4.8 Article

Material interactions in laser polishing powder bed additive manufactured Ti6Al4V components

期刊

ADDITIVE MANUFACTURING
卷 20, 期 -, 页码 11-22

出版社

ELSEVIER SCIENCE BV
DOI: 10.1016/j.addma.2017.12.010

关键词

Additive manufacturing; Laser polishing; Titanium; Microstructure; Residual stresses

资金

  1. UK Engineering and Physical Sciences Research Council through the Centre for Innovative Manufacturing in Laser-Based Production Processes [EP/K030884/1]
  2. SPI Lasers UK Ltd
  3. Renishaw plc
  4. EPSRC [EP/K030884/1] Funding Source: UKRI

向作者/读者索取更多资源

Laser polishing (LP) is an emerging technique with the potential to be used for post-build, or in-situ, precision smoothing of rough, fatigue-initiation prone, surfaces of additive manufactured (AM) components. LP uses a laser to re-melt a thin surface layer and smooths the surface by exploiting surface tension effects in the melt pool. However, rapid re-solidification of the melted surface layer and the associated substrate thermal exposure can significantly modify the subsurface material. This study has used an electron beam melted (EBM)Ti6Al4V component, representing the worst case scenario in terms of roughness for a powder bed process, as an example to investigate these issues and evaluate the capability of the LP technique for improving the surface quality of AM parts. Experiments have shown that the surface roughness can be reduced to below Sa = 0.51 mu m, which is comparable to a CNC machined surface, and high stress concentrating defects inherited from the AM process were removed by LP. However, the remelted layer underwent a change in texture, grain structure, and a martensitic transformation, which was subsequently tempered in-situ by repeated beam rastering and resulted in a small increase in subsurface hardness. In addition, a high level of near-surface tensile residual stresses was generated by the process, although they could be relaxed to near zero by a standard stress relief heat treatment. (C) 2017 Published by Elsevier B.V.

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