Research Article

Effect of SiC Particle Size on the Microstructural, Mechanical and Oxidation Properties of In-situ Synthesized HfB2-SiC Composites

Volume: 24 Number: 2 June 1, 2021
EN TR

Effect of SiC Particle Size on the Microstructural, Mechanical and Oxidation Properties of In-situ Synthesized HfB2-SiC Composites

Abstract

In-situ synthesis and densification of hafnium diboride - silicon carbide (HfB2-SiC) ceramic composites were studied by the spark plasma sintering (SPS) method using HfO2, B, and SiC as starting powders. Influence of SiC particle size (∼2 µm and ∼10 µm) on mechanical properties and oxidation resistance of in-situ composites were extensively investigated. According to the achieved results, the highest densification (∼95 % TD) was obtained with fine SiC particle reinforcement. The measured Vickers hardness and fracture toughness of the composites containing fine SiC were 14.3 GPa and 5.42 MPa.m1/2, respectively. The fracture mode changed from transgranular cleavage to a mixed-mode, and the crack deflection was believed to be the primary toughening mechanism. From oxidation test result, the composite with fine SiC particles exhibited more inhomogeneous oxide scales compared to that of coarse SiC containing composite. 

Keywords

Supporting Institution

Anadolu Üniversitesi-Eskişehir Teknik Üniversitesi

Project Number

1505F506

References

  1. [1] R Levine S., Opila E., Halbig M., D Kiser J., Singh M., Salem A.”Evaluation of Ultra-High Temperature Ceramics for Aero Propulsion Use”, Journal of the European Ceramic Society, 22: 2757-2767, (2002)
  2. [2] Fahrenholtz W.G., Hilmas G.E., Talmy I.G., Zaykoski J.A.”Refractory Diborides of Zirconium and Hafnium”, Journal of the American Ceramic Society, 90: 1347-1364, (2007)
  3. [3] Akin I., Goller G., “Spark Plasma Sintering of Zirconia-Toughened Alumina Composites and Ultra-High Temperature Ceramics Reinforced with Carbon Nanotubes”, Research and Innovation in Carbon Nanotube-Based Composites, 2015.
  4. [4] Ni D.-W., Zhang G.-J., Kan Y.-M., Wang P.-L.”Synthesis of Monodispersed Fine Hafnium Diboride Powders Using Carbo/Borothermal Reduction of Hafnium Dioxide”, Journal of the American Ceramic Society, 91: 2709-2712, (2008)
  5. [5] Wang H., Lee S.H., Kim H.D., Oh H.C.”Synthesis of Ultrafine Hafnium Diboride Powders Using Solution-Based Processing and Spark Plasma Sintering”, International Journal of Applied Ceramic Technology, 11: (2014)
  6. [6] Brochu M., Gauntt B., Zimmerly T., Ayala A., Loehman R.”Fabrication of UHTCs by Conversion of Dynamically Consolidated Zr+B and Hf+B Powder Mixtures”, Journal of the American Ceramic Society, 91: 2815-2822, (2008)
  7. [7] Ni D.-W., Zhang G.-J., Kan Y.-M., Wang P.-L.”Hot Pressed HfB2 and HfB2–20vol%SiC Ceramics Based on HfB2 Powder Synthesized by Borothermal Reduction of HfO2*”, International Journal of Applied Ceramic Technology, 7: 830-836, (2010)
  8. [8] Blum Y.D., Marschall J., Hui D., Adair B., Vestel M.”Hafnium Reactivity with Boron and Carbon Sources Under Non-Self-Propagating High-Temperature Synthesis Conditions”, Journal of the American Ceramic Society, 91: 1481-1488, (2008)

Details

Primary Language

English

Subjects

Engineering

Journal Section

Research Article

Publication Date

June 1, 2021

Submission Date

January 30, 2020

Acceptance Date

April 20, 2020

Published in Issue

Year 2021 Volume: 24 Number: 2

APA
Gürcan, K., Derin, B., & Ayas, E. (2021). Effect of SiC Particle Size on the Microstructural, Mechanical and Oxidation Properties of In-situ Synthesized HfB2-SiC Composites. Politeknik Dergisi, 24(2), 503-510. https://doi.org/10.2339/politeknik.682256
AMA
1.Gürcan K, Derin B, Ayas E. Effect of SiC Particle Size on the Microstructural, Mechanical and Oxidation Properties of In-situ Synthesized HfB2-SiC Composites. Politeknik Dergisi. 2021;24(2):503-510. doi:10.2339/politeknik.682256
Chicago
Gürcan, Kübra, Bora Derin, and Erhan Ayas. 2021. “Effect of SiC Particle Size on the Microstructural, Mechanical and Oxidation Properties of In-Situ Synthesized HfB2-SiC Composites”. Politeknik Dergisi 24 (2): 503-10. https://doi.org/10.2339/politeknik.682256.
EndNote
Gürcan K, Derin B, Ayas E (June 1, 2021) Effect of SiC Particle Size on the Microstructural, Mechanical and Oxidation Properties of In-situ Synthesized HfB2-SiC Composites. Politeknik Dergisi 24 2 503–510.
IEEE
[1]K. Gürcan, B. Derin, and E. Ayas, “Effect of SiC Particle Size on the Microstructural, Mechanical and Oxidation Properties of In-situ Synthesized HfB2-SiC Composites”, Politeknik Dergisi, vol. 24, no. 2, pp. 503–510, June 2021, doi: 10.2339/politeknik.682256.
ISNAD
Gürcan, Kübra - Derin, Bora - Ayas, Erhan. “Effect of SiC Particle Size on the Microstructural, Mechanical and Oxidation Properties of In-Situ Synthesized HfB2-SiC Composites”. Politeknik Dergisi 24/2 (June 1, 2021): 503-510. https://doi.org/10.2339/politeknik.682256.
JAMA
1.Gürcan K, Derin B, Ayas E. Effect of SiC Particle Size on the Microstructural, Mechanical and Oxidation Properties of In-situ Synthesized HfB2-SiC Composites. Politeknik Dergisi. 2021;24:503–510.
MLA
Gürcan, Kübra, et al. “Effect of SiC Particle Size on the Microstructural, Mechanical and Oxidation Properties of In-Situ Synthesized HfB2-SiC Composites”. Politeknik Dergisi, vol. 24, no. 2, June 2021, pp. 503-10, doi:10.2339/politeknik.682256.
Vancouver
1.Kübra Gürcan, Bora Derin, Erhan Ayas. Effect of SiC Particle Size on the Microstructural, Mechanical and Oxidation Properties of In-situ Synthesized HfB2-SiC Composites. Politeknik Dergisi. 2021 Jun. 1;24(2):503-10. doi:10.2339/politeknik.682256

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