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GUIDED WAVE ULTRASONIC CHARACTERIZATION OF ADVANCED COMPOSITES

机译:先进复合材料的导波超声表征

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Safe use of composite materials in critical structural applications demands independent structural integrity verification. Traditional ultrasonic non-destructive methods are inappropriate and often misleading when applied to anisotropic and complex composite materials. Complexity of the advanced composite materials structures represents challenges in developing optimized ultrasonic tests that can directly characterize mechanical properties of the material. In advanced technology applications such as aerospace and with industrial emphasis on economics and safety, it is critical to develop and apply new robust and practical ultrasonic nondestructive test (NDT) methods.rnNew guided wave laser ultrasonic sources and small aperture receiving sensors configurations enable testing of advanced composites far beyond conventional ultrasonic capabilities. In contrast to pseudo-imaging methodology such as ultrasonic C-scan, guide wave response to in plane mechanical state of the composite is analyzed and this emerging technology explores the ability of the inhomogeneous, anisotropic composite material to propagate ultrasonic guided waves over a range of distances and part configurations. Appropriate customizing of ultrasonic transduction process enables measurements of material properties and estimate of defect conditions along in-plane sound propagation path. From guided wave acoustic response, one can develop meaningful estimate of material modulus, fatigue damage, thermal damage and sense mechanical defect conditions without need to point-vise scan the complete structure.
机译:在关键的结构应用中安全使用复合材料需要独立的结构完整性验证。传统的超声非破坏性方法不适用于各向异性各向异性和复杂的复合材料,并且常常会产生误导。先进的复合材料结构的复杂性代表着开发优化的超声测试的挑战,这些超声测试可以直接表征材料的机械性能。在诸如航空航天之类的先进技术应用中,并且在工业上着重于经济性和安全性,开发和应用新的稳健而实用的超声无损检测(NDT)方法至关重要。先进的复合材料,远远超出了传统的超声功能。与伪成像方法(例如超声C扫描)相比,分析了复合材料在平面机械状态下的导波响应,这项新兴技术探索了非均质各向异性复合材料在一定范围内传播超声导波的能力。距离和零件配置。适当地定制超声换能过程可以测量材料特性并沿平面内声音传播路径估算缺陷状况。通过导波声响应,可以对材料模量,疲劳损伤,热损伤和感知机械缺陷情况进行有意义的估算,而无需进行点眼扫描整个结构。

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