Microstructure and mechanical properties of Cu-based amorphous alloy/copper composites consolidated by spark plasma sintering (SPS) equipment were investigated in this study. Amorphous alloy powders were mixed with 10 to 40 Vol pct of pure Cu powders and were consolidated at 460 degrees C for 0.5 minute under 300 or 700 MPa. The consolidated composites contained Cu particles homogeneously distributed in the amorphous matrix, and showed a considerable plastic strain, whereas their compressive strength was lower than that of the monolithic amorphous alloys. The compressive strength and plastic strain of the composites consolidated under 700 MPa showed 10 to 20 pet and 2 times increases, respectively, over those of the composites consolidated ...
The paper presents the results of research on the production and application of sintered copper matr...
Novel ultrafine grain composites of Cu matrix reinforced with 2-50 wt. % of Ti48Cu39.5Ni10Co2.5 and ...
Shock consolidation of ultrafine copper powders at room temperature for bulk nano/ultrafine structur...
Cu-base amorphous alloy matrix composites were consolidated in a spark plasma sintering (SPS) facili...
This study aims at investigating fracture mechanisms occurring in Cu-based amorphous alloy matrix co...
Novel amorphous/crystalline composites were developed combining the ductile copper matrix with hard ...
Novel amorphous/crystalline composites were developed combining the ductile copper matrix with hard ...
This paper describes the microstructures and nanomechanical properties of copper consolidated of oxi...
This paper describes the microstructures and nanomechanical properties of copper consolidated of oxi...
This study aimed to prepare Zr55Cu30Al10Ni5 bulk amorphous alloys by spark plasma sintering of raw a...
This investigation examines the problem of homogenization in metal matrix composites (MMCs) and the ...
In this study, a composite metal powder mixture using molybdenum and copper powders was consolidated...
Novel ultrafine grain composites of Cu matrix reinforced with 2-50 wt. % of Ti48Cu39.5Ni10Co2.5 and ...
AbstractIn this paper the high-temperature consolidation of bimodal powder mixtures was investigated...
Reactive processing of metals is interesting for materials design and achieving new sets of properti...
The paper presents the results of research on the production and application of sintered copper matr...
Novel ultrafine grain composites of Cu matrix reinforced with 2-50 wt. % of Ti48Cu39.5Ni10Co2.5 and ...
Shock consolidation of ultrafine copper powders at room temperature for bulk nano/ultrafine structur...
Cu-base amorphous alloy matrix composites were consolidated in a spark plasma sintering (SPS) facili...
This study aims at investigating fracture mechanisms occurring in Cu-based amorphous alloy matrix co...
Novel amorphous/crystalline composites were developed combining the ductile copper matrix with hard ...
Novel amorphous/crystalline composites were developed combining the ductile copper matrix with hard ...
This paper describes the microstructures and nanomechanical properties of copper consolidated of oxi...
This paper describes the microstructures and nanomechanical properties of copper consolidated of oxi...
This study aimed to prepare Zr55Cu30Al10Ni5 bulk amorphous alloys by spark plasma sintering of raw a...
This investigation examines the problem of homogenization in metal matrix composites (MMCs) and the ...
In this study, a composite metal powder mixture using molybdenum and copper powders was consolidated...
Novel ultrafine grain composites of Cu matrix reinforced with 2-50 wt. % of Ti48Cu39.5Ni10Co2.5 and ...
AbstractIn this paper the high-temperature consolidation of bimodal powder mixtures was investigated...
Reactive processing of metals is interesting for materials design and achieving new sets of properti...
The paper presents the results of research on the production and application of sintered copper matr...
Novel ultrafine grain composites of Cu matrix reinforced with 2-50 wt. % of Ti48Cu39.5Ni10Co2.5 and ...
Shock consolidation of ultrafine copper powders at room temperature for bulk nano/ultrafine structur...