4.3 Article

Manufacture of fibrous β-Si3N4-reinforced biomorphic SiC matrix composites for bioceramic scaffold applications

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ELSEVIER
DOI: 10.1016/j.msec.2008.11.012

关键词

Si3N4 reinforced biomorphic SiC composite; Wood template; Liquid metal infiltration (LMI); Mechanical properties

资金

  1. Special Project of National Grand Fundamental Research Pre-973 of China [2008CB617613, 2007CB216402]
  2. Science Foundation of Ministry of Education of China [203143]
  3. Program Foundation of Institutions of Higher Education of Ningxia Province
  4. National Undergraduate Innovation Program of China [081-04]

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The manufacturing of the Si3N4 reinforced biomorphic microcellular SiC composites for potential medical implants for bone substitutions with good biocompatibility and physicochemical properties was performed in a two step process. First, wood-derived porous Si/SiC ceramics with various porosities were produced by liquid silicon infiltration (LSI) at 1550 degrees C with static nitrogen atmosphere protection (0.1 MPa), followed by subsequent partial removing of the Si in vacuo at 1700 degrees C for different periods of time. Secondly, the final porous Si3N4 fiber/SiC composite was obtained by further chemical reaction of nitrogen with the infiltrated residual silicon at 1400 degrees C for 4 h under high concentration flowing nitrogen atmospheres (0.5 MPa). The bending strengths of the porous Si3N4 fiber/SiC composite at axial and radial direction were measured as 180.03 MPa and 90 MPa respectively. The improvement in bending strength was primarily attributed to grain pull-out and bridging enhanced by the elongated beta-Si3N4 grains cross-linked in the depth of the pore channels. The TG analysis showed an obvious improvement in oxidation resistance of the nitride specimens. Crown Copyright (C) 2008 Published by Elsevier B.V. All rights reserved.

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