In this paper, the research progress on the strengthening of copper and copper alloy is reviewed. The research shows that traditional strengthening methods are often accompanied by the decrease of plasticity, and there are limitations in size, cost, and other aspects in the process. The in-situ nanoparticle strengthening and plasticizing technology proposed in recent years can avoid the above problems. In this paper, the idea of in-situ nanoparticle strengthening is introduced to realize the simultaneous enhancement of strength and ductility of as-cast pure copper and tin bronze alloys. The effects of in-situ precipitation of iron-rich nanoparticles on the microstructure, and mechanical properties of different copper alloy systems, are syst...
Copper is often used in steel powder metallurgy due to its significant strengthening effect. The lar...
This article presents a method for the sample preparation and characterisation of bulk copper having...
A new route has been developed to produce full-density, bulk, two-phase nanocomposites. Nanocrystall...
Over the past several years, coherent interface strengthening was proposed and has since drawn much ...
International audienceThe mechanical properties of metallic materials are determined by their micros...
International audienceThe mechanical properties of metallic materials are determined by their micros...
International audienceThe mechanical properties of metallic materials are determined by their micros...
Polycrystalline materials having an ultrafine grain size may be prepared by mechanical alloying. Suc...
High performance (hardness, strength, electrical/thermal conductivity, ductility, Young’s modulus, a...
High performance (hardness, strength, electrical/thermal conductivity, ductility, Young’s modulus, a...
The mechanical properties of mechanically milled copper and copper-30 iron were studied in the as-mi...
The mechanical properties of mechanically milled copper and copper-30 iron were studied in the as-mi...
The mechanical properties of mechanically milled copper and copper-30 iron were studied in the as-mi...
In this study, a certain amount of Cu was added into tentative steel to introduce novel Cu-rich nano...
Continuous innovation in the design of metallic materials is essential for further progress in aeros...
Copper is often used in steel powder metallurgy due to its significant strengthening effect. The lar...
This article presents a method for the sample preparation and characterisation of bulk copper having...
A new route has been developed to produce full-density, bulk, two-phase nanocomposites. Nanocrystall...
Over the past several years, coherent interface strengthening was proposed and has since drawn much ...
International audienceThe mechanical properties of metallic materials are determined by their micros...
International audienceThe mechanical properties of metallic materials are determined by their micros...
International audienceThe mechanical properties of metallic materials are determined by their micros...
Polycrystalline materials having an ultrafine grain size may be prepared by mechanical alloying. Suc...
High performance (hardness, strength, electrical/thermal conductivity, ductility, Young’s modulus, a...
High performance (hardness, strength, electrical/thermal conductivity, ductility, Young’s modulus, a...
The mechanical properties of mechanically milled copper and copper-30 iron were studied in the as-mi...
The mechanical properties of mechanically milled copper and copper-30 iron were studied in the as-mi...
The mechanical properties of mechanically milled copper and copper-30 iron were studied in the as-mi...
In this study, a certain amount of Cu was added into tentative steel to introduce novel Cu-rich nano...
Continuous innovation in the design of metallic materials is essential for further progress in aeros...
Copper is often used in steel powder metallurgy due to its significant strengthening effect. The lar...
This article presents a method for the sample preparation and characterisation of bulk copper having...
A new route has been developed to produce full-density, bulk, two-phase nanocomposites. Nanocrystall...