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基于能量释放率理论的三维应力强度因子显式闭合解
引用本文:吴建国,王奇志,张行,李海波.基于能量释放率理论的三维应力强度因子显式闭合解[J].中国舰船研究,2014(1):81-90.
作者姓名:吴建国  王奇志  张行  李海波
作者单位:[1]北京强度环境研究所可靠性与环境工程技术重点实验室,北京100076 [2]北京航空航天大学航空科学与工程学院,北京100191
摘    要:基于能量差率基本原理,以非穿透裂纹深度的相对值作为控制裂纹虚比例扩展的无量纲几何参量,构造求解裂纹张开位移幅值的伯努利微分方程,导出以裂纹绝对尺寸和相对尺寸为参数的裂纹张开位移幅值表达式,得到有限大体非穿透裂纹三维应力强度因子闭合解.并给出无量纲应力强度因子与各种相对尺寸参数关系的显式表达式,计算结果与Newman的有限元分析结果基本-致.该方法在工程结构损伤容限与耐久性设计应用中更加便捷、高效.

关 键 词:应力强度因子  能量释放率  裂纹  闭合解  断裂力学

Explicit Closed-Form Solutions for Three-Dimensional Stress Intensity FactorsBased on the Energy Release Rate Theory
WU Jianguo,WANG Qizhi,ZHANG Xing,LI Haibo.Explicit Closed-Form Solutions for Three-Dimensional Stress Intensity FactorsBased on the Energy Release Rate Theory[J].Chinese Journal of Ship Research,2014(1):81-90.
Authors:WU Jianguo  WANG Qizhi  ZHANG Xing  LI Haibo
Institution:1 Science and Technology on Reliability and Environment Engineering Laboratory,Beijing Institute of Structureand Environment Engineering,Beijing 100076,China;2 School of Aeronautic Science and Engineering,Beihang University,Beijing 100191,China)
Abstract:To solve the crack opening displacement amplitude,the Bernoulli non-liner differential equa-tion based on the energy release rate principle is established,where the relative depth of non-throughcrack is defined as a dimensionless geometric variable to control the virtual proportional crack growth. Theequation of crack opening displacement amplitude is thus expressed with parameters of absolute and rela-tive crack dimensions. A closed form solution for three-dimensional stress intensity factors in a finite bodyis then obtained. Finally,the explicit expression of the relationship between the dimensionless stress inten-sity factor and the relative crack parameter is given. The results agree well with those obtained with the con-ventional finite element method,while this method is more convenient and efficient in engineering structur-al damage tolerance and durability design applications.
Keywords:stress intensity factor  energy release rate  crack  closed form solution  fracture mechanics
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