Microstructural Evolution and Phase Characterization of a Ni-Based Superalloy Under Laser-Assisted Heat Treatment

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Date

2026

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Saudi Digital Library

Abstract

This study investigates the microstructural evolution and mechanical behavior of a Nibased superalloy subjected to combined heat treatment and laser processing. Quantitative analysis of γ′ Ni (Al,Ti) and η (Ni Ti) phase distributions were performed using SEMbased statistical methods. The results show that γ′ precipitates exhibit a fine and uniform distribution with sizes in the range of ~0.05–0.30 µm and a high number density (n ≈ 2916), whereas the η (Ni Ti) phase appears as relatively coarse particles (~0.1–0.6 µm) with lower number density (n ≈ 505). Laser treatment promotes redistribution of γ′ precipitates and suppresses η phase formation, resulting in improved microstructural homogeneity. Mechanical characterization reveals that optimal aging (2 h) yields the highest hardness of ~525 HV at 300 °C, while tensile properties show yield strength in the range of ~10001150 MPa and ultimate tensile strength of ~1300–1500 MPa. The results demonstrate a strong correlation between γ′ refinement and enhanced mechanical performance. These f indings provide a quantitative understanding of phase evolution and establish a microstructure-property relationship for optimizing Ni-based superalloys.

Description

The study investigates the competing formation of the strengthening \gamma’ Ni_3(Al,Ti) phase and the coarser \eta (Ni_3Ti) phase during thermal processing. By utilizing scanning electron microscopy (SEM) for quantitative analysis, the authors demonstrate that localized laser treatment effectively suppresses the detrimental \eta phase. Consequently, this promotes a fine, uniform distribution of \gamma’ precipitates, which directly correlates with improved mechanical performance such as peak hardness (~525 HV) and high ultimate tensile strengths (~1300–1500 MPa)

Keywords

Ni-based superalloy, γ′ Ni (Al, Ti) and η (Ni Ti) phase, laser-assisted processing, precipitation behavior, size distribution analysis, microstructure property relationship

Citation

Alotaibi Fawaz Marzouq S., Ali, U., Ata-Ur-Rehman, & Alhemyari, T. A. A. (2026). Microstructural Evolution and Phase Characterization of a Ni-Based Superalloy Under Laser-Assisted Heat Treatment. Crystals, 16. https://doi.org/10.3390/xxxxx.

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