Post-forging heat treatment is often necessary to achieve the mechanical properties required for aluminum alloy forged parts. In this study, hot-forged 6082 suspension parts are used to study the effect of rapid infrared (IR) heat treatment. The insoluble particles present in the matrix after the solutionizing process are observed. Experimental results show that using rapid IR heat treatment leads to superior solutionizing, and thus a larger critical onset strain in serrated tensile flow. The rapid IR heat treatment also had a more significant precipitation effect, which enhanced the mechanical properties of the material
The process of heat treatment is the method by which metals are heated and cooled in a series of spe...
High purity metals are nowadays increasingly in demand to serve in electronic, photovoltaic, and tar...
In industrial applications, hot forging of AA6082 alloy is carried at 480°C. After the hot forging o...
Post-forging heat treatment is often necessary to achieve the mechanical properties required for alu...
In this study, a cast rod is used as the material for the forging process (without extrusion). The c...
To avoid the phenomenon of abnormal grain coarsening, and increase the Young’s modulus of forgings, ...
Rapid infrared (IR) heating has the potential to be used for solutionizing of aluminum forgings with...
Cold spray (CS) is an additive manufacturing process which has recently gained interest within resea...
In industrial applications, hot forging of aluminum alloy AA 6082 is carried out at 480 °C following...
Purpose of this work is to improve surface related properties of aluminum alloys by employing a lase...
The objective of the present paper is to investigate the effects of rapid heating and cryogenic cool...
Aluminum alloy AA6061 was SPD (Severe Plastic Deformation) processed by Equal Channel Angular Pressi...
This work examines the effect of heat treatment on tensile strength and ductile responses of rolled ...
AbstractTailored Heat Treated Blanks can considerably enhance the formability of fast-hardenable alu...
The microstructural and mechanical characteristics of rapid radiation heating and convection gas-fir...
The process of heat treatment is the method by which metals are heated and cooled in a series of spe...
High purity metals are nowadays increasingly in demand to serve in electronic, photovoltaic, and tar...
In industrial applications, hot forging of AA6082 alloy is carried at 480°C. After the hot forging o...
Post-forging heat treatment is often necessary to achieve the mechanical properties required for alu...
In this study, a cast rod is used as the material for the forging process (without extrusion). The c...
To avoid the phenomenon of abnormal grain coarsening, and increase the Young’s modulus of forgings, ...
Rapid infrared (IR) heating has the potential to be used for solutionizing of aluminum forgings with...
Cold spray (CS) is an additive manufacturing process which has recently gained interest within resea...
In industrial applications, hot forging of aluminum alloy AA 6082 is carried out at 480 °C following...
Purpose of this work is to improve surface related properties of aluminum alloys by employing a lase...
The objective of the present paper is to investigate the effects of rapid heating and cryogenic cool...
Aluminum alloy AA6061 was SPD (Severe Plastic Deformation) processed by Equal Channel Angular Pressi...
This work examines the effect of heat treatment on tensile strength and ductile responses of rolled ...
AbstractTailored Heat Treated Blanks can considerably enhance the formability of fast-hardenable alu...
The microstructural and mechanical characteristics of rapid radiation heating and convection gas-fir...
The process of heat treatment is the method by which metals are heated and cooled in a series of spe...
High purity metals are nowadays increasingly in demand to serve in electronic, photovoltaic, and tar...
In industrial applications, hot forging of AA6082 alloy is carried at 480°C. After the hot forging o...