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Thermo-Mechanical and Low Cycle Fatigue Failure Behavior Relevant to Temperature Regime in a TBCed Superalloy Specimen

机译:与热力学和低周疲劳失效行为有关的温度条件下TBCed高温合金试样

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Steady state and non-steady state thermo-mechanical fatigue failure is great concern in this work. At first steady state thermo-mechanical fatigue failure behavior was investigated using the round-bar TBC specimens, after getting basic data of mechanical properties of the bond/top coats and the substrate alloy. The failure behavior was compared with that during isothermal low cycle fatigue (LCF). Next non-steady state TMF tests were carried out in which non-steady state thermal stress was significant in the TBC specimen, compared with the properties under the steady state TMF. The experimental work clearly demonstrated that the TMF failure lives were significantly changed depending on the temperature regime during TMF and LCF. Of particular importance was found in the non-steady state TMF tests. The non-steady state TMF cycling promoted the delamination of ceramic top coat, resulting in a significant reduction in fatigue life.
机译:稳态和非稳态热机械疲劳失效是这项工作中非常关注的问题。首先,在获得粘结/面涂层和基体合金的机械性能的基本数据之后,使用圆棒TBC样品研究了稳态热机械疲劳破坏行为。将其破坏行为与等温低周疲劳(LCF)期间的行为进行了比较。接下来进行了非稳态TMF测试,其中与稳态TMF下的性能相比,TBC样品中的非稳态热应力显着。实验工作清楚地表明,在TMF和LCF期间,TMF的失效寿命会根据温度状况而发生显着变化。在非稳态TMF测试中发现特别重要。非稳态TMF循环促进了陶瓷面漆的分层,导致疲劳寿命显着降低。

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