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Study on the Electric Current Effects on the Microstructure and Properties of W-Mo-Cu Alloy Under the Action of Electric Field
by
Feng, Keqin
, Xiao, Yaohong
, Liu, Yanfang
, Zhou, Hongling
in
Alloys
/ Chemistry/Food Science
/ Copper
/ Copper base alloys
/ Densification
/ Density
/ Earth Sciences
/ Electric currents
/ Electric fields
/ Engineering
/ Environment
/ Intermetallic compounds
/ Measurement techniques
/ Microstructure
/ Molybdenum
/ Particle size
/ Phase transitions
/ Physics
/ Plasma sintering
/ Point defects
/ Powder Materials and Processing for Extreme Environments
/ Powder metallurgy
/ Raw materials
/ Scanning electron microscopy
/ Sinterability
/ Sintering (powder metallurgy)
/ Solid solutions
2023
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Study on the Electric Current Effects on the Microstructure and Properties of W-Mo-Cu Alloy Under the Action of Electric Field
by
Feng, Keqin
, Xiao, Yaohong
, Liu, Yanfang
, Zhou, Hongling
in
Alloys
/ Chemistry/Food Science
/ Copper
/ Copper base alloys
/ Densification
/ Density
/ Earth Sciences
/ Electric currents
/ Electric fields
/ Engineering
/ Environment
/ Intermetallic compounds
/ Measurement techniques
/ Microstructure
/ Molybdenum
/ Particle size
/ Phase transitions
/ Physics
/ Plasma sintering
/ Point defects
/ Powder Materials and Processing for Extreme Environments
/ Powder metallurgy
/ Raw materials
/ Scanning electron microscopy
/ Sinterability
/ Sintering (powder metallurgy)
/ Solid solutions
2023
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Study on the Electric Current Effects on the Microstructure and Properties of W-Mo-Cu Alloy Under the Action of Electric Field
by
Feng, Keqin
, Xiao, Yaohong
, Liu, Yanfang
, Zhou, Hongling
in
Alloys
/ Chemistry/Food Science
/ Copper
/ Copper base alloys
/ Densification
/ Density
/ Earth Sciences
/ Electric currents
/ Electric fields
/ Engineering
/ Environment
/ Intermetallic compounds
/ Measurement techniques
/ Microstructure
/ Molybdenum
/ Particle size
/ Phase transitions
/ Physics
/ Plasma sintering
/ Point defects
/ Powder Materials and Processing for Extreme Environments
/ Powder metallurgy
/ Raw materials
/ Scanning electron microscopy
/ Sinterability
/ Sintering (powder metallurgy)
/ Solid solutions
2023
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Study on the Electric Current Effects on the Microstructure and Properties of W-Mo-Cu Alloy Under the Action of Electric Field
Journal Article
Study on the Electric Current Effects on the Microstructure and Properties of W-Mo-Cu Alloy Under the Action of Electric Field
2023
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Overview
In this study, electric current effects on the densification, microstructure, and properties of W-Mo-Cu alloy fabricated by large current electric field sintering (LCS) were investigated. The apparent sintering activation energy for densification (ASAED) was calculated to decrease from 72.01 kJ/mol to 24.02 kJ/mol with the increased electric current from 30,000 A to 50,000 A, thereby enhancing the sinterability of the W-Mo-Cu mixed powder and improving the densification of W-Mo-Cu alloy. The experimental results also proved that the elevated electric current optimized the microstructure and properties of the W-Mo-Cu alloy. Moreover, XRD and TEM results suggested that electric current had a significant effect on the phase transformation of the alloy, while the varying electric current did not affect the phase type. Besides W, Mo, and Cu phases, the W-Mo-Cu alloy prepared by LCS contains three new phases, i.e., Cu
0.4
W
0.6
intermetallic compound, Mo-Cu solid solution, and W-Mo solid solution, none of which are present in an equilibrium state.
Publisher
Springer US,Springer Nature B.V
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