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首页> 外文期刊>Composite interfaces >Non-destructive characterization of delaminated areas at interfaces between plies in carbon fiber/epoxy laminates with Foucault currents
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Non-destructive characterization of delaminated areas at interfaces between plies in carbon fiber/epoxy laminates with Foucault currents

机译:碳纤维/环氧树脂层压板中各层之间的界面处具有Foucault电流的分层区域的非破坏性表征

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摘要

Carbon fiber epoxy laminates are extensively used in the aerospace industry as they offer a combination of high performance with relatively low weight. However, damage may occur in these materials, either at the manufacturing level or during use, which may affect their structural integrity. Among the type of damage which may occur, delamination is a common defect which causes a reduction in compressive strength and thus limits the life of laminated composites. If undetected, delamination may propagate during use due to mechanical loads and in the worst case may cause fracture of the material. Therefore, delamination in composite materials needs to be efficiently detected and accurately quantified for safety and economic reasons. because of their heterogeneity, multi-layered structure and anisotropy, the inspection of composite materials remains difficult with conventional NDT methods. A method making use of Foucault currents, and relying on the principle of electromagnetic induction, can be adapted for the detection and characterization of damage in composite materials. the use of Foucault currents in characterizing delaminated areas at interfaces between plies in carbon fiber/epoxy laminates is addressed in this paper. It is demonstrated that Foucault currents can accurately detect and quantify delamination in CFRP materials. Furthermore, the potential of this technique for monitoring defect propagation in composite materials is discussed.
机译:碳纤维环氧层压板广泛应用于航空航天工业,因为它们兼具高性能和相对轻的重量。但是,这些材料可能会在制造级别或使用过程中发生损坏,这可能会影响其结构完整性。在可能发生的损坏类型中,分层是常见的缺陷,会导致压缩强度降低,从而限制了层压复合材料的使用寿命。如果未检测到,分层可能会在使用过程中由于机械负载而传播,在最坏的情况下可能会导致材料破裂。因此,出于安全和经济的原因,需要有效地检测并精确地量化复合材料中的分层。由于它们的异质性,多层结构和各向异性,使用常规的无损检测方法仍然难以对复合材料进行检查。利用福柯电流并依靠电磁感应原理的方法可适用于复合材料中损伤的检测和表征。本文探讨了使用福柯电流表征碳纤维/环氧树脂层压板中板层之间界面处的分层区域。结果表明,福柯电流可以准确地检测和量化CFRP材料中的分层。此外,讨论了该技术用于监测复合材料中缺陷传播的潜力。

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