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Use of the finite element technique to analyze the influence of coating materials, material phase state and the purity on the level of the developed thermal stresses in plasma coating systems under thermal loading conditions

机译:使用有限元技术分析涂层材料,材料相态和纯度对热负载条件下等离子涂层系统中产生的热应力水平的影响

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In this investigation, a transient thermal and structure finite element solution has been employed to analyse the level of the thermal stresses developed in plasma coating systems subjected to thermal loading. Plasma coating is used for two main functions: either to protect a base metal against corrosion or erosion; or to minimize wear. A third function is to reduce the temperature of the base metal in the case of thermal barrier applications. In this work cubic, TZP, PSZ zirconia, polycrstalline alumina oxide, 85 and 98% pure alumina-tungsten substrate coating systems were modelled. Coatings with NiCoCrAlY interlayer material were also modelled. Nominal and shear stresses at the critical interface regions (film/interlayer/substrate) were obtained and compared. The results showed that the coating material phase and purity as well as interlayer material and the mismatch of the thermal and mechanical properties between coating and substrate materials influences the level of the thermal stresses. It is also concluded that the finite element technique can be used to optimise the design and the processing of ceramic coating systems. (C) 2001 Elsevier Science B.V. All rights reserved. [References: 13]
机译:在这项研究中,采用了瞬态热和结构有限元解决方案来分析承受热负荷的等离子涂层系统中产生的热应力水平。等离子涂层具有两个主要功能:保护贱金属免遭腐蚀或侵蚀;或最小化磨损。第三种功能是在热障应用中降低母材的温度。在这项工作中,对TZP,PSZ氧化锆,多结晶氧化铝,85%和98%的纯氧化铝钨基材涂层系统进行了建模。还对具有NiCoCrAlY中间层材料的涂层进行了建模。获得并比较了关键界面区域(薄膜/中间层/基材)的标称应力和剪切应力。结果表明,涂​​层材料的相和纯度以及夹层材料以及涂层和基材之间的热力学性能不匹配会影响热应力水平。还得出结论,有限元技术可用于优化陶瓷涂层系统的设计和加工。 (C)2001 Elsevier Science B.V.保留所有权利。 [参考:13]

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