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Ultrasonic ply-by-ply detection of matrix cracks in laminated composites

机译:超声波逐层检测层压复合材料中的基体裂纹

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摘要

In the design of cryogenic fuel tanks for the next generation Reusable Launch Vehicles (RLVs), the permeability of liquid hydrogen (LH2) across the thickness of the tank is a critical issue. The rate of permeation of LH2 is largely dependent on the internal damage state of the composite tank wall. Damage in the form of matrix cracks in the composite material of the tank is responsible for the through-the-thickness permeation of LH2. In this context, the detection of matrix cracks takes on an unprecedented significance. In this work, an ultrasonic technique for the ply-by-ply detection of matrix cracks in laminated composites is developed. Experimental results are presented for graphite/epoxy laminates with different lay-ups and laminate thicknesses. Matrix cracks in each of the plies of the laminated composites were detected even when there was a rather high density of cracks in all of the plies. The ultrasonic data were calibrated by comparing them with the corresponding results obtained by using the traditional methods of optical microscopy and penetrant enhanced X-radiography. Excellent quantitative correlation was observed between the results obtained with ultrasonics and the traditional methods.
机译:在设计下一代可重复使用运载火箭(RLV)的低温燃料箱时,液氢(LH2)在整个燃料箱厚度上的渗透性是一个关键问题。 LH2的渗透率在很大程度上取决于复合罐壁的内部损坏状态。储罐复合材料中基体裂纹形式的损坏是LH2贯穿厚度的原因。在这种情况下,基体裂纹的检测具有前所未有的重要性。在这项工作中,开发了一种超声波技术,用于逐层检测层压复合材料中的基体裂纹。给出了具有不同叠层和层压厚度的石墨/环氧层压板的实验结果。即使在所有层中都存在相当高的裂纹密度时,也可以检测到层压复合材料的每个层中的基体裂纹。通过将超声数据与使用传统的光学显微镜和渗透增强X射线照相方法获得的相应结果进行比较,对超声数据进行校准。超声获得的结果与传统方法之间观察到极好的定量相关性。

著录项

  • 作者

    Ganpatye Atul Shridatta;

  • 作者单位
  • 年度 2005
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  • 原文格式 PDF
  • 正文语种 en_US
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