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Residual deformation analysis in composite shell structures manufactured using automated fiber placement

机译:使用自动纤维放置制造的复合壳结构中的残余变形分析

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The manufacturing of composites typically produces residual stresses that can significantly affect the final shape of the structure. The process of automated fiber placement (AFP) has become a prominent manufacturing technique in developing layups with tailored, variable stiffness morphology. The steered patterns of fiber tows with and without overlaps produce residual deformations that are distinctive from traditional layups. Digital image correlation was used to measure the AFP lamina coefficients of thermal expansion, which were incorporated into finite element analyses (FEA) to model the cooling phase of the cure cycle. The effects of nonlinear analysis and temperature-dependent lamina properties calculated using self-consistent field micromechanics, on the resulting residual deformation of shells, were also modeled. The predicted residual deformation was analyzed by considering out-of-roundness in cylindrical shells and compared to the experimental results. The shell FEA results were well-correlated with the overall deformed shape of the AFP cylinder with overlaps, while the shell FEA model of the AFP cylinder without overlaps did not show as good of qualitative match of the deformation pattern. Analytical correlation with measured results were insensitive to material softening at elevated temperatures, geometric nonlinearities, and variations in measured lamina thermal properties. To improve the accuracy of the residual deformation analysis, these results suggest that the thermo-chemical shrinkages preceding the cooldown should be considered, as well as possible variations in ply level microstructure due to the presence of the embedded fiber tow gaps and overlaps.
机译:复合材料的制造通常产生可显着影响结构的最终形状的残余应力。自动纤维放置(AFP)的过程已成为发展具有量身定制的可变刚度形态的叠加的突出制造技术。具有和不重叠的纤维丝束的转向模式产生与传统上篮中具有独特性的残余变形。数字图像相关性用于测量热膨胀的AFP薄层系数,其掺入有限元分析(FEA)中以模拟固化循环的冷却阶段。还建模了使用自致性场微机械计算的非线性分析和温度依赖性薄层特性的影响,从而进行了建模的壳残余变形。通过考虑圆柱形壳中的圆度并与实验结果相比,分析了预测的残余变形。壳体FEA结果与AFP圆筒的整体变形形状良好,而AFP圆筒的整体变形形状具有重叠,而AFP圆筒的壳体FEA模型没有重叠没有显示出变形图案的定性匹配。与测量结果的分析相关性对升高的温度,几何非线性和测量的薄层热性能的变化不敏感材料软化。为了提高残余变形分析的准确性,这些结果表明,由于嵌入式光纤牵引间隙和重叠的存在,应考虑在冷却中的热化学收缩,以及由于嵌入光纤牵引间隙的存在和重叠而导致的帘布层电平微结构的变化。

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