Materials Sciences and Applications

Materials Sciences and Applications

ISSN Print: 2153-117X
ISSN Online: 2153-1188
www.scirp.net/journal/msa
E-mail: [email protected]
"Precipitation Kinetics and Mechanism in Cu-7 wt% Ag Alloy"
written by Djamel Hamana, Mohamed Hachouf, Leila Boumaza, Zine El Abidine Biskri,
published by Materials Sciences and Applications, Vol.2 No.7, 2011
has been cited by the following article(s):
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[3] Suppression of discontinuous precipitation and strength improvement by Sc doping in Cu-6 wt% Ag alloys
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[5] The effect of silver coated copper particle content on the properties of novel Cu-Ag alloys prepared by hot pressing method
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[6] Evolution of microstructure and properties of Cu-4.5 wt.% Ag alloy prepared by vacuum horizontal continuous casting in solid solution and aging treatment
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[7] Microstructure and properties of Cu-2Ag alloy sheet prepared by 'Upward+ Thermomechanical Treatment'
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[8] Calorimetric Effects in the Structural and Phase Transitions of Metals and Alloys
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[9] Калориметрические эффекты при структурно-фазовых превращениях в металлах и сплавах
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[10] Improvement of properties in Cu–Ag composites by doping induced microstructural refinement
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[11] รายงาน การ วิจัย อิทธิพล ของ การ แปรรูป พลาสติก ต่อ การ เปลี่ยนแปลง การ กระจาย ตัว ของ ขนาด ของ ตะกอน ของแข็ง เงิน และ สมบัติ ของ โลหะ ผสม ทองแดง-เงิน-เซอร์โคเนียม
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[12] Effect of Bi addition on precipitation and dissolution in Cu–9at% In and Cu–5at% Sb alloys
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[13] Decomposition of Supersaturated Solid Solution during Non-isothermal Aging and Its Effect on the Physical Properties and Microstructure of the Ag-Cu7. 5 Alloy
Journal of Materials Engineering and Performance, 2019
[14] Cold Spray Manufacturing for Structural Materials for High Field Magnet Production
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[15] THE EFFECT OF Ag PRECIPITATES ON STRENGTH AND DUCTILITY OF CuAgZr ALLOY.
Suranaree Journal of Science & Technology, 2017
[16] Co-Precipitation, Strength and Electrical Resistivity of Cu–26 wt% Ag–0.1 wt% Fe Alloy
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[17] Simultaneously increasing strength and electrical conductivity in nanostructured Cu–Ag composite
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[18] On the mechanical and electrical properties of Copper-Silver and Copper-Silver-Zirconium alloys deposits manufactured by cold spray
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[19] Mechanical Properties of Cu-0.1 Ag Alloys Deposited by Cold Spray with Various Powder Feed Rate and Heat Treatment
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[20] Precipitation and dissolution of Ag in ageing hypoeutectic alloys
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[21] Study of the non-isothermal microstructural evolution of deformed Cu-15wt.% In and Cu-9wt.% Sb alloys by means of X-ray diffraction and dilatometry
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[22] Effect of cold work, second phase precipitation and heat treatments on the mechanical properties of copper–silver alloys manufactured by cold spray
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[23] Precipitation and dissolution–grains growth effects and kinetics during non-isothermal heating of deformed Cu–7 mass% Ag alloy
Journal of Thermal Analysis and Calorimetry, 2015
[24] Study of the non-isothermal microstructural evolution of deformed Cu–15 wt.% In and Cu–9 wt.% Sb alloys by means of X-ray diffraction and dilatometry
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[25] Étude des alliages binaires Cu-Ag, Cu-Sb et Cu-In et de l'effet de l'addition du bismuth
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[26] Microstructure and properties of nanostructured Cu28 wt% Ag microcomposite deformed after solidifying under a high magnetic field
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[27] Dynamic recrystallisation and precipitation behaviour of high strength and highly conducting Cu–Ag–Zr-alloys
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[28] Microstructure and Properties of Nanostructured Cu28wt% Ag Microcomposite Deformed after Solidifying under a High Magnetic Field
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[29] รายงาน การ วิจัย อิทธิพล ของ การ แปรรูป พลาสติก ต่อ การ เปลี่ยนแปลง การ กระจาย ตัว ของ ขนาด ของ ตะกอน ของแข็ง เงิน และ สมบัติ ของ โลหะ ผสม ทองแดง-เงิน …
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