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Preparation, Magnetic and Mechanical Properties of Fe/Ni-Based Amorphous Fibers. | LitMetric

AI Article Synopsis

  • The study successfully created two types of amorphous fibers (AFs): FeZrCoMoWB and NiNbTa, using the melt-extraction method, which ensured quick cooling and high quality.
  • Magnetic tests showed that Fe-based AFs act like non-magnetic materials, while Ni-based AFs display strong ferromagnetic characteristics, with a significant magnetization value and coercivity.
  • Ni-based AFs demonstrated superior mechanical strength and durability compared to Fe-based AFs, making them highly suitable for advanced applications in engineering and technology.

Article Abstract

In this study, we successfully fabricated FeZrCoMoWB and NiNb.Ta. amorphous fibers (AFs) using the melt-extraction method. This method ensured a rapid cooling, uniform quality, minimal defects, and superior performance. Magnetic property analysis revealed that the Fe-based AFs exhibited a single-slope magnetization curve characteristic of paramagnetic or diamagnetic materials, while the Ni-based AFs displayed a rectangular curve with low magnetic hysteresis, typical of ferromagnetic materials. The axial saturation magnetization of as-prepared Ni-based AFs is ~1.5 × 10 emu/g, with a coercivity of about 85 Oe. The statistical analysis of tensile tests indicated that Ni-based AFs possess a higher fracture threshold of 2440 ± 199 MPa and a reliability of 14.7, demonstrating greater material safety and suitability for high-performance applications. As opposed to Ni-based AFs, Fe-based AFs present a fracture threshold and of 1582 ± 692 MPa and a reliability 4.2. Moreover, under cyclic loading conditions, Ni-based AFs exhibited less residual deformation and superior elastic recovery with a fracture strength of 2800 MPa. These findings highlight the potential of Ni-based AFs for advanced engineering applications, particularly where high strength, durability, and excellent magnetic properties are required, paving the way for their integration into next-generation technologies.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11313161PMC
http://dx.doi.org/10.3390/ma17153733DOI Listing

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