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Residual stress of as-deposited and rolled wire+arc additive manufacturing Ti–6Al–4V components

F. Martina, M. J. Roy

2016entitaniumadditive manufacturingresidual stress3d printing

Abstract

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Wire + arc additive manufacturing components contain significant residual stresses, which manifest in distortion. High-pressure rolling was applied to each layer of a linear Ti–6Al–4V wire + arc additive manufacturing component in between deposition passes. In rolled specimens, out-of-plane distortion was more than halved; a change in the deposits’ geometry due to plastic deformation was observed and process repeatability was increased. The Contour method of residual stresses measurements showed that although the specimens still exhibited tensile stresses (up to 500 MPa), their magnitude was reduced by 60%, particularly at the interface between deposit and substrate. The results were validated with neutron diffraction measurements, which were in good agreement away from the baseplate.

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Cite This Work

@article{3e164b0e-614d-445c-81ad-d75b4f073c37,
  title={Residual stress of as-deposited and rolled wire+arc additive manufacturing Ti–6Al–4V components},
  author={F. Martina and M. J. Roy},
  year={2016},
  language={en}
}
TY  - JOUR
TI  - Residual stress of as-deposited and rolled wire+arc additive manufacturing Ti–6Al–4V components
AU  - F. Martina
AU  - M. J. Roy
PY  - 2016
LA  - en
ER  -

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