Cu-Ti alloys were strengthened by β’-Cu4Ti metastable precipitation during aging. With the extension of the aging time, the β’-Cu4Ti metastable phase transformed into the equilibrium β-Cu4Ti phase. The Cu-3.5 wt% Ti(Cu-4.6 at% Ti) alloys with different processing were aged at different temperatures for various times after solution treatment at 880 °C for 1 h. The electrical conductivity of samples under different heat treatments had shown an upward trend as time increased during aging, but the hardness reached the peak value and then decreased. The hardness and electrical conductivity of the samples with 70% deformation after aging are higher tha n the samples without deformation. Deformation after aging would cause the metastable phase to ...
In this work, the effects of an addition of trace alloying elements, Fe and Cr, on the mechanical an...
Ti-Cu alloys have broad application prospects in the biomedical field due to their excellent propert...
In this work, the effects of an addition of trace alloying elements, Fe and Cr, on the mechanical an...
The study investigates the effect of heat treatment on the microstructure evolution and properties o...
The study investigates the effect of heat treatment on the microstructure evolution and properties o...
This paper aims to study the effect of cold work condition on the microstructure of Cu-1.5wt%Ti, and...
The microstructure, mechanical properties, and electrical conductivity (EC) of Cu-4Ti-Cr-Fe alloy ag...
The effect of aging treatment on the microstructure and the properties of Cu-3Ti-3Ni alloy was studi...
This paper presents the possibilities of forming the microstructure as well as mechanical properties...
Pre-aging treatment before cold rolling and final aging was introduced to optimize the mechanical pr...
In this study the effects of different aging heat treatments on the properties and microstructure of...
Cu-Be alloys provide excellent electrical and mechanical properties, but present serious health haza...
In this paper, the prepared Cu-0.25Cr alloy and Cu-0.25Cr-0.03Ti alloy strips were treated with agin...
Microstructure and microhardness properties of precipitation hardened Cu-Ti and precipitation/disper...
Cu-Be alloys provide excellent electrical and mechanical properties, but present serious health haza...
In this work, the effects of an addition of trace alloying elements, Fe and Cr, on the mechanical an...
Ti-Cu alloys have broad application prospects in the biomedical field due to their excellent propert...
In this work, the effects of an addition of trace alloying elements, Fe and Cr, on the mechanical an...
The study investigates the effect of heat treatment on the microstructure evolution and properties o...
The study investigates the effect of heat treatment on the microstructure evolution and properties o...
This paper aims to study the effect of cold work condition on the microstructure of Cu-1.5wt%Ti, and...
The microstructure, mechanical properties, and electrical conductivity (EC) of Cu-4Ti-Cr-Fe alloy ag...
The effect of aging treatment on the microstructure and the properties of Cu-3Ti-3Ni alloy was studi...
This paper presents the possibilities of forming the microstructure as well as mechanical properties...
Pre-aging treatment before cold rolling and final aging was introduced to optimize the mechanical pr...
In this study the effects of different aging heat treatments on the properties and microstructure of...
Cu-Be alloys provide excellent electrical and mechanical properties, but present serious health haza...
In this paper, the prepared Cu-0.25Cr alloy and Cu-0.25Cr-0.03Ti alloy strips were treated with agin...
Microstructure and microhardness properties of precipitation hardened Cu-Ti and precipitation/disper...
Cu-Be alloys provide excellent electrical and mechanical properties, but present serious health haza...
In this work, the effects of an addition of trace alloying elements, Fe and Cr, on the mechanical an...
Ti-Cu alloys have broad application prospects in the biomedical field due to their excellent propert...
In this work, the effects of an addition of trace alloying elements, Fe and Cr, on the mechanical an...