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Ultrasonic Bulk Waves Measurements for Defect Detection of Composite Materials

机译:用于复合材料缺陷检测的超声波体波测量

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The defect detection in composite material is important for its quality control where the hidden defect such as crack, corrosion, notch, holes, void and porosity can develop. In this paper, the ultrasonic bulk wave measurements of longitudinal and shear waves are used to identify defect in the multilayered composite material. This study employs pulse echo technique and utilized angle beam transducer. The composite material model investigated in this contribution are made of 24 mm and 12 mm thick Aluminium plates with a width of 100 mm and a length of 203 mm which are separated with an approximately 1 mm thick oil layer. A simulated defect is created in the composite test material by drilling a hole with 2.5 mm diameter and 3 mm depth on the bottom surface of the third layer material. Finding indicates that the defect is located at 53.39 mm from transducer and the percentage difference of the defect location compared to the calculation method is 7%. It indicates that the proposed method can be use to detect defect in multilayered composite material within 10% accuracy compared to the calculation method.
机译:复合材料中的缺陷检测对于其质量控制非常重要,因为在这种质量控制中,可能会出现诸如裂纹,腐蚀,缺口,孔洞,空隙和孔隙之类的隐藏缺陷。在本文中,使用纵向和剪切波的超声波体波测量来识别多层复合材料中的缺陷。本研究采用脉冲回波技术并利用了角波束传感器。在此贡献中研究的复合材料模型由24毫米和12毫米厚的铝板制成,铝板的宽度为100毫米,长度为203毫米,并用约1毫米厚的油层隔开。通过在第三层材料的底面上钻一个直径为2.5毫米,深度为3毫米的孔,可以在复合测试材料中产生模拟缺陷。发现表明缺陷位于距换能器53.39 mm处,并且与计算方法相比,缺陷位置的百分比差为7%。结果表明,与计算方法相比,该方法可用于10%以内的多层复合材料缺陷检测。

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