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Polymer-derived SiHfN ceramics: From amorphous bulk ceramics with excellent mechanical properties to high temperature resistant ceramic nanocomposites

  • Wei Li
  • , Fen Li
  • , Zhaoju Yu
  • , Qingbo Wen
  • , Bingbing Fan
  • , Yao Feng
  • , Changhao Zhao
  • , Emmanuel III Ricohermoso
  • , Marc Widenmeyer
  • , Anke Weidenkaff
  • , Ralf Riedel
  • Technische Universität Darmstadt
  • Xiamen University
  • Central South University
  • Zhengzhou University
  • Fraunhofer Research Institution for Materials Recycling and Resource Strategies IWKS

Research output: Contribution to journalArticlepeer-review

22 Scopus citations

Abstract

Within the present work, additive-free amorphous bulk SiHfN ceramics with excellent mechanical properties were prepared by a resource-efficient low-temperature molding method, namely warm-pressing. As densification mechanism viscous flow has been identified based on cross-linking reaction. The critical problems concerning gas evolution and crystallization inducing bloating and cracking are addressed through controlled thermolysis and pressure. The microstructural evolution of the SiHfN ceramics indicates that the incorporation of Hf in perhydropolysilazane not only increases the ceramic yield (97.4 wt%) and crystallization resistance (1300 °C), but also suppresses the transformation from α-Si3N4 to β-Si3N4 at high temperatures (1700 °C). Especially, HfN/α-Si3N4 nanocomposites converted by the SiHfN ceramics at 1500 °C show a slight weight loss of 3.13 wt%, indicating the high temperature resistance of the ceramic nanocomposites. The method proposed in this work opens a new strategy to fabricate additive-free polycrystalline Si3N4- and amorphous Si3N4-based (nano)composites.

Original languageEnglish
Pages (from-to)4493-4502
Number of pages10
JournalJournal of the European Ceramic Society
Volume42
Issue number11
DOIs
StatePublished - Sep 2022
Externally publishedYes

Keywords

  • Amorphous SiHfN ceramic
  • Ceramic nanocomposites
  • Mechanical properties
  • Warm-pressing

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