Javascript must be enabled to continue!
Hot isostatic pressing induced precipitation strengthening at room and high temperature of Ni-Fe-Cr-Al-V high-entropy alloy manufactured by laser powder bed fusion
View through CrossRef
The highly adjustable properties of high-entropy alloys (HEAs) offer great potential for developing superior materials for critical structural applications in high-temperature conditions. In this study, Ni-Fe-Cr-Al-V HEA was manufactured by laser powder bed fusion, which has a unique microstructure composed of dislocation substructure and Face-centered cubic + L12 coherent structure and achieves the desired strength-ductility combination. Hot isostatic pressing post-treatment was applied on the laser powder bed fusion-processed HEA to further improve the relative density and optimize the mechanical properties. During the hot isostatic pressing process, the precipitation of L12 and B2 phases can be ascribed to the precipitation modes dominated by continuous precipitation and discontinuous precipitation, respectively. With the tensile deformation temperature increasing from 773-1,173 K, the softening degree of HEA increases continuously, and the dominant deformation mechanism evolves from intragranular dislocation slip to grain boundary sliding. At temperatures below 773 K, precipitation strengthening significantly improves tensile strength and ductility. At 1,173 K, the grain boundary strength decreases and grain boundary area increases, which promotes grain boundary sliding and contributes to plastic deformation, resulting in significant softening.
OAE Publishing Inc.
Title: Hot isostatic pressing induced precipitation strengthening at room and high temperature of Ni-Fe-Cr-Al-V high-entropy alloy manufactured by laser powder bed fusion
Description:
The highly adjustable properties of high-entropy alloys (HEAs) offer great potential for developing superior materials for critical structural applications in high-temperature conditions.
In this study, Ni-Fe-Cr-Al-V HEA was manufactured by laser powder bed fusion, which has a unique microstructure composed of dislocation substructure and Face-centered cubic + L12 coherent structure and achieves the desired strength-ductility combination.
Hot isostatic pressing post-treatment was applied on the laser powder bed fusion-processed HEA to further improve the relative density and optimize the mechanical properties.
During the hot isostatic pressing process, the precipitation of L12 and B2 phases can be ascribed to the precipitation modes dominated by continuous precipitation and discontinuous precipitation, respectively.
With the tensile deformation temperature increasing from 773-1,173 K, the softening degree of HEA increases continuously, and the dominant deformation mechanism evolves from intragranular dislocation slip to grain boundary sliding.
At temperatures below 773 K, precipitation strengthening significantly improves tensile strength and ductility.
At 1,173 K, the grain boundary strength decreases and grain boundary area increases, which promotes grain boundary sliding and contributes to plastic deformation, resulting in significant softening.
Related Results
The Nuclear Fusion Award
The Nuclear Fusion Award
The Nuclear Fusion Award ceremony for 2009 and 2010 award winners was held during the 23rd IAEA Fusion Energy Conference in Daejeon. This time, both 2009 and 2010 award winners w...
How does bed load transport influence the longitudinal profile of reservoir sedimentation?
How does bed load transport influence the longitudinal profile of reservoir sedimentation?
The construction of the reservoir has destroyed the equilibrium of the natural river and promoted the siltation of a large amount of sediment in the reservoir. The longitudinal pro...
Powder Surface Roughness as Proxy for Bed Density in Powder Bed Fusion of Polymers
Powder Surface Roughness as Proxy for Bed Density in Powder Bed Fusion of Polymers
Powder bed fusion of polymers is becoming increasingly adopted by a variety of industries to tailor the strength, weight and functionality of end-use products. To meet the high sta...
Dual Laser Method for Experimentally Weathering Planetary Regoliths
Dual Laser Method for Experimentally Weathering Planetary Regoliths
<p>Experimental space weathering&#8212;whether laser, thermal reduction, impact, or ion based&#8212;is a critical endeavor to accurately interpret spa...
Enhanced inherent strain modelling for powder-based metal additive manufacturing
Enhanced inherent strain modelling for powder-based metal additive manufacturing
(English) Metal additive manufacturing (MAM), particularly powder bed fusion using a laser beam (PBF-LB), has transformed manufacturing by enabling the production of intricate and ...
Double resonant sum-frequency generation in an external-cavity under high-efficiency frequency conversion
Double resonant sum-frequency generation in an external-cavity under high-efficiency frequency conversion
In recent years, more than 90% of the signal laser power can be up-converted based on the high-efficiency double resonant external cavity sum-frequency generation (SFG), especially...
15th World Conference on Titanium Chapter 2: Aerospace Applications
15th World Conference on Titanium Chapter 2: Aerospace Applications
RECENT ADVANCES IN TITANIUM ALLOY EXTRUSIONS FOR AEROSPACE APPLICATIONS
TECHNOLOGY CAPABILITY STUDY OF LASER POWDER BED FUSION TO PRODUCE LARGE CRITICAL AEROSPACE S...
Experimental Comparison of Manufacturing Parameters in Automotive Friction Materials
Experimental Comparison of Manufacturing Parameters in Automotive Friction Materials
In this study, a fixed automotive friction material content was determined and the mechanical and tribological effects of manufacturing parameters on friction materials were invest...

