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February 11, 2026Journal of Thermal Spray Technology2 citationsOpen Access

High-Resolution Synchrotron µXRD and µXRF for Local Phase and Elemental Analysis in Suspension Plasma Sprayed Environmental Barrier Coatings

CNChinmayee NayakAHArman HasaniGVGidla Vinay

Key Points

  • The central aim is to evaluate synchrotron-based techniques for detailed phase and elemental analysis of environmental barrier coatings.
  • Utilized synchrotron micro-x-ray diffraction (µXRD) and micro-x-ray fluorescence (µXRF) for characterization.
  • Examined different coatings: as-sprayed YbDS and annealed + CMAS-exposed YbDS.
  • Compared findings with conventional laboratory-scale XRD methods.
  • µXRD confirmed phase-pure YbDS in the as-sprayed condition and detailed individual coating layers.
  • Annealed + CMAS-exposed coatings showed a calcium–ytterbium–silicate oxyapatite phase at the YbDS/Si interface.
  • µXRD and µXRF provided insights into localized phase changes that conventional methods missed.

Abstract

Abstract Suspension plasma spraying (SPS) enables the fabrication of environmental barrier coatings (EBCs) with complex multilayer architectures; however, degradation in such systems often initiates locally at buried interfaces, making it difficult to resolve using conventional laboratory-scale characterization techniques. In this work, the applicability of synchrotron-based micro-x-ray diffraction (µXRD), combined with micro-x-ray fluorescence (µXRF), is evaluated for the characterization of SPS-deposited ytterbium disilicate (YbDS) EBCs. An as-sprayed YbDS coating was investigated as a baseline case to examine differences between conventional XRD and spatially resolved µXRD, while an annealed and CMAS-exposed YbDS coating was studied as a service-relevant case to probe localized phase evolution. The samples were selected from previously optimized SPS process conditions and are not intended for direct comparison. Laboratory-scale XRD provided global phase information, whereas µXRD enabled layer-specific phase identification and resolved localized interfacial features. In the as-sprayed condition, µXRD confirmed phase-pure YbDS, resolved the crystallinity of individual coating layers, and verified the absence of unintended interfacial reaction phases that are not accessible by conventional XRD. In the annealed + CMAS-exposed coating, µXRD and µXRF revealed the formation of a calcium–ytterbium–silicate oxyapatite phase confined to the YbDS/Si interface, highlighting the localized nature of CMAS-induced degradation. These results demonstrate that synchrotron microanalysis provides valuable complementary insight for probing localized phase evolution in thermally sprayed EBC systems.

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Cite This Study

Nayak et al. (2026) studied this question.

synapsesocial.com/papers/698c1c73267fb587c655ef86https://doi.org/10.1007/s11666-026-02159-9
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