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Damage characterization of surface and sub-surface defects in stitch-bonded biaxial carbon/epoxy composites

机译:缝编双轴碳/环氧树脂复合材料表面和亚表面缺陷的损伤特征

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摘要

The scope of this work is to study the effects of manufacturing and installation defects on mechanical performance of polymer matrix composites appearing in civil infrastructure and aerospace applications. The objective of this study is to create a link between defects detected through nondestructive testing (NDT) and the mechanical performance of the composite structures using strain mapping technique. Monotonic tensile samples of polymer matrix stitch-bonded biaxial composite laminates [90,0]s are tested. Flash Thermography, a conventional NDT technique, is used to predict detectable pre-existing surface and sub-surface irregularities and defects. Attention is drawn to the homogenized mechanical behavior and to damage initiation and propagation. Damage onset and propagation are studied using time-dependent nonlinear regression of the strain field. Effects of the manufacturing and installation irregularities on damage initiation, propagation, and failure are monitored as the structure is subjected to load or studied at the end of the loading process.
机译:这项工作的范围是研究制造和安装缺陷对民用基础设施和航空航天应用中出现的聚合物基复合材料机械性能的影响。这项研究的目的是在通过无损检测(NDT)检测到的缺陷与使用应变映射技术的复合结构的机械性能之间建立联系。测试了聚合物基缝编双轴复合层压板[90,0] s的单调拉伸样品。闪光热成像技术是一种常规的无损检测技术,用于预测可检测到的预先存在的表面和亚表面不规则性和缺陷。请注意均质的机械行为以及损伤的发生和扩散。使用应变场的时变非线性回归来研究损伤的发生和扩散。当结构受到载荷或在载荷过程结束时进行研究时,将监视制造和安装不规则对损坏的产生,传播和破坏的影响。

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