Synthesis and Characterization of Single-Phase X2-Lu2sio5 Nanostructured Feedstocks for Advanced Plasma-Sprayed Environmental Barrier Coatings

14 Pages Posted: 22 Oct 2023

See all articles by Donghui Guo

Donghui Guo

Beijing Institute of Technology

Jia Liu

China Academy of Space Technology

Jinzhuo Shi

China Academy of Launch Vehicle Technology

Baosheng Xu

Beijing Institute of Technology

Baolu Shi

Beijing Institute of Technology

Feifei Zhou

Beijing Institute of Technology

You Wang

Harbin Institute of Technology - School of Materials Science and Engineering

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Abstract

The objective of this work is to synthesize the single-phase X2-Lu2SiO5 nanostructured feedstocks for plasma-sprayed environmental barrier coatings (EBCs). Generally speaking, high-performance feedstocks are a prerequisite for obtaining high-performance coatings. The single-phase X2-Lu2SiO5 nanostructured feedstocks were fabricated by a nanopowder reconstitution method for the first time. The morphology and phase structure of X2-Lu2SiO5 nanostructured feedstocks were examined. In addition, the physical properties of X2-Lu2SiO5 feedstocks were evaluated. Results show that the single-phase X2-Lu2SiO5 nanostructured feedstocks are successfully synthesized when the mole ratio of Lu2O3 and SiO2 nanopowder is 1:1.1 and the agglomerated powders are sintered at 1300℃ for 2 h. The nanocrystalline size of the X2-Lu2SiO5 feedstocks ranges from 40-70 nm. Moreover, the d10, d50 and d90 of X2-Lu2SiO5 feedstocks are 24.69 μm, 37.78 μm and 54.75 μm, respectively. The apparent density and tap density of X2-Lu2SiO5 feedstocks are 1.76 g/cm3 and 2.09 g/cm3, respectively. Overall, the single-phase X2-Lu2SiO5 nanostructured feedstocks are the most promising feedstocks for advanced EBCs system in the future.

Keywords: Nanostructured feedstock, X2-Lu2SiO5, Plasma spraying, Environmental barrier coatings, Nanocrystalline

Suggested Citation

Guo, Donghui and Liu, Jia and Shi, Jinzhuo and Xu, Baosheng and Shi, Baolu and Zhou, Feifei and Wang, You, Synthesis and Characterization of Single-Phase X2-Lu2sio5 Nanostructured Feedstocks for Advanced Plasma-Sprayed Environmental Barrier Coatings. Available at SSRN: https://ssrn.com/abstract=4609355 or http://dx.doi.org/10.2139/ssrn.4609355

Donghui Guo (Contact Author)

Beijing Institute of Technology ( email )

5 South Zhongguancun street
Center for Energy and Environmental Policy Researc
Beijing, 100081
China

Jia Liu

China Academy of Space Technology ( email )

China

Jinzhuo Shi

China Academy of Launch Vehicle Technology ( email )

China

Baosheng Xu

Beijing Institute of Technology ( email )

5 South Zhongguancun street
Center for Energy and Environmental Policy Researc
Beijing, 100081
China

Baolu Shi

Beijing Institute of Technology ( email )

5 South Zhongguancun street
Center for Energy and Environmental Policy Researc
Beijing, 100081
China

Feifei Zhou

Beijing Institute of Technology ( email )

5 South Zhongguancun street
Center for Energy and Environmental Policy Researc
Beijing, 100081
China

You Wang

Harbin Institute of Technology - School of Materials Science and Engineering ( email )

92 West Dazhi Street
Nan Gang District
Harbin, 150001
China

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