AbstractThe bending properties of AA2024-T3 aluminium alloy after localized laser assisted softening have been studied and compared to untreated material. Single and multi-path laser scanning strategies are applied for achieving a predictable and minimized springback. Process parameters for softening have been chosen based on FE modeling. In order to investigate the softening, and to characterize the size of this softened region, hardness measurements were carried out. Using a triple scanning path strategy springback was reduced by about 43% without changing the bending radius
The laser bendability of thick aluminum sheets has been scarcely investigated previously; in this ar...
AbstractPrecipitation hardenable aluminum alloys are some of the most important lightweight material...
The selective laser melting (SLM) of aluminium alloys is of interest to researchers because of these...
The bending properties of AA2024-T3 aluminium alloy after localized laser assisted softening have be...
AbstractThe bending properties of AA2024-T3 aluminium alloy after localized laser assisted softening...
AbstractThe local laser heat treatment of precipitation hardenable aluminum alloys enables the tailo...
AbstractTailored Heat Treated Blanks can considerably enhance the formability of fast-hardenable alu...
The continuous research for progressively lighter components moves the attention on the massive adop...
AbstractThe production of multi-layered aluminum alloys using the Accumulative Roll Bonding Process ...
The present investigation deals with an external-force laser assisted bending process of Grade 2 CP ...
AbstractAn analysis of the literature concerning the methods of surface treatment of aluminum alloys...
Selective laser melting (SLM) of aluminium is of research interest because of its potential benefits...
The automotive industry is interested in manufacturing components with tailored mechanical propertie...
Lightweight materials are currently gaining popularity and are sought for by the construction and tr...
The laser bendability of thick aluminum sheets has been scarcely investigated previously; in this ar...
AbstractPrecipitation hardenable aluminum alloys are some of the most important lightweight material...
The selective laser melting (SLM) of aluminium alloys is of interest to researchers because of these...
The bending properties of AA2024-T3 aluminium alloy after localized laser assisted softening have be...
AbstractThe bending properties of AA2024-T3 aluminium alloy after localized laser assisted softening...
AbstractThe local laser heat treatment of precipitation hardenable aluminum alloys enables the tailo...
AbstractTailored Heat Treated Blanks can considerably enhance the formability of fast-hardenable alu...
The continuous research for progressively lighter components moves the attention on the massive adop...
AbstractThe production of multi-layered aluminum alloys using the Accumulative Roll Bonding Process ...
The present investigation deals with an external-force laser assisted bending process of Grade 2 CP ...
AbstractAn analysis of the literature concerning the methods of surface treatment of aluminum alloys...
Selective laser melting (SLM) of aluminium is of research interest because of its potential benefits...
The automotive industry is interested in manufacturing components with tailored mechanical propertie...
Lightweight materials are currently gaining popularity and are sought for by the construction and tr...
The laser bendability of thick aluminum sheets has been scarcely investigated previously; in this ar...
AbstractPrecipitation hardenable aluminum alloys are some of the most important lightweight material...
The selective laser melting (SLM) of aluminium alloys is of interest to researchers because of these...