Automotive crash boxes require a material selection with strength and ductility in a balanced combination. In this work, the behaviour of double-chamber AA6063 and AA6082 aluminium profiles subjected to quasi-static and dynamic axial crushing was studied experimentally. The profiles were stretched to two different levels between extrusion and artificial ageing to temper T6. The higher pre-stretch resulted in a more ductile material with a slightly lower ultimate tensile strength. By visual inspection and by studying X-ray Computed Tomography scans of the tested profiles, dynamic loading was found to cause a larger amount of fracture than quasi-static loading.publishedVersio
In recent times, application of aluminum alloys is favored in the transportation sectors such as the...
In this research, the behavior of AA2099 and AA6061 aluminum alloys under quasi-static and dynamic m...
In this study, a nanostructure model is used to predict the stress-strain curves of the aluminium al...
Automotive crash boxes require a material selection with strength and ductility in a balanced combin...
The use of aluminum alloys for light-weighting purposes in energy absorbing components of automobile...
This thesis investigates the crashworthiness characteristics of the AA6063-T6 aluminum extrusions wi...
Current and future strategic challenges in the construction industry require safe and lightweight st...
This thesis deals with the transition from progressive to global buckling of axially loaded thin-wal...
Ductility of aluminum alloys is highly used in automotive applications where crashworthiness becomes...
The research completed for this thesis is focused on the energy absorption capabilities of axially l...
Summary accompanying the thesis: Energy Absorption of Monolithic and Fibre Reinforced Aluminium Cyli...
Aluminim Tubular structures are of interest as viable energy absorbing components in vehicular front...
To predict the behaviour of structural components, engineers often rely on numerical modelling and s...
The damage behavior of aluminum profiles depends strongly on the stress state. Many investigations h...
In this study, the plastic flow and ductile fracture of three 6000-series aluminium alloys commonly ...
In recent times, application of aluminum alloys is favored in the transportation sectors such as the...
In this research, the behavior of AA2099 and AA6061 aluminum alloys under quasi-static and dynamic m...
In this study, a nanostructure model is used to predict the stress-strain curves of the aluminium al...
Automotive crash boxes require a material selection with strength and ductility in a balanced combin...
The use of aluminum alloys for light-weighting purposes in energy absorbing components of automobile...
This thesis investigates the crashworthiness characteristics of the AA6063-T6 aluminum extrusions wi...
Current and future strategic challenges in the construction industry require safe and lightweight st...
This thesis deals with the transition from progressive to global buckling of axially loaded thin-wal...
Ductility of aluminum alloys is highly used in automotive applications where crashworthiness becomes...
The research completed for this thesis is focused on the energy absorption capabilities of axially l...
Summary accompanying the thesis: Energy Absorption of Monolithic and Fibre Reinforced Aluminium Cyli...
Aluminim Tubular structures are of interest as viable energy absorbing components in vehicular front...
To predict the behaviour of structural components, engineers often rely on numerical modelling and s...
The damage behavior of aluminum profiles depends strongly on the stress state. Many investigations h...
In this study, the plastic flow and ductile fracture of three 6000-series aluminium alloys commonly ...
In recent times, application of aluminum alloys is favored in the transportation sectors such as the...
In this research, the behavior of AA2099 and AA6061 aluminum alloys under quasi-static and dynamic m...
In this study, a nanostructure model is used to predict the stress-strain curves of the aluminium al...