A study on the microstructure development of as-cast Cu-Mn alloys based around the congruent minimum at 34.6 wt % Mn and 873 °C was performed. Initially, this was to evaluate the alloy as an alternative to wide freezing range Pb and Sn bronzes that are plagued with porosity. The shallow minimum and associated narrow freezing ranges around the congruent point result in a completely cellular (non-dendritic) solidification morphology for a composition range ~3 wt % Mn about the congruent composition (C c). The degree of cellular solidification was found to depend on the mold material. Increased mold conductivity lead to a narrower composition range of complete cellular solidification. By casting alloys of different compositions into a composit...
The 8 mm diameter bars of Cu-Al-Mn shape memory alloys were produced by continuous casting technique...
The 8-mm diameter bars of Cu-Al-Mn shape memory alloys were produced by continuous casting technique...
In this paper, the microstructure of Cu82.3Al8.3Mn9.4 (in wt. %) shape memory alloy after hot and co...
A study on the microstructure development of as-cast Cu-Mn alloys based around the congruent minimum...
A Cu based shape memory alloy (Cu-Al-Ni) having a composition 83% Cu, 14% Al, 3% Ni, was developed a...
In this work are shown properties of continuously casted Cu – 9.1Al alloy before and after heat trea...
Aluminium bronzes of the complex type produced by the addition of Fe, Ni, and Mn in amounts of the o...
For the past twenty five years, aluminium bronzes of the `complex' type have been produced by the ...
Porous metals have attracted great attention for their functional and structural applications; howev...
The problems of production of copper-nicckel alloys ingots by semicontinuous casting method are anal...
SUBSTANTIAL information is available on the microstru-ctures of high tensile aluminium -bronzes but ...
Aluminum bronze is a complex group of copper-based alloys that may include up to 14% aluminum, but l...
AbstractThe composition of a glass former alloy and the cooling rate are both extremely important to...
The main processing factors that control the solidification of castings, and conse- quently, microst...
The structure and solidification of CoCrCu-X MPEAs with X = Fe, Mn, Ni, Ti, V, FeMn, FeNi, FeTi, FeV...
The 8 mm diameter bars of Cu-Al-Mn shape memory alloys were produced by continuous casting technique...
The 8-mm diameter bars of Cu-Al-Mn shape memory alloys were produced by continuous casting technique...
In this paper, the microstructure of Cu82.3Al8.3Mn9.4 (in wt. %) shape memory alloy after hot and co...
A study on the microstructure development of as-cast Cu-Mn alloys based around the congruent minimum...
A Cu based shape memory alloy (Cu-Al-Ni) having a composition 83% Cu, 14% Al, 3% Ni, was developed a...
In this work are shown properties of continuously casted Cu – 9.1Al alloy before and after heat trea...
Aluminium bronzes of the complex type produced by the addition of Fe, Ni, and Mn in amounts of the o...
For the past twenty five years, aluminium bronzes of the `complex' type have been produced by the ...
Porous metals have attracted great attention for their functional and structural applications; howev...
The problems of production of copper-nicckel alloys ingots by semicontinuous casting method are anal...
SUBSTANTIAL information is available on the microstru-ctures of high tensile aluminium -bronzes but ...
Aluminum bronze is a complex group of copper-based alloys that may include up to 14% aluminum, but l...
AbstractThe composition of a glass former alloy and the cooling rate are both extremely important to...
The main processing factors that control the solidification of castings, and conse- quently, microst...
The structure and solidification of CoCrCu-X MPEAs with X = Fe, Mn, Ni, Ti, V, FeMn, FeNi, FeTi, FeV...
The 8 mm diameter bars of Cu-Al-Mn shape memory alloys were produced by continuous casting technique...
The 8-mm diameter bars of Cu-Al-Mn shape memory alloys were produced by continuous casting technique...
In this paper, the microstructure of Cu82.3Al8.3Mn9.4 (in wt. %) shape memory alloy after hot and co...