Crossref Citations
This article has been cited by the following publications. This list is generated based on data provided by
Crossref.
Ipser, H.
Flandorfer, H.
Luef, Ch.
Schmetterer, C.
and
Saeed, U.
2006.
Thermodynamics and phase diagrams of lead-free solder materials.
Journal of Materials Science: Materials in Electronics,
Vol. 18,
Issue. 1-3,
p.
3.
Liu, X. J.
Wang, C. P.
Gao, F.
Ohnuma, I.
and
Ishida, K.
2007.
Thermodynamic Calculation of Phase Equilibria in the Sn-Ag-Cu-Ni-Au System.
Journal of Electronic Materials,
Vol. 36,
Issue. 11,
p.
1429.
Schmetterer, Clemens
Flandorfer, Hans
Richter, Klaus W.
and
Ipser, Herbert
2007.
Phase Equilibria in the Ag-Ni-Sn System: Isothermal Sections.
Journal of Electronic Materials,
Vol. 36,
Issue. 11,
p.
1415.
Ipser, H.
Flandorfer, H.
Luef, Ch.
Schmetterer, C.
and
Saeed, U.
2007.
Lead-Free Electronic Solders.
p.
3.
Saeed, U.
Flandorfer, H.
and
Ipser, H.
2007.
Lead-free solders: Enthalpies of mixing of liquid Ag–Cu–Ni–Sn alloys.
Journal of Materials Research,
Vol. 22,
Issue. 11,
p.
3218.
Liu, Xing Jun
Gao, Feng
Wang, Cui Ping
and
Ishida, Kiyohito
2008.
Thermodynamic Assessments of the Ag-Ni Binary and Ag-Cu-Ni Ternary Systems.
Journal of Electronic Materials,
Vol. 37,
Issue. 2,
p.
210.
Gao, F.
Wang, C.P.
Liu, X.J.
and
Ishida, K.
2008.
Thermodynamic Assessment of Phase Equilibria in the Sn-Ag-Ni System with Key Experimental Verification.
Journal of Electronic Materials,
Vol. 37,
Issue. 3,
p.
279.
He, Jie
Jiang, Hongxiang
Chen, Shu
Zhao, Jiuzhou
and
Zhao, Lei
2011.
Liquid phase separation in immiscible Ag–Ni–Nb alloy and formation of crystalline/amorphous composite.
Journal of Non-Crystalline Solids,
Vol. 357,
Issue. 21,
p.
3561.
Janovszky, Dóra
and
Tomolya, Kinga
2014.
Designing Amorphous/Crystalline Composites by Liquid-Liquid Phase Separation.
Materials Science Forum,
Vol. 790-791,
Issue. ,
p.
473.
Janovszky, Dora
Tomolya, Kinga
Sveda, Maria
Sycheva, Anna
and
Kaptay, George
2014.
Effect of Y and Ni addition on liquid immiscibility in Cu–Zr–Ag ternary alloys.
Journal of Alloys and Compounds,
Vol. 615,
Issue. ,
p.
S616.
Hampl, Milan
Pavlyuchkov, Dmytro
and
Watson, Andrew
2015.
Ag-Ni-Sn Ternary Phase Diagram Evaluation.
MSI Eureka,
Vol. 61,
Issue. ,
p.
10.47399.1.0.
Raju, Subramanian
and
Saibaba, Saroja
2016.
Estimation of Enthalpy of Formation of Liquid Transition Metal Alloys: A Modified Prescription Based on Macroscopic Atom Model of Cohesion.
Metallurgical and Materials Transactions A,
Vol. 47,
Issue. 9,
p.
4741.
Czel, Gyorgy
Tomolya, Kinga
Sveda, Maria
Sycheva, Anna
Kristaly, Ferenc
Roosz, Andras
and
Janovszky, Dora
2017.
Synthesis and characterization of Zr-based in situ crystal precipitated and liquid phase separated bulk metallic glass composite.
Journal of Non-Crystalline Solids,
Vol. 458,
Issue. ,
p.
41.
Rajkumar, V. B.
and
Chen, Sinn-wen
2017.
Thermodynamic Modeling of Ag-Ni System Combining Experiments and Molecular Dynamic Simulation.
Journal of Electronic Materials,
Vol. 46,
Issue. 4,
p.
2282.
Fima, Przemyslaw
and
Flandorfer, Hans
2017.
Mixing enthalpies of liquid Bi–Ni and Ag–Bi–Ni alloys.
Thermochimica Acta,
Vol. 657,
Issue. ,
p.
134.
Meschel, S.V.
2020.
A brief history of heat measurements by calorimetry with emphasis on the thermochemistry of metallic and metal-nonmetal compounds.
Calphad,
Vol. 68,
Issue. ,
p.
101714.
Hampl, Milan
Pavlyuchkov, Dmytro
and
Watson, Andrew
2021.
Ag-Ni-Sn Ternary Phase Diagram Evaluation.
MSI Eureka,
Vol. 90,
Issue. ,
p.
10.47399.2.4.
Steinhoff, Michael K.
Holzapfel, Damian M.
Karimi Aghda, Soheil
Neuß, Deborah
Pöllmann, Peter J.
Hans, Marcus
Primetzhofer, Daniel
Schneider, Jochen M.
and
Azina, Clio
2022.
Ag Surface and Bulk Segregations in Sputtered ZrCuAlNi Metallic Glass Thin Films.
Materials,
Vol. 15,
Issue. 5,
p.
1635.
Liao, Lin
Liu, Yanwen
Liu, Shuhong
Jin, Bo
and
Du, Yong
2022.
Thermodynamic Re-assessment of the Ag–Ni–Sn system.
Calphad,
Vol. 79,
Issue. ,
p.
102492.
Shi, Yuchao
Hu, Biao
Jin, Chenggang
Luo, Min
Liu, Shuhong
Du, Yong
and
Hu, Jieqiong
2022.
Experimental investigation and thermodynamic modeling of phase equilibria in the Ag–Ni–Zr ternary system.
Physical Chemistry Chemical Physics,
Vol. 24,
Issue. 36,
p.
22263.