4.8 Article

Directed energy deposition of γ/γ' Co-Al-W superalloys

期刊

ADDITIVE MANUFACTURING
卷 60, 期 -, 页码 -

出版社

ELSEVIER
DOI: 10.1016/j.addma.2022.103287

关键词

Additive manufacturing; Directed energy deposition; Co -based superalloys; Hot -cracking; Creep

资金

  1. National Research Foundation of Korea (NRF)
  2. [NRF-2019R1A2C1002165]
  3. [2018-021- 025329]

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In this study, Co-Al-W superalloys were fabricated by laser-directed energy deposition and investigated for their susceptibility to hot-cracking. It was found that the alloy with higher aluminum content exhibited better resistance to cracking due to the formation of a protective oxide layer. Heat treatment resulted in a homogeneous microstructure and improved printability of the alloy.
In this study, Co-Al-W superalloys forming gamma/gamma' microstructures were fabricated by laser-directed energy depo-sition and investigated with respect to their susceptibility to hot-cracking during manufacturing. Two alloys of different nominal compositions (Co-12Al-8W, Co-7Al-8W (at.%)) were deposited to characterize their micro-structures on multiple length scales. While the as-deposited Co-12Al-8W alloy was free of cracks, the Co-7Al-8W alloy exhibited numerous cracks, particularly along high-angle grain boundaries due to internal oxidation cracking. The former Al-rich alloy showed a continuous and dense-packed Al2O3 scale on its surface, preventing internal oxidation. After homogenization heat-treatment at 1300 degrees C for 24 h and subsequent aging at 900 degrees C for 24 h, the Co-12Al-8W alloy revealed a homogeneous gamma/gamma' microstructure without hot-cracking. By contrast, the Co-7Al-8W alloy did not exhibit a passivation layer but only internal Al2O3 particles due to the reduced Al content and insufficiently fast transport of Al to the oxidation front. These particles acted as stress concentration and crack initiation sites during directed energy deposition, thereby limiting the printability of the Co-7Al-8W alloy. The compressive creep results reveal a similar creep resistance of crack-free Co-12Al-8W alloy compared to conventionally processed ternary Co-Al-W alloys.

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