A defect-resistant Co–Ni superalloy for 3D printing

Author:

Murray Sean P.ORCID,Pusch Kira M.,Polonsky Andrew T.ORCID,Torbet Chris J.,Seward Gareth G. E.,Zhou Ning,Forsik Stéphane A. J.ORCID,Nandwana PeeyushORCID,Kirka Michael M.,Dehoff Ryan R.,Slye William E.,Pollock Tresa M.ORCID

Abstract

AbstractAdditive manufacturing promises a major transformation of the production of high economic value metallic materials, enabling innovative, geometrically complex designs with minimal material waste. The overarching challenge is to design alloys that are compatible with the unique additive processing conditions while maintaining material properties sufficient for the challenging environments encountered in energy, space, and nuclear applications. Here we describe a class of high strength, defect-resistant 3D printable superalloys containing approximately equal parts of Co and Ni along with Al, Cr, Ta and W that possess strengths in excess of 1.1 GPa in as-printed and post-processed forms and tensile ductilities of greater than 13% at room temperature. These alloys are amenable to crack-free 3D printing via electron beam melting (EBM) with preheat as well as selective laser melting (SLM) with limited preheat. Alloy design principles are described along with the structure and properties of EBM and SLM CoNi-base materials.

Funder

U.S. Department of Defense

U.S. Department of Energy

National Science Foundation

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry

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