The fatigue performance of high-strength Al-Cu-Mg alloys is generally influenced by the process of creep age formation when applied to acquire higher strength. The results show that creep aging accelerates the precipitation process, leading to a more uniform precipitation of strengthening phases in grains, as well as narrowed precipitation-free zones (PFZ). Compared with the artificially aged alloy, the yield strength and hardness of the creep aged alloy increased, but the fatigue resistance decreased. In the low stress intensity factor region (ΔK ≤ 7 MPa·m1/2), the fatigue crack propagation (FCP) rate was mainly affected by the characteristics of precipitates, and the fatigue resistance noticeably decreased with the increas...
The mechanical properties of age hardenable Al alloys depend strongly on the precipitate microstruct...
The different creep-aging forming processes of 2524 aluminum alloy were taken as the research object...
The consumption volume of aluminium (Al) alloys is expected to increase in the coming years. They ar...
A set of creep aging tests at different aging temperatures and stress levels were carried out for Al...
Normal temperature tensile and fatigue tests were adopted to test the mechanical performance and fat...
In this study, the strength, elongation, and fatigue properties of 7005 aluminum alloy plates with d...
The 6xxx series Al-Mg-Si(-Cu) alloy system is widely used in the transportation industry due to its ...
The high cycle fatigue (HCF) performance of a model Al-4Cu-0.05Sn alloy and three commercial AA2024,...
The option of extending the fatigue life of precipitation hardenable aluminium AA2024 alloys under h...
In this study, aluminum alloy 7010 was subjected to three different ageing treatments i.e., peak age...
Understanding the dynamic structural changes during cyclic deformation of Al-alloys is a discipline ...
In this study, Al-1.00 Mg-0.65 Si-0.24 Cu alloy was solution heat-treated, water-quenched, and then ...
A series of creep age forming experiments were carried out on 7075 aluminum alloy with different pre...
The effects of variations in composition on the decomposition process in Al-Zn-Mg-Cu alloys (i.e. – ...
The effect of cold work and creep strain on the ageing of three aluminium alloys has been investigat...
The mechanical properties of age hardenable Al alloys depend strongly on the precipitate microstruct...
The different creep-aging forming processes of 2524 aluminum alloy were taken as the research object...
The consumption volume of aluminium (Al) alloys is expected to increase in the coming years. They ar...
A set of creep aging tests at different aging temperatures and stress levels were carried out for Al...
Normal temperature tensile and fatigue tests were adopted to test the mechanical performance and fat...
In this study, the strength, elongation, and fatigue properties of 7005 aluminum alloy plates with d...
The 6xxx series Al-Mg-Si(-Cu) alloy system is widely used in the transportation industry due to its ...
The high cycle fatigue (HCF) performance of a model Al-4Cu-0.05Sn alloy and three commercial AA2024,...
The option of extending the fatigue life of precipitation hardenable aluminium AA2024 alloys under h...
In this study, aluminum alloy 7010 was subjected to three different ageing treatments i.e., peak age...
Understanding the dynamic structural changes during cyclic deformation of Al-alloys is a discipline ...
In this study, Al-1.00 Mg-0.65 Si-0.24 Cu alloy was solution heat-treated, water-quenched, and then ...
A series of creep age forming experiments were carried out on 7075 aluminum alloy with different pre...
The effects of variations in composition on the decomposition process in Al-Zn-Mg-Cu alloys (i.e. – ...
The effect of cold work and creep strain on the ageing of three aluminium alloys has been investigat...
The mechanical properties of age hardenable Al alloys depend strongly on the precipitate microstruct...
The different creep-aging forming processes of 2524 aluminum alloy were taken as the research object...
The consumption volume of aluminium (Al) alloys is expected to increase in the coming years. They ar...