首页> 外文期刊>International Journal of Solids and Structures >Buckling analysis of variable angle tow composite plates with a through-the-width or an embedded rectangular delamination
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Buckling analysis of variable angle tow composite plates with a through-the-width or an embedded rectangular delamination

机译:通过宽度或嵌入式矩形分层的可变角丝复合板的屈曲分析

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摘要

Variable angle tow (VAT) composite laminates, in which fibre orientation varies spatially in-plane in a continuous fashion yet is piecewise constant through-thickness, have been made possible by advanced automated fibre placement technology. Such designs have shown considerable potential to improve the performance of lightweight composite structures. In the present study, an analytical model is developed to study the buckling behaviour of VAT composite plates with a through-the-width or an embedded rectangular delamination under compression loadings. The proposed model can accurately capture the global, local and mixed buckling response of delaminated VAT composite plates. Both free and constrained modes are assumed in the delamination buckling analysis. A constrained point approach is employed to analyse the buckling response when contact occurs between delaminated layers. The accuracy and reliability of this proposed delamination buckling model is validated by finite element analysis and with prior results. The influence of delamination size, position and varying fibre orientation angles on the buckling response of delaminated VAT composite plates is studied by numerical examples. It is shown that the buckling loads decrease with an increase of the delamination size. The VAT laminates with an off-midplane delamination may lead to the delamination opening up, which further reduces the buckling loads. Finally, the mechanism of taking advantages of VAT laminates to improve the buckling performance of delaminated composite plates is thoroughly investigated in a parametric study. This study also shows that the residual buckling resistance of the delaminated composite plates can be significantly improved through using the VAT design concept. (C) 2018 Elsevier Ltd. All rights reserved.
机译:通过先进的自动化纤维放置技术,可变角度丝束(VAT)复合层叠层,其中纤维取向以连续的方式在空间上的平面内平面变化,但是通过先进的自动化纤维放置技术可以实现分段恒定的厚度。这种设计表明了提高轻质复合结构的性能的相当大的潜力。在本研究中,开发了一种分析模型,以研究增臼复合板的屈曲行为在压缩载荷下的宽度或嵌入的矩形分层。所提出的模型可以准确地捕获分层增值税复合板的全局,局部和混合屈曲响应。在分层屈曲分析中假设自由和约束模式。当在分层层之间发生接触时,采用约束点方法来分析屈曲响应。通过有限元分析和先前结果验证了该提出的分层屈曲模型的准确性和可靠性。通过数值实施例研究了分层尺寸,位置和不同纤维取向角对分层增值税复合板屈曲响应的影响。结果表明,屈曲负荷随着分层尺寸的增加而降低。具有离中间分层的增值税层压物可能导致分层开放,这进一步降低了屈曲负荷。最后,在参数研究中,在参数研究中彻底研究了采用增值税层压材料的优点以提高分层复合板的屈曲性能。该研究还表明,通过使用增值税设计理念,可以显着改善分层复合板的残留屈曲电阻。 (c)2018年elestvier有限公司保留所有权利。

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