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March 10, 2026Journal of Materials Research and Technology0 citationsOpen Access

Mechanical Properties and Wear Behavior of Ti3SiC2-TiB2 Composites Obtained by Reaction Spark Plasma Sintering

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ZAZahra AkbariLNLeila NikzadHSHossein Sarpoolaki

Key Points

  • This research aims to examine the mechanical properties and wear behavior of Ti3SiC2-TiB2 composites synthesized through spark plasma sintering.
  • Synthesis of Ti3SiC2-TiB2 composite using reactive spark plasma sintering
  • Investigation of precursor milling time and sintering temperature effects
  • Phase analysis via X-ray diffractometry with Rietveld refinement
  • Microstructural characterization using field emission scanning electron microscopy
  • Optimal composite achieved with 1 hour milling and sintering at 1200 °C
  • Composite composition: 66.48% Ti3SiC2, 29.96% TiB2, 3.56% TiC
  • Density measured at 4.38 g/cm3
  • Flexural strength recorded at 741.2 ± 17.2 MPa
  • Vickers hardness reached 10.74 GPa under a 5 kg load
  • Wear rate calculated at 0.396 mm3/N·m

Abstract

A Ti 3 SiC 2 – TiB 2 composite was synthesized by reactive spark plasma sintering (RSPS) using Ti, TiC, Si, and B powders as precursors. The effects of precursor milling time and sintering temperature on the phase composition, microstructure, and mechanical properties were investigated. Phase analysis was conducted using X-ray diffractometry combined with Rietveld refinement, while microstructural characterization was performed by field emission scanning electron microscopy. The optimal sample, prepared with 1 hour of milling and sintered at 1200 °C, consisted of 66.48% Ti 3 SiC 2 , 29.96% TiB 2 , and 3.56% TiC. This specimen exhibited a density of 4.38 g/cm 3 , a flexural strength of 741.2 ± 17.2 MPa, a Vickers hardness of 10.74 GPa (under a 5 kg load), and a wear rate of 0.396 mm 3 /N·m. The results demonstrate that RSPS, combined with optimized processing parameters, enables the fabrication of Ti 3 SiC 2 –TiB 2 composites with controlled phase composition and enhanced mechanical performance, making them promising candidates for advanced structural applications.

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Cite This Study

Akbari et al. (2026) studied this question.

synapsesocial.com/papers/69af949670916d39fea4b91fhttps://doi.org/10.1016/j.jmrt.2026.03.035
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