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Nima Shamsaei

Auburn University - National Center for Additive Manufacturing Excellence (NCAME)

Auburn, AL

United States

SCHOLARLY PAPERS

5

DOWNLOADS

284

TOTAL CITATIONS

2

Scholarly Papers (5)

1.

Role of Build Orientation on Quasi-Static and Dynamic Fracture Responses of Additively Manufactured Alf357 and Alsi10mg Alloys

Number of pages: 37 Posted: 20 May 2022
Auburn University, Auburn University - National Center for Additive Manufacturing Excellence (NCAME), affiliation not provided to SSRN, affiliation not provided to SSRN, Auburn University - National Center for Additive Manufacturing Excellence (NCAME) and Auburn University
Downloads 112 (640,165)
Citation 2

Abstract:

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aluminum alloys, Laser-Powder Bed Fusion (L-PBF/LB-PBF), Fracture mechanics, High Strain-rate Behavior, digital image correlation

2.

Hot Isostatic Pressing for Fatigue Critical Additively Manufactured Ti-6Al-4V

Number of pages: 6 Posted: 25 Nov 2021
Cornell University - Cornell Fracture Group, Auburn University - National Center for Additive Manufacturing Excellence (NCAME), Auburn University - National Center for Additive Manufacturing Excellence (NCAME), Auburn University - National Center for Additive Manufacturing Excellence (NCAME), Naval Air Systems Command (NAVAIR) - Structures Division and Cornell University - Cornell Fracture Group
Downloads 99 (694,528)

Abstract:

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Metal Additive Manufacturing, fatigue, High Isostatic Pressing

3.

Tailoring Microstructure and Strength Through Selective Remelting in Laser Powder Bed Fusion

Number of pages: 22 Posted: 08 May 2023
Sandia National Laboratories, Auburn University - National Center for Additive Manufacturing Excellence (NCAME), Sandia National Laboratories, Sandia National Laboratories, Sandia National Laboratories, Sandia National Laboratories and Auburn University - National Center for Additive Manufacturing Excellence (NCAME)
Downloads 60 (970,490)

Abstract:

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additive manufacturing, Microstructural Control, Stainless Steel, Process-Structure-Property Relationships

4.

An integrative multi-fidelity framework for fatigue life prediction in additively manufactured 316L stainless steel

Number of pages: 74 Posted: 30 Jun 2026
University of Michigan at Ann Arbor - Department of Aerospace Engineering, affiliation not provided to SSRN, University of Utah, affiliation not provided to SSRN, Auburn University, Auburn University - National Center for Additive Manufacturing Excellence (NCAME) and University of Michigan at Ann Arbor - Department of Aerospace Engineering
Downloads 13

Abstract:

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Laser powder bed fusion, 316L stainless steel, Crystal plasticity, Fatigue crack initiation, Defect morphology

5.

Understanding Fatigue of Additively Manufactured Tpms Metallic Metamaterials: Experiments and Modeling

Additive Manufacturing, volume 111, 2025[10.1016/j.addma.2025.104966]
Posted: 20 Oct 2025 Last Revised: 24 Oct 2025
Auburn University, Arkansas Tech University, Auburn University, Auburn University - National Center for Additive Manufacturing Excellence (NCAME) and Auburn University

Abstract:

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Laser powder bed fusion (L-PBF/LB-PBF), Lattice structures, TPMS, Fatigue, metamaterials