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首页> 外文期刊>Materials Science and Engineering. A, Structural Materials: Properties, Microstructure and Processing >Thick ceramic thermal barrier coatings with high durability deposited using solution-precursor plasma spray
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Thick ceramic thermal barrier coatings with high durability deposited using solution-precursor plasma spray

机译:使用溶液前体等离子喷涂沉积具有高耐久性的厚陶瓷隔热涂层

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The efficacy of ceramic thermal barrier coatings (TBCs) used to protect and insulate metal components in engines increases with the thickness of the TBCs. However, the durabilities of thick TBCs deposited using conventional ceramics-coating deposition methods have not been adequate. Here, we demonstrate the feasibility of depositing highly durable, 4 mm thick TBCs of ZrO_2-7 wt.% Y_2O_3 (7YSZ) on bond-coated superalloy substrates using the solution-precursor plasma spray (SPPS) method. It was found that the average thermal cycling life of the 4 mm thick SPPS TBCs is 820 cycles. While most of the conventional air plasma-sprayed (APS) coatings of the same composition and thickness deposited on identical bond-coated superalloy substrates were found to be detached partially from the substrates in the as-sprayed condition, the APS TBC that was intact failed after 40 thermal cycles. The dramatic improvement in the thermal cycling life in the SPPS TBCs can be attributed to: (ⅰ) the significantly higher in-plane indentation-fracture toughness (over five-fold) in the SPPS TBCs over APS TBCs and (ⅱ) the presence of the vertical cracks in SPPS TBCs resulting in a high degree of strain tolerance. The large thickness of the SPPS coatings also allowed us to characterize the mechanical properties of the ceramic top-coat in some detail. To that end, we report here the results from indentation-toughness tests and uniaxial-compression tests on the SPPS TBCs and the reference APS TBCs.
机译:用于保护和隔离发动机金属部件的陶瓷隔热涂层(TBC)的功效随TBC厚度的增加而提高。然而,使用常规的陶瓷涂层沉积方法沉积的厚TBC的耐久性不足。在这里,我们证明了使用溶液前驱体等离子喷涂(SPPS)方法在键涂超合金基体上沉积ZrO_2-7 wt%Y_2O_3(7YSZ)的高度耐用的4 mm厚TBC的可行性。发现4mm厚的SPPS TBC的平均热循环寿命为820个循环。虽然发现在相同喷涂状态下沉积在相同粘结涂层超合金基体上的大多数相同成分和厚度的常规空气等离子喷涂(APS)涂层在喷涂状态下均会部分从基体上脱落,但完整的APS TBC却失败了经过40个热循环。 SPPS TBC中热循环寿命的显着改善可归因于:(ⅰ)SPPS TBC中的面内压痕-断裂韧性比APS TBC高得多(超过五倍),以及(ⅱ)存在SPPS TBC中的垂直裂缝导致高度的应变耐受性。 SPPS涂层的大厚度也使我们能够更详细地表征陶瓷面漆的机械性能。为此,我们在此报告SPPS TBC和参考APS TBC的压痕韧性测试和单轴压缩测试的结果。

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