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A Review of Dynamic Fracture Studies in Functionally Graded Materials

机译:功能梯度材料的动态断裂研究述评

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This article presents a review of dynamic fracture studies on functionally graded materials. A brief literature review on the fracture mechanics of graded materials is presented first. This is followed by a discussion on the higher-order asymptotic analysis of the transient elastic field surrounding the tip of a dynamically growing crack in a functionally graded material. A comprehensive experimental study of dynamic crack growth in model functionally graded material using the optical method of reflection photoelasticity and high-speed photography is then presented. The results are analysed to establish a generalised relationship between the crack velocity and the dynamic mode-l stress intensity factor (SIF). This relationship is found to be unique and is distinctly different from that previously established for the matrix material (polyester). Finally, an innovative experimental procedure is used to demonstrate the necessity of employing a fully transient stress-field representation in the analysis of optical data for an accurate prediction of the dynamic SIF history.
机译:本文介绍了功能梯度材料的动态断裂研究。首先介绍有关渐变材料的断裂力学的简要文献综述。接下来是对功能梯度材料中动态扩展裂纹尖端周围瞬态弹性场的高阶渐近分析的讨论。然后提出了使用反射光弹性和高速摄影的光学方法对功能梯度材料进行动态裂纹扩展的综合实验研究。分析结果以建立裂纹速度与动态模式l应力强度因子(SIF)之间的一般关系。发现这种关系是独特的,并且与先前为基质材料(聚酯)建立的关系明显不同。最后,使用创新的实验程序来证明在光学数据分析中采用完全瞬态应力场表示法来准确预测动态SIF历史的必要性。

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