Nanocrystalline (nc) immiscible Co-Cu alloys system is a promising material where the decomposition of the super-saturated solid solution can be used to obtain nano-structured materials. In this research, homogenous and solid nc Co-Cu thick films were synthesized through the pulsed electrodeposition technique in complex sodium tartrate electrolyte. Annealing procedures were conducted to evaluate its thermal stability and induce phase decomposition of cobalt and copper, which can be utilized to enhance mechanical properties and thermal stability. Initial cyclic micro-bending experiments were also conducted to observe micro-fatigue properties and structural evolution during mechanical loading
The attractive properties associated with nanocrystalline materials are to a large extent a result o...
AbstractThe influence of heat treatment on the phase decomposition and the grain size of Co–10at% Cu...
Dedicated thermal treatments can improve the mechanical behaviour of high entropy alloys (HEAs) by p...
Thick films of supersaturated solid solution nanocrystalline Co-Cu (28 at.% Cu) were synthesized thr...
Single component nanocrystalline materials exhibits outstanding mechanical and physical properties, ...
abstract: Nanocrystalline (NC) materials experience inherent microstructural instability when expose...
In this study, dual phase CuCo composites with a total immiscibility in the solid state and a very d...
Nanostructured metals with maximal grain or twin sizes of less than 100 nm have advanced properties ...
In this study, dual phase Cusingle bondCo composites with a total immiscibility in the solid state a...
The objective of this work is to investigate the microstrain effect on grain growth and strain relea...
Nanocrystalline Co-1.1at.%P prepared by pulsed electrodeposition was investigated with respect to th...
The effect of Cu dissolution during pulse electrodeposition process on the generation of high densit...
The exceptional properties associated with nanocrystalline materials are, to a large extent, a resul...
The attractive properties associated with nanocrystalline materials are to a large extent a result o...
Ultrafine-grained metals have impressive strength but lack the thermal stability necessary for most ...
The attractive properties associated with nanocrystalline materials are to a large extent a result o...
AbstractThe influence of heat treatment on the phase decomposition and the grain size of Co–10at% Cu...
Dedicated thermal treatments can improve the mechanical behaviour of high entropy alloys (HEAs) by p...
Thick films of supersaturated solid solution nanocrystalline Co-Cu (28 at.% Cu) were synthesized thr...
Single component nanocrystalline materials exhibits outstanding mechanical and physical properties, ...
abstract: Nanocrystalline (NC) materials experience inherent microstructural instability when expose...
In this study, dual phase CuCo composites with a total immiscibility in the solid state and a very d...
Nanostructured metals with maximal grain or twin sizes of less than 100 nm have advanced properties ...
In this study, dual phase Cusingle bondCo composites with a total immiscibility in the solid state a...
The objective of this work is to investigate the microstrain effect on grain growth and strain relea...
Nanocrystalline Co-1.1at.%P prepared by pulsed electrodeposition was investigated with respect to th...
The effect of Cu dissolution during pulse electrodeposition process on the generation of high densit...
The exceptional properties associated with nanocrystalline materials are, to a large extent, a resul...
The attractive properties associated with nanocrystalline materials are to a large extent a result o...
Ultrafine-grained metals have impressive strength but lack the thermal stability necessary for most ...
The attractive properties associated with nanocrystalline materials are to a large extent a result o...
AbstractThe influence of heat treatment on the phase decomposition and the grain size of Co–10at% Cu...
Dedicated thermal treatments can improve the mechanical behaviour of high entropy alloys (HEAs) by p...