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March 3, 2026Journal of the European Ceramic Society0 citationsOpen Access

Reducing heat treatment time and temperature for dense crystalline ytterbium disilicate environmental barrier coatings

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PKP. KhamsepourPBP. BansalDGDaniel Guay

Key Points

  • Environmental barrier coatings can achieve stable phases at lower temperatures, enhancing efficiency.
  • Stable ytterbium silicate phases form above 1200 °C, while metastable phases can be stabilized at 1100 °C with specific conditions.
  • The study showcases the modification of heat treatment durations leading to comparable morphology and hardness across temperatures.
  • Lower heat treatment requirements may lead to reduced production costs for semiconductor protective coatings.

Abstract

Ytterbium disilicate (YbDS) environmental barrier coatings (EBCs) are deposited by atmospheric plasma spray (APS) to protect aeroengine components made of SiC fiber(f) /SiC ceramic matrix composites. During deposition, rapid solidification of molten YbDS particles upon impact creates an amorphous structure which needs to be crystallized. This study optimized crystallization heat treatment for dense (~2% porosity) EBCs with as-sprayed crystallinity between 10 - 50%. Stable ytterbium silicate phases (YbDS and Yb₂SiO₅ (YbMS)) are formed above 1200 °C, regardless of initial crystallinity. EBCs with crystallinity of 15% produced metastable phases at 1100 °C, requiring at least 10 h to transform them into stable phases, while coatings with 50% crystallinity formed stable phase after only 4 h. The morphology and hardness of EBCs after crystallization are shown to be comparable irrespective of the heat treatment temperature. This demonstrates that partially crystalline as-sprayed YbDS can be crystallized faster and at lower temperatures, potentially reducing production costs.

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Cite This Study

Khamsepour et al. (2026) studied this question.

synapsesocial.com/papers/69a75e17c6e9836116a28748https://doi.org/10.1016/j.jeurceramsoc.2026.118190
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