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Guided circumferential waves in orthotropic cylindrical curved plate and the mode conversion by the end-reflection

机译:正交异性圆柱弯曲板中的周向导波及端反射的模转换

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In ultrasonic nondestructive inspection of large-diameter pipes and curved plate, longitudinal cracks are detected more efficiently by using guided circumferential waves. In the present, the study of guided circumferential waves and their application in detecting longitudinal defect were relative adequate when pipe material is isotropic. Based on linear three-dimensional elasticity, an orthogonal polynomial series expansions approach is used for determining the guided circumferential waves dispersion curves in homogeneous infinitely long orthotropic hollow cylinders. Results are compared with those published earlier and with the finite element simulation to check up the accuracy and range of applicability of this polynomial approach. Through the analysis of the displacements distributions and finite element simulation, the mode conversion of guided circumferential waves by end-reflection in cylindrical curved plate is discovered.
机译:在大口径管道和弯曲板的超声无损检查中,通过使用导向周波可以更有效地检测纵向裂缝。目前,当管道材料是各向同性时,对导波的研究及其在检测纵向缺陷中的应用是相对足够的。基于线性三维弹性,采用正交多项式级数展开法确定均匀无限长正交各向异性正交空心圆柱体中的导波周向频散曲线。将结果与先前发布的结果以及有限元仿真结果进行比较,以检验此多项式方法的准确性和适用范围。通过对位移分布的分析和有限元模拟,发现了圆柱弧形板中通过端部反射对周向波的模式转换。

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