Multicomponent Precipitation and Strengthening in Intermetallic-Strengthened Alloys
Advanced structural materials with superior mechanical properties are of technological importance for industrial applications. Multicomponent precipitation provides a potential approach for designing high-performance alloys and has been receiving ...
Z B Jiao, Tao Yang, W H Liu
exaly +5 more sources
Modeling precipitation kinetics in multicomponent alloys during deformation
A new mean-field modeling tool is developed to correctly tackle the problem of precipitation during deformation. The model is an extension of a previously developed Langer–Schwartz–Kampmann–Wagner precipitation modeling approach for multicomponent alloys.
Manon Bonvalet Rolland +2 more
doaj +5 more sources
Design and Application of Hetero-Multicomponent Metal Oxide Photocatalysts for Wastewater Treatment: Ti–Cu–Zn Catalysts and Future Research Directions [PDF]
Hetero-multicomponent metal oxide catalysts are attracting increasing attention for wastewater remediation due to their tunable band structures, synergistic redox activity, and enhanced stability.
Maria-Anthoniette Oghenetejiro Onoriode-Afunezie +2 more
doaj +2 more sources
Numerical simulation of precipitation in multicomponent Ni-base alloys
A comprehensive particle size distribution model has been developed for the simulation of gamma' precipitation in multicomponent Ni alloys. Nucleation, growth and coarsening of the precipitates are described by a particle size distribution. The growth rate of each precipitate class is calculated with a multi-component diffusion model formulated for non-
Alain Jacot, Charles-André Gandin
exaly +3 more sources
Pore-scale simulation of multicomponent multiphase reactive transport with dissolution and precipitation [PDF]
Multicomponent multiphase reactive transport processes with dissolution-precipitation are widely encountered in energy and environment systems. A pore-scale two-phase multi-mixture model based on the lattice Boltzmann method (LBM) is developed for such complex transport processes, where each phase is considered as a mixture of miscible components in it.
Li Chen, Wen-Quan Tao, Qinjun Kang
exaly +3 more sources
Complex Oxide Nanoparticle Synthesis: Where to Begin to Do It Right?
Synthesis of advanced ceramics requires a high degree of control over the particle size and stoichiometry of the material. When choosing a synthesis method for complex oxides it is important to begin with the correct precursors and solvents to achieve ...
Elizabeth Gager +2 more
doaj +1 more source
Thermal stability and mechanical property of the multicomponent nanocrystalline Fe–ZrNbMoTa alloys were investigated. Single-phase nanocrystalline Fe–(ZrNbMoTa)x (x = 0.1, 0.2, 0.5 and 1 at.
Meng Liu +7 more
doaj +1 more source
Phase prediction of Ni-base superalloys via high-throughput experiments and machine learning
Predicting the phase precipitation of multicomponent alloys, especially the Ni-base superalloys, is a difficult task. In this work, we introduced a dependable and efficient way to establish the relationship between composition and detrimental phases in ...
Zijun Qin +15 more
doaj +1 more source
Complex precipitation pathways in multicomponent alloys [PDF]
One usual way to strengthen a metal is to add alloying elements and to control the size and the density of the precipitates obtained. However, precipitation in multicomponent alloys can take complex pathways depending on the relative diffusivity of solute atoms and on the relative driving forces involved. In Al-Zr-Sc alloys, atomic simulations based on
Clouet, Emmanuel +5 more
openaire +5 more sources
Wax precipitation in multicomponent hydrocarbon system [PDF]
The objective of this research is to estimate individual effect of various external parameters such as pressure, cooling rate, watercut and addition of mechanical impurities on change in wax appearance temperature (WAT) in oil. In this paper, complex multicomponent system like oil is replaced to simplified model solution, presented by wax in kerosene ...
I. A. Struchkov, M. K. Rogachev
openaire +1 more source

