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◆ Journal of Material Science and Technology2026-03-09· Materials science

Cross-sectional helium irradiation revealing interface-controlled bubble evolution in Cr/CrAlSiN multilayer coatings on zirconium alloys

Renda Wang, Xue Bai, Xueliang Pei, Sijie Liu, Chunfan Liu, Ping Yu, Bingsheng Li, N. Daghbouj, Tomas Polcar, Fanping Meng, Fangfang Ge, Qing Huang

原始摘要(英文原文)· Original abstract
• Cross-sectional helium irradiation reveals the interface-controlled evolution of helium bubbles in Cr/CrAlSiN multilayer coatings on zirconium alloys. • The Cr/CrAlSiN multilayers show spatial modulation of bubble size and density, with interfaces acting as sinks that suppress bubble coalescence and swelling. • A nitrogen-enriched ZrN interlayer forms spontaneously at the Cr/AlSiN-Zr interface, preventing large cavity formation and enhancing interfacial stability under irradiation at 750°C. • Compared to monolayer Cr coatings, Cr/CrAlSiN multilayers exhibit superior irradiation resistance due to dynamic helium redistribution and stable coating-substrate interfaces. The irradiation stability of Cr-based protective coatings on zirconium alloys is critical for the development of accident-tolerant fuel claddings. However, conventional surface irradiation often produces shallow, nonuniform damage, obscuring interfacial behavior. In this study, we perform cross-sectional He 2+ irradiation to directly examine the interfacial response and He bubble evolution across Cr monolayer and Cr/CrAlSiN multilayer coatings on Zr substrates. Irradiation was carried out at 500 and 750 °C to doses of 2–3 displacements per atom (dpa), enabling a direct comparison of temperature-dependent microstructural evolution. In the Cr monolayer, He implantation produced a homogeneous distribution of nanoscale bubbles throughout the damaged region and large cavities at the Cr/Zr interface, indicating severe Kirkendall-type voiding and interfacial decohesion at elevated temperature. In contrast, the Cr/CrAlSiN multilayer exhibited a periodically modulated bubble distribution, with bubble fragmentation and transformation into nanoscale platelets at CrAlSiN interfaces. A N-enriched Zr(N) interlayer formed spontaneously at the CrAlSiN/Zr interface, effectively suppressing bubble accumulation and interdiffusion. The nanochannel interfaces acted as He sinks and diffusion barriers, enhancing interfacial bonding and mitigating swelling. This work demonstrates that cross-sectional ion irradiation is a powerful approach for probing interfacial stability in multilayer systems, offering new insights into He-defect interactions and radiation tolerance engineering at buried interfaces. The findings highlight the potential of Cr/CrAlSiN multilayers as advanced coating architectures for high-temperature nuclear environments.
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Cross-sectional helium irradiation revealing interface-controlled bubble evolution in Cr/CrAlSiN multilayer coatings on zirconium alloys — 科研速览 Science Skim