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Towards an understanding of variations in the buckling of tailored variable angle tow composite plates

机译:了解定制的可变角度牵引复合材料板屈曲的变化

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In this paper, variable angle tow (VAT) composite plates tailored to enhance buckling performance are studied with the use of stochastic finite element method to quantify uncertainties in buckling measures arising from variations in material properties and fibre tow path. Detailed formulations for predicting buckling statistics in terms of mean value and standard deviation are derived to enable a perturbation-based stochastic finite element analysis. The derivations are built on a linear variation formula for fibre tow path and plate element based on the first order shear deformation theory. They are integrated with Taylor series expansion to propagate uncertainties from inputs to buckling performance measures, including buckling eigenvalues, critical buckling coefficients, etc. A twelve-layer VAT composite plate, with optimally designed fibre tow paths under various boundary conditions, has been investigated to illustrate the uncertainty quantification procedure. The performance of the perturbation-based stochastic finite element method has been validated using Monte Carlo simulation. Influences of variations in material properties and fibre tow path are thoroughly examined to understand the variability of buckling performance of VAT composites.
机译:在本文中,使用随机有限元方法研究了为增强屈曲性能而量身定制的可变角度拖曳(VAT)复合板,以量化由于材料特性和纤维拖曳路径的变化而引起的屈曲措施的不确定性。推导了根据平均值和标准偏差预测屈曲统计量的详细公式,从而可以进行基于扰动的随机有限元分析。这些推导基于一阶剪切变形理论基于纤维束路径和板单元的线性变化公式。它们与泰勒级数展开式集成在一起,以传播从输入到屈曲性能度量的不确定性,包括屈曲特征值,临界屈曲系数等。研究了十二层增值税复合板,该纤维板在各种边界条件下均具有优化设计的纤维束路径,说明不确定性量化程序。基于扰动的随机有限元方法的性能已使用蒙特卡洛模拟进行了验证。彻底检查了材料性能和纤维拖曳路径变化的影响,以了解增值税复合材料屈曲性能的变化。

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