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首页> 外文期刊>Mechanics of Advanced Materials and Structures >Transient Finite-Volume Analysis of a Graded Cylindrical Shell Under Thermal Shock Loading
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Transient Finite-Volume Analysis of a Graded Cylindrical Shell Under Thermal Shock Loading

机译:热冲击载荷作用下梯度圆柱壳的瞬态有限体积分析

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摘要

A major failure mechanism in thermal barrier coatings involves delamination of the ceramic top coat from the substrate, which is accompanied and/or aided by transverse cracks that initiate at the outer surface. Techniques to mitigate these failure modes include grading the transition region between the ceramic top coat and the metallic bond coat by gradually varying the content of the two phases. This concept is explored herein for a graded cylinder subjected to transient thermal cyclic loading, that simulates a thermal shock durability test, using the parametric finite-volume theory for functionally graded materials. Previous investigation into the transient response of a three-layer cylinder under the considered thermal shock loading revealed two potential failure modes, one of which was a direct result of transient effects. Herein, examination of average phase-level stress fields indicates that grading influences the initiation of delamination and potential radial cracking through redistribution of the radial and hoop stress components in the thermal coating's graded region upon rapid heating. The large hoop stress reversal responsible for radial crack initiation at the outer surface, however, is not reduced upon rapid cooling, pointing to the importance of accurately modeling transient effects in thermal shock testing as well as crack-growth management through grading.
机译:隔热涂层的主要失效机理涉及陶瓷顶涂层与基材的分层,这伴随着和/或由在外表面上引发的横向裂纹辅助。减轻这些失效模式的技术包括通过逐渐改变两相的含量来分级陶瓷面涂层和金属粘结涂层之间的过渡区域。本文针对具有瞬态热循环载荷的渐变圆柱体,使用参数化有限体积理论对功能渐变材料进行仿真,探讨了这一概念,该圆柱体模拟了热冲击耐久性测试。先前对三层圆柱体在考虑的热冲击载荷下的瞬态响应的研究表明,存在两种潜在的失效模式,其中一种是瞬态效应的直接结果。本文中,平均相应力场的检查表明,梯度会在快速加热时通过热涂层的渐变区域中径向和环向应力分量的重新分布来影响分层的开始和潜在的径向裂纹。但是,在快速冷却后,不会导致外表面径向裂纹萌生的大环向应力逆转,这表明在热冲击测试以及通过分级进行裂纹扩展管理中准确建模瞬态效应的重要性。

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