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Analysis of the possibility of non-destructive testing to detect defects in multi-layered composites reinforced fibers by optical IR thermography

机译:光学红外热成像技术分析无损检测多层复合增强纤维中缺陷的可能性

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The paper analyses the possibilities and effectiveness of using infrared thermography with optical thermal excitation by reflection approach in the case of multilayer composites reinforced fibers. The advantages and limitations of this technique have been demonstrated via composites reinforced with three types of fibers: glass, aramid, and carbon. The most common defects in such structures are: delaminations, fiber cracks, matrix cracks, and separation of fibers from the matrix. The paper describes some results of the numerical simulations of defects detection using optical IR thermography with the emphasis made on the inspection of multi-layer composite materials. The simulations were conducted in order to determine the detection of defects depending on the depth of their location under the front surface of composite material as well as their geometrical dimensions.
机译:本文分析了在多层复合增强纤维的情况下,将红外热成像技术与通过反射方法进行光学热激发的红外热成像技术结合使用的可能性和有效性。通过用三种类型的纤维增强的复合材料(玻璃,芳纶和碳纤维)已证明了该技术的优点和局限性。这种结构中最常见的缺陷是:分层,纤维裂纹,基体裂纹以及纤维与基体的分离。本文介绍了使用光学红外热像仪进行缺陷检测的数值模拟的一些结果,重点是检查多层复合材料。进行模拟是为了确定缺陷的检测,具体取决于缺陷在复合材料前表面下的位置深度及其几何尺寸。

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