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A new strategy for microstructural programming and toughening of α-SiC ceramics

  • Jin zhao Zhou
  • , Xiao tong Jia
  • , Xing wang Cheng*
  • , Zhao hui Zhang*
  • , Qiang Wang
  • , Wen jun Li
  • *Corresponding author for this work
  • Beijing Institute of Technology

Research output: Contribution to journalArticlepeer-review

Abstract

Achieving both high densification and intrinsic toughening remains a fundamental challenge for SiC and other strongly covalent ceramics. A new strategy is proposed to promote the densification of SiC ceramics via spark plasma sintering. The direct addition of uncrosslinked polysilazane (PSZ) into 6H-SiC powders introduces nitrogen (N) during pyrolysis, which may locally modify the chemical environment and may be associated with changes in the relative stability of α-SiC polytypes and the observed 6H-SiC→4H-SiC transformation. This transformation is accompanied by anisotropic grain growth and controllable microstructural evolution from equiaxed to columnar grains, resulting in the formation of interlocking structures. By adjusting the PSZ content, both fine equiaxed and interlocking microstructures exhibit high fracture toughness (∼6.9 MPa m1/2), representing an improvement of approximately 72.5% compared with monolithic SiC (∼4 MPa m1/2). This strategy provides an effective solid-state sintering route for microstructural design and mechanical enhancement in strongly covalent ceramics.

Original languageEnglish
JournalCeramics International
DOIs
Publication statusAccepted/In press - 2026
Externally publishedYes

Keywords

  • Mechanical properties
  • Phase transformation
  • Polysilazane
  • SiC ceramics
  • Spark plasma sintering

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