Nanoprecipitate‐strengthened high‐entropy alloys

L Liu, Y Zhang, J Han, X Wang, W Jiang… - Advanced …, 2021‏ - Wiley Online Library
Multicomponent high‐entropy alloys (HEAs) can be tuned to a simple phase with some
unique alloy characteristics. HEAs with body‐centered‐cubic (BCC) or hexagonal‐close …

[HTML][HTML] Clustering, nano-scale precipitation and strengthening of steels

Z **ong, I Timokhina, E Pereloma - Progress in Materials Science, 2021‏ - Elsevier
Continuous innovations in design of advanced structural steels are essential for future
progress in manufacturing, automotive and construction industries. Events taking place at …

[HTML][HTML] Revealing relationships between microstructure and hardening nature of additively manufactured 316L stainless steel

L Cui, S Jiang, J Xu, RL Peng, RT Mousavian… - Materials & Design, 2021‏ - Elsevier
Relationships between microstructures and hardening nature of laser powder bed fused (L-
PBF) 316 L stainless steel have been studied. Using integrated experimental efforts and …

[HTML][HTML] A perspective on precipitation-hardening high-entropy alloys fabricated by additive manufacturing

F Haftlang, HS Kim - Materials & Design, 2021‏ - Elsevier
The growing demand for advanced metallic materials with optimum mechanical properties
has led to the creation of next-generation materials based on the alloying of multiple …

Co-precipitation of nanoscale particles in steels with ultra-high strength for a new era

ZB Jiao, JH Luan, MK Miller, YW Chung, CT Liu - Materials Today, 2017‏ - Elsevier
Advanced ultra-high strength steels are highly desirable for a wide range of engineering
applications. Nanoscale co-precipitation strengthening in steels has received increasing …

Nonprecious anodic catalysts for low-molecular-hydrocarbon fuel cells: Theoretical consideration and current progress

MA Abdelkareem, ET Sayed, HO Mohamed… - Progress in Energy and …, 2020‏ - Elsevier
Fuel cells are electrochemical devices that convert chemical energy directly into electrical
energy with high efficiency. The high cost of platinum catalysts and sluggish reaction kinetics …

Precipitate evolution and strengthening behavior during aging process in a 2.5 GPa grade maraging steel

M Niu, G Zhou, W Wang, MB Shahzad, Y Shan, K Yang - Acta Materialia, 2019‏ - Elsevier
Abstract Development of precipitation strengthening steels with ultrahigh strength and high
ductility requires thorough understanding of nanoscale precipitation mechanisms. In this …

Precipitation mechanism and mechanical properties of an ultra-high strength steel hardened by nanoscale NiAl and Cu particles

ZB Jiao, JH Luan, MK Miller, CT Liu - Acta Materialia, 2015‏ - Elsevier
We report on the alloy design strategies, precipitation mechanism and mechanical
properties of an ultra-high strength steel hardened by co-precipitation of nanoscale NiAl and …

A novel ultra-high strength maraging steel with balanced ductility and creep resistance achieved by nanoscale β-NiAl and Laves phase precipitates

L Sun, TH Simm, TL Martin, S McAdam, DR Galvin… - Acta Materialia, 2018‏ - Elsevier
A novel ultra-high strength precipitation hardened martensitic steel with balanced ductility
and creep resistance has been developed. It utilises a unique combination of nanometre …

High‐strength and high‐ductility nanostructured and amorphous metallic materials

H Kou, J Lu, Y Li - Advanced Materials, 2014‏ - Wiley Online Library
The development of materials with dual properties of high strength and high ductility has
been a constant challenge since the foundation of the materials science discipline. The …