AbstractThe phase equilibria of the ternary system In–Ni–Sn were investigated experimentally at 700 °C using X-ray diffraction (XRD) and scanning electron microscopy (SEM) including electron micro probe analysis (EMPA) and energy dispersive X-ray spectroscopy (EDX). A corresponding isothermal section was established based on these results. This particular temperature was chosen because it allowed obtaining reliable results within reasonable time. The existence of the ternary phase InNi6Sn5 was confirmed whereas the ternary compound In2NiSn, reported earlier in literature, was found to be part of a large solid solution field based on binary InNi. The ternary solubility of the binary phases was established, and continuous solid solutions were...
Phase equilibria of the system Ti-A1-Sn at 900°C were investigated and are presented in form of an i...
Due to the use of phosphorus-containing nickel substrates in microelectronics, understanding of thei...
In this paper we map out the 13001C isothermal section in the Ti–In–C ternary system. Two ternary co...
The phase equilibria of the ternary system In–Ni–Sn were investigated experimentally at 700 °C using...
AbstractThe phase equilibria of the ternary system In–Ni–Sn were investigated experimentally at 700 ...
Phase equilibria in the In–Pd–Sn system were investigated by a combination of key experiments and th...
Phase equilibria in the In–Pd–Sn system were investigated by a combination of key experiments and th...
AbstractTernary Sn–Zn–Ni alloys were prepared and equilibrated at 250 °C for 4–15 weeks. The phases ...
AbstractIn this work three complete isothermal sections of the Ni–Sn–Zn system at 700, 800 and 900 °...
The phase equilibria of the Ni-Sn-Zn ternary system were experimentally investigated at 873 K in the...
The goal of this work was to study phase relations in the ternary Si–Sn–As system: to establish cros...
[[abstract]]c2002 Springer - The In-Sn-Ni alloys of various compositions were prepared and annealed ...
A complete understanding of the solid-state phase equilibria of the ternary Al⁻Sn⁻Y syst...
[[abstract]]©2004 Elsevier - There are no previous phase equilibria studies of the Sn-Ag-Ni ternary ...
Phase equilibria of the system Ti-A1-Sn at 900°C were investigated and are presented in form of an i...
Phase equilibria of the system Ti-A1-Sn at 900°C were investigated and are presented in form of an i...
Due to the use of phosphorus-containing nickel substrates in microelectronics, understanding of thei...
In this paper we map out the 13001C isothermal section in the Ti–In–C ternary system. Two ternary co...
The phase equilibria of the ternary system In–Ni–Sn were investigated experimentally at 700 °C using...
AbstractThe phase equilibria of the ternary system In–Ni–Sn were investigated experimentally at 700 ...
Phase equilibria in the In–Pd–Sn system were investigated by a combination of key experiments and th...
Phase equilibria in the In–Pd–Sn system were investigated by a combination of key experiments and th...
AbstractTernary Sn–Zn–Ni alloys were prepared and equilibrated at 250 °C for 4–15 weeks. The phases ...
AbstractIn this work three complete isothermal sections of the Ni–Sn–Zn system at 700, 800 and 900 °...
The phase equilibria of the Ni-Sn-Zn ternary system were experimentally investigated at 873 K in the...
The goal of this work was to study phase relations in the ternary Si–Sn–As system: to establish cros...
[[abstract]]c2002 Springer - The In-Sn-Ni alloys of various compositions were prepared and annealed ...
A complete understanding of the solid-state phase equilibria of the ternary Al⁻Sn⁻Y syst...
[[abstract]]©2004 Elsevier - There are no previous phase equilibria studies of the Sn-Ag-Ni ternary ...
Phase equilibria of the system Ti-A1-Sn at 900°C were investigated and are presented in form of an i...
Phase equilibria of the system Ti-A1-Sn at 900°C were investigated and are presented in form of an i...
Due to the use of phosphorus-containing nickel substrates in microelectronics, understanding of thei...
In this paper we map out the 13001C isothermal section in the Ti–In–C ternary system. Two ternary co...