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Design Solutes to Achieve Columnar-to-Equiaxed Transition and Grain Refinement in Cast Multi-principal-element Alloys
by
Gao, N
, Wang, Y. S
, Fan, Z. T
, Yao, J. Q
, Yang, Y
, Yin, Z. H
, Liu, X. W
in
Alloying elements
/ Alloys
/ Binary alloys
/ Dilution
/ Entropy
/ Grain growth
/ Grain refinement
/ Grain size
/ High entropy alloys
/ Mathematical analysis
/ Parameters
/ Phase diagrams
/ Solidification
/ Solids
/ Solvents
/ Supercooling
/ Titanium
/ Vanadium
2024
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Design Solutes to Achieve Columnar-to-Equiaxed Transition and Grain Refinement in Cast Multi-principal-element Alloys
by
Gao, N
, Wang, Y. S
, Fan, Z. T
, Yao, J. Q
, Yang, Y
, Yin, Z. H
, Liu, X. W
in
Alloying elements
/ Alloys
/ Binary alloys
/ Dilution
/ Entropy
/ Grain growth
/ Grain refinement
/ Grain size
/ High entropy alloys
/ Mathematical analysis
/ Parameters
/ Phase diagrams
/ Solidification
/ Solids
/ Solvents
/ Supercooling
/ Titanium
/ Vanadium
2024
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
Design Solutes to Achieve Columnar-to-Equiaxed Transition and Grain Refinement in Cast Multi-principal-element Alloys
by
Gao, N
, Wang, Y. S
, Fan, Z. T
, Yao, J. Q
, Yang, Y
, Yin, Z. H
, Liu, X. W
in
Alloying elements
/ Alloys
/ Binary alloys
/ Dilution
/ Entropy
/ Grain growth
/ Grain refinement
/ Grain size
/ High entropy alloys
/ Mathematical analysis
/ Parameters
/ Phase diagrams
/ Solidification
/ Solids
/ Solvents
/ Supercooling
/ Titanium
/ Vanadium
2024
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Design Solutes to Achieve Columnar-to-Equiaxed Transition and Grain Refinement in Cast Multi-principal-element Alloys
Journal Article
Design Solutes to Achieve Columnar-to-Equiaxed Transition and Grain Refinement in Cast Multi-principal-element Alloys
2024
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Overview
The multi-principal-element alloys (MPEAs), also referred to as high-entropy alloys (HEAs), have attracted extensive attention during the last decade and a half due to their unique and excellent properties. However, many MPEAs show coarse and anisotropic columnar grains in the as-cast state. While constitutional supercooling (CS)-driven parameters have been widely used to evaluate and predict the effect of solutes on columnar-to-equiaxed transition (CET) and grain refinement of diluted binary alloys, similar studies are lacking on MPEAs. Due to the multiple solute elements (solutes) and their high concentrations, the CS-driven parameters for MPEAs are different from those proposed for diluted binary alloys. Here, we derived the CS-driven parameters, including undercooling parameter and growth restriction factor, for MPEAs based on their physical significances, with the help of calculated phase diagrams. The calculated CS-driven parameters were then used to predict the effect of a solute on CET and grain refinement in NiCoFeCr MPEAs. Additional alloying solutes Nb, Ti, and V in the NiCoFeCr MPEA were also evaluated for their different CS-driven characteristics. The grain size of the as-solidified microstructures of NiCoFeCr with and without Nb, Ti, and V were compared and interpreted with the predicted tendency of the CS-driven parameters.
Publisher
Springer Nature B.V
Subject
MBRLCatalogueRelatedBooks
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