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Crack-Resistance Behavior of an Encapsulated, Healing Agent Embedded Buffer Layer on Self-Healing Thermal Barrier Coatings

机译:自修复热障涂层上封装的修复剂嵌入式缓冲层的抗裂性能

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In this work, a novel thermal barrier coating (TBC) system is proposed that embeds silicon particles in coating as a crack-healing agent. The healing agent is encapsulated to avoid unintended reactions and premature oxidation. Thermal durability of the developed TBCs is evaluated through cyclic thermal fatigue and jet engine thermal shock tests. Moreover, artificial cracks are introduced into the buffer layer’s cross section using a microhardness indentation method. Then, the indented TBC specimens are subject to heat treatment to investigate their crack-resisting behavior in detail. The TBC specimens with the embedded healing agents exhibit a relatively better thermal fatigue resistance than the conventional TBCs. The encapsulated healing agent protects rapid large crack openings under thermal shock conditions. Different crack-resisting behaviors and mechanisms are proposed depending on the embedding healing agents.
机译:在这项工作中,提出了一种新型的热障涂层(TBC)系统,该系统将硅颗粒嵌入涂层中作为裂纹修复剂。愈合剂被封装以避免意外反应和过早氧化。通过循环热疲劳和喷气发动机热冲击试验评估了开发的TBC的热耐久性。此外,使用显微硬度压痕方法将人工裂缝引入缓冲层的横截面中。然后,对压痕的TBC试样进行热处理,以详细研究其抗裂性能。与传统的TBC相比,具有嵌入式治疗剂的TBC标本显示出相对更好的抗热疲劳性。封装的愈合剂可在热冲击条件下保护快速的大裂纹开口。根据嵌入的愈合剂,提出了不同的抗裂行为和机制。

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