Investigation of the Microstructure and Mechanical Properties of an Ultrahigh Strength Martensitic Steel Fabricated Using Laser Metal Deposition Additive Manufacturing

Author:

Wang MinORCID,Zhang QicanORCID,Li Wengang,Zhang Zhen,Chui Pengfei,Yu Zhiting,Zhang Kun

Abstract

Ultrahigh strength steels were additively manufactured (AM) using different batches of powders by means of the laser metal deposition (LMD) technique. After quenching and tempering treatments, the microstructures, mechanical properties, and fracture modes of ultrahigh strength steels were investigated by several testing methods. The results demonstrate that martensite and Fe3C cementite were found in the three specimens after quenching and tempering treatments, and the tempered martensite microstructure had a lamellar structure in all specimens. The widths of these martensite lathes were observed to be different for the APHT-1, APHT-2, and APHT-3 samples, and their sizes were 1.92 ± 0.90 μm, 1.87 ± 1.09 μm, and 1.82 ± 0.85 μm, respectively. The martensitic steel exhibited excellent mechanical properties (tensile strength and impact toughness). The yield strength and the ultimate tensile strength of the APHT-3 sample reached 1582 MPa and 1779 MPa, respectively. Moreover, the value of the impact energy for the APHT-1 sample was 46.4 J. In addition, with the changes in the batches of ultrahigh strength steel powders, the fracture mode changed from ductile fracture to brittle fracture under tensile force and impact loads.

Funder

Sichuan Province Science and Technology Major Project

Publisher

MDPI AG

Subject

General Materials Science,Metals and Alloys

Reference42 articles.

1. A critical review on the microstructure and mechanical properties correlation of additively manufactured nickel-based superalloys;J. Alloy. Compd.,2022

2. Development of lattice structure with selective laser melting process: A state of the art on properties, future trends and challenges;J. Manuf. Process.,2022

3. A short review on thermal treatments of titanium & nickel based alloys processed by selective laser melting;J. Mater. Res. Technol.,2021

4. Progress in additive manufacturing on new materials: A review;J. Mater. Sci. Technol.,2019

5. Additive manufacturing of medical instruments: A state-of-the-art review;Addit. Manuf.,2019

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