Materials Sciences and Applications

Materials Sciences and Applications

ISSN Print: 2153-117X
ISSN Online: 2153-1188
www.scirp.org/journal/msa
E-mail: msa@scirp.org
"On the Role of Copper and Cooling Rates on the Microstructure, Defect Formations and Mechanical Properties of Al-Si-Mg Alloys"
written by Salem Seifeddine, Emma Sjölander, Toni Bogdanoff,
published by Materials Sciences and Applications, Vol.4 No.3, 2013
has been cited by the following article(s):
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[1] Influence of Solutionising Time on the Dendrite Morphology and Mechanical Behaviour of Al-Si-Mg-Ni Hypoeutectic Alloy
Silicon, 2022
[2] Effects of Remelting on Variations in Composition, Microstructure, and Hardness Property of Binary Al-Si Alloys
Journal of Materials Engineering and Performance, 2022
[3] Effects of Temperature on the Evolution of Yield Surface and Stress Asymmetry in A356–T7 Cast Aluminium Alloy. Materials 2021, 14, 7898
2021
[4] Characterization of microstructural and mechanical properties of high-pressure die-cast en ac 46000 alloy
La Metallurgia Italiana, 2021
[5] Investigating the role of Cu, Zr and V on the evolution of microstructure and properties of Al-Si-Mg cast alloys
2021
[6] The complex interaction between microstructural features and crack evolution during cyclic testing in heat-treated Al–Si–Mg–Cu cast alloys
Materials Science and …, 2021
[7] Effects of Temperature on the Evolution of Yield Surface and Stress Asymmetry in A356–T7 Cast Aluminium Alloy
Materials, 2021
[8] Effect of Strain Rate on the Deformation Behaviour of A356-T7 Cast Aluminium Alloys at Elevated Temperatures
2020
[9] Structural Features and Possibilities for Increasing the Operating Temperature of Aluminum Alloys
Bulgarian Society for NDT International Journal “NDT Days”, 2020
[10] Effects of Cu Addition on Age Hardening Response of Al-7Si-4Mg Alloys at 130° C
2020
[11] THE influence of copper addition on crack initiation and propagation in an Al–Si–Mg alloy during cyclic testing
2020
[12] Effect of Adding Degassing (Ar-N2) on Hardness and Microstructure of Recycling Aluminum Cans
2020
[13] Copper-Coated Graphene Nanoplatelets-Reinforced Al–Si Alloy Matrix Composites Fabricated by Stir Casting Method
2020
[14] Étude de la coulée d'un alliage d'aluminium
2020
[15] Comparative study on the microstructures and hardness of the AlSi10. 6CuMg alloy produced by sand casting and high pressure die casting
2019
[16] Influence of Cu addition on the heat treatment response of A356 foundry alloy
2019
[17] Influence of microstructure and porosity on the fracture toughness of Al-Si-Mg alloy
2019
[18] Deformation behaviour of A356-T7 cast aluminium alloys used in high specific power IC engine cylinder heads
2019
[19] Effects of heat treatment and addition of small amounts of Cu and Mg on the microstructure and mechanical properties of Al-Si-Cu and Al-Si-Mg cast alloys
2019
[20] Corrosion performance of high pressure die-cast Al-6Si-3Ni and Al-6Si-3Ni-2Cu alloys in aqueous NaCl solution
2018
[21] SHS-Produced Al–Ti–B Master Alloys: Performance in Commercial Al Alloy
2018
[22] INNOVATIVE A METHOD TO STUDY THE DIFFERENCE IN SOLIDIFICATION BETWEEN CENTER AND EDGE OF RECYCLED ALUMINUM USING ARTIFICIAL NEURAL NETWORK
American Journal of Research, 2018
[23] Effect of particle shape and size distribution on the dissolution behavior of Al2Cu particles during homogenization in aluminum casting alloy Al-Si-Cu-Mg
Journal of Materials Processing Technology, 2018
[24] How Slight Solidification Rate Variations within Cast Plate Affect Mechanical Response: A Study on As-Cast A356 Alloy with Cu Additions
Advances in Materials Science and Engineering, 2018
[25] Corrosion studies of high pressure die-cast Al-Si-Ni and Al-Si-Ni-Cu alloys
Journal of Alloys and Compounds, 2018
[26] On the role of internal defects in the fatigue damage process of a cast Al-Si-Cu alloy
International Journal of Fatigue, 2018
[27] AlSi5Mg0. 3 Alloy for the Manufacture of Automotive Wheels
International Journal of Metalcasting, 2017
[28] AlSi10Mg (Fe) painevalualumiinin lämmönjohtavuus
2017
[29] Modeling homogenization behavior of Al-Si-Cu-Mg aluminum alloy
Materials & Design, 2017
[30] Wpływ charakterystyk spawalniczych łuku na właściwości napoin
Welding Technology Review, 2017
[31] Dilatometric and calorimetric studies on the phase transformations of the A380-type aluminum alloy during solidification and heat treatment
Journal of Thermal Analysis and Calorimetry, 2017
[32] The influence of the characteristics of welding arc on the properties of the padding welds
Welding Technology Review, 2017
[33] Tailoring Al-7Si-0.3 Mg cast alloy properties to represent HPDC tensile and fatigue behaviour in component prototypes
Thesis, 2016
[34] Modelling Dissolution of Precipitate Phases During Homogenization of Aluminum Alloy B319
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[35] Metal Casting
Handbook of Manufacturing Engineering and Technology, 2015
[36] TAILORING PROPERTIES TO REPRESENT HPDC TENSILE AND FATIGUE BEHAVIOUR IN ALUMINIUM-SILICON CAST ALLOY PROTOTYPES
Thesis, 2015
[37] Influence of Si and cooling rate on microstructure and mechanical properties of Al–Si–Mg cast alloys
Surface and Interface Analysis, 2015
[38] Preparation and Properties of Composite Materials with Magnesium Matrix and Hydroxy-apatite Reinforcement
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[39] The Effect of Casting Technology on Fe Intermetallic Phases in Al-Si Cast Alloys
2015
[40] Preparation and properties of composite materials with magnesium matrix and Hydroxyapatite reinforcement
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[41] Effects of grain refinement on the microstructure, mechanical properties and reliability of AlSi7Cu3Mg gravity die cast cylinder heads
Metals and Materials International, 2014
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