Numerical simulation for ICVI process of Si3N4p/Si3N4 composites

Zhuopei Hu, Laifei Cheng, Xi Wei, Chunnian Zhao, Yi Liu

Research output: Contribution to journalArticlepeer-review

1 Scopus citations

Abstract

A mathematical model according to structural feature of Si3N4 particle reinforcement and process characteristic of isothermal chemical vapor infiltration (ICVI) was proposed to numerically simulate the densification behaviors of Si3N4 particle reinforced Si3N4 composites. The ball-like pore model is developed to depict the structure of Si3N4 particle reinforcement and the mass transfer equation of reagents is used to characterize the concentration profile in the preform. The corresponding experiment was done in order to testify the mathematical model. The calculated results represent the same densification regularity as the experimental data does, and the curves of calculated infiltration time and porosity are in agreement with the experimental ones, which indicates that the model developed here is reasonable to characterize the ICVI process of Si3N4p/Si3N4 composites.

Original languageEnglish
Pages (from-to)111-115
Number of pages5
JournalFuhe Cailiao Xuebao/Acta Materiae Compositae Sinica
Volume23
Issue number5
StatePublished - Oct 2006

Keywords

  • Isothermal chemical vapor infiltration (ICVI)
  • Numerical simulation
  • SiN/SiN composites

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