Review of Laser Powder Bed Fusion of Gamma-Prime-Strengthened Nickel-Based Superalloys

Author:

Adegoke Olutayo,Andersson JoelORCID,Brodin Håkan,Pederson RobertORCID

Abstract

This paper reviews state of the art laser powder bed fusion (L-PBF) manufacturing of γ′ nickel-based superalloys. L-PBF resembles welding; therefore, weld-cracking mechanisms, such as solidification, liquation, strain age, and ductility-dip cracking, may occur during L-PBF manufacturing. Spherical pores and lack-of-fusion voids are other defects that may occur in γ′-strengthened nickel-based superalloys manufactured with L-PBF. There is a correlation between defect formation and the process parameters used in the L-PBF process. Prerequisites for solidification cracking include nonequilibrium solidification due to segregating elements, the presence of liquid film between cells, a wide critical temperature range, and the presence of thermal or residual stress. These prerequisites are present in L-PBF processes. The phases found in L-PBF-manufactured γ′-strengthened superalloys closely resemble those of the equivalent cast materials, where γ, γ′, and γ/γ′ eutectic and carbides are typically present in the microstructure. Additionally, the sizes of the γ′ particles are small in as-built L-PBF materials because of the high cooling rate. Furthermore, the creep performance of L-PBF-manufactured materials is inferior to that of cast material because of the presence of defects and the small grain size in the L-PBF materials; however, some vertically built L-PBF materials have demonstrated creep properties that are close to those of cast materials.

Publisher

MDPI AG

Subject

General Materials Science,Metals and Alloys

Reference85 articles.

1. Superalloys II,1987

2. Metals Affordability Initiative: Application of Allvac Alloy 718Plus for Aircraft Engine Static Structural Components

3. Superalloys: A Technical Guide;Donachie,2002

4. Industrialization of 3D Printing (Additive Manufacturing) for Gas Turbine Components Repair and Manufacturing;Navrotsky,2015

5. MAR M 247 Derivations - CM 247 LC DS Alloy and CMSX Single Crystal Alloys: Properties & Performance

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