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首页> 外文期刊>Journal of thermal stresses >Weight function method for transient thermomechanical fracture analysis of a functionally graded hollow cylinder possessing a circumferential crack
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Weight function method for transient thermomechanical fracture analysis of a functionally graded hollow cylinder possessing a circumferential crack

机译:具有周向裂纹的功能梯度空心圆柱的瞬态热机械断裂分析的权函数法

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摘要

This article introduces a weight function method for fracture analysis of a circumferentially cracked functionally graded hollow cylinder subjected to transient thermomechanical loading. Analytical solutions for transient temperature and stress distributions in the uncracked cylinder are derived by applying finite Hankel transformation. These solutions are utilized to determine stress acting on the faces of the circumferential crack in the local perturbation problem. Thermomechanical material properties are assumed to be power functions of the radial coordinate in the derivations. Coefficients of the weight function are found using reference stress intensity factors computed through the finite element method. Domain form of the J-integral is used in the finite element calculations. Comparisons of the numerical results calculated by the proposed weight function method to those generated by finite element analysis demonstrate the high level of accuracy attained by the application of the developed procedures. Further parametric analyses are presented to illustrate the influences of dimensionless time, crack depth to thickness ratio, power law index, and convection coefficient upon transient mode I thermomechanical stress intensity factors.
机译:本文介绍了一种权重函数方法,用于承受瞬态热机械载荷的周向裂纹功能梯度空心圆柱体的断裂分析。通过应用有限的汉克尔变换,得出了无裂纹圆柱体中瞬态温度和应力分布的解析解。这些解决方案用于确定在局部摄动问题中作用在圆周裂纹面上的应力。假设热机械材料特性是导数中径向坐标的幂函数。使用通过有限元方法计算出的参考应力强度因子,可以找到权重函数的系数。 J积分的域形式用于有限元计算。通过拟议的权重函数方法计算出的数值结果与有限元分析所产生的数值结果进行了比较,结果表明,采用所开发的程序可以实现较高的准确性。进行了进一步的参数分析,以说明无因次时间,裂纹深度与厚度之比,幂律指数和对流系数对瞬态I热机械应力强度因子的影响。

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