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Elasticity / Materials science / Deformation / Stress analysis / Stress / Deep drawing / Strength of materials / Yield / Cylinder stresses / Physics / Mechanics / Solid mechanics


Materials Science and Engineering A366[removed]–113 A synchrotron study of residual stresses in a Al6022 deep drawn cup Thomas Gnaeupel-Herold a,b,∗ , Henry J. Prask b , Richard J. Fields c , Timothy J. Foecke c ,
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Document Date: 2013-03-09 09:57:42


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Berlin / Tutzing / Cleveland / Amsterdam / Materials Park / Dearborn / London / Oxford / /

Company

Argonne National Laboratory / Cambridge University Press / Elsevier B.V. / FORD Scientific Research Laboratory / /

Country

Germany / United States / United Kingdom / /

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Facility

laboratory XRD / National Institute of Standards and Technology / College Park / University of Maryland / laboratory X / /

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IndustryTerm

sheet metal / metal / sheet metal forming / metal forming / sheet metal thicknesses / mild steel / stainless steel cups / sheet metal thickness / energy / /

Organization

National Institute of Standards and Technology / Department of Materials and Nuclear Engineering / Cambridge University / Metallurgy Division / University of Maryland / College Park / Center for Neutron Research / /

Person

Ulrich Lienert / Richard J. Fields / Thomas Gnaeupel-Herold / Timothy J. Foecke / Z. Cedric Xia / Henry J. Prask / /

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Position

Corresponding author / /

Product

Nikon D90 Digital Camera / /

ProvinceOrState

Maryland / Illinois / Michigan / /

Technology

radiation / X-ray / simulation / /

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