4.7 Article

Solidification pattern, microstructure and texture development in Laser Powder Bed Fusion (LPBF) of Al10SiMg alloy

期刊

MATERIALS CHARACTERIZATION
卷 145, 期 -, 页码 29-38

出版社

ELSEVIER SCIENCE INC
DOI: 10.1016/j.matchar.2018.08.025

关键词

Additive manufacture; Laser Powder Bed Fusion; AlSi alloys; Solidification microstructure; Crystallographic texture; Cellular structure

资金

  1. NSERC Discovery Grant program
  2. Queen's University Faculty of Engineering and Applied Science Dean's Research Fund

向作者/读者索取更多资源

A comprehensive analysis of solidification patterns and microstructural development is presented for an Al10SiMg sample produced by Laser Powder Bed Fusion (LPBF). Utilizing a novel scanning strategy that involves counter-clockwise rotation of the scan vector by 67 degrees upon completion of each layer, a relatively randomized cusp-like pattern of protruding/overlapping scan tracks has been produced along the build direction. We show that such a distribution of scan tracks, as well as enhancing densification during LPBF, reduces the overall crystallographic texture in the sample, as opposed to those normally achieved by commonly-used bidirectional or island-based scanning regimes with 90 degrees rotation. It is shown that, under directional solidification conditions present in LPBF, the grain structure is strictly columnar throughout the sample and that the grains' orientation aligns well with that of the alpha-Al cells. The size evolution of cells and grains within the melt pools, however, is shown to follow opposite patterns. The cells'/grains' size distribution and texture in the sample are explained via use of analytical models of cellular solidification as well as the overall heat flow direction and local solidification conditions in relation to the LPBF processing conditions. Such a knowledge of the mechanisms upon which microstructural features evolve throughout a complex solidification process is critical for process optimization and control of mechanical properties in LPBF.

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