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Characterisation and analysis of transverse crack-induced delamination in cross-ply composite laminates under fatigue loadings

机译:疲劳载荷下交叉复合材料层合板横向裂纹诱发分层的表征与分析

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摘要

The delamination growth represents one of the main phenomena involved in the fatigue damage evolution in composite laminates. With the aim of characterising qualitatively and quantitatively this mechanism and its interaction with the other damage modes occurring during the fatigue life, an experimental campaign was carried out on glass/epoxy infused laminates. Two lay-ups were adopted, namely [0(2)/90(4)](s) and [0/90(2)](s). The damage evolution was characterised at the macro and micro-scales. The adopted macro-scale damage indicators were the laminate stiffness drop, the crack density and the delamination ratio, of which the evolution along with the fatigue cycles is shown. Damage evolution and final failure were seen to be sensitive to scale effect. Micro scale edge observations were useful to understand the interaction between transverse cracks, delamination and fibre failure, all these mechanisms concurring in the laminate final failure.
机译:分层增长代表了复合层压板疲劳损伤演变过程中涉及的主要现象之一。为了定性和定量地表征这种机理及其与在疲劳寿命中发生的其他损伤模式的相互作用,对玻璃/环氧树脂浸渍的层压板进行了实验。采用了两个叠加,即[0(2)/ 90(4)](s)和[0/90(2)](s)。在宏观和微观尺度上表征了损伤的演变。所采用的宏观损伤指标为层压板刚度下降,裂纹密度和分层率,并显示了随着疲劳周期的演变。损害发展和最终失败被认为对规模效应敏感。微观边缘观察有助于理解横向裂纹,分层和纤维破坏之间的相互作用,所有这些机制都在层压板最终破坏中产生。

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