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带热障涂层构件界面应力分析边界元法
引用本文:董曼红,陆山.带热障涂层构件界面应力分析边界元法[J].机械强度,2003,25(2):154-158.
作者姓名:董曼红  陆山
作者单位:西北工业大学,航空动力与热力工程系,西安,710072
基金项目:航空科学基金,国家教委留学回国人员基金,西北工业大学双新人才基金资助~~
摘    要:提出带热障涂层构件二维应力分析边界元法。对薄体应力分析边界元中近奇异积分处理方法进行完善及改进,并将其推广应用于热应力及离心应力边界元分析,提出可以考虑温度及离心载荷的多层域结构应力分析边界公式,数值算例结果表明,采用本文方法可用少量单元得到梯度温度场,面力和/或离心载荷条件下涂层界面应力分布,三种载荷情况下界面切向拉伸应力的最大相对误差小于0.23%,本方法可作为带热障涂层构件设计及涂层剥落失效分析的有效工具。

关 键 词:边界元法  热障涂层  近奇异积分  多层域  热应力  离心应力
修稿时间:2001年9月30日

ADVANCED BOUNDARY ELEMENT METHOD FOR INTERFACIAL STRESS ANALYSIS OF THERMAL BARRIER COATED COMPONENTS
DONG Manhong LU Shan.ADVANCED BOUNDARY ELEMENT METHOD FOR INTERFACIAL STRESS ANALYSIS OF THERMAL BARRIER COATED COMPONENTS[J].Journal of Mechanical Strength,2003,25(2):154-158.
Authors:DONG Manhong LU Shan
Abstract:An advanced boundary element method (BEM) was proposed for two-dimensional interfacial stress analysis of thermal barrier coated components. First, the non-linear transformation scheme in stress analysis of thin-body under traction by BEM was improved and extended to evaluate the nearly singular integral in BEM for thermal and centrifugal stress analysis. Then BEM formulation for multi-layer structure under thermal and centrifugal loads was presented. Numerical examples demonstrate that accurate interfacial stresses of thermal barrier coated components can be obtained efficiently by the method in this paper. The maximum relative percentage errors of interfacial tangent tension stresses under gradient temperature field, traction and centrifugal load were less than 0.08%, 0.13% and 0.23%, respectively, even when the ratio of element length to coating thickness approached 10 9. The BEM presented in this paper will be an efficient tool for thermal barrier coating design and coating-peeling-failure analysis.
Keywords:Boundary element method  Thermal barrier coating  Nearly singular integral  Multi-layer region  Thermal stress  Centrifugal stress
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