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Theoretical modelling of digital radiographs of composite rocket nozzles for the analysis of defects

机译:用于缺陷分析的复合火箭喷嘴数字射线照相的理论模型

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X-ray radiography techniques are widely used for the non-destructive evaluation of composite nozzle liners of rocket motors. In conventional radiography it is difficult to distinguish the images corresponding to excess resin and resin lean regions in the composite, since the variation in the optical density is very small. Also, porous layers and minor delaminations will cast similar images in the radiographic projection. In this work, theoretical modelling is carried out for various defect conditions to study their effects on the X-ray images. The results are useful for characterisation of the defects in the nozzle liners by radiographic nondestructive evaluation. The observations provide very good input for the interpretation of radiographs in silica-phenolic and carbon-phenolic rocket nozzles. The details of the software developed and its application to solve specific problems are discussed. The changes in optical density with respect to the width of the defect, location of the defect and circumferential extension are investigated.
机译:X射线射线照相技术已广泛用于火箭发动机复合喷嘴衬套的无损评估。在常规放射线照相中,由于光密度的变化非常小,因此难以区分与复合物中过多的树脂和稀树脂区域相对应的图像。同样,多孔层和较小的分层会在射线照相投影中投射出相似的图像。在这项工作中,对各种缺陷条件进行了理论建模,以研究它们对X射线图像的影响。该结果对于通过射线照相非破坏性评估来表征喷嘴衬套中的缺陷是有用的。这些观察结果为解释硅酚和碳酚火箭喷嘴的射线照相提供了很好的输入。讨论了所开发软件的详细信息及其用于解决特定问题的应用程序。研究了光密度相对于缺陷宽度,缺陷位置和周向延伸的变化。

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