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Ultrasonic Guided Wave Modal Analysis Technique(UMAT) for Defect Detection

机译:超声波引导波模态分析技术(UMAT)缺陷检测

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A new ultrasonic vibration technique is presented to bridge the gap between ultrasonic wave propagation and modal analysis vibration methods, both used in Nondestructive Evaluation (NDE) and Structural Health Monitoring (SHM). The technique is fast; only one sender and a few receiver locations are necessary; defect-detection potential sizes are somewhere between what is expected for the ultrasonic guided wave and modal analysis methods. Sections of an odd shaped test component can be completely hidden or covered. Only a small area must be accessible. It is shown that sensitivity is based on a carefully selected ultrasonic loading function in utilizing the principles of waves and vibrations. Phase velocity dispersion curves, wave structures, reflection factor analysis and classical modal analyses are essential in the work efforts. Sample FEM and experimental results are presented for isotropic metals and anisotropic composite materials to demonstrate the concept. Excellent results are obtained. Future directions are also discussed.
机译:提出了一种新的超声波振动技术,以弥合超声波传播与模态分析振动方法之间的间隙,两者在非破坏性评估(NDE)和结构健康监测(SHM)中。该技术快速;只需要一个发件人和一些接收器位置;缺陷检测潜在尺寸是超声波引导波和模态分析方法的预期之间的某个位置。奇形形状测试部件的截面可以完全隐藏或覆盖。只有一个小区域必须可以访问。结果表明,灵敏度基于利用波浪和振动的原理进行仔细选择的超声波加载功能。相速度色散曲线,波浪结构,反射因子分析和古典模态分析在工作努力中是必不可少的。样品有限元和实验结果表明各向同性金属和各向异性复合材料以证明该概念。获得了优异的结果。还讨论了未来的方向。

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