PDF

Coherent Precipitation and Strengthening in Compositionally Complex Alloys: A Review

Qing Wang, Zhen Li

2018Englishprecipitation strengtheningcompositionally complex alloyshigh entropy alloysmicrostructurenanoparticlesmechanical properties

Abstract

Language:

High-performance conventional engineering materials (including Al alloys, Mg alloys, Cu alloys, stainless steels, Ni superalloys, etc.) and newly-developed high entropy alloys are all compositionally-complex alloys (CCAs). In these CCA systems, the second-phase particles are generally precipitated in their solid-solution matrix, in which the precipitates are diverse and can result in different strengthening effects. The present work aims at generalizing the precipitation behavior and precipitation strengthening in CCAs comprehensively. First of all, the morphology evolution of second-phase particles and precipitation strengthening mechanisms are introduced. Then, the precipitation behaviors in diverse CCA systems are illustrated, especially the coherent precipitation. The relationship between the particle morphology and strengthening effectiveness is discussed. It is addressed that the challenge in the future is to design the stable coherent microstructure in different solid-solution matrices, which will be the most effective approach for the enhancement of alloy strength.

Download

Cite This Work

@article{774bd52c-cb82-4974-b692-240e9559d777,
  title={Coherent Precipitation and Strengthening in Compositionally Complex Alloys: A Review},
  author={Qing Wang and Zhen Li},
  year={2018},
  language={English}
}
TY  - JOUR
TI  - Coherent Precipitation and Strengthening in Compositionally Complex Alloys: A Review
AU  - Qing Wang
AU  - Zhen Li
PY  - 2018
LA  - English
ER  -

Similar Items

Structural and Phase Transformations and Physical and Mechanical Properties of Cu-Al-Ni Shape Memory Alloys Subjected to Severe Plastic Deformation and Annealing

Alexey E. Svirid, Vladimir G. Pushin

Using the methods of electron microscopy and X-ray analysis in combination with measurements of the electrical resistance and magnetic susceptibility,

2021EnglishPDF

Additive Manufacturing for Rapid Sand Casting: Mechanical and Microstructural Investigation of Aluminum Alloy Automotive Prototypes

Silvia Cecchel, Giovanna Cornacchia

The automotive industry is undergoing a rapid evolution to meet today’s challenges; therefore, continuous innovation and product development are neede

2024EnglishPDF

Mechanical and Corrosion Properties of AA2024 Aluminum Alloy with Multimodal Gradient Structures

Zhenwei Xie, Liexing Zhou

Enhancing the strength and toughness of aluminum alloys using microstructure optimization remains a key challenge. In this study, an AA2024 aluminum a

2025EnglishPDF

The Effect of Extrusion and Heat Treatment on the Microstructure and Tensile Properties of 2024 Aluminum Alloy

Qilun Li, Xiaobo Zhang

Hot extrusion forming is one of the best cost-effective processing methods to obtain high-strength aluminum alloys. In order to obtain high performanc

2022EnglishPDF

Microstructural Characteristics and Strengthening Mechanisms of Ferritic–Martensitic Dual-Phase Steels: A Review

Farzad Badkoobeh, Hossein Mostaan

Ferritic–martensitic dual-phase (DP) steels are prominent and advanced high-strength steels (AHSS) broadly employed in automotive industries. Hence, e

2022EnglishPDF

Metal Matrix Composites

Mihail Kolev

Metal matrix composites (MMCs) are engineered multiphase materials composed of a continuous metallic matrix that contains deliberately introduced rein

2026EnglishPDF