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Stiffness Reduction Resulting from Matrix Cracking in FRP Laminates

机译:FRP层压板中的基质破裂产生的刚度降低

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Fiber Reinforced Polymer laminates (FRP) have properties, which are highly dependent on the ply fiber orientations and which can be designed for optimum laminate performance. The purpose of this study is to investigate effect of matrix cracking on the mechanical properties of FRP laminates with various off-axis angles. Carbon and glass fiber reinforced polymer laminates (CFRP and GFRP) are tested. FRP prepregs are cured by using autoclave method to form laminates with layups [0m/Φn]s. The laminates are then loaded monotonically and cyclically to obtain their mechanical properties and the effect of matrix cracks on the properties. One of the main effects is reduction of laminates' stiffness. In order to obtain higher crack densities in specimens, artificial cracks method was introduced in this study. The measured stiffness reduction as a function of the crack density is compared to an analytical prediction for cracked angle-ply laminates based on a variational stress analysis. : The experimental results for stiffness reduction agree well with the analytical results. Understanding the behavior of damaged laminates with simple configurations used in this study is of high importance for prediction of damage effects on laminates with more complex configuration, e.g. with quasi-isotropic layups.
机译:纤维增强聚合物层压板(FRP)具有高度依赖于帘布层纤维取向的性质,并且可以设计成用于最佳层压性能。本研究的目的是研究基质开裂对具有各种偏离轴角的FRP层压板的机械性能的影响。测试碳和玻璃纤维增​​强聚合物层压板(CFRP和GFRP)。通过使用高压釜方法来固化FRP预浸料,以形成具有叠加层的层压材料[0m /φn]。然后单调和循环地装载层压材料以获得其机械性能和基质裂缝对性质的影响。其中一个主要效果是降低层压物的僵硬度。为了获得标本的更高裂缝密度,本研究中介绍了人造裂缝方法。将测量的刚度降低作为裂缝密度的函数,与基于变分应力分析的裂纹角度层压层的分析预测进行比较。 :刚度降低的实验结果与分析结果吻合良好。了解本研究中使用的简单配置的损坏层压板的行为具有很高的重要性,可高于预测对层压板的损伤效果,例如复杂的配置,例如,用准各向同性的上篮。

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