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Parameters affecting TGO growth and adherence on MCrAly-bond coats for TBC's

机译:影响TGO的TGO生长和对MCrAly粘结涂层的附着力的参数

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摘要

Electron Beam-Physical Vapor Desposited Thermal Barrier Coatings (EB-PVD TBC) on the Ni-base superalloy IN738LC were tested in respect to non-isothermal and cyclic oxidation resistance at 1100 degrees C. Two types of MCrAlY's (M = Ni, Co), a Co-base and a Ni-base, were used as bond coats (BC) for the TBC's. Additionally, free standing MCrAlY specimens of 2 mm thickness were manufactured by vacuum plasma spraying. The results of the present studies strongly indicate, that an important lifetime governing factor of the TBC is the yttrium incorporation into the alumina based Thermal Grown Oxide (TGO) which results in an increase of the TGO growth rate and in parallel in a decrease of the yttrium concentration in the coating. If the yttrium concentration has been decreased beneath a critical level, its positive effect on TGO adherence is lost, resulting in TGO spallation. The time required for yttrium exhaustion will not only depend on the initial yttrium content but also on the yttrium reservoir, which is directly proportional to the BC thickness. The transport of yttrium into the TGO seems to occur slower in a Co-based than in a Ni-based coating, resulting in a longer life time for the TBC on the CoNiCrAlY-BC. (c) 2006 Elsevier B.V. All rights reserved.
机译:对镍基高温合金IN738LC上的电子束物理气相沉积热障涂层(EB-PVD TBC)进行了1100摄氏度下的非等温和循环抗氧化性测试。两种类型的MCrAlY's(M = Ni,Co)钴基和镍基用作TBC的粘结层(BC)。另外,通过真空等离子喷涂制造了2mm厚的独立式MCrAlY标本。本研究的结果有力地表明,TBC的重要寿命控制因素是钇掺入氧化铝基热生长氧化物(TGO)中,这导致TGO的生长速率增加,同时导致TGO的降低。涂层中的钇浓度。如果钇浓度已经降低到临界水平以下,则其对TGO依从性的积极作用就会丧失,从而导致TGO散裂。钇耗尽所需的时间不仅取决于初始钇含量,还取决于钇储库,该储库与BC厚度成正比。钴基中的钇比镍基涂层中的钇向TGO的传输似乎更慢,从而导致CoNiCrAlY-BC上的TBC寿命更长。 (c)2006 Elsevier B.V.保留所有权利。

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