4.7 Article

Understanding and designing post-build rolling for mitigation of residual stress and distortion in wire arc additively manufactured components

Journal

MATERIALS & DESIGN
Volume 213, Issue -, Pages -

Publisher

ELSEVIER SCI LTD
DOI: 10.1016/j.matdes.2021.110335

Keywords

Directed energy deposition; Cold working; Residual stress; Plastic deformation; Roller geometry; Rolling load

Funding

  1. [EP/R027218/1]

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Post-build rolling can effectively mitigate residual stress and distortion in WAAM-built components, with slotted rollers being the most effective in introducing tensile plastic strain to counteract compressive strain generated during WAAM deposition. The rolling load and roller-to-wall friction coefficient significantly influence the effectiveness of the mitigation process, providing insights for the development of optimal post-build rolling processes in WAAM manufacturing.
Post-build rolling can mitigate residual stress (RS) and distortion in large-scale components built by wire arc additive manufacturing (WAAM). In this study, based on numerical simulations that considered both WAAM deposition and vertical rolling, the mechanisms of rolling-enabled mitigation of RS and distortion in a WAAM-built steel wall are elucidated. The influences of process configuration and condition, such as roller design (flat, profiled and slotted rollers), rolling load (25-75 kN) and roller-to-wall friction coefficient (0-0.8) on the distributions of plastic strain (PS) and RS were investigated. It is found that the slotted roller is most effective to introduce tensile PS for counteracting the compressive PS generated by the WAAM deposition, thereby reducing the tensile RS in the clamped condition and the final distortion after removal of clamps. Higher rolling load increases the rolling-induced tensile PS, which leads to more extensive mitigation of the WAAM-generated tensile RS. The simulations also demonstrate that the friction coefficient significantly affects the PS and RS when the slotted roller is employed. However, the efficacy of the flat/profiled roller is insensitive to friction coefficient. This study could underpin the development of an optimal post-build rolling process for efficient mitigation of RS and distortion in WAAM components. (c) 2021 Published by Elsevier Ltd. This is an open access article under the CC BY-NC-ND license (http:// creativecommons.org/licenses/by-nc-nd/4.0/).

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