-5 Pct Si-3 Pct Cu-1 Pct Fe-0.3 Pct Mg Alloy Metall. Mater. Trans. A 38 659-670
[7]  
Hui X(1978)Rare-Earth Additions to Aluminum-Silicon Alloys Castings 24 37-41
[8]  
Chen G(1985)An Assessment of the Role of Rare Earth in the Eutectic Modification of Cast Aluminum-Silicon Alloys AFS Trans. 93 533-544
[9]  
Manasijevic S(1996)A Study of the Influence of Mischmetal Additions to Al-7Si-0.3 Mg (LM 25/356) Alloy Metall. Mater. Trans. A 27 1283-1292
[10]  
Radisa R(2009)Effect of Trace La Addition on the Microstructures and Mechanical Properties of A356 (Al-7Si-0.35 Mg) Aluminum Alloys J. Alloys Compd. 487 157-162