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Detecting Low-Velocity Impact Damage in Composite Plates Using Infrared Thermography

机译:使用红外热成像检测复合板中的低速冲击损伤

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This research investigated low velocity impact damage in fiber-reinforced polymer (FRP) composites. Small-scale glass/epoxy laminates (approximately 210mm × 210mm × 2mm) were subjected to varying degrees of dynamic impact energies ranging from 5 to 20 J and infrared thermography inspections were performed on the damaged specimens. Three distinct damage modes were observed: penetration resulting in highly localized fiber rupture through the thickness of the composite; penetration/delamination in which localized fiber rupture was observed on the impacted surface and additional delamination occurred around the point of impact; and delamination/reverse side fiber rupture in which no visible damage occurred on the impacted surface but fiber rupture and delamination occurred beneath the surface. A modified lock-in thermography procedure was used in the nondestructive evaluation (NDE). Phase images were constructed by applying a least-squares sinusoidal curve fit to a series of thermal images collected over one cycle of sinusoidal heating. This method was shown to increase contrast for subsurface delaminations compared to raw thermal data. Finally, thermography results for FRP composite samples containing simulated damage (back-drilled holes) were compared with thermography results from impact-damaged samples.
机译:本研究调查了纤维增强聚合物(FRP)复合材料中的低速冲击损伤。对小型玻璃/环氧树脂层压板(约210mm×210mm×2mm)进行不同程度的动态冲击能量,范围为5至20 j,并对损坏的标本进行红外热成像检查。观察到三种明显的损伤模式:穿透导致高度局部光纤通过复合材料的厚度破裂;在撞击表面上观察到局部纤维破裂的渗透/分层,并在撞击点发生额外的分层;和分层/反向侧纤维破裂,在撞击表面上没有发生明显的损伤,但在表面下发生纤维破裂和分层。在非破坏性评估(NDE)中使用了改进的锁定热法。通过将最小二乘正弦曲线拟合到在一个正弦加热的一个循环循环上收集的一系列热图像来构造相位图像。与原始热数据相比,显示该方法增加对比度分层的对比度。最后,将含有模拟损坏(背钻孔)的FRP复合样品的热成像结果与来自冲击损坏样品的热成像进行比较。

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