Identification of 'Defects' in Epoxy Matrix Composites and Carbon Fiber by Ultrasound. Interaction of the Ultrasonic Beam with the Material

Gastón Sanglier, Eduardo J. Lopez, Sonia Cesteros, Roberto A. Gonzalez
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引用次数: 2

Abstract

Non-Destructive Testing (NDT) methods, and especially, ultrasounds have gone from being a mere laboratory curiosity to an indispensable tool in the industry as a primary means of determining the level of quality achieved in its products (ASM, 1989; Barbero, 1999). This study will identify and apply the main physical phenomena of interaction of an ultrasonic wave in a composite material, to see if through this type of waves, you can detect defects of the type of porosity or delaminations in these materials. The percentages of reflected and transmitted waves in real cases of defects in the composite material will also be studied. It will be shown if the frequencies and intensities of the waves are adequate to find this type of defects or imperfections in the material. The theoretical study of the ultrasonic wave seeks to help researchers in the development of equipment that uses the methodology of immersion ultrasound for the inspection of materials in the search for 'defects' and to understand the physics of the test.
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环氧基复合材料和碳纤维“缺陷”的超声识别。超声光束与材料的相互作用
无损检测(NDT)方法,特别是超声波,已经从仅仅是实验室的好奇变成了行业中不可或缺的工具,作为确定其产品质量水平的主要手段(ASM, 1989;巴贝罗,1999)。本研究将识别和应用复合材料中超声波相互作用的主要物理现象,看看是否通过这种类型的波,可以检测这些材料中孔隙或分层类型的缺陷。在复合材料缺陷的实际情况下,反射波和透射波的百分比也将被研究。如果波的频率和强度足以发现材料中的这类缺陷或缺陷,将显示出来。超声波的理论研究旨在帮助研究人员开发使用浸入式超声波方法检查材料以寻找“缺陷”的设备,并了解测试的物理原理。
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