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Three-dimensional vibrations of cracked rectangular parallelepipeds of functionally graded material

机译:功能梯度材料的裂纹长方体的三维振动

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摘要

A novel examination of the three-dimensional (3-D) vibrations of rectangular parallelepipeds of functionally graded material (FGM) having side cracks is summarized. Employing 3-D theory of elasticity and a variational Ritz methodology, new hybrid series of mathematically complete orthogonal polynomials and crack functions as the assumed displacement fields are proposed to enhance the convergence modeling of the stress singular behavior of the crack terminus edge front in a rectangular FGM parallelepiped. The proposed admissible hybrid series properly describe the v(1/{the square root of}r)3-D stress singularities at the terminus edge front of the crack, allowing for displacement discontinuities across the crack sufficient to explain the most general 3-D "mixed modes" of local crack-edge deformation and stress fields typically seen in fracture mechanics. The correctness and validity of the vibration analysis are confirmed through comprehensive convergence studies and comparisons with published results for cracked rectangular FGM parallelepipeds modeled as homogeneous rectangular plates with side cracks and FGM rectangular plates with no cracks based on various plate theories. Two types of FGM parallelepipeds, Al/Al_2O_3 and Al/ZrO_2, are included in the study. The locally effective material properties are estimated by a simple power law and the effects of the volume fraction on the frequencies are investigated. For the first time in the published literature, this work reports frequency data and nodal patterns for FGM rectangular parallelepipeds modeled as moderately thick plates with several combinations of hinged, clamped, and completely free kinematic and stress conditions along the four side faces, and having side cracks with varying crack size effects implying flaw-size influence in FGM parallelepiped vibration and fracture, including crack length ratios (d/a and d/b), crack positions (c_x/a and c_y/b), and crack inclination angles (α).
机译:总结了对具有侧裂的功能梯度材料(FGM)的长方体的三维(3-D)振动的新颖研究。利用3-D弹性理论和变分Ritz方法,提出了数学上完整的正交多项式和裂纹函数作为假设位移场的新混合系列,以增强矩形裂纹末端边缘前沿的应力奇异行为的收敛模型。 FGM平行六面体。拟议的可容许杂化级数正确地描述了裂纹终点边缘前沿的v(1 / {} r)3-D应力奇异点,从而使裂纹的位移不连续性足以解释最一般的3-D断裂力学中常见的局部裂纹边缘变形和应力场的“混合模式”。振动分析的正确性和有效性通过全面的收敛性研究和与已公开结果的比较得到了证实,该结果是基于各种板理论将FGM矩形平行六面体建模为带有侧裂纹的均质矩形板和无裂纹的FGM矩形板。该研究包括两种类型的FGM平行六面体,即Al / Al_2O_3和Al / ZrO_2。通过简单的幂定律估算局部有效材料的性能,并研究体积分数对频率的影响。这项工作首次在已发表的文献中报告了FGM矩形平行六面体的频率数据和节点模式,建模为中等厚度的板,沿四个侧面具有铰接,夹紧和完全自由的运动学和应力条件的几种组合,并且具有具有不同裂纹尺寸的裂纹暗示了FGM平行六面体振动和断裂中的裂纹尺寸影响,包括裂纹长度比(d / a和d / b),裂纹位置(c_x / a和c_y / b)和裂纹倾斜角(α) )。

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