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New developments in acoustography for fast full-field large-area ultrasonic NDE

机译:快速全视野大面积超声NDE的耳声学新进展

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Abstract: The objective of this study is to provide details on a novel wide area acousto-optic (AO) sensor that can be used to nondestructively evaluate materials and components in near real-time. A description of the technology and how it compares to conventional ultrasonic methods is provided. The results from three experiments provide details on how acoustography compares to conventional ultrasonics when applied to the inspection of composite parts. The first experiment involves performing ultrasonic and acoustography tests on a standard graphite/epoxy composite panel that has embedded inclusions of known sizes. The objective of this experiment is to determine if the capabilities (i.e. resolution) of acoustography are comparable to those of conventional ultrasonic techniques. The second experiment applied acoustography and ultrasonic techniques to evaluate the effects of low impact damage in composite materials. The third experiment involves applying ultrasonics and acoustography to evaluate a complex shaped composite part. The purpose of this experiment is to show the strengths and weaknesses of both techniques as applied to real world problems. !9
机译:摘要:本研究的目的是提供有关新型广域声光(AO)传感器的详细信息,该传感器可用于近实时地无损评估材料和组件。提供了该技术及其与常规超声方法相比的描述。来自三个实验的结果详细介绍了当将声学超声用于复合材料部件的检查时,超声与传统超声的比较。第一个实验涉及在标准石墨/环氧树脂复合面板上执行超声和声学成像测试,其中嵌有已知尺寸的内含物。该实验的目的是确定耳声成像的能力(即分辨率)是否可与常规超声技术相媲美。第二个实验应用声学成像和超声技术来评估复合材料中低冲击损伤的影响。第三个实验涉及应用超声波和声学成像技术来评估复杂形状的复合材料零件。该实验的目的是展示两种技术在实际问题中的优缺点。 !9

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