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首页> 外文期刊>Vacuum: Technology Applications & Ion Physics: The International Journal & Abstracting Service for Vacuum Science & Technology >Influence of the mechanical properties of CoNiCrAlY under-coating on the high temperature fatigue life of YSZ thermal-barrier-coating system
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Influence of the mechanical properties of CoNiCrAlY under-coating on the high temperature fatigue life of YSZ thermal-barrier-coating system

机译:CoNiCrAlY底涂层力学性能对YSZ热障涂层体系高温疲劳寿命的影响

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摘要

Yttria-stabilized zirconia (YSZ) thermal-barrier-coatings (TBC) have been used for insulating and protecting the components from high temperature. However, the mechanical properties of the coatings are not well known, because the characterization of thin coatings is difficult. Consequently, how should we choose the mechanical properties, which is very important, is unsolved problem. In this paper, the effects of the mechanical properties of under-coatings, CoNiCrAlY, on the fatigue life of YSZ coating system were examined. First, the strength of three types of CoNiCrAlY coatings were examined by lateral compression of circular tube free-standing coating. The residual stresses of CoNiCrAlY coatings were also measured by X-ray diffraction method. Furthermore, the adhesive strengths of CoNiCrAlY coatings were measured by indentation method. Subsequently to the systematic understanding of mechanical properties of the CoNiCrAlY coatings, fatigue tests were carried out for the TBC systems at both room temperature and 893 K. The results indicated an improvement of the fatigue life because of the restriction of crack initiation into the substrate. It was found that the under-coating with proper mechanical properties could significantly extend the fatigue life of the TBC system. (C) 2008 Elsevier Ltd. All rights reserved.
机译:氧化钇稳定的氧化锆(YSZ)热障涂层(TBC)已用于绝缘和保护组件免受高温侵害。然而,涂层的机械性能尚不为人所知,因为薄涂层的表征很困难。因此,如何选择非常重要的机械性能尚未解决。本文研究了底涂层CoNiCrAlY的机械性能对YSZ涂层系统疲劳寿命的影响。首先,通过横向压缩圆形管自支撑涂层来检查三种类型的CoNiCrAlY涂层的强度。还通过X射线衍射法测量了CoNiCrAlY涂层的残余应力。此外,通过压痕法测量了CoNiCrAlY涂层的粘合强度。在对CoNiCrAlY涂层的机械性能有了系统的了解之后,在室温和893 K的温度下对TBC系统进行了疲劳测试。结果表明,由于限制了裂纹在基体中的萌生,从而延长了疲劳寿命。发现具有适当机械性能的底涂层可以显着延长TBC系统的疲劳寿命。 (C)2008 Elsevier Ltd.保留所有权利。

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