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  1. 361

    Effect of Isothermal Treatment on Microstructure and Mechanical Properties of Cold-Deformed IF Steel by Jose Luis Reyes Barragan, Roberto Ademar Rodriguez Diaz, Maria Luisa Ojeda Martinez, Silvia Gaona Jimenez, Julio Alberto Juarez Islas

    Published 2019-01-01
    “…A graphical model of the recrystallisation behaviour showed the evolution of the microstructure, including phase transformations, hardness, and the mechanical properties determined from the tensile tests. …”
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    Article
  2. 362
  3. 363

    Microstructure and Properties of Mooring Chain Steel Prepared by Selective Laser Melting by Xiaojie Cui, Xiaoxin Li, Changqing Hu, Dingguo Zhao, Yan Liu, Shuhuan Wang

    Published 2025-05-01
    “…This study reveals the microstructure evolution and the mechanism of enhanced mechanical properties in SLM-fabricated 22MnCrNiMo steel, providing a new approach for the preparation of high-performance mooring chains using 22MnCrNiMo steel.…”
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    Article
  4. 364

    Influence of Process Parameters on the Microstructural and Mechanical Characteristics of TLP Bonded IN718 by U.K. Tarai, S. Dwibedi, D.R. Biswal, A.R. Biswal, Madhab Behera, Suyog Jhavar

    Published 2025-06-01
    “…study explores the role of process parameters in joining IN718 with the TLP bonding process is explored. Microstructure evolution and mechanical performance of the bond are investigated using scanning electron microscopy, tensile test, and micro-hardness test. …”
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  5. 365

    Long term effects of lead contaminated water on the strength and microstructure of concrete by Sedigheh Ghasemi, Peyman Homami, Jafar Keyvani Ghamsari

    Published 2025-07-01
    “…This study systematically investigates the long-term effects of lead-contaminated mixing water on the mechanical performance, durability, and pollutant immobilization capacity of concrete, with particular focus on microstructural evolution. A total of 210 concrete specimens were prepared using mixing water containing lead concentrations of 0, 0.001, 0.002, 0.005, 0.01, 0.02, and 0.05 M. …”
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  6. 366

    Investigation of microstructure and properties of TiN-strengthened mooring chain steel by Xiaojie Cui, Xiaoxin Li, Changqing Hu, Dingguo Zhao, Yan Liu, Shuhuan Wang

    Published 2025-09-01
    “…These findings elucidate the underlying mechanisms of microstructural evolution and mechanical property enhancements in TiN-modified 22MnCrNiMo steel processed by SLM, providing valuable insights for optimizing the performance of HSLA steels in demanding marine environments.…”
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    Article
  7. 367

    The effect of Fe content on the microstructure and properties of Cu–3Ti alloy by Di Wang, Qingjuan Wang, Bofan Xu, Kuaishe Wang, Wen Wang, Fengming Qiang, Ke Qiao

    Published 2025-07-01
    “…This study investigates the effect of Fe content ranging from 0 to 0.6 wt% on the microstructure and properties of Cu–3Ti alloys. In the forged state, the alloy exhibits an equiaxed grain structure. …”
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  8. 368
  9. 369

    Effects of GTAW process and post-welding heat treatment on the microstructure evolution, cracking behavior and hardness of Inconel 939 superalloy using Inconel 617 filler metal by Amir Hossein Jafarzadeh, Mohammad Saeed Shahriari, Rouholah Ashiri

    Published 2025-09-01
    “…The research focuses on three key challenges: (1) irregularities in pre-existing MC carbides, (2) heat-affected zone (HAZ) liquation cracking, and (3) post-weld heat treatment (PWHT) effects on microstructure evolution and hardness distribution. Initial welding revealed a 91 μm HAZ crack, identified as liquation cracking caused by localized melting of service-induced lamellar carbides along grain boundaries. …”
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  10. 370
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    Microstructure evolution and mechanical behaviors of Ti6Al4V/NbZr1 bimetallic additively manufactured structure: A molecular dynamics simulation by Behrouz Bagheri Vanani, Saiful Islam, Mahdi Sadeqi Bajestani, Yongho Jeon, Duck Bong Kim

    Published 2025-07-01
    “…In this study, we apply molecular dynamics (MD) simulation to investigate the microstructural and mechanical evolution of Ti6Al4V/NbZr1 bimetallic structures fabricated using wire arc additive manufacturing (WAAM) under low, medium, and high heat input conditions: 180 A (LHI), 200 A (MHI), and 220 A (HHI), respectively. …”
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    Article
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