Alloying Effect on Elastic and Mechanical Properties of Refractory Medium-Entropy Alloys from First-Principles Calculations

P Liu, H Zhang, Q Hu, X Ding, J Sun - The Journal of Physical …, 2023 - ACS Publications
There is still a challenge to rapidly and accurately acquire the composition dependence of
mechanical properties of multi-principal element alloys due to their huge composition space …

Preparation, characterization, and phase evolution of nanocrystalline Cu/Ti doped MoNbTa-based multi-principal element alloys

SO Agbedor, H Wu, Y Ren, J Liu, L Liang… - Materials …, 2023 - Elsevier
As multi-principal element alloys (MPEAs) continue to draw attention from researchers, there
is a growing demand for MPEAs with a combination of body-centered cubic (BCC) and face …

Computational and experimental investigation of a new non equiatomic FCC single-phase Cr15Cu5Fe20Mn25Ni35 high-entropy alloy

M Vaghari, K Dehghani - Physica B: Condensed Matter, 2023 - Elsevier
The structural, mechanical, and thermal properties of a new non-equiatomic face-centered
cubic (FCC) structured high entropy alloy (HEA) were examined computationally using …

On the influence of enthalpy of formation on lattice distortion and intrinsic ductility of concentrated refractory alloys

SM Shaikh, BS Murty, SK Yadav - Journal of Applied Physics, 2023 - pubs.aip.org
Valence electron concentration (VEC), atomic size difference (δ), and Pugh's ratio (B/G) are
a few of the empirical parameters widely used to design ductile refractory alloys. Here, we …

[PDF][PDF] Role of enthalpy of formation on lattice distortion and intrinsic ductility of concentrated refractory alloys

SM Shaikha, BS Murtyc, SK Yadava - researchgate.net
Valence electron concentration (VEC), Pugh's ratio (B/G), lattice distortion (δ), and intrinsic
ductility (D) are few of the empirical parameters widely used to design ductile refractory …