Results 11 to 20 of about 20,999 (282)
Chemical medium-range order in a medium-entropy alloy [PDF]
The existence of chemical medium-range order (CMRO) in high- and medium- entropy alloys remains conjectural. Here the authors show evidences of CMRO by electron diffraction spots of lattice periodicity, observable entities, occupancy of preferential ...
Jing Wang +3 more
doaj +5 more sources
Periodic spinodal decomposition in double–strengthened medium–entropy alloy [PDF]
Achieving an optimal balance between strength and ductility in advanced engineering materials has long been a challenge for researchers. In the field of material strengthening, most approaches that prevent or impede the motion of dislocations involve ...
Hyojin Park +5 more
doaj +4 more sources
MoNbTaV Medium-Entropy Alloy [PDF]
Guided by CALPHAD (Calculation of Phase Diagrams) modeling, the refractory medium-entropy alloy MoNbTaV was synthesized by vacuum arc melting under a high-purity argon atmosphere. A body-centered cubic solid solution phase was experimentally confirmed in
Hongwei Yao +5 more
doaj +2 more sources
Hydrogen-Stabilized ScYNdGd Medium-Entropy Alloy for Hydrogen Storage. [PDF]
The research on the functional properties of medium- and high-entropy alloys (MEAs and HEAs) has been in the spotlight recently. Many significant discoveries have been made lately in hydrogen-based economy-related research where these alloys may be utilized in all of its key sectors: water electrolysis, hydrogen storage, and fuel cell applications ...
Balcerzak M +9 more
europepmc +5 more sources
Segregation-dislocation self-organized structures ductilize a work-hardened medium entropy alloy [PDF]
Dislocations are the intrinsic origin of crystal plasticity. However, initial high-density dislocations in work-hardened materials are commonly asserted to be detrimental to ductility according to textbook strengthening theory.
Bojing Guo +13 more
doaj +2 more sources
Micromechanical behavior of (CoCrNi)94Al3Ti3 medium-entropy alloy
The micromechanical behavior of (CoCrNi)94Al3Ti3 medium-entropy alloy (MEA) with and without Al2O3 nanoparticles was investigated by nanoindentation, microhardness, and microscratch tests.
Ming Liu +5 more
doaj +2 more sources
Zirconium-Modified Medium-Entropy Alloy (TiVNb)85Cr15 for Hydrogen Storage. [PDF]
In this study, we investigate the effect of small amounts of zirconium alloying the medium-entropy alloy (TiVNb)85Cr15, a promising material for hydrogen storage. Alloys with 1, 4, and 7 at.% of Zr were prepared by arc melting and found to be multiphase, comprising at least three phases, indicating that Zr addition does not stabilize a single-phase ...
Saksl K +8 more
europepmc +3 more sources
Microstructure and mechanical properties of Fe40Cr25Ni25Al5Ti5 medium entropy alloy
Fe40Cr25Ni25Al5Ti5 (atom fraction/%) medium entropy alloys (MEAs) were prepared by a vacuum arc-melting furnace with a water-cooled copper mold, and the microstructure, mechanical properties and strengthening deformation mechanism of the alloy in solid ...
HU Zhaohui +6 more
doaj +2 more sources
Magnetocaloric Effect in ScGdHo Medium-entropy Alloy [PDF]
Abstract The search for effective solid-state refrigerant for magnetocaloric application is one of the main-stream topics in materials science. Rareearth multi-principal element alloys seem to be promising candidates for these purposes. In this study, we address the issues of structure formation, magnetic and magnetocaloric properties in ScGdHo ...
Sergey Uporov +2 more
openaire +1 more source
Superior Strength-Ductility Cocrni Medium-Entropy Alloy Wire [PDF]
Abstract High strength-ductility is the prerequisite requirement for the widely used steel wires in engineering applications. Traditional strengthening strategies on these wires are suffocated inevitably by strength-ductility trade-off dilemma. Recent emerging medium-entropy alloys (MEAs) usually exhibits excellent ductility but relatively lower ...
Jun-Peng Liu +5 more
openaire +1 more source

