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A study of damage evolution in high purity nano TBCs during thermal cycling: A fracture mechanics based modelling approach

机译:热循环期间高纯度纳米TBC的损伤演化研究:基于裂缝力学的建模方法

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This work concerns the study of damage evolution in a newly developed high purity nano 8YSZ thermal barrier coating during thermal cyclic fatigue tests (TCF). TCF tests were conducted between 100 degrees C-1100 degrees C with a hold time of 1 hat 1100 degrees C, first till failure and later for interrupted tests. Cross section analysis along the diameter of the interrupted test samples revealed a mixed-type failure and that the most of the damage occurred towards the end of the coating's life. To understand the most likely crack growth mechanism leading to failure, different crack growth paths have been modelled using finite element analysis. Crack growing from an existing defect in the top coat towards the top coat/TGO interface has been identified as the most likely mechanism. Estimated damage by the model could predict the rapid increase in the damage towards the end of the coating's life. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本文研究了新研制的高纯纳米8YSZ热障涂层在热循环疲劳试验(TCF)过程中的损伤演化。TCF试验在100摄氏度到1100摄氏度之间进行,保持时间为1100摄氏度,先到失败,后到中断试验。沿中断测试样品直径的横截面分析显示混合型失效,大多数损伤发生在涂层寿命结束时。为了理解最可能导致失效的裂纹扩展机制,使用有限元分析对不同的裂纹扩展路径进行了建模。从面漆中的现有缺陷向面漆/TGO界面扩展的裂纹已被确定为最可能的机制。通过该模型估计的损伤可以预测涂层寿命即将结束时损伤的快速增加。(C) 2017爱思唯尔有限公司版权所有。

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