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  4. INTERNAL STRESS GENERATION DURING QUENCHING OF THICK HEAT TREATABLE ALUMINIUM ALLOYS
 
conference paper

INTERNAL STRESS GENERATION DURING QUENCHING OF THICK HEAT TREATABLE ALUMINIUM ALLOYS

Drezet, Jean-Marie  
•
Chobaut, Nicolas  
•
Schloth, Patrick  
Show more
Free, M. L.
•
Siegmund, A. H.
2013
EDP congress 2013
Light Metals, TMS, 2013, EDP Congress

In the current trend toward thicker aluminium plates, a major concern is the stress build-up during quenching which causes distortions during machining. Indeed, cooling rates are not high enough, especially at the core of such thick plates, to prevent any precipitation and quench induced precipitates lower the hardening potential. Multi-scale modelling is required when predicting macro-scale stresses after quenching for thick heat treatable aluminium components. The reason is the instantaneous strong coupling between phase precipitation at the nano-scale and material hardening due to precipitation or softening owing to solute depletion at the microscale. For thick parts, quenching intensities decrease when going from the skin to the core of the component, thus introducing a gradient of nanostructure and consequently a gradient of mechanical properties. In addition, large thermally induced deformations lead to high macroscale residual stresses although part of them is relaxed by plastic deformation. These stresses have been measured in water quenched thick plates of 7040 and 7449 aluminium alloys using neutron diffraction and layer removal techniques and the results when compared with a thermomechanical finite element model of quenching highlight the influence of precipitation

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Type
conference paper
DOI
10.1002/9781118658468.ch8
Author(s)
Drezet, Jean-Marie  
Chobaut, Nicolas  
Schloth, Patrick  
Van Swygenhoven, Helena  
Editors
Free, M. L.
•
Siegmund, A. H.
Date Issued

2013

Publisher

TMS

Publisher place

Warendale, USA

Published in
EDP congress 2013
Start page

65

End page

72

Subjects

Residual stress

•

neutron diffraction

•

precipitation

•

modeling

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LSMX  
UPSWYG  
Event nameEvent placeEvent date
Light Metals, TMS, 2013, EDP Congress

San Antonio, USA

March 2013

Available on Infoscience
June 19, 2014
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/104536
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